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首页> 外文期刊>Biofuels >A kinetic-based simulation model of palm kernel shell steam gasification in a circulating fluidized bed using Aspen Plus®: A case study
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A kinetic-based simulation model of palm kernel shell steam gasification in a circulating fluidized bed using Aspen Plus®: A case study

机译:基于动力学的循环流化床中棕榈仁壳蒸汽气化的模拟模型:案例研究

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摘要

A detailed simulation model for hydrogen production using catalytic steam gasification of palm kernel shell in an atmospheric dual fluidized bed gasifier using an Aspen Plus (R) simulator is developed. The catalytic adsorbent-based steam gasification of palm kernel shell is studied in a pilot scale dual fluidized bed reactor using coal bottom ash as a catalyst for hydrogen and syngas production. The use of a catalyst along with the adsorbent improved tar cracking and enhanced the hydrogen content of syngas. The effect of temperature and the steam-biomass ratio on hydrogen yield, syngas composition and lower and higher heating values was studied. An increase in steam-biomass ratio enhanced the hydrogen content from 60 to 72 mol%%. The maximum value of hydrogen production, i.e. 72 vol% was achieved at a steam-biomass ratio of 1.7. The use of adsorbent and coal bottom ash had a significant effect on hydrogen and syngas yield. A maximum of 80.1 vol% hydrogen was achieved at a temperature of 650 degrees C with a 1.25 steam-biomass ratio and 0.07 wt% coal bottom ash.
机译:使用Aspen Plus(R)模拟器,在大气双流化床气化炉中使用棕榈仁壳催化蒸汽气化生产氢气的详细模拟模型已开发。在中规模双流化床反应器中,以煤底灰为催化剂生产氢气和合成气,研究了棕榈仁壳基于催化吸附剂的蒸汽气化。与吸附剂一起使用催化剂改善了焦油裂化并提高了合成气的氢含量。研究了温度和蒸汽生物量比对氢气产率,合成气组成以及较低和较高的热值的影响。蒸汽-生物质比的增加将氢含量从60摩尔%提高到72摩尔%。在1.7的蒸汽生物质比下,制氢的最大值达到了72%(体积)。吸附剂和煤灰的使用对氢气和合成气的收率有重大影响。在650摄氏度的温度下,蒸汽生物量比为1.25,煤灰为0.07 wt%,最大氢含量为80.1 vol%。

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