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Modeling of downdraft gasification process: Part Ⅱ - Studies on the effect of shrinking and non-shrinking biomass geometries on the performance of gasification process

机译:降下的气化过程建模:第Ⅱ部分 - 对气化过程萎缩和非萎缩生物质几何效果的研究

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This study investigated the effect of shrinking and non-shrinking biomass geometries in a fixed bed reactor. Model simulation was performed to analyze the effect of biomass moisture content, gasification temperature, air flow rate, oxygen content in the primary air, and mass transfer coefficient on product yield for spherical, tabular, and cylindrical biomass briquettes. The model matched well with the experimental data. The production of hydrogen and carbon dioxide increased with an increase in moisture content. With an increase in gasification temperature, the water-gas shift reaction proceeded faster than the Boudouard reaction, leading to a decrease in the carbon dioxide composition and an increase in the carbon monoxide composition. Tabular shrinking particles with a H_2/CO ratio of 1.44 and a CO/CO_2 ratio of 0.22 at 1175 K were more favorable for producing value-added chemicals than the particles of all other geometries. The non-shrinking spherical particles had the highest low heating value (LHV) of 4.65 MJ/m~3, whereas the tabular non-shrinking particles had the lowest LHV of 1.33 MJ/m~3 among the shrinking and non-shrinking particles with all the other geometries considered. The gasification temperature was the most sensitive parameter, whereas moisture content and the mass transfer coefficient were the least sensitive parameters.
机译:该研究研究了固定床反应器中收缩和非收缩生物质几何形状的影响。进行模型模拟,分析生物质水分含量,气化温度,空气流速,初级空气中氧含量的影响,以及球形,片状和圆柱形生物量压块产品产率的传质系数。该模型与实验数据相匹配。氢气和二氧化碳的生产随着水分含量的增加而增加。随着气化温度的增加,水 - 气体变换反应比Boudouard反应更快地进行,导致二氧化碳组合物的减少和一氧化碳组合物的增加。具有H_2 / Co比为1.44的表格收缩颗粒和1175 k下的CO / CO_2比为0.22的比率更有利于生产增值化学品,而不是所有其他几何形状的颗粒。非收缩球形颗粒具有4.65mJ / m〜3的低加热值(LHV),而表格非收缩颗粒的收缩和非收缩颗粒的最低LHV为1.33mJ / m〜3考虑的所有其他几何形状。气化温度是最敏感的参数,而水分含量和传质系数是最少的敏感参数。

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