详细信息
Effects of N2/CO2 atmosphere on the pyrolysis characteristics for municipal solid waste pellets ( SCI-EXPANDED收录 EI收录)
文献类型:期刊文献
英文题名:Effects of N2/CO2 atmosphere on the pyrolysis characteristics for municipal solid waste pellets
作者:Yue, Chengyan[1];Gao, Peipei[1];Tang, Longfei[1];Chen, Xueli[1]
机构:[1]East China Univ Sci & Technol, Shanghai Engn Res Ctr Coal Gasificat, Shanghai 200237, Peoples R China
年份:2022
卷号:315
外文期刊名:FUEL
收录:;EI(收录号:20220311486093);WOS:【SCI-EXPANDED(收录号:WOS:000747434500004)】;
基金:This work was supports by the social development science and technology tackling project of 2020 "Scientific and Innovative Action Plan of Shanghai" (20dz1203300) , Shanghai "Super Postdoctoral Fellow" incentive program (No. 2020118) and the National Natural Science Foundation of China (22108081) .
语种:英文
外文关键词:Municipal solid waste; Pelletization; Carbon dioxide; Reactivity
摘要:The pyrolysis characteristics of cylindrical municipal solid waste (MSW) pellets were studied in N-2/CO2 atmospheres with different proportion in fixed bed reactor. Gas release property, tar composition and char structure were analyzed and discussed. Results showed that the addition of CO2 in the pyrolysis atmosphere increased the yields of char and gas, and decreased the tar yield significantly. For the gas components, the CO yield increased noticeably as CO2 present, while the contents of light hydrocarbon and H-2 decreased. The volume fraction of CO increased from 15% (100% N-2) to 22% (10% CO2) and 34% (20% CO2) at 700 degrees C. The volume fraction of H2 decreased from 21% (100% N-2) to 10% (10% CO2) and 7% (20% CO2) at 700 degrees C. In addition, the CH4 yield increased with the proportion of CO2. For the tar components, external CO2 contributed to eliminate asymmetric substitutions and dearomatization. In addition, the aromatic rings, polycyclic aromatic hydrocarbons, and asymmetric aliphatic hydrocarbon structures were reduced in the N-2/CO(2 )atmosphere. At the temperature above 600 degrees C, CO2 was favorable to the cracking of the small ring structures, which led to collapse the micro-pores and resulted in the lower accumulative pore volume of the char. At 700 degrees C, the specific surface area of pyrolytic char was 14.32 m(2)/g in (2), when CO2 added, this value increased by 35%, which was further enlarged as the proportion of CO2 increasing.
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