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Optimization study on air distribution of an actual agriculture up-draft biomass gasification stove

机译:实际农业上载生物质气化炉空气分布的优化研究

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The effect of air distribution on the performance of an actual agricultural up-draft biomass gasification stove was investigated, and the temperature distribution in gasification stove, gas composition, gas heat value and global energy utilization efficiency were measured. Results show that in the present gasification stove the highest temperature located at 75mm above bottom and in the range of 950-1100°C. Along the gasifier height from bottom, the content of H2, CO and CH4 increased until 250mm and the content of CO2 showed a peak value around 150mm. With the increasing in the global air, the furnace temperature, the content of CO and H2 in gas, gas heating value and gasification efficiency increased first and then decreased while the content of CO2 and CH4 in gas decreased first. Moreover, the air distribution between gasifier and burner was important and there was an optimum distribution ratio. With the increasing in the ratio of gasifier air and burner air, the global energy utilization efficiency increased first and then decreased, and the optimum ratio was around 1:3 when the flame above burner showed blue and stable. Results of dynamic test indicated that the gasified gas composition and energy output achieved stability until 20min after ignition. The present work could provide an optimum guide for high-efficiency operating of the agricultural up-draft biomass gasification stove.
机译:调查了空气分布对实际农业上起草生物量气化炉的性能的影响,测量了气化炉,气体组合物,气体热值和全球能量利用效率的温度分布。结果表明,在本气化炉中,最高温度位于底部75mm,在950-1100℃的范围内。沿着底部的气化器高度,H 2,CO和CH4的含量增加至250mm,CO 2的含量显示为150mm的峰值。随着全球空气,炉温,气体温度,CO和H 2的含量增加,气体加热值和气化效率先增加,然后减少,而CO 2和CH4的气体含量首先降低。此外,气化器和燃烧器之间的空气分布很重要,并且存在最佳分配比率。随着气化器空气和燃烧器空气的比率的增加,全局能量利用效率先增加,然后减少,当燃烧器上方的火焰显示蓝色和稳定时,最佳比率约为1:3。动态试验结果表明,气化气体组成和能量输出达到稳定性直至点火后20分钟。目前的工作可以为农业上起草生物质气化炉的高效操作提供最佳指南。

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