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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Effects of gasifying conditions and bed materials on fluidized bed steam gasification of wood biomass
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Effects of gasifying conditions and bed materials on fluidized bed steam gasification of wood biomass

机译:气化条件和床料对木材生物质流化床蒸汽气化的影响

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The effect of steam gasification conditions on products properties was investigated in a bubbling fluidized bed reactor, using larch wood as the starting material. For bed material effect, calcined limestone and calcined waste concrete gave high content of H-2 and CO2, while silica sand provided the high content of CO. At 650 degrees C, calcined limestone proved to be most effective for tar adsorption and showed high ability to adsorb CO2 in bed. At 750 degrees C it could not capture CO2 but still gave the highest cold gas efficiency (% LHV) of 79.61%. Steam gasification gave higher amount of gas product and higher H-2/CO ratio than those obtained with N-2 pyrolysis. The combined use of calcined limestone and calcined waste concrete with equal proportion contributed relatively the same gas composition, gas yield and cold gas efficiency as those of calcined limestone, but showed less attrition, sintering, and agglomeration propensities similar to the use of calcined waste concrete alone. Crown Copyright (c) 2008 Published by Elsevier Ltd. All rights reserved.
机译:在鼓泡流化床反应器中,以落叶松木为起始原料,研究了蒸汽气化条件对产品性能的影响。就床料效果而言,煅烧石灰石和煅烧废混凝土提供高含量的H-2和CO2,而硅砂提供了高含量的CO。在650摄氏度时,煅烧石灰石被证明是最有效的沥青吸附剂,并具有很高的吸附能力。吸收床中的二氧化碳。在750摄氏度时,它无法捕获CO2,但仍给出了79.61%的最高冷气效率(%LHV)。蒸汽气化比N-2热解得到的气体产物量更高,H-2 / CO比更高。煅烧石灰石与煅烧废混凝土的混合使用与煅烧石灰石相比具有相对相同的气体组成,产气量和冷气效率,但与煅烧废混凝土的使用相似,其磨损,烧结和结块倾向较小单独。 Crown版权所有(c)2008,由Elsevier Ltd.发行。保留所有权利。

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