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首页> 外文期刊>Journal of Chemical Engineering of Japan >Co-gasification Behavior of Woody Biomass and Coal in an Entrained Down-Flow Gasifier
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Co-gasification Behavior of Woody Biomass and Coal in an Entrained Down-Flow Gasifier

机译:夹带流动气化器中木质生物质和煤的共同气化行为

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摘要

Oxygen-blown co-gasification behavior in an entrained down-flow gasifier was investigated experimentally, using pulverized woody biomass and pulverized coal, at various mixing ratios, as the gasification fuel. The gasification temperature was controlled to over 1200 K and the oxygen ratio (O-2/O-2') was varied during the gasification experiments. The temperature of the gasifier and the composition and volume of the produced gas were measured; the carbon conversion, cold gas efficiency, and overall apparent reaction rates were calculated to evaluate the co-gasification behavior. The gasification temperature and composition of the produced gas varied significantly with the mixing ratio and oxygen ratio. The highest gasification temperature at the same oxygen ratio was observed for the fuel containing 20% woody biomass, due to enhanced oxidation reaction of the feedstock. The carbon conversion increased upon mixing woody biomass when compared to coal, due to the increased volatile content in the feedstock, but varied with the mixing ratio. The fuel ratio of the feedstock was identified as an important parameter for the cold gas efficiency and overall apparent reaction rate, which had a negative correlation with the fuel ratio when the oxygen ratio remained the same.
机译:通过在各种混合比中通过粉碎的木质生物质和粉煤为气化燃料,通过实验研究夹带的下流气化器中的氧气吹气的共气化行为。将气化温度控制在1000 k以下,并且在气化实验期间多种氧比(O-2 / O-2')。测量气化器的温度和制备气体的组成和体积;计算碳转化,冷气效率和整体表观反应速率以评估共气化行为。产生的气体的气化温度和组成随混合比和氧比而显着变化。由于原料的氧化反应增强,因此观察到含有20%木质生物质的燃料的最高气化温度。在与煤相比,在混合木质生物质时,碳转化率增加,由于原料中的挥发性含量增加,但随着混合比而变化。原料的燃料比被鉴定为冷气效率和整体表观反应速率的重要参数,当氧比保持相同时具有与燃料比具有负相关性。

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