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Catalytic and noncatalytic gasification of wood-coconut shell blend under different operating conditions

机译:催化和非催化气化wood-coconut壳混合在不同操作条件

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摘要

The formation of tar during biomass gasification is a main barrier to establishing reliable gasification technologies. Different catalysts are being used for tar abatement from the biomass gasification. In this study, catalytic and noncatalytic cogasification of wood-coconut shell blends was carried out in a downdraft gasifier. The effect of the operating parameters on syngas quality, performance of cogasification, and tar reduction was investigated. The biomass blending ratio (BR) was varied as W20:CS80, W50:CS50, and W80:CS20, equivalence ratio (ER) was varied from 0.19 to 0.35, gasification temperature from 700 to 900 degrees C and catalyst loading (CL) from 5 to 30%. Dolomite, limestone, and Portland cement were used as a catalyst. The results revealed that under noncatalytic conditions, the blend with higher proportion of coconut shells produces better syngas composition with higher HHV and lower tar content. The high ER reduced H-2, tar formation, cold gas efficiency and gas yield. It also improved the carbonaceous gas species and carbon conversion efficiency. Increasing gasification temperature significantly improved the syngas quality, cogasification performance and reduced the tar content. The 30% CL significantly improved the gas composition content, gas yield, cold gas efficiency and reduced the tar content up to 52%. Better syngas quality and cogasification performance was possible with calcined cement catalyst whereas a reduction in tar content was observed in the presence of limestone. (c) 2018 American Institute of Chemical Engineers Environ Prog, 38: 688-698, 2019
机译:在生物质气化焦油的形成是一个主要障碍建立可靠吗气化技术。被用于从生物质焦油减轻吗气化。非催化cogasification wood-coconut壳混合气流气化炉进行了。操作参数对合成气的影响cogasification的质量,性能,和焦油减少了。比(BR)不一W20: CS80, W50: CS50,W80: CS20等价比率(ER)是不同的从700年0.19到0.35,气化温度900摄氏度和催化剂加载(CL) 5到30%。被用作催化剂。在非催化条件下,混合用椰子壳生产的比例更高更好地与更高的疱疹和合成气成分焦油含量较低。形成、冷煤气效率和天然气产量。也提高了碳质气体种类和碳转换效率。气化温度显著提高合成气质量,cogasification性能并降低焦油含量。显著提高了气体组分内容,天然气产量、冷煤气效率和减少了焦油含量高达52%。质量和cogasification表现可能与煅烧水泥而催化剂中可观察到降低焦油含量石灰岩的存在。化学工程师学会环境掠夺,38:688-698, 2019

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