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Biomass gasification process integration with Stirling engine, solid oxide fuel cell, and multi-effect distillation

机译:生物质气化工艺与斯特林发动机,固体氧化物燃料电池和多效蒸馏的一体化

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摘要

Today, the use of a variety of energy with the approach of maximizing the efficiency of energy systems is inevitable regarding the increasing trend of energy demand in the world. Process integration reduces the number of equipment required and energy consumption. In this paper, an integrated structure is developed that includes a solid oxide fuel cell (SOFC), a Stirling engine, an organic Rankine cycle (ORC), and a multi-effect distillation using biomass gasification. This integrated structure produces 3103 kW net power, 2.773 kg s(-1)desalinated water, and 3.908 kg s(-1)hot water by receiving 1000 kg h(-1)of biomass. Total electrical and total exergy efficiencies of the integrated system were obtained as 62.88% and 51.56%, respectively. The SOFC and ORC cycles energy efficiencies obtained 53.19 and 22.29%, respectively. The SOFC unit and ORC system exergy efficiencies were calculated by 58.09% and 50.77%, respectively. The largest contribution of the exergy destruction rate occurs in the solid oxide fuel cell and the heat exchangers, accounting for 37.31% and 30.43%. In the performed parametric analysis, the effect of moisture content of gasifier input fuel on the performance of the system was evaluated. One of the most important results is the increase of the total electrical efficiency of the system to 70.81% in case of the increase of moisture to 40 vol%. The maximum amount of net generated power and SOFC generated power occur at 25 vol% moisture content of gasifier input fuel. Graphic abstract
机译:今天,随着世界能源需求的不断增长,以最大化能源系统效率的方式使用各种能源是不可避免的。过程集成减少了所需的设备数量和能耗。本文开发了一种集成结构,包括固体氧化物燃料电池(SOFC)、斯特林发动机、有机朗肯循环(ORC)和利用生物质气化的多效蒸馏。该综合结构通过接收1000 kg h(-1)的生物量,产生3103 kW净功率、2.773 kg s(-1)淡化水和3.908 kg s(-1)热水。综合系统的总电气效率和总火用效率分别为62.88%和51.56%。SOFC和ORC循环的能量效率分别为53.19%和22.29%。SOFC单元和ORC系统的火用效率分别为58.09%和50.77%。火用破坏率的最大贡献发生在固体氧化物燃料电池和换热器中,分别占37.31%和30.43%。在进行的参数分析中,评估了气化炉输入燃料的水分含量对系统性能的影响。其中一个最重要的结果是,当湿度增加到40 vol%时,系统的总电效率增加到70.81%。净发电量和SOFC发电量的最大值出现在气化炉输入燃料含水量为25 vol%时。图形摘要

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