Opportunities and Barriers for Valorizing Waste Incineration Bottom Ash: Iberian Countries as a Case Study
暂无分享,去创建一个
J. M. Chimenos | M. Quina | R. C. Martins | A. Maldonado-Alameda | Joana L. Pereira | B. S. Bandarra | J. Pereira
[1] J. M. Chimenos,et al. Alkali-Activated Binders Using Bottom Ash from Waste-to-Energy Plants and Aluminium Recycling Waste , 2021, Applied Sciences.
[2] M. Lopes,et al. Use of Incinerator Bottom Ash as a Recycled Aggregate in Contact with Nonwoven Geotextiles: Evaluation of Mechanical Damage Upon Installation , 2020 .
[3] J. M. Chimenos,et al. Municipal Solid Waste Incineration Bottom Ash as Sole Precursor in the Alkali-Activated Binder Formulation , 2020, Applied Sciences.
[4] M. Grosso,et al. The Zero Waste utopia and the role of waste-to-energy , 2020, Waste management & research : the journal of the International Solid Wastes and Public Cleansing Association, ISWA.
[5] N. Cristelo,et al. Recycling municipal solid waste incineration slag and fly ash as precursors in low-range alkaline cements. , 2020, Waste management.
[6] J. M. Chimenos,et al. Legal situation and current practice of waste incineration bottom ash utilisation in Europe. , 2019, Waste management.
[7] J. Fellner,et al. Complete determination of the material composition of municipal solid waste incineration bottom ash. , 2019, Waste management.
[8] Y. A. Wahab,et al. Evaluation of Municipal Solid Wastes Based Energy Potential in Urban Pakistan , 2019, Processes.
[9] J. M. Chimenos,et al. Municipal solid waste incineration bottom ash as alkali-activated cement precursor depending on particle size , 2019 .
[10] Hongwei Luo,et al. Review of leaching behavior of municipal solid waste incineration (MSWI) ash. , 2019, The Science of the total environment.
[11] Global Material Resources Outlook to 2060 , 2019 .
[12] H. Brouwers,et al. In-depth mineralogical quantification of MSWI bottom ash phases and their association with potentially toxic elements. , 2019, Waste management.
[13] J. de Brito,et al. Environmental impacts of the use of bottom ashes from municipal solid waste incineration: A review , 2019, Resources, Conservation and Recycling.
[14] D. Kulik,et al. Extraction of heavy metals from MSWI fly ash using hydrochloric acid and sodium chloride solution. , 2018, Waste management.
[15] W. Chan,et al. Cr, Cu, Hg and Ni release from incineration bottom ash during utilization in land reclamation - based on lab-scale batch and column leaching experiments and a modeling study. , 2018, Chemosphere.
[16] M. Margallo,et al. Contribution to closing the loop on waste materials: valorization of bottom ash from waste-to-energy plants under a life cycle approach , 2018 .
[17] R. Snellings,et al. The Use of Municipal Solid Waste Incineration Ash in Various Building Materials: A Belgian Point of View , 2018, Materials.
[18] P. Hennebert. Proposal of concentration limits for determining the hazard property HP 14 for waste using ecotoxicological tests. , 2017, Waste management.
[19] V. Chang,et al. Review of MSWI bottom ash utilization from perspectives of collective characterization, treatment and existing application , 2017 .
[20] R. Dhir,et al. Use of municipal solid waste incineration bottom ashes in alkali-activated materials, ceramics and granular applications: A review. , 2017, Waste management.
[21] C. Vandecasteele,et al. Recycling of MSWI Bottom Ash: A Review of Chemical Barriers, Engineering Applications and Treatment Technologies , 2017 .
[22] Saulius Vasarevičius,et al. Leaching of Copper, Lead and Zinc from Municipal Solid Waste Incineration Bottom Ash , 2017 .
[23] J. M. Chimenos,et al. Material characterization of the MSWI bottom ash as a function of particle size. Effects of glass recycling over time. , 2017, The Science of the total environment.
[24] P. He,et al. Metal distribution characteristic of MSWI bottom ash in view of metal recovery. , 2017, Journal of environmental sciences.
[25] D. Bendz,et al. Evaluation of frameworks for ecotoxicological hazard classification of waste. , 2016, Waste management.
[26] B. Steenari,et al. Leaching optimization of municipal solid waste incineration ash for resource recovery: A case study of Cu, Zn, Pb and Cd. , 2016, Waste management.
[27] José Pedro Silva. PORDATA- base de dados Portugal contemporâneo , 2015 .
[28] T. Townsend,et al. Effect of ferrous metal presence on lead leaching in municipal waste incineration bottom ashes. , 2015, Journal of hazardous materials.
[29] J. M. Chimenos,et al. Use of weathered and fresh bottom ash mix layers as a subbase in road constructions: environmental behavior enhancement by means of a retaining barrier. , 2014, Chemosphere.
[30] M. Odlare,et al. Assessment of mobility and bioavailability of contaminants in MSW incineration ash with aquatic and terrestrial bioassays. , 2014, Waste management.
[31] Takayuki Shimaoka,et al. Geoenvironmental weathering/deterioration of landfilled MSWI-BA glass. , 2014, Journal of hazardous materials.
[32] M. Margallo,et al. Environmental management of bottom ash from municipal solid waste incineration based on a life cycle assessment approach , 2014, Clean Technologies and Environmental Policy.
[33] Pascal Pandard,et al. Proposal for a “Harmonized” strategy for the assessment of the HP 14 property , 2013, Integrated environmental assessment and management.
[34] Paul H Brunner,et al. Cycles, spirals and linear flows , 2013, Waste management & research : the journal of the International Solid Wastes and Public Cleansing Association, ISWA.
[35] Pere Fullana,et al. Best Available Techniques in Municipal Solid Waste Incineration: State of the Art in Spain and Portugal , 2012 .
[36] Carlo Vandecasteele,et al. Antimony leaching from MSWI bottom ash: modelling of the effect of pH and carbonation. , 2012, Waste management.
[37] R. Quinta-Ferreira,et al. Air Pollution Control in Municipal Solid Waste Incinerators , 2011 .
[38] Fumitake Takahashi,et al. Alteration of municipal solid waste incineration bottom ash focusing on the evolution of iron-rich constituents. , 2011, Waste management.
[39] Hwong-wen Ma,et al. Life cycle risk assessment of bottom ash reuse. , 2011, Journal of hazardous materials.
[40] F. Takahashi,et al. Mineralogical characterization of municipal solid waste incineration bottom ash with an emphasis on heavy metal-bearing phases. , 2011, Journal of hazardous materials.
[41] Hwong-wen Ma,et al. Assessing the health risk of reuse of bottom ash in road paving. , 2011, Chemosphere.
[42] R. Siddique. Utilization of municipal solid waste (MSW) ash in cement and mortar , 2010 .
[43] R. Baciocchi,et al. Accelerated carbonation of different size fractions of bottom ash from RDF incineration. , 2010, Waste management.
[44] J. M. Chimenos,et al. Combined use of MSWI bottom ash and fly ash as aggregate in concrete formulation: environmental and mechanical considerations. , 2009, Journal of hazardous materials.
[45] J. Römbke,et al. Ecotoxicological characterisation of 12 incineration ashes using 6 laboratory tests. , 2009, Waste management.
[46] Ing-Jia Chiou,et al. Distribution of chloride ion in MSWI bottom ash and de-chlorination performance. , 2007, Journal of hazardous materials.
[47] Sergio L. Schmukler,et al. Emerging Market Instability : Do Sovereign Ratings Affect Country Risk and Stock Returns ? , 1997 .
[48] Carlo Vandecasteele,et al. Antimony leaching from uncarbonated and carbonated MSWI bottom ash. , 2006, Journal of hazardous materials.
[49] J. Devillers,et al. Selecting a battery of bioassays for ecotoxicological characterization of wastes. , 2006, The Science of the total environment.
[50] N Lapa,et al. Ecotoxicological assessment of leachates from MSWI bottom ashes. , 2002, Waste management.
[51] Maria Izquierdo,et al. Characterisation of bottom ash from municipal solid waste incineration in Catalonia , 2002 .
[52] Jong Heo,et al. Vitrification of fly ash from municipal solid waste incinerator. , 2002, Journal of hazardous materials.
[53] B. Quénée,et al. Behaviour of cement-treated MSWI bottom ash. , 2001, Waste management.
[54] J. M. Chimenos,et al. Short-term natural weathering of MSWI bottom ash. , 2000, Journal of hazardous materials.
[55] Jean-François Férard,et al. Ecotoxicological assessment of solid wastes: A combined liquid‐ and solid‐phase testing approach using a battery of bioassays and biomarkers , 1999 .
[56] J. M. Chimenos,et al. Characterization of the bottom ash in municipal solid waste incinerator , 1999 .
[57] Carlton C. Wiles,et al. Municipal Solid Waste Combustion Ash: State-of-the-Knowledge , 1996, Municipal Solid Wastes.
[58] J. Dijkstra,et al. Guidance document on hazard classification of MSWI bottom ash , 2017 .
[59] A. Zomeren,et al. End of Waste criteria for inert aggregates in Member States , 2017 .
[60] I. Disposiciones Generales,et al. MINISTERIO DE AGRICULTURA, ALIMENTACIÓN Y MEDIO AMBIENTE , 2013 .
[61] Ole Hjelmar,et al. Hazard property classification of high temperature waste materials , 2013 .
[62] H. M. Alhassan,et al. Characterization of Solid Waste Incinerator Bottom Ash and the Potential for its Use , 2012 .
[63] M. H. Fernandes,et al. Characterization of MSWI bottom ashes towards utilization as glass raw material. , 2008, Waste management.
[64] Gaëlle Ducom,et al. Influence of waste input and combustion technology on MSWI bottom ash quality. , 2007, Waste management.
[65] K Watanabe,et al. Alterations of municipal solid waste incineration residues in a landfill. , 2007, Waste management.
[66] A. Antunes. APPLICATION OF MUNICIPAL SOLID WASTE INCINERATION BOTTOM ASH IN ROAD CONSTRUCTION . A CASE STUDY , 2007 .
[67] A. Correia,et al. Escórias de R.S.U. : caracterização mecânica para fins rodoviários , 2006 .
[68] L Hanzic,et al. Utilization of municipal solid waste bottom ash and recycled aggregate in concrete. , 2006, Waste management.
[69] J. M. Chimenos,et al. Short-term natural weathering of MSWI bottom ash as a function of particle size. , 2003, Waste management.
[70] H. A. van der Sloot,et al. Characteristics, treatment and utilization of residues from municipal waste incineration. , 2001, Waste management.
[71] B. Fuchs,et al. Salt effects of processed municipal solid waste incinerator bottom ash on vegetation and underground water , 1997 .
[72] Nicholas P. Cheremisinoff,et al. Handbook of Solid Waste Management and Waste Minimization Technologies , 1993 .