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Effect of torrefaction on the high temperature steam gasification of cellulose based upon the Gibbs free energy minimization

机译:基于GIBBS自由能最小化的纤维素高温蒸汽气化的作用对纤维素的影响

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The steam gasification can convert biomass into syngas, which can be conveniently used as fuels or chemical raw materials. Cellulose, as an important component of biomass, has a significant effect on the gasification behavior. Steam gasification behaviors of raw and torrefied cellulose at high temperature were investigated using a non-stoichiometric equilibrium model. The effect of torrefaction severity on the high temperature steam gasification of cellulose was evaluated. With increasing of steam/cellulose molar ratio, the molar numbers of hydrogen and carbon dioxide increased, whereas the molar number of carbon monoxide decreased. Less than 1.0 molar ratio of steam/cellulose was recommended for raw and torrefied celluloses. The methane steam reaction for severely torrefied cellulose at low steam/cellulose molar ratio was found. The molar number of the hydrogen increased from 1.992 to 2.016 mol with the increasing of torrefaction temperature from 250 to 300 °C. The influence of steam content on the water-gas reaction was more obvious than that of reaction temperature. This study will promote the development of steam gasification of biomass for the purpose of high efficiency utilization.
机译:蒸汽气化可以将生物质转化为合成气,这可以方便地用作燃料或化学原料。作为生物质的重要组成部分,纤维素对气化行为具有显着影响。利用非化学计量平衡模型研究了高温下原料和泪水纤维素的蒸汽气化行为。评价烘焙严重程度对纤维素高温蒸汽气化的影响。随着蒸汽/纤维素摩尔比的增加,氢和二氧化碳的摩尔数增加,而一氧化碳的摩尔数减少。建议使用蒸汽/纤维素的蒸汽/纤维素的较小1.0摩尔比。发现,发现在低蒸汽/纤维素摩尔比下严重泪液纤维素的甲烷蒸汽反应。氢的摩尔数从1.992增加到2.016摩尔,随着250至300℃的烘焙温度的增加。蒸汽含量对水气反应的影响比反应温度更明显。本研究将促进生物质蒸汽气化的发展,以实现高效率利用。

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