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Chemical looping combustion integrated Organic Rankine Cycled biomass-fired power plant - Energy and exergy analyses

机译:化学循环燃烧综合有机朗肯循环生物质射出的电厂 - 能源和漏洞分析

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Global warming due to greenhouse emission is the most annoying problem for sustaining life on earth. Many researchers are contributing towards the development of sustainable energy technologies. Chemical Looping Combustion (CLC) is a modernistic technology in which fuels produce heat and power without carbon emission. Agricultural biomass can be a potential substitute to fossil fuels for low capacity energy generation. Further, CLC of biomass is a carbon negative technology which can address the present greenhouse gas emission problem. In this study, a novel configuration of CLC based biomass power plant integrated with Organic Rankine Cycle is proposed. The effects of key design parameters like oxygen carrier-to-biomass ratio, operating pressure of air/fuel reactors and air reactor operating temperature are studied to improve the process energy and exergy efficiencies. Integration of waste heat recovery recuperators with ORC cycle resulted in further increase of power output by 49.93 kW. The performance of the proposed configuration is compared with conventional power plant to highlight its advantages. The net power output of the final CLC integrated configuration and conventional power plants are 492.19 kW and 273.12 kW respectively. Finally, the individual unit wise exergy analysis is presented to identify the possible performance improvement options. (C) 2020 Elsevier Ltd. All rights reserved.
机译:由于温室排放导致的全球变暖是世界上维持地球生命的最令人讨厌的问题。许多研究人员正在促进可持续能源技术的发展。化学循环燃烧(CLC)是一种现代化的技术,其中燃料产生热量,无碳排放。农业生物量可以是对低容量能量产生的化石燃料的潜在替代品。此外,生物质的CLC是一种碳负技术,可以解决目前的温室气体排放问题。在本研究中,提出了一种与有机朗肯循环集成的CLC基生物量发电厂的新配置。研究了关键设计参数等氧载体 - 生物质比,空气/燃料反应器的操作压力和空气反应器工作温度的影响,以改善工艺能量和漏洞。废热回收恢复器与兽人循环的整合导致电力输出的进一步增加49.93kW。将所提出的配置的性能与传统的电厂进行比较,以突出其优点。最终CLC集成配置和传统发电厂的净功率输出分别为492.19千瓦和273.12千瓦。最后,提出了个别单位明智的水平分析以确定可能的性能改进选项。 (c)2020 elestvier有限公司保留所有权利。

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