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Performance assessment of novel biomass gasification based CCHP systems integrated with syngas production

机译:基于新型生物质气化的CCHP系统与合成气生产相结合的性能评估

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In this study, three novel biomass gasification based tetra-generation systems for syngas, heating, cooling and power generations have been proposed and theoretically assessed for selected biomass materials. The systems, instead of using the chemical energy of the gasification products, use the thermal energy to operate both Rankine and Refrigeration cycles in three configurations, namely, steam Rankine cycle with organic Rankine Cycle and ejector refrigeration cycle (Cycle-1), binary Rankine cycle with ejector refrigeration cycle (Cycle-2) and steam Rankine cycle with combined power ejector refrigeration cycle (Cycle-3). Syngas (a mixture of hydrogen and carbon monoxide gas), which has the potential for various domestic applications, has been obtained as the gasification product. The effects of different operating parameters such as water to biomass ratio, total biomass-water mass flow rate, mass flow rate of refrigerant, generator pressure, gasification temperature and types of biomass material have been studied on the syngas and hydrogen yields, as well as coefficient of performance and overall performance index of the system. The study shows that Cycle-2 is more effective in terms of coefficient of performance and refrigeration effect whereas Cycle-1 is best for higher performance index. Hence, either Cycle-1 or Cycle-2 can be preferred depending on the requirement. (C) 2018 Elsevier Ltd. All rights reserved.
机译:在这项研究中,针对合成气,加热,冷却和发电的三种新型基于生物质气化的四代系统已经提出,并在理论上评估了选定的生物质材料。该系统不使用气化产物的化学能,而是使用热能以三种配置运行朗肯循环和制冷循环,即具有有机朗肯循环的蒸汽朗肯循环和喷射器制冷循环(Cycle-1),二元朗肯带有喷射器制冷循环的循环(循环2)和带混合动力喷射器制冷循环的蒸汽朗肯循环(循环3)。合成气(氢气和一氧化碳气体的混合物)具有气化产物的潜力,可用于各种家庭应用。研究了水/生物质比,总生物质-水质量流量,制冷剂质量流量,发电机压力,气化温度和生物质材料类型等不同运行参数对合成气和氢气产率的影响,以及系统的性能系数和整体性能指标。研究表明,Cycle-2在性能系数和制冷效果方面更有效,而Cycle-1在更高的性能指标上效果最佳。因此,根据需要,可以优先选择Cycle-1或Cycle-2。 (C)2018 Elsevier Ltd.保留所有权利。

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