Green refuse derived fuel preparation and combustion performance from the solid residues to build the zero-waste city

被引:0
|
作者
Li, Wei [1 ]
Yuan, Zhihang [2 ]
Chen, Xiaoliang [3 ]
Wang, Hui [2 ]
Wang, Luochun [1 ]
Lou, Ziyang [2 ,4 ]
机构
[1] College of Environmental and Chemical Engineering, Shanghai University of Electric Power, Shanghai,200090, China
[2] Shanghai Engineering Research Center of Solid Waste Treatment and Resource Recovery, School of Environmental Science and Engineering, Shanghai Jiao Tong University, Shanghai,200240, China
[3] Shanghai Solid Waste Management Center, Shanghai,200235, China
[4] China Institute for Urban Governance, Shanghai Jiao Tong University, Shanghai,200240, China
基金
国家重点研发计划;
关键词
Anaerobics - Anerobic digestion sludge - Combustion performance - Fuel preparation - Industrial desiccant residue - Oxysulphide and oxynitride fixation mechanism - Refuse derived fuel - Refuse-derived fuels - Resin-like industry solid waste - Zero waste;
D O I
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中图分类号
学科分类号
摘要
The re-utilization or recycling of waste completely was a big task to build the zero-waste city, and refuse derived fuel (RDF) preparation might be a potential way to recycle those variations organic wastes from industry and municipal sector, while the chemical binder was usually employed to match the mechanical property of RDF. In this work, a green-RDF was developed using wastes with different sources directly. Resin-like industrial solid waste, i.e., automotive stamping gaskets and electronic packing wastes (AE = 56%), anaerobic digestion sludge (ADS = 24%) and industrial desiccant residue (IDR = 20%), were selected and optimized to prepare green-RDF based on the previous market survey and characteristics analysis. The extending rate (ER), impact resistance index (IRI), and lower heating value (LHV) was 17.51%, 116.67% and 6.84 MJ/kg. The combustion performance of RDF was operated through TG/DSC-MS and combustion simulator with on-line FTIR gas analyzer simultaneously. The releasing temperature range for SO2 and NOx was narrowed to 211–401 °C and 212–803 °C, with the SO2 and NOx reduction of 63% and 26%, respectively, since IDR additives contributed to fixation of them in the residues through the chemical adsorption and oxidation reduction reaction. Green-RDF might be a promising method for the energy recovery from solid waste with different sources. © 2021 Elsevier Ltd
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