Oxygen-Enriched Gasification of Dried Sewage Sludge, Refuse-Derived Fuel, and Their Cogasification in a Laboratory-Scale Fluidized Bed

Oxygen-Enriched Gasification of Dried Sewage Sludge, Refuse-Derived Fuel, and Their Cogasification in a Laboratory-Scale Fluidized Bed
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干污泥、垃圾衍生燃料的富氧气化及其在实验室规模流化床中的共气化

DOI:
10.1021/acs.iecr.8b04547
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发表时间:
2019-01
影响因子:
4.2
通讯作者:
Jin Baosheng
Jin Baosheng
中科院分区:
工程技术3区
文献类型:
--
作者:
Chen Tianyu;Cao Jun;Jin Baosheng

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在实验室流化床中研究了单一进料垃圾衍生燃料(RDF)和干污泥(DSS)的富氧气化。RDF和DSS气化的最佳温度、当量比(ER)和氧气浓度分别为800 °C、0.292、50%和750 °C、0.321、44.7%。在最佳条件下,RDF和DSS合成气的低热值和冷气效率分别为6.79 MJ/Nm ~ 3、53.0%和6.51 MJ/Nm ~ 3、49.2%。为了提高DSS合成气的质量,在800 °C下研究了RDF混合比对RDF和DSS共气化的影响,ER为0.321,OC为44.7%。随着RDF掺混比的增加,产气率不断增加,当RDF掺混比为25%时,η达到55.0%,发生炉气的低热值较高。
Oxygen-enriched gasification of single-feed refuse-derived fuel (RDF) and dry sewage sludge (DSS) in a laboratory-scale fluidized bed was investigated. The optimal temperature, equivalence ratio (ER), and oxygen concentration of RDF and DSS gasification were 800 °C, 0.292, 50% and 750 °C, 0.321, 44.7%, respectively. The low heating values (LHVs) and cold gas efficiency (η values) of syngases from RDF and DSS were 6.79 MJ/Nm3, 53.0% and 6.51 MJ/Nm3, 49.2%, respectively, under optimal conditions. To improve the quality of DSS syngas, the effect of the RDF mixing ratio on RDF and DSS cogasification was investigated at 800 °C, with an ER of 0.321 and an OC of 44.7%. The gas yield increased continuously with increased RDF mixing ratio, and η rose to 55.0% with relatively high LHV of producer gas at a 25% mixing ratio of RDF.
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