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Thermodynamic Modeling of Allothermal Steam Gasification in a Downdraft Fixed-bed Gasifier

机译:降下式固定床气化器中的热力学建模

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A process of converting a solid carbonaceous fuel into a gaseous energy carrier in presence of a gasifying medium at high temperature is called gasification. The resulting gaseous energy carrier, known as producer gas, is more versatile in its use than the original solid fuel. Gasification is widely considered as a more efficient and less polluting initial thermochemical upstream process of converting biomass to electricity. The objective of this study was to investigate the process of allothermal steam gasification in a fixed-bed downdraft gasifier for improved quality (HHV, high hydrogen content) of the producer gas generated. The study involved thermodynamic equilibrium modeling based on equilibrium approach in which the concentrations of the gaseous components in the producer gas at equilibrium temperature are determined based on balancing the moles in the overall gasification equation. The results obtained suggest that the maximum equilibrium yield of producer gas with high energy density is attained at a gasification temperature of around 820°C and a steam/biomass ratio of 0.825 mol/mol. The equilibrium yield was richer in hydrogen at 52.23%vol, and with a higher heating value of 11.6 MJ/Nm~3. Preliminary validation of the model results using experimental data from literature shows a close relationship. The study has further shown the advantage of using steam as a gasifying medium towards the improved quality of the producer gas generated.
机译:在高温下在气化介质存在下将固体碳质燃料转化为气态能量载体的过程称为气化。所得的气态能量载体,称为生产者气体,在其使用中比原始固体燃料更通用。气化被广泛认为是将生物质转化为电力的更有效且较少的污染初始热化学上游过程。本研究的目的是研究固定床下降气化器中的出口蒸汽气化过程,用于提高生产的生产者气体的质量(HHV,高氢含量)。该研究涉及基于平衡方法的热力平衡建模,其中基于平衡整体气化方程中的摩尔斯来确定生产者气体中的气态成分的浓度。所得到的结果表明,高能量密度的生产者气体的最大平衡产率在约820℃的气化温度和0.825mol / mol的蒸汽/生物质比率下实现。平衡产率在52.23%的体积下富含氢气,并具有较高的加热值为11.6mJ / nm〜3。使用文献实验数据的模型结果的初步验证显示了密切的关系。该研究进一步示出了利用蒸汽作为气化介质朝向产生的生产者气体质量的流化介质的优点。

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