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Biomass steam gasification in fluidized bed of inert or catalytic particles: Comparison between experimental results and thermodynamic equilibrium predictions

机译:惰性或催化颗粒流化床中的生物质蒸汽气化:实验结果与热力学平衡预测之间的比较

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摘要

In order to improve the understanding of biomass gasification in a bed fluidized by steam, the thermochemical equilibrium of the reactive system was studied. The equilibrium results were compared to LGC experimental results, obtained by the gasification of oak and fir in a laboratory-scale fluidized bed of different catalysts: sand, alumina, and alumina impregnated with nickel. The research was completed by a study of the influence on the equilibrium of additional parameters such as the quantity of steam, the pressure or the kind of biomass. Those results of simulation may be used for evaluating the limits of actual reactors.The following conclusion may be drawn from all the results: The thermodynamic equilibrium state calculated is far away from the experimental results obtained on sand particles. The steam to biomass ratio, between 0.4 and 1 kgsteam/kgdry biomass, has a strong influence on the gas mixture composition. The temperature increase and the use of catalyst allow producing a gas mixture with a high content of hydrogen and carbon monoxide. The H2:CO ratio may reach values greater than 3. The use of catalyst allows the system to get closer from the equilibrium, especially for the nickel based catalyst.
机译:为了增进对蒸汽流化床中生物质气化的理解,研究了反应体系的热化学平衡。将平衡结果与LGC实验结果进行了比较,LGC实验结果是通过在不同催化剂(沙子,氧化铝和浸渍了镍的氧化铝)的实验室规模流化床中对橡木和杉木进行气化得到的。该研究是通过对其他参数(如蒸汽量,压力或生物质种类)的平衡影响进行的研究而完成的。这些模拟结果可用于评估实际反应堆的极限。从所有结果可以得出以下结论:计算得到的热力学平衡状态与在砂粒上获得的实验结果相去甚远。蒸汽与生物质之比在0.4和1千克蒸汽/千克干生物质之间,对气体混合物的组成有很大影响。温度的升高和催化剂的使用允许产生具有高含量的氢和一氧化碳的气体混合物。 H2:CO比率可能达到大于3的值。使用催化剂可使系统离平衡更近,尤其是对于镍基催化剂而言。

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