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Exergy Analysis of Biomass Gasification Process

机译:生物质气化过程的火用分析

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摘要

Based on an equilibrium RGibbs reactor model,the gasification processes of pine,straw and sawdust were simulated under the conditions of biomass containing 10%,20% and 30% moisture content and the gasification agent temperature being 25°C and 250°C.The maximum gasification exergy efficiency and the optimum temperature increased with the increase of biomass heating value and the decrease of moisture content.For 30% moisture content biomass and 25°C gasification agent,the maximum gasification exergy efficiency of pine was 71.06%,which was higher than that of 69.87% of straw and that of 63.15% of sawdust.The optimum gasification temperatures of pine,straw and sawdust were respectively 627°C,601°C and 544°C.The maximum gasification exergy efficiency of pine with 10% moisture content was 73.73%,which was 1.45% and 2.67℃ higher than that of pine with 20% and 30% moisture content.The maximum gasification exergy efficiencies of pine,straw and sawdust increased respectively 0.87%,1.09% and 0.03% when gasification agent temperature increased from 25°C to 250°C.The results show that the biomass type,moisture content and gasification agent temperature have great effects on gasification exergy efficiency,synthesis gas composition and its low heating value.The gasification performances can be improved by reducing biomass moisture content and increasing gasification agent temperature.
机译:基于平衡的RGibbs反应器模型,在含水量为10%,20%和30%的生物质,气化剂温度为25°C和250°C的条件下,模拟了松木,秸秆和锯末的气化过程。随着生物量热值的增加和水分含量的降低,最大气化能值效率和最佳温度升高。对于水分含量为30%的生物质和25°C的气化剂,松树的最大气化能值效率为71.06%,较高。比秸秆的69.87%和木屑的63.15%的温度高。松木,稻草和木屑的最佳气化温度分别为627°C,601°C和544°C。湿度为10%的松木的最大气化能效含量为73.73%,比水分含量为20%和30%的松树高1.45%和2.67℃。松树,稻草和木屑的最大气化本能效率分别提高了0.87%,1.09%和0.03。当气化剂温度从25°C升高到250°C时,气化率提高了5%。结果表明,生物质类型,水分和气化剂温度对气化能值效率,合成气成分及其低发热量有很大影响。通过减少生物质的水分含量和提高气化剂温度来改善。

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