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Thermodynamic and economic analysis of a solar-biomass gasification system with the production of methanol and electricity

机译:甲醇和电力生产太阳能生物量气化系统的热力学和经济分析

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The thermodynamic and economic performances of a solar-biomass gasification polygeneration system are investigated in this work.In the system,the collected high-temperature concentrated solar energy with a new beam-down optical configuration is used to drive biomass gasification,the cotton stalk is selected as the feedstock,and the produced syngas is fed into a methanol synthesis reactor for methanol production.In addition,the un-reacted syngas and the system waste heat are efficiently utilized via a combined cycle to generate electricity.The designed methanol production and power capacities are 51.2xl03 tons/year and 32.7 MWe,respectively.The numerical simulation of the polygeneration system is implemented.The on-design energy efficiency of the system reaches to 51.89% with the exergy efficiency of 51.23%.According to the system off-design evaluation within a typical year,the annual averaged system efficiency is up to 48.35% with the monthly efficiency in a range of 46.65%-49.05%,and the levelized cost of methanol is 361.88 $/ton.The solar-biomass gasification polygeneration system with methanol and electricity production achieve favorable thermodynamic and economic performances,which contributes to reducing CO2 emission and provides an alternative way for efficiently utilizing the abundant renewable energies of solar and biomass resources.
机译:在这项工作中调查了太阳能生物量气化多结系统的热力学和经济性能。在该工作中,使用新的光束光学配置的收集的高温浓度太阳能用于驱动生物质气化,棉秆选择作为原料,并将产生的合成气送入甲醇合成反应器中,用于甲醇生产。此外,通过组合循环有效地利用未反应的合成气和系统废热以产生电力。设计的甲醇生产和功率容量分别为51.2xl03吨/年和32.7 mWe。实现了多结型系统的数值模拟。该系统的设计能源效率达到51.89%,低通电效率为51.23%。根据系统在典型的一年内的设计评估,年平均系统效率高达48.35%,每月效率范围为46.65%-49.05%,甲醇的均线成本为361.88 $ /吨。太阳能生物量气化多结型制造具有甲醇和电力生产的良好热力学和经济性能,有助于减少二氧化碳排放,并提供有效利用太阳能丰富的可再生能源的替代方法和生物量资源。

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