array(1) { [0]=> object(Apache_Solr_Document)#24 (3) { ["_documentBoost":protected]=> bool(false) ["_fields":protected]=> array(6) { ["content_id"]=> array(1) { [0]=> string(14) "DIRECTORY_3508" } ["content_title"]=> array(1) { [0]=> string(16) "RENATO BACIOCCHI" } ["description"]=> array(1) { [0]=> string(163075) "Renato Baciocchi è Professore Ordinario di Ingegneria Sanitaria-Ambientale presso il Dipartimento di Ingegneria Civile e Ingegneria Informatica. I suoi campi di ricerca sono: la gestione e bonifica di siti contaminati, con particolare riferimento allo sviluppo di approcci innovativi per l'analisi di rischio sanitaria-ambientale e per i trattamenti di ossidazione chimica in-situ; le opzioni di mitigazione dei cambiamenti climatici, con specifico interesse rivolto ai processi di stoccaggio della CO2 mediante carbonatazione di minerali e residui industriali alcalini. Ha pubblicato più di 200 lavori, di cui 85 pubblicati in riviste internazionale peer-reviewed. E' attualmente coordinatore della rete nazionale sulla gestione e bonifica di siti contaminati (Reconnet) e responsabile di diversi progetti di ricerca e sviluppo sulla gestione di siti contaminati finanziati da istituti pubblici e aziende private. Renato Baciocchi is Professor of Environmental Engineering at the University of Rome Tor Vergata. His main research interests focus on the management of contaminated sites, specifically on new approaches for human health risk assessment and in-situ chemical oxidation, and on climate change mitigation options, specifically on CO2 storage by mineral carbonation. He has published more than 200 contributions to international journals and conference proceedings, with 85 papers published in peer review journals. He is coordinator of the national network on the management and remediation of contaminated sites (Reconnet) and is responsible of several R&D projects and contracts related to the management of contaminated sites. a:185:{i:0;a:14:{s:9:"citazione";s:280:"Morone, M., Cizer, O., Costa, G., & Baciocchi, R. (2020). Effects of Alkali Activation and CO2 Curing on the Hydraulic Reactivity and Carbon Storage Capacity of BOF Slag in View of Its Use in Concrete. WASTE AND BIOMASS VALORIZATION, 11(6), 3007-3020 [10.1007/s12649-019-00579-z].";s:4:"data";s:7:"2020-06";s:2:"id";s:20:"PUBBLICAZIONE_395181";s:6:"handle";s:11:"2108/251921";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";s:14:"BOF steel slag";s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:142:"Effects of Alkali Activation and CO2 Curing on the Hydraulic Reactivity and Carbon Storage Capacity of BOF Slag in View of Its Use in Concrete";s:9:"metadata6";s:43:"Morone, M; Cizer, O; Costa, G; Baciocchi, R";s:9:"metadata7";s:26:"10.1007/s12649-019-00579-z";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:1;a:14:{s:9:"citazione";s:293:"Zingaretti, D., Lominchar, M.A., Verginelli, I., Santos, A., & Baciocchi, R. (2020). Humic acids extracted from compost as amendments for Fenton treatment of diesel-contaminated soil. ENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH INTERNATIONAL, 27(18), 22225-22234 [10.1007/s11356-020-08221-5].";s:4:"data";s:4:"2020";s:2:"id";s:20:"PUBBLICAZIONE_407570";s:6:"handle";s:11:"2108/263249";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";s:7:"Compost";s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:97:"Humic acids extracted from compost as amendments for Fenton treatment of diesel-contaminated soil";s:9:"metadata6";s:68:"Zingaretti, D; Lominchar, MA; Verginelli, I; Santos, A; Baciocchi, R";s:9:"metadata7";s:26:"10.1007/s11356-020-08221-5";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:2;a:14:{s:9:"citazione";s:264:"Zingaretti, D., Verginelli, I., Luisetto, I., & Baciocchi, R. (2020). Horizontal permeable reactive barriers with zero-valent iron for preventing upward diffusion of chlorinated solvent vapors in the unsaturated zone. JOURNAL OF CONTAMINANT HYDROLOGY, 234, 103687.";s:4:"data";s:4:"2020";s:2:"id";s:20:"PUBBLICAZIONE_407567";s:6:"handle";s:11:"2108/263247";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:146:"Horizontal permeable reactive barriers with zero-valent iron for preventing upward diffusion of chlorinated solvent vapors in the unsaturated zone";s:9:"metadata6";s:55:"Zingaretti, D; Verginelli, I; Luisetto, I; Baciocchi, R";s:9:"metadata7";s:29:"10.1016/j.jconhyd.2020.103687";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:3;a:14:{s:9:"citazione";s:230:"Verginelli, I., & Baciocchi, R. (2019). Modelli per la valutazione preliminare dell'esposizione durante le attività di scavo di terreno contaminato. 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SLOVENIAN CHEMICAL SOCIETY.";s:4:"data";s:7:"2019-06";s:2:"id";s:20:"PUBBLICAZIONE_392331";s:6:"handle";s:11:"2108/249485";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:97:"Humic Acids extracted from Compost as amendments for Fenton treatment of Diesel-Contaminated Soil";s:9:"metadata6";s:67:"Zingaretti, D; Lominchar, M; Verginelli, I; Santos, A; Baciocchi, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:6;a:14:{s:9:"citazione";s:221:"Zingaretti, D., Verginelli, I., & Baciocchi, R. (2019). Dehalogenation of trichloroethylene vapors by partially saturated zero-valent iron. 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Carbonation of BOF Slag in a Rotary Kiln Reactor in View of the Scale-Up of the Wet Route Process. ENVIRONMENTAL PROGRESS & SUSTAINABLE ENERGY, 38(3), e13140 [10.1002/ep.13140].";s:4:"data";s:4:"2019";s:2:"id";s:20:"PUBBLICAZIONE_376738";s:6:"handle";s:11:"2108/236013";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";s:79:"accelerated carbonation; alkaline industrial residues; BOF slag; CCUS; leaching";s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:97:"Carbonation of BOF Slag in a Rotary Kiln Reactor in View of the Scale-Up of the Wet Route Process";s:9:"metadata6";s:49:"Librandi, P; Costa, G; Stendardo, S; Baciocchi, R";s:9:"metadata7";s:16:"10.1002/ep.13140";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:8;a:14:{s:9:"citazione";s:280:"Librandi, P., Nielsen, P., Costa, G., Snellings, R., Quaghebeur, M., & Baciocchi, R. (2019). Mechanical and environmental properties of carbonated steel slag compacts as a function of mineralogy and CO2 uptake. JOURNAL OF CO2 UTILIZATION, 33, 201-214 [10.1016/j.jcou.2019.05.028].";s:4:"data";s:4:"2019";s:2:"id";s:20:"PUBBLICAZIONE_376734";s:6:"handle";s:11:"2108/236011";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";s:86:"Carbonation; Compressive strength; Leaching and mineralogy; Microstructure; Steel slag";s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:116:"Mechanical and environmental properties of carbonated steel slag compacts as a function of mineralogy and CO2 uptake";s:9:"metadata6";s:76:"Librandi, P; Nielsen, P; Costa, G; Snellings, R; Quaghebeur, M; Baciocchi, R";s:9:"metadata7";s:26:"10.1016/j.jcou.2019.05.028";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:9;a:14:{s:9:"citazione";s:332:"Zaninetta, L., Borrelli, R., Oldani, A., Vago, F., Zingaretti, D., Verginelli, I., et al. (2018). Campionatori passivi a base di LDPE per la stima del percorso di lisciviazione nella procedura di analisi di rischio: esiti delle prove di laboratorio. Paper presented at Remediation Technologies conference” (REMTECH 2018), Ferrara.";s:4:"data";s:7:"2018-09";s:2:"id";s:20:"PUBBLICAZIONE_392346";s:6:"handle";s:11:"2108/249499";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:150:"Campionatori passivi a base di LDPE per la stima del percorso di lisciviazione nella procedura di analisi di rischio: esiti delle prove di laboratorio";s:9:"metadata6";s:89:"Zaninetta, L; Borrelli, R; Oldani, A; Vago, F; Zingaretti, D; Verginelli, I; Baciocchi, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:10;a:14:{s:9:"citazione";s:265:"Baciocchi, R., Costa, G., & Verginelli, I. (2018). 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Paper presented at 10th International Passive Sampling Workshop and Symposium (IPSW 2018), Dublin, Ireland..";s:4:"data";s:7:"2018-05";s:2:"id";s:20:"PUBBLICAZIONE_392354";s:6:"handle";s:11:"2108/249507";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:87:"Using low-density polyethylene films for quantitative passive soil gas sampling of BTEX";s:9:"metadata6";s:101:"Borrelli, R; Oldani, A; Vago, F; Verginelli, I; Baciocchi, R; Gschwend, P; McFarlane, J; Zaninetta, L";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:12;a:14:{s:9:"citazione";s:291:"Berardi, S., Bemporad, E., Bogliolo, M., Mangiapia, M.d., Gherardi, M., Incocciati, E., et al. (2018). Operatori della bonifica di siti contaminati: valutazione del rischio chimico inalatorio. Paper presented at 24° CONVEGNO DI IGIENE INDUSTRIALE- LE GIORNATE DI CORVARA, Corvara (Bolzano).";s:4:"data";s:7:"2018-04";s:2:"id";s:20:"PUBBLICAZIONE_392358";s:6:"handle";s:11:"2108/249511";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:88:"Operatori della bonifica di siti contaminati: valutazione del rischio chimico inalatorio";s:9:"metadata6";s:192:"Berardi, S; Bemporad, E; Bogliolo, Mpla; Mangiapia, Md; Gherardi, M; Incocciati, E; Baciocchi, R; Verginelli, I; Marchì, T; Gregio, M; Visentin, L; Colombo, L; Vai, T; Vitaliti, S; Succu, Mg";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:13;a:14:{s:9:"citazione";s:260:"Verginelli, I., & Baciocchi, R. (2018). Modeling of source to building exclusion distances at petroleum contaminated sites. Paper presented at Eleventh International Conference on Remediation of Chlorinated and Recalcitrant Compounds, Palm Springs, California.";s:4:"data";s:7:"2018-04";s:2:"id";s:20:"PUBBLICAZIONE_392352";s:6:"handle";s:11:"2108/249505";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:82:"Modeling of source to building exclusion distances at petroleum contaminated sites";s:9:"metadata6";s:27:"Verginelli, I; Baciocchi, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:14;a:14:{s:9:"citazione";s:203:"Baciocchi, R., Costa, G., Librandi, P., & Stendardo, S. (2018). Scale up of the wet route carbonation of steel slag in a rotary kiln pilot-scale reactor. In Proceedings of ACEME 2018 (pp.369-377). AichE.";s:4:"data";s:4:"2018";s:2:"id";s:20:"PUBBLICAZIONE_392978";s:6:"handle";s:11:"2108/250063";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:88:"Scale up of the wet route carbonation of steel slag in a rotary kiln pilot-scale reactor";s:9:"metadata6";s:49:"Baciocchi, R; Costa, G; Librandi, P; Stendardo, S";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:15;a:14:{s:9:"citazione";s:314:"Borrelli, R., Tcaciuc, A.p., Verginelli, I., Baciocchi, R., Guzzella, L., Cesti, P., et al. (2018). Performance of passive sampling with low-density polyethylene membranes for the estimation of freely dissolved DDx concentrations in lake environments. CHEMOSPHERE, 200, 227-236 [10.1016/j.chemosphere.2018.02.077].";s:4:"data";s:4:"2018";s:2:"id";s:20:"PUBBLICAZIONE_328027";s:6:"handle";s:11:"2108/195583";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:150:"Performance of passive sampling with low-density polyethylene membranes for the estimation of freely dissolved DDx concentrations in lake environments";s:9:"metadata6";s:104:"Borrelli, R; Tcaciuc, Ap; Verginelli, I; Baciocchi, R; Guzzella, L; Cesti, P; Zaninetta, L; Gschwend, Pm";s:9:"metadata7";s:33:"10.1016/j.chemosphere.2018.02.077";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:16;a:14:{s:9:"citazione";s:240:"Capobianco, O., Costa, G., & Baciocchi, R. (2018). Assessment of the Environmental Sustainability of a Treatment Aimed at Soil Reuse in a Brownfield Regeneration Context. JOURNAL OF INDUSTRIAL ECOLOGY, 22(5), 1027-1038 [10.1111/jiec.12648].";s:4:"data";s:4:"2018";s:2:"id";s:20:"PUBBLICAZIONE_324093";s:6:"handle";s:11:"2108/192272";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";s:110:"aggregates; Brownfield soil; industrial ecology; leaching; life cycle assessment; stabilization-solidification";s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";s:1608:"A combined stabilization/solidification (S/S) and granulation treatment was shown to be effective, at lab scale, to produce secondary aggregates from a Brownfield soil slightly contaminated by metals. This treatment, as opposed to the frequently adopted “dig and dump” option, allows to combine soil management with site regeneration, minimizing landfill disposal. But is this treatment actually more environmentally sustainable than excavated soil management by dig and dump? To answer this question, we analyzed and compared by life cycle assessment the environmental impacts resulting from the application of the above-mentioned treatment versus dig and dump on the basis of the results of lab tests performed on a Brownfield soil sample, including leaching test results. The impacts related to the production of all the reagents used in the on-site treatment, as well as the avoided impacts due to the replacement of raw aggregates with recycled ones, were included. Results showed that the proposed S/S-granulation process may allow a drastic decrease of the impacts related to land use and resource depletion in comparison to dig and dump, with beneficial effects also with regard to toxicity-related impact categories. Conversely, the proposed treatment yielded higher impacts, in terms of acidification, water resource depletion, and, in particular, climate change, almost entirely related to the manufacturing of the cement employed for stabilization. However, an average 40% reduction of overall impacts was noted when fly ash cement was assumed to be used as binder instead of Portland cement.";s:9:"metadata5";s:118:"Assessment of the Environmental Sustainability of a Treatment Aimed at Soil Reuse in a Brownfield Regeneration Context";s:9:"metadata6";s:37:"Capobianco, O; Costa, G; Baciocchi, R";s:9:"metadata7";s:18:"10.1111/jiec.12648";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:17;a:14:{s:9:"citazione";s:269:"Librandi, P., Costa, G., Baciocchi, R., Quaghebeur, M., Nielsen, P., & Snellings, R. (2018). Influence of mineralogy and process parameters on microstructure development and mechanical properties of carbonated compacts. In Proceedings of ACEME 2018 (pp.435-444). AichE.";s:4:"data";s:4:"2018";s:2:"id";s:20:"PUBBLICAZIONE_392982";s:6:"handle";s:11:"2108/250067";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:125:"Influence of mineralogy and process parameters on microstructure development and mechanical properties of carbonated compacts";s:9:"metadata6";s:76:"Librandi, P; Costa, G; Baciocchi, R; Quaghebeur, M; Nielsen, P; Snellings, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:18;a:14:{s:9:"citazione";s:275:"Polli, F., Zingaretti, D., Crognale, S., Pesciaroli, L., D'Annibale, A., Petruccioli, M., et al. (2018). Impact of the Fenton-like treatment on the microbial community of a diesel-contaminated soil. CHEMOSPHERE, 191(January 2018), 580-588 [10.1016/j.chemosphere.2017.10.081].";s:4:"data";s:4:"2018";s:2:"id";s:20:"PUBBLICAZIONE_325395";s:6:"handle";s:11:"2108/193333";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";s:98:"Bioremediation; DGGE; Diesel contamination; Fenton; qPCR; Environmental Chemistry; Chemistry (all)";s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:92:"Impact of the Fenton-like treatment on the microbial community of a diesel-contaminated soil";s:9:"metadata6";s:96:"Polli, F; Zingaretti, D; Crognale, S; Pesciaroli, L; D'Annibale, A; Petruccioli, M; Baciocchi, R";s:9:"metadata7";s:33:"10.1016/j.chemosphere.2017.10.081";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:19;a:14:{s:9:"citazione";s:274:"Verginelli, I., Pecoraro, R., & Baciocchi, R. (2018). Using dynamic flux chambers to estimate the natural attenuation rates in the subsurface at petroleum contaminated sites. 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Soluble organic substances extracted from compost as amendments for Fenton-like oxidation of contaminated sites. SCIENCE OF THE TOTAL ENVIRONMENT, 619-620, 1366-1374 [10.1016/j.scitotenv.2017.11.178].";s:4:"data";s:4:"2018";s:2:"id";s:20:"PUBBLICAZIONE_323139";s:6:"handle";s:11:"2108/191445";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:111:"Soluble organic substances extracted from compost as amendments for Fenton-like oxidation of contaminated sites";s:9:"metadata6";s:40:"Zingaretti, D; Lombardi, F; Baciocchi, R";s:9:"metadata7";s:31:"10.1016/j.scitotenv.2017.11.178";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:21;a:14:{s:9:"citazione";s:210:"Nielsen, P., Baciocchi, R., Costa, G., Quaghebeur, M., & Snellings, R. (2017). Carbonate-bonded construction materials from alkaline residues. RILEM TECHNICAL LETTERS, 2, 53-58 [10.21809/rilemtechlett.2017.50].";s:4:"data";s:10:"2017-12-30";s:2:"id";s:20:"PUBBLICAZIONE_392960";s:6:"handle";s:11:"2108/250051";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";s:53:"Carbonation, Slags, CO2, Aggregates, Compacts, Curing";s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";s:1186:"Accelerated carbonation is a rapidly developing technology that is attracting attention as it uses CO2 as a binder to make construction materials. Originally stemming from geochemical and environmental research into CO2 sequestration or waste remediation, accelerated carbonation has been developed into a technology that enables to transform alkaline precursors into products that meet technical requirements for use as aggregates or shaped blocks. Alkaline precursors can be manufactured from primary resources or derived from industrial residues: a.o. metallurgical slags, incineration ashes and concrete recycling residues are prone to carbonate under controlled conditions. Moist carbonation of shaped Ca-silicate rich precursors at elevated curing temperature and CO2 concentration or pressure has delivered the most promising results so far. This letter presents an overview of current accelerated carbonation approaches to make carbonate bonded construction materials from alkaline residues. 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Vagliasindi.";s:4:"data";s:7:"2017-04";s:2:"id";s:20:"PUBBLICAZIONE_392368";s:6:"handle";s:11:"2108/249521";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:83:"Modelli di trasporto nella procedura di analisi di rischio: una visione dal passato";s:9:"metadata6";s:27:"Verginelli, I; Baciocchi, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:27;a:14:{s:9:"citazione";s:318:"Ghasemi, S., Costa, G., Zingaretti, D., Babler, M.U., & Baciocchi, R. (2017). Comparative Life-cycle Assessment of Slurry and Wet Accelerated Carbonation of BOF Slag. In Energy Procedia (pp.5393-5403). SARA BURGERHARTSTRAAT 25, PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS : Elsevier Ltd [10.1016/j.egypro.2017.03.1675].";s:4:"data";s:4:"2017";s:2:"id";s:20:"PUBBLICAZIONE_376754";s:6:"handle";s:11:"2108/236028";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";s:77:"CO; 2; storage; life cycle assessment; Mineral carbonation; steelmaking slag";s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:87:"Comparative Life-cycle Assessment of Slurry and Wet Accelerated Carbonation of BOF Slag";s:9:"metadata6";s:61:"Ghasemi, S; Costa, G; Zingaretti, D; Babler, MU; Baciocchi, R";s:9:"metadata7";s:29:"10.1016/j.egypro.2017.03.1675";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:28;a:14:{s:9:"citazione";s:316:"Librandi, P., Costa, G., Souza, A., Stendardo, S., Luna, A.S., & Baciocchi, R. (2017). Carbonation of Steel Slag: Testing of the Wet Route in a Pilot-scale Reactor. In Energy Procedia (pp.5381-5392). SARA BURGERHARTSTRAAT 25, PO BOX 211, 1000 AE AMSTERDAM, NETHERLANDS : Elsevier Ltd [10.1016/j.egypro.2017.03.1674].";s:4:"data";s:4:"2017";s:2:"id";s:20:"PUBBLICAZIONE_376760";s:6:"handle";s:11:"2108/236030";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";s:106:"Accelerated carbonation; BOF slag; CO; 2; uptake; granulation; leaching behavior; mineralogy; pilot-scale";s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:76:"Carbonation of Steel Slag: Testing of the Wet Route in a Pilot-scale Reactor";s:9:"metadata6";s:72:"Librandi, P; Costa, G; Souza, ACBD; Stendardo, S; Luna, AS; Baciocchi, R";s:9:"metadata7";s:29:"10.1016/j.egypro.2017.03.1674";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:29;a:14:{s:9:"citazione";s:275:"Morone, M., Costa, G., Georgakopoulos, E., Manovic, V., Stendardo, S., & Baciocchi, R. (2017). Granulation–carbonation treatment of alkali activated steel slag for secondary aggregates production. WASTE AND BIOMASS VALORIZATION, 8(5), 1381-1391 [10.1007/s12649-016-9781-0].";s:4:"data";s:4:"2017";s:2:"id";s:20:"PUBBLICAZIONE_310756";s:6:"handle";s:11:"2108/180100";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:102:"Granulation–carbonation treatment of alkali activated steel slag for secondary aggregates production";s:9:"metadata6";s:78:"Morone, M; Costa, G; Georgakopoulos, E; Manovic, V; Stendardo, S; Baciocchi, R";s:9:"metadata7";s:25:"10.1007/s12649-016-9781-0";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:30;a:14:{s:9:"citazione";s:309:"Verginelli, I., Capobianco, O., Hartog, N., & Baciocchi, R. (2017). Analytical model for the design of in situ horizontal permeable reactive barriers (HPRBs) for the mitigation of chlorinated solvent vapors in the unsaturated zone. JOURNAL OF CONTAMINANT HYDROLOGY, 197, 50-61 [10.1016/j.jconhyd.2016.12.010].";s:4:"data";s:4:"2017";s:2:"id";s:20:"PUBBLICAZIONE_310750";s:6:"handle";s:11:"2108/180094";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:162:"Analytical model for the design of in situ horizontal permeable reactive barriers (HPRBs) for the mitigation of chlorinated solvent vapors in the unsaturated zone";s:9:"metadata6";s:53:"Verginelli, I; Capobianco, O; Hartog, N; Baciocchi, R";s:9:"metadata7";s:29:"10.1016/j.jconhyd.2016.12.010";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:31;a:14:{s:9:"citazione";s:250:"Verginelli, I., Nocentini, M., & Baciocchi, R. (2017). An alternative screening model for the estimation of outdoor air concentration at large contaminated sites. 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Daniele Cazzuffi, Ilaria Pietrini.";s:4:"data";s:7:"2016-09";s:2:"id";s:20:"PUBBLICAZIONE_392372";s:6:"handle";s:11:"2108/249525";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:57:"Misure di soil-gas: aspetti applicativi nei siti Versalis";s:9:"metadata6";s:54:"Baciocchi, R; Pecoraro, R; Romagnoli, S; Verginelli, I";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:33;a:14:{s:9:"citazione";s:265:"Borrelli, R., Zaninetta, L., Baciocchi, R., Verginelli, I., Oldani, A., & Vago, F. (2016). Applicazione di campionatori passivi in LDPE per il campionamento dei gas interstiziali. In “Atti dei convegni nazionali” RemTech 2016. Daniele Cazzuffi, Ilaria Pietrini.";s:4:"data";s:7:"2016-09";s:2:"id";s:20:"PUBBLICAZIONE_392378";s:6:"handle";s:11:"2108/249531";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:87:"Applicazione di campionatori passivi in LDPE per il campionamento dei gas interstiziali";s:9:"metadata6";s:74:"Borrelli, R; Zaninetta, L; Baciocchi, R; Verginelli, I; Oldani, A; Vago, F";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:34;a:14:{s:9:"citazione";s:278:"Pecoraro, R., Cidaria, D., Baciocchi, R., & Verginelli, I. (2016). Contaminanti chimici: dall’analisi di rischio alla valutazione delle esposizioni. Esperienze applicative nei siti Versalis. In “Atti dei convegni nazionali” RemTech 2016. Daniele Cazzuffi, Ilaria Pietrini.";s:4:"data";s:7:"2016-09";s:2:"id";s:20:"PUBBLICAZIONE_392374";s:6:"handle";s:11:"2108/249527";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:124:"Contaminanti chimici: dall’analisi di rischio alla valutazione delle esposizioni. Esperienze applicative nei siti Versalis";s:9:"metadata6";s:52:"Pecoraro, R; Cidaria, D; Baciocchi, R; Verginelli, I";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:35;a:14:{s:9:"citazione";s:217:"Verginelli, I., Capobianco, O., & Baciocchi, R. (2016). La distanza laterale di esclusione nel percorso di volatilizzazione indoor. In “Atti dei convegni nazionali” RemTech 2016. Daniele Cazzuffi, Ilaria Pietrini.";s:4:"data";s:7:"2016-09";s:2:"id";s:20:"PUBBLICAZIONE_392376";s:6:"handle";s:11:"2108/249529";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:74:"La distanza laterale di esclusione nel percorso di volatilizzazione indoor";s:9:"metadata6";s:42:"Verginelli, I; Capobianco, O; Baciocchi, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:36;a:14:{s:9:"citazione";s:242:"Zingaretti, D., Verginelli, I., & Baciocchi, R. (2016). Combinazione di ossidazione chimica e CO2 sparging per il trattamento di acque di falda contaminate. In “Atti dei convegni nazionali” RemTech 2016. Daniele Cazzuffi, Ilaria Pietrini.";s:4:"data";s:7:"2016-09";s:2:"id";s:20:"PUBBLICAZIONE_392370";s:6:"handle";s:11:"2108/249523";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:99:"Combinazione di ossidazione chimica e CO2 sparging per il trattamento di acque di falda contaminate";s:9:"metadata6";s:42:"Zingaretti, D; Verginelli, I; Baciocchi, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:37;a:14:{s:9:"citazione";s:270:"Verginelli, I., Zingaretti, D., Capobianco, O., & Baciocchi, R. (2016). Refinement of risk assessment models: toward a more sustainable management of contaminated sites. 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Vagliasindi.";s:4:"data";s:7:"2016-02";s:2:"id";s:20:"PUBBLICAZIONE_392389";s:6:"handle";s:11:"2108/249541";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:83:"Ossidazione chimica e CO2 sparging per il trattamento di acque di falda contaminate";s:9:"metadata6";s:42:"Zingaretti, D; Verginelli, I; Baciocchi, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:40;a:14:{s:9:"citazione";s:205:"Baciocchi, R., Costa, G., & Lombardi, L. (2016). SNG upgrading. In Synthetic natural gas from coal and dry biomass, and power?to?gas applications (pp. 161-179). Wiley Blackwell [10.1002/9781119191339.ch5].";s:4:"data";s:4:"2016";s:2:"id";s:20:"PUBBLICAZIONE_310762";s:6:"handle";s:11:"2108/180104";s:9:"metadata1";s:19:"Contributo in libro";s:9:"metadata2";s:165:"Biomass conversion processes; Chemical absorption; Ethane; Methane; Physical absorption; Separation processes; Synthetic natural gas; Thermal gasification processes;";s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:13:"SNG upgrading";s:9:"metadata6";s:35:"Baciocchi, R; Costa, G; Lombardi, L";s:9:"metadata7";s:25:"10.1002/9781119191339.ch5";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:41;a:14:{s:9:"citazione";s:268:"Baciocchi, R., Costa, G., Polettini, A., Pomi, R., Stramazzo, A., & Zingaretti, D. (2016). Accelerated carbonation of steel slags using CO2diluted sources: CO2uptakes and energy requirements. FRONTIERS IN ENERGY RESEARCH, 3(18 January 2016) [10.3389/fenrg.2015.00056].";s:4:"data";s:4:"2016";s:2:"id";s:20:"PUBBLICAZIONE_325406";s:6:"handle";s:11:"2108/193345";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";s:226:"CO2capture and storage; Energy requirements; Fluegas; Mineral carbonation; Steel slags; Renewable Energy, Sustainability and the Environment; Fuel Technology; Energy Engineering and Power Technology; Economics and Econometrics";s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:99:"Accelerated carbonation of steel slags using CO2diluted sources: CO2uptakes and energy requirements";s:9:"metadata6";s:74:"Baciocchi, R; Costa, G; Polettini, A; Pomi, R; Stramazzo, A; Zingaretti, D";s:9:"metadata7";s:24:"10.3389/fenrg.2015.00056";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:42;a:14:{s:9:"citazione";s:323:"Frollini, E., Piscitelli, D., Verginelli, I., Baciocchi, R., & Petitta, M. (2016). A Methodological approach to assess the dissolution of residual LNAPL in saturated porous media and its effect on groundwater quality: preliminary experimental results. WATER AIR AND SOIL POLLUTION, 227(10), 379 [10.1007/s11270-016-3077-7].";s:4:"data";s:4:"2016";s:2:"id";s:20:"PUBBLICAZIONE_310752";s:6:"handle";s:11:"2108/180096";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:167:"A Methodological approach to assess the dissolution of residual LNAPL in saturated porous media and its effect on groundwater quality: preliminary experimental results";s:9:"metadata6";s:67:"Frollini, E; Piscitelli, D; Verginelli, I; Baciocchi, R; Petitta, M";s:9:"metadata7";s:25:"10.1007/s11270-016-3077-7";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:43;a:14:{s:9:"citazione";s:222:"Verginelli, I., Capobianco, O., & Baciocchi, R. (2016). Role of the source to building lateral separation distance in petroleum vapor intrusion. JOURNAL OF CONTAMINANT HYDROLOGY, 189, 58-67 [10.1016/j.jconhyd.2016.03.009].";s:4:"data";s:4:"2016";s:2:"id";s:20:"PUBBLICAZIONE_310759";s:6:"handle";s:11:"2108/180102";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";s:132:"Aerobic biodegradation; Lateral screening distance; Modeling; Vapor intrusion; Environmental Chemistry; Water Science and Technology";s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:87:"Role of the source to building lateral separation distance in petroleum vapor intrusion";s:9:"metadata6";s:42:"Verginelli, I; Capobianco, O; Baciocchi, R";s:9:"metadata7";s:29:"10.1016/j.jconhyd.2016.03.009";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:44;a:14:{s:9:"citazione";s:229:"Zingaretti, D., Verginelli, I., & Baciocchi, R. (2016). Catalyzed hydrogen peroxide combined with CO2 sparging for the treatment of contaminated groundwater. CHEMICAL ENGINEERING JOURNAL, 300, 119-126 [10.1016/j.cej.2016.04.056].";s:4:"data";s:4:"2016";s:2:"id";s:20:"PUBBLICAZIONE_310754";s:6:"handle";s:11:"2108/180098";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:100:"Catalyzed hydrogen peroxide combined with CO2 sparging for the treatment of contaminated groundwater";s:9:"metadata6";s:42:"Zingaretti, D; Verginelli, I; Baciocchi, R";s:9:"metadata7";s:25:"10.1016/j.cej.2016.04.056";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:45;a:14:{s:9:"citazione";s:215:"Baciocchi, R., Pecoraro, R., Verginelli, I., & Villani, I. (2015). Proposta di un approccio a livelli per l’analisi di rischio. In “Atti dei convegni nazionali” RemTech 2015. Daniele Cazzuffi, Ilaria Pietrini.";s:4:"data";s:7:"2015-09";s:2:"id";s:20:"PUBBLICAZIONE_392403";s:6:"handle";s:11:"2108/249555";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:61:"Proposta di un approccio a livelli per l’analisi di rischio";s:9:"metadata6";s:52:"Baciocchi, R; Pecoraro, R; Verginelli, I; Villani, I";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:46;a:14:{s:9:"citazione";s:248:"Zaninetta, L., Borrelli, R., Baciocchi, R., & Verginelli, I. (2015). Campionatori passivi per la stima della disponibilità degli inquinanti in suoli e sedimenti. In “Atti dei convegni nazionali” RemTech 2015. Daniele Cazzuffi, Ilaria Pietrini.";s:4:"data";s:7:"2015-09";s:2:"id";s:20:"PUBBLICAZIONE_392399";s:6:"handle";s:11:"2108/249551";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:92:"Campionatori passivi per la stima della disponibilità degli inquinanti in suoli e sedimenti";s:9:"metadata6";s:54:"Zaninetta, L; Borrelli, R; Baciocchi, R; Verginelli, I";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:47;a:14:{s:9:"citazione";s:243:"Baciocchi, R., Costa, G., Polettini, A., Pomi, R., Stramazzo, A., & Zingaretti, D. (2015). Accelerated carbonation of steel slags using CO2 diluted sources: CO2 uptakes and energy requirements. In Proceedings of ACEME 2015 (pp.404-416). AichE.";s:4:"data";s:7:"2015-06";s:2:"id";s:20:"PUBBLICAZIONE_395360";s:6:"handle";s:11:"2108/252112";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";s:1238:"his work presents the results of carbonation experiments performed on Basic Oxygen Furnace (BOF) steel slag samples employing gas mixtures containing 40 and 10% CO2 vol. simulating the gaseous effluents of gasification and combustion processes respectively, as well as 100% CO2for comparison purposes. Two routes were tested, the slurry phase (L/S=5 l/kg, T=100 °C and Ptot=10 bar) and the wet (L/S =0.3-0.4 l/kg, T=50 °C and Ptot=7-10 bar) routes. For each, the CO2 uptake achieved as a function of the reaction time was analyzed and on this basis the energy requirements associated to each carbonation route and gas mixture composition were estimated considering to store the CO2 emissions of a medium size power plant (20 MW). For the slurry-phase route, CO2 uptakes after 24 h ranged from around 8% at 10% CO2, to 21-29% at 40% CO2 and 32.5-40% at 100% CO2. For the wet route, uptakes of 13-19.5% at 40% CO2and 17.8-20.2% at 100% CO2 were attained. The energy requirements of the two analyzed process routes appeared to depend chiefly on the CO2 uptake of the slag. The minimum overall energy requirements were found for the tests with 40% CO2 flows (i.e. 1400-1600 MJ/t CO2 for the slurry and 2220-2550 MJ/t CO2 for the wet route).";s:9:"metadata5";s:101:"Accelerated carbonation of steel slags using CO2 diluted sources: CO2 uptakes and energy requirements";s:9:"metadata6";s:74:"Baciocchi, R; Costa, G; Polettini, A; Pomi, R; Stramazzo, A; Zingaretti, D";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:48;a:14:{s:9:"citazione";s:190:"Morone, M., Cizer, O., Costa, G., & Baciocchi, R. (2015). Investigation of the effects of alkali activation and CO2curing on BOF steel slag. In Proceedings of ACEME 2015 (pp.417-427). AIChE.";s:4:"data";s:7:"2015-06";s:2:"id";s:20:"PUBBLICAZIONE_395307";s:6:"handle";s:11:"2108/252065";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";s:1302:"The present work reports the results obtained by coupling alkali activation and CO2 curing as a treatment for BOF slag, with the aim of improving the hydraulic reactivity of the residue while also exploiting its potential as carbon sink. The slag was mixed with two different solutions: NaOH (2M)+Na2SiO3 (50:50 by wt.) and NaOH (4M)+Na2CO3 (2M) (75:25 % by wt.) and then cured for 3, 7 and 28 days, in either a humidity chamber (RH=90% and T=20 °C) or in a carbonation chamber (RH=75%, CO2=5%) at both environmental and enhanced conditions (T=50 °C). TGA results, confirmed by XRD analysis, showed an increasing loss in weight corresponding to the decomposition of carbonates by increasing the curing time for both activators and curing conditions, while a significant occurrence of gaylussite at early curing times and low curing temperature was observed, mainly for the sodium carbonate solution. The highest CO2 uptake (6% wt. slag) was achieved for the BOF slag samples mixed with the sodium hydroxide/sodium carbonate solution after 28 days of curing in the carbonation chamber, regardless of the temperature adopted. The maximum value of the compressive strength (2 MPa) was obtained after 7 days of curing in the carbonation chamber at 50 °C for mortar samples prepared with sodium silicate.";s:9:"metadata5";s:81:"Investigation of the effects of alkali activation and CO2curing on BOF steel slag";s:9:"metadata6";s:43:"Morone, M; Cizer, O; Costa, G; Baciocchi, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:49;a:14:{s:9:"citazione";s:247:"Morone, M., Georgakopoulos, E., Costa, G., Cizer, O., Gu, S., & Baciocchi, R. (2015). Carbonation-granulation of alkali activated BOF slag for the production of recycled aggregates and CO2 storage. In Proceedings of ACEME 2015 (pp.352-363). AichE.";s:4:"data";s:7:"2015-06";s:2:"id";s:20:"PUBBLICAZIONE_395312";s:6:"handle";s:11:"2108/252110";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";s:1210:"This work was aimed at investigating the performance of a combined carbonation and granulation treatment applied to Basic Oxygen Furnace (BOF) steel slag with the aim of producing secondary aggregates and of storing CO2 in a solid and stable form. In order to improve the mechanical properties of the aggregates, an alkaline solution of sodium silicate and sodium hydroxide was employed as binder instead of water both during the granulation and combined granulation/carbonation tests. The results showed that the granules produced using the alkali activator with or without CO2 addition, presented a mean size ranging from 1 to 5 mm and adequate mechanical properties for use in civil engineering applications. The maximum CO2 uptake attained was of 40 gCO2/kg steel slag for the alkali activated and carbonated granules after 60 min of treatment. As for the leaching behaviour of the produced granules, an increase in the release of Cr and V was found for the product of the granulation/carbonation treatment with alkali activation; nonetheless, the crushed granules attained after a reaction time of 30 min showed to still comply (apart from pH) with the Italian requirements for reuse for land reclamation.";s:9:"metadata5";s:110:"Carbonation-granulation of alkali activated BOF slag for the production of recycled aggregates and CO2 storage";s:9:"metadata6";s:69:"Morone, M; Georgakopoulos, E; Costa, G; Cizer, O; Gu, S; Baciocchi, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:50;a:14:{s:9:"citazione";s:356:"Swartjes, F., Wragg, J., Cave, M., Baciocchi, R., Verginelli, I., Pecoraro, R., et al. (2015). After 25 years of contaminated land-related human exposure models: READY, STEADY, GO?. Paper presented at 13th International UFZ-Deltares Conference on Sustainable Use and Management of Soil, Sediment and Water Resources (AquaConSoil 2015), Copenhagen, Denmark.";s:4:"data";s:7:"2015-06";s:2:"id";s:20:"PUBBLICAZIONE_392407";s:6:"handle";s:11:"2108/249559";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:85:"After 25 years of contaminated land-related human exposure models: READY, STEADY, GO?";s:9:"metadata6";s:97:"Swartjes, F; Wragg, J; Cave, M; Baciocchi, R; Verginelli, I; Pecoraro, R; Provoost, J; Ohlsson, Y";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:51;a:14:{s:9:"citazione";s:347:"Zingaretti, D., Verginelli, I., & Baciocchi, R. (2015). Combined Fenton-like oxidation and CO2 sparging for the treatment of groundwater contaminated by organic compounds.. Paper presented at 13th International UFZ-Deltares Conference on Sustainable Use and Management of Soil, Sediment and Water Resources (AquaConSoil 2015), Copenhagen, Denmark.";s:4:"data";s:7:"2015-06";s:2:"id";s:20:"PUBBLICAZIONE_392405";s:6:"handle";s:11:"2108/249557";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:115:"Combined Fenton-like oxidation and CO2 sparging for the treatment of groundwater contaminated by organic compounds.";s:9:"metadata6";s:42:"Zingaretti, D; Verginelli, I; Baciocchi, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:52;a:14:{s:9:"citazione";s:272:"Baciocchi, R., Verginelli, I., Capobianco, O., & Pecoraro, R. (2015). Interpretation and Utilization of Soil-Gas Survey in Petrochemical Plants. Paper presented at Third International Symposium on Bioremediation and Sustainable Environmental Technologies, Miami, Florida,.";s:4:"data";s:7:"2015-05";s:2:"id";s:20:"PUBBLICAZIONE_392409";s:6:"handle";s:11:"2108/249561";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:73:"Interpretation and Utilization of Soil-Gas Survey in Petrochemical Plants";s:9:"metadata6";s:55:"Baciocchi, R; Verginelli, I; Capobianco, O; Pecoraro, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:53;a:14:{s:9:"citazione";s:289:"Verginelli, I., & Baciocchi, R. (2015). Modeling of Vertical Exclusion Distance Criteria for Assessing the Vapor Intrusion Pathway at Petroleum Hydrocarbon Sites. Paper presented at Third International Symposium on Bioremediation and Sustainable Environmental Technologies, Miami, Florida.";s:4:"data";s:7:"2015-05";s:2:"id";s:20:"PUBBLICAZIONE_392411";s:6:"handle";s:11:"2108/249563";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:15:"Settore ICAR/03";s:9:"metadata4";N;s:9:"metadata5";s:121:"Modeling of Vertical Exclusion Distance Criteria for Assessing the Vapor Intrusion Pathway at Petroleum Hydrocarbon Sites";s:9:"metadata6";s:27:"Verginelli, I; Baciocchi, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:54;a:14:{s:9:"citazione";s:267:"Baciocchi, R., Costa, G., Di Gianfilippo, M., Polettini, A., Pomi, R., & Stramazzo, A. (2015). Thin-film versus slurry-phase carbonation of steel slag: CO2 uptake and effects on mineralogy. JOURNAL OF HAZARDOUS MATERIALS, 283, 302-313 [10.1016/j.jhazmat.2014.09.016].";s:4:"data";s:4:"2015";s:2:"id";s:20:"PUBBLICAZIONE_274781";s:6:"handle";s:11:"2108/151427";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";s:169:"Accelerated carbonation; CO(2) uptake; Conversion yield; Mineralogical characterization; Steel slag; Carbon Dioxide; Carbonates; Refuse Disposal; Industrial Waste; Steel";s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";s:1279:"The results of direct aqueous accelerated carbonation of three types of steel manufacturing residues, including an electric arc furnace (EAF) slag and two basic oxygen furnace (BOF) slags, are reported. Batch accelerated carbonation tests were conducted at different temperatures and CO2 pressures applying the thin-film route (liquid to solid, L/S, ratio=0.3L/kg) or the slurry-phase route (L/S ratio=5L/kg). The CO2 uptake strongly depended on both the slag characteristics and the process route; maximum yields of 280 (EAF), 325 (BOF1) and 403 (BOF2) gCO2/kg slag were achieved in slurry phase at T=100°C and pCO2=10 bar. Differently from previous studies, additional carbonates (other than Ca-based phases) were retrieved in the carbonated BOF slags, indicating that also Mg-, Fe- and Mn-containing phases partially reacted with CO2 under the tested conditions. The results hence show that the effects of accelerated carbonation in terms of CO2 uptake capacity, yield of mineral conversion into carbonates and mineralogy of the treated product, strongly rely on several factors. These include, above all, the mineralogy of the original material and the operating conditions adopted, which thus need specific case-by-case optimization to maximize the CO2 sequestration yield.";s:9:"metadata5";s:93:"Thin-film versus slurry-phase carbonation of steel slag: CO2 uptake and effects on mineralogy";s:9:"metadata6";s:78:"Baciocchi, R; Costa, G; Di Gianfilippo, M; Polettini, A; Pomi, R; Stramazzo, A";s:9:"metadata7";s:29:"10.1016/j.jhazmat.2014.09.016";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:55;a:14:{s:9:"citazione";s:206:"Baciocchi, R., Costa, G., Polettini, A., & Pomi, R. (2015). Effects of thin-film accelerated carbonation on steel slag leaching. JOURNAL OF HAZARDOUS MATERIALS, 286, 369-378 [10.1016/j.jhazmat.2014.12.059].";s:4:"data";s:4:"2015";s:2:"id";s:20:"PUBBLICAZIONE_274821";s:6:"handle";s:11:"2108/151447";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:67:"Effects of thin-film accelerated carbonation on steel slag leaching";s:9:"metadata6";s:45:"Baciocchi, R; Costa, G; Polettini, A; Pomi, R";s:9:"metadata7";s:29:"10.1016/j.jhazmat.2014.12.059";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:56;a:14:{s:9:"citazione";s:250:"Lombardi, L., Carnevale, E., Baciocchi, R., & Costa, G. (2015). Biogas upgrading by a combination of Innovative treatments based on carbonation of waste incineration residues. WASTE AND BIOMASS VALORIZATION, 6(5), 791-803 [10.1007/s12649-015-9413-0].";s:4:"data";s:4:"2015";s:2:"id";s:20:"PUBBLICAZIONE_274861";s:6:"handle";s:11:"2108/151467";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:110:"Biogas upgrading by a combination of Innovative treatments based on carbonation of waste incineration residues";s:9:"metadata6";s:49:"Lombardi, L; Carnevale, E; Baciocchi, R; Costa, G";s:9:"metadata7";s:25:"10.1007/s12649-015-9413-0";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:57;a:14:{s:9:"citazione";s:256:"Morone, M., Costa, G., Stendardo, S., & Baciocchi, R. (2015). Characterization and density separation of coal gasification residues generated from the Zecomix research infrastructure. FUEL PROCESSING TECHNOLOGY, 139, 204-215 [10.1016/j.fuproc.2015.07.011].";s:4:"data";s:4:"2015";s:2:"id";s:20:"PUBBLICAZIONE_274941";s:6:"handle";s:11:"2108/151507";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";s:54:"Coal gasification; Ash; Mineralogy; Density separation";s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";s:1285:"This paper presents the results of characterization investigations carried out on the solid residues produced during coal gasification tests performed in the Zecomix (Zero Emission of CarbOn with MIXed technology) research infrastructure. In this pilot-scale plant, coal is gasified in a steam/oxygen-blown bubbling fluidized bed containing olivine. The solid residues, collected both directly from the solid bed (bed ash) and downstream from it (mixed ash), were characterized in terms of their main physical, chemical and mineralogical properties with the aim of identifying suitable management strategies for each of them within the Zecomix process. Thus, an experimental protocol was also developed to separate the organic and inorganic fractions of both ash types. The main constituents of the bed ash were Mg, Si and Fe, which represent the elemental components of olivine. The total organic carbon content of the bulk bed ash was of 5%, while that of the bulk mixed ash proved to be significantly higher (24–27%). Finally, the particle size and density separation procedure developed in this work showed to be effective for separating the organic and inorganic fractions of the bulk samples of both types of residues, allowing to reach separation efficiencies higher than 90%.";s:9:"metadata5";s:120:"Characterization and density separation of coal gasification residues generated from the Zecomix research infrastructure";s:9:"metadata6";s:47:"Morone, M; Costa, G; Stendardo, S; Baciocchi, R";s:9:"metadata7";s:28:"10.1016/j.fuproc.2015.07.011";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:58;a:14:{s:9:"citazione";s:249:"Piscitelli, D., Zingaretti, D., Verginelli, I., Gavasci, R., & Baciocchi, R. (2015). The fate of MtBE during Fenton-like treatments through laboratory scale column tests. JOURNAL OF CONTAMINANT HYDROLOGY, 183, 99-108 [10.1016/j.jconhyd.2015.10.007].";s:4:"data";s:4:"2015";s:2:"id";s:20:"PUBBLICAZIONE_274901";s:6:"handle";s:11:"2108/151487";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";s:283:"column tests; groundwater contamination; hydrogen peroxide; In situ chemical oxidation; MtBE; calcium chelating agents; carbon dioxide; edetic acid; hydrogen peroxide; iron; laboratories; methyl ethers; oxidants; oxidation-reduction; soil; soil pollutants; water pollutants, chemical";s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";s:1158:"In Situ Chemical Oxidation (ISCO) based on the Fenton's process is a proven technology for the treatment of groundwater contaminated by organic compounds. Nevertheless, the application of this treatment process to methyl tert-butyl ether (MtBE) is questioned, as there are concerns about its capacity to achieve complete mineralization. Many existing studies have focused on water contaminated by MtBE and are thus not representative of in situ treatments since they do not consider the presence of soil. In this work, the effectiveness of a Fenton-like process for MtBE treatment was proven in soil column tests performed at operating conditions (i.e., oxidant and contaminant concentration and flow rates) resembling those typically used for in situ applications. No MtBE by-products were detected in any of the tested conditions, thus suggesting that the tert-butyl group of MtBE was completely degraded. A mass balance based on the CO2 produced was used as evidence that most of the MtBE removed was actually mineralized. Finally, the obtained results show that preconditioning of soil with a chelating agent (EDTA) significantly enhanced MtBE oxidation.";s:9:"metadata5";s:84:"The fate of MtBE during Fenton-like treatments through laboratory scale column tests";s:9:"metadata6";s:69:"Piscitelli, D; Zingaretti, D; Verginelli, I; Gavasci, R; Baciocchi, R";s:9:"metadata7";s:29:"10.1016/j.jconhyd.2015.10.007";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:59;a:14:{s:9:"citazione";s:270:"Innocenti, I., Verginelli, I., Massetti, F., Piscitelli, D., Gavasci, R., & Baciocchi, R. (2014). Pilot-scale ISCO treatment of a MtBE contaminated site using a Fenton-like process. SCIENCE OF THE TOTAL ENVIRONMENT, 485-486(1), 726-738 [10.1016/j.scitotenv.2014.01.062].";s:4:"data";s:10:"2014-07-01";s:2:"id";s:20:"PUBBLICAZIONE_230903";s:6:"handle";s:11:"2108/112864";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";s:248:"Groundwater contamination; Hydrogen peroxide; In-Situ Chemical Oxidation; MtBE; Pilot test; Environmental Restoration and Remediation; Groundwater; Hydrogen Peroxide; Iron; Methyl Ethers; Models, Chemical; Pilot Projects; Water Pollutants, Chemical";s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";s:1756:"This paper reports about a pilot-scale feasibility study of In-Situ Chemical Oxidation (ISCO) application based on the use of stabilized hydrogen peroxide catalyzed by naturally occurring iron minerals (Fenton-like process) to a site formerly used for fuel storage and contaminated by MtBE. The stratigraphy of the site consists of a 2-3 meter backfill layer followed by a 3-4 meter low permeability layer, that confines the main aquifer, affected by a widespread MtBE groundwater contamination with concentrations up to 4000 μg/L, also with the presence of petroleum hydrocarbons. The design of the pilot-scale treatment was based on the integration of the results obtained from experimental and numerical modeling accounting for the technological and regulatory constraints existing in the site to be remediated. In particular, lab-scale batch tests allowed the selection of the most suitable operating conditions. Then, this information was implemented in a numerical software that allowed to define the injection and monitoring layout and to predict the propagation of hydrogen peroxide in groundwater. The pilot-scale field results confirmed the effective propagation of hydrogen peroxide in nearly all the target area (around 75 m(2) using 3 injection wells). As far as the MtBE removal is concerned, the ISCO application allowed us to meet the clean-up goals in an area of 60 m(2). Besides, the concentration of TBA, i.e. a potential by-product of MtBE oxidation, was actually reduced after the ISCO treatment. The results of the pilot-scale test suggest that ISCO may be a suitable option for the remediation of the groundwater plume contaminated by MtBE, providing the background data for the design and cost-estimate of the full-scale treatment.";s:9:"metadata5";s:82:"Pilot-scale ISCO treatment of a MtBE contaminated site using a Fenton-like process";s:9:"metadata6";s:81:"Innocenti, I; Verginelli, I; Massetti, F; Piscitelli, D; Gavasci, R; Baciocchi, R";s:9:"metadata7";s:31:"10.1016/j.scitotenv.2014.01.062";s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:60;a:14:{s:9:"citazione";s:243:"Baciocchi, R., Capobianco, O., & Costa, G. (2014). Technology trains in the framework of the holistic management of brownfield regeneration. Paper presented at The 3rd International conference on sustainable remediation 2014,, Ferrara, Italy..";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_231034";s:6:"handle";s:11:"2108/112973";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:88:"Technology trains in the framework of the holistic management of brownfield regeneration";s:9:"metadata6";s:37:"Baciocchi, R; Capobianco, O; Costa, G";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:61;a:14:{s:9:"citazione";s:309:"Baciocchi, R., Capobianco, O., Costa, G., & Petralla, R. (2014). Technology train for reusing excavated material in a Brownfield regeneration context. Paper presented at 4th International Conference on managing urban land, final conference of the EU FP7 Project “HOMBRE” 2014, Frankfurt am Main, Germany..";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_231036";s:6:"handle";s:11:"2108/112975";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:84:"Technology train for reusing excavated material in a Brownfield regeneration context";s:9:"metadata6";s:50:"Baciocchi, R; Capobianco, O; Costa, G; Petralla, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:62;a:14:{s:9:"citazione";s:359:"Baciocchi, R., Capobianco, O., Costa, G., & Van, D. (2014). Integrated strategies for brownfield regeneration: treatment of subsoil and alkaline residues by the combined ecogroutcarbonation process.. Paper presented at 4th International Conference on Managing Urban Land, Final Conference of the EU FP7 Project “HOMBRE” 2014., Frankfurt am Main, Germany..";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_231038";s:6:"handle";s:11:"2108/112977";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:138:"Integrated strategies for brownfield regeneration: treatment of subsoil and alkaline residues by the combined ecogroutcarbonation process.";s:9:"metadata6";s:47:"Baciocchi, R; Capobianco, O; Costa, G; Van, Dsw";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:63;a:14:{s:9:"citazione";s:269:"Baciocchi, R., Capobianco, O., Costa, G., Morone, M., & Gavasci, R. (2014). Production of aggregates from recycled industrial soil and residues.. Paper presented at XII Italian-Brazilian Symposium of environmental and sanitary engineering (SIBESA) 2014, Natal, Brazil..";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_231040";s:6:"handle";s:11:"2108/112979";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:68:"Production of aggregates from recycled industrial soil and residues.";s:9:"metadata6";s:60:"Baciocchi, R; Capobianco, O; Costa, G; Morone, M; Gavasci, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:64;a:14:{s:9:"citazione";s:236:"Baciocchi, R., Capobianco, O., Costa, G., Morone, M., & Zingaretti, D. (2014). Carbonation of industrial residues for CO2 storage and utilization as a treatment to achieve multiple environmental benefits. ENERGY PROCEDIA, 63, 5879-5891.";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_230981";s:6:"handle";s:11:"2108/112965";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:124:"Carbonation of industrial residues for CO2 storage and utilization as a treatment to achieve multiple environmental benefits";s:9:"metadata6";s:63:"Baciocchi, R; Capobianco, O; Costa, G; Morone, M; Zingaretti, D";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:65;a:14:{s:9:"citazione";s:213:"Baciocchi, R., Costa, G., & Zingaretti D (2014). Accelerated Carbonation Processes for Carbon Dioxide Capture, Storage and Utilisation. In Transformation and Utilization of Carbon Dioxide (pp. 263-299). Springer.";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_230994";s:6:"handle";s:11:"2108/112935";s:9:"metadata1";s:19:"Contributo in libro";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:85:"Accelerated Carbonation Processes for Carbon Dioxide Capture, Storage and Utilisation";s:9:"metadata6";s:36:"Baciocchi, R; Costa, G; Zingaretti D";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:66;a:14:{s:9:"citazione";s:238:"Baciocchi, R., D'Aprile, L., Innocenti, I., Massetti, F., & Verginelli, I. (2014). Development of technical guidelines for the application of In-Situ Chemical Oxidation to Groundwater remediation. JOURNAL OF CLEANER PRODUCTION, 77, 47-55.";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_230980";s:6:"handle";s:11:"2108/112968";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:112:"Development of technical guidelines for the application of In-Situ Chemical Oxidation to Groundwater remediation";s:9:"metadata6";s:67:"Baciocchi, R; D'Aprile, L; Innocenti, I; Massetti, F; Verginelli, I";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:67;a:14:{s:9:"citazione";s:265:"Baciocchi, R., Verginelli, I., & Pecoraro, R. (2014). Il monitoraggio del soil gas per la valutazione del rischio e degli obiettivi di bonifica. Paper presented at Salone sulle bonifiche dei siti contaminati e sulla riqualificazione del territorio, Ferrara, Italy..";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_231044";s:6:"handle";s:11:"2108/112983";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:89:"Il monitoraggio del soil gas per la valutazione del rischio e degli obiettivi di bonifica";s:9:"metadata6";s:40:"Baciocchi, R; Verginelli, I; Pecoraro, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:68;a:14:{s:9:"citazione";s:296:"Capobianco, O., Costa, G., & Baciocchi, R. (2014). Assessment of the operating windows of a combined solidification/stabilization and granulation treatment applied to industrial soil in the context of brownfield regeneration. In WIT Transactions on Ecology and the Environment (pp. 577-590). WIT.";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_230984";s:6:"handle";s:11:"2108/112956";s:9:"metadata1";s:19:"Contributo in libro";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:173:"Assessment of the operating windows of a combined solidification/stabilization and granulation treatment applied to industrial soil in the context of brownfield regeneration";s:9:"metadata6";s:37:"Capobianco, O; Costa, G; Baciocchi, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:69;a:14:{s:9:"citazione";s:195:"Capobianco, O., Costa, G., Thuy, L., Magliocco, E., & Baciocchi, R. (2014). Carbonation of stainless steel slag in the context of in-situ brownfield remediation. MINERALS ENGINEERING, 59, 91-100.";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_230988";s:6:"handle";s:11:"2108/112950";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:84:"Carbonation of stainless steel slag in the context of in-situ brownfield remediation";s:9:"metadata6";s:60:"Capobianco, O; Costa, G; Thuy, L; Magliocco, E; Baciocchi, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:70;a:14:{s:9:"citazione";s:182:"Chiavola, A., Baciocchi, R., & D'Amato, E. (2014). Application of a two-site model for the prediction of As-Cl-SO4-- Ion-exchange equilibria. WATER AIR AND SOIL POLLUTION, 225, 1-12.";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_230987";s:6:"handle";s:11:"2108/112953";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:89:"Application of a two-site model for the prediction of As-Cl-SO4-- Ion-exchange equilibria";s:9:"metadata6";s:37:"Chiavola, A; Baciocchi, R; D'Amato, E";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:71;a:14:{s:9:"citazione";s:223:"Hariraran, S., Werner, M., Hanchen, M., Zingaretti, D., Baciocchi, R., & Mazzotti, M. (2014). Dissolution kinetics of thermally activated serpentine for mineralization at flue gas conditions. ENERGY PROCEDIA, 63, 5887-5891.";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_230991";s:6:"handle";s:11:"2108/112938";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:96:"Dissolution kinetics of thermally activated serpentine for mineralization at flue gas conditions";s:9:"metadata6";s:77:"Hariraran, S; Werner, M; Hanchen, M; Zingaretti, D; Baciocchi, R; Mazzotti, M";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:72;a:14:{s:9:"citazione";s:135:"M.Morone, C.G. (2014). Valorization of steel slag by a combined carbonation and granulation treatment. MINERALS ENGINEERING, 58, 82-90.";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_230990";s:6:"handle";s:11:"2108/112941";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:78:"Valorization of steel slag by a combined carbonation and granulation treatment";s:9:"metadata6";s:52:"M.Morone, Costa G, Polettini A, R.Pomi, R Baciocchi";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:73;a:14:{s:9:"citazione";s:315:"Teggi, S., Verginelli, I., Berardi, S., & Baciocchi, R. (2014). Chemical risk to workers involved in the remediation of contaminated sites: conceptual model, fate and transport factors for risk evaluation. Paper presented at XII italian brazilian symposium of environmental and sanitary engineering, Natal, Brazil..";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_231048";s:6:"handle";s:11:"2108/112987";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:140:"Chemical risk to workers involved in the remediation of contaminated sites: conceptual model, fate and transport factors for risk evaluation";s:9:"metadata6";s:49:"Teggi, S; Verginelli, I; Berardi, S; Baciocchi, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:74;a:14:{s:9:"citazione";s:288:"Verginelli, I., & Baciocchi, R. (2014). Applicazione di modelli di trasporto per la stima della distanza di esclusione del percorso di volatilizzazione. Paper presented at REMTECH 2014 - Salone sulle bonifiche dei siti contaminati e sulla riqualificazione del territorio, Ferrara, Italy..";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_231042";s:6:"handle";s:11:"2108/112981";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:111:"Applicazione di modelli di trasporto per la stima della distanza di esclusione del percorso di volatilizzazione";s:9:"metadata6";s:27:"Verginelli, I; Baciocchi, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:75;a:14:{s:9:"citazione";s:219:"Verginelli, I., & Baciocchi, R. (2014). Vapor intrusion screening model for the evaluation of risk-based vertical exclusion distances at petroleum contaminated sites. ENVIRONMENTAL SCIENCE & TECHNOLOGY, 48, 13263-13272.";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_230982";s:6:"handle";s:11:"2108/112962";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:125:"Vapor intrusion screening model for the evaluation of risk-based vertical exclusion distances at petroleum contaminated sites";s:9:"metadata6";s:27:"Verginelli, I; Baciocchi, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:76;a:14:{s:9:"citazione";s:291:"Verginelli, I., Piscitelli, D., Zingaretti, D., & Baciocchi, R. (2014). EVALUATION OF FENTON-LIKE PROCESS FOR MTBE CONTAMINATED GROUNDWATER TREATMENT THROUGH LAB-SCALE COLUMN TESTS. Paper presented at XII italian-Brazilian symposium of environmental and sanitary engineering, Natal, Brazil..";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_231046";s:6:"handle";s:11:"2108/112985";s:9:"metadata1";s:21:"Intervento a convegno";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:108:"EVALUATION OF FENTON-LIKE PROCESS FOR MTBE CONTAMINATED GROUNDWATER TREATMENT THROUGH LAB-SCALE COLUMN TESTS";s:9:"metadata6";s:57:"Verginelli, I; Piscitelli, D; Zingaretti, D; Baciocchi, R";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:77;a:14:{s:9:"citazione";s:214:"Werner, M., Hariararan, S.b., Zingaretti, D., Baciocchi, R., & Mazzotti, M. (2014). Dissolution of dehydroxilated lizardite at flue gas conditions: I. experimental study. CHEMICAL ENGINEERING JOURNAL, 241, 301-313.";s:4:"data";s:4:"2014";s:2:"id";s:20:"PUBBLICAZIONE_230989";s:6:"handle";s:11:"2108/112944";s:9:"metadata1";s:19:"Articolo su rivista";s:9:"metadata2";N;s:9:"metadata3";s:49:"Settore ICAR/03 - Ingegneria Sanitaria-Ambientale";s:9:"metadata4";N;s:9:"metadata5";s:86:"Dissolution of dehydroxilated lizardite at flue gas conditions: I. experimental study.";s:9:"metadata6";s:67:"Werner, M; Hariararan, Sb; Zingaretti, D; Baciocchi, R; Mazzotti, M";s:9:"metadata7";N;s:9:"metadata8";N;s:9:"metadata9";N;s:10:"metadata10";N;}i:78;a:14:{s:9:"citazione";s:239:"Werner, M., Hariharan, S., Zingaretti, D., Baciocchi, R., & Mazzotti, M. (2014). Dissolution of dehydroxylated lizardite at flue gas conditions: I. Experimental study. 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