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Optimization of Biomass Circulating Fluidized Bed Gasifier for Synthesis Applications using Simulation and Response Surface Methodology

机译:利用仿真和响应地面方法优化合成应用的生物质循环流化床气化机

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Biomass gasification is a complex process that uses heat and catalysts to convert biomass into syngas,which can be applied in Fischer-Tropsch(FT)synthesis to produce liquid fuels.As FT requires specific syngas compositions,this work performs an optimization of the operating conditions of a pressurized circulating fluidized bed(CFB)gasifier for such purposes.The CFB operated with sugarcane bagasse as a feedstock and steam as a gasifying agent and was simulated in Aspen Plus v8.6 based on Gibbs free energy minimization with restricted equilibrium.The optimization followed the response surface methodology(RSM),consisting of central composite designs performed in Statistica 7.0 at a 99.0 % confidence level to obtain simplified mathematical models between input factors(temperature,T;steam-to-biomass ratio,S/B;and moisture content,MC)and output factors(cold gas efficiency,CGE;H2/CO ratio;gasifier heat duty,Q_(gasifier);higher heating value,HHV;and H2,CO,CO2,and CH4 contents).The models were used to generate four optimized cases of pressurized CFBs that returned H2/CO ratios of 2.15,required for FT reactors.The optimized CFB operates at 916 °C,15 bar,S/B of 1.12,and 10 wt.% moisture,generating a syngas stream of low CO2 and CH4 contents,which may reduce the syngas cleaning and conditioning costs downstream the gasifier.The results agree with optimizations using other feedstocks and sets of objectives,showing the validity of the models.
机译:生物质气化是一种复杂的方法,其利用热量和催化剂将生物质转化为合成气,其可以应用于Fischer-Tropsch(FT)合成以产生液体燃料。FT需要特定的合成气组合物,这项工作执行了操作条件的优化用于这种目的的加压循环流化床(CFB)气化器。CFB用甘蔗甘蔗渣作为原料和蒸汽作为气化剂,基于吉布斯自由能量最小化与受限制平衡的吉布斯的v8.6。优化跟随响应表面方法(RSM),由统计学7.0中的中央复合设计组成,以99.0%的置信水平,以获得输入因子之间的简化数学模型(温度,T;蒸汽到生物质比,S / B;和水分内容,MC)和输出因子(冷气效率,CGE; H2 / CO比;气化器热量,Q_(气化器);更高的加热值,HHV; H2,CO,CO2和CH4内容)。模型是用于生成四种加压CFB的精力化CFB,其返回FT反应器所需的H2 / CO比。优化的CFB在916℃,15巴,S / B的1.12和10wt%的水分中操作,产生a低二氧化碳和CH4内容的合成气流,可降低气化器下游的合成气清洁和调理成本。结果同意使用其他原料和目标的优化,显示模型的有效性。

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