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Development and thermodynamic assessment of a novel solar and biomass energy based integrated plant for liquid hydrogen production

机译:新型太阳能和生物质能源液体氢气生产综合厂的开发与热力学评估

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In this paper, a combined power plant based on the dish collector and biomass gasifier has been designed to produce liquefied hydrogen and beneficial outputs. The proposed solar and biomass energy based combined power system consists of seven different subplants, such as solar power process, biomass gasification plant, gas turbine cycle, hydrogen generation and liquefaction system, Kalina cycle, organic Rankine cycle, and single-effect absorption plant with ejector. The main useful outputs from the combined plant include power, liquid hydrogen, heating-cooling, and hot water. To evaluate the efficiency of integrated solar energy plant, energetic and exergetic effectiveness of both the whole plant and the sub-plants are performed. For this solar and biomass gasification based combined plant, the generation rates for useful outputs covering the total electricity, cooling, heating and hydrogen, and hot water are obtained as nearly 3.9 MW, 6584 kW, 4206 kW, and 0.087 kg/s in the base design situations. The energy and exergy performances of the whole system are calculated as 51.93% and 47.14%. Also, the functional exergy of the whole system is calculated as 9.18% for the base working parameters. In addition to calculating thermodynamic efficiencies, a parametric plant is conducted to examine the impacts of reference temperature, solar radiation intensity, gasifier temperature, combustion temperature, compression ratio of Brayton cycle, inlet temperature of separator 2, organic Rankine cycle turbine and pump input temperature, and gas turbine input temperature on the combined plant performance. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:本文设计了一种基于洗碗机和生物质气化器的组合电厂,设计用于生产液化氢和有益产出。所提出的太阳能和生物质能源基组合电力系统由七种不同的载板组成,如太阳能电力工艺,生物量气化厂,燃气轮机循环,氢气发电和液化系统,kalina循环,有机朗肯循环和单效吸收厂喷射器。组合厂的主要有用输出包括电源,液体氢气,加热冷却和热水。为了评估整个植物和亚植物的集成太阳能植物的效率,精力充沛,均有效果。对于这种太阳能和生物质气化的组合厂,获得覆盖总电力,冷却,加热和氢气的有用输出的发电速率,以及热水,为近3.9mW,6584千瓦,4206千瓦,0.087千克/秒基础设计情况。整个系统的能量和暴露性能计算为51.93%和47.14%。此外,整个系统的功能漏洞计算为基础工作参数的9.18%。除了计算热力学效率之外,进行参数化工厂,以检查参考温度,太阳辐射强度,气化器温度,燃烧温度,Brayton循环的压缩比,分离器2的入口温度,有机朗肯循环涡轮和泵输入温度和燃气轮机输入温度造型植物性能。 (c)2020氢能源出版物LLC。 elsevier有限公司出版。保留所有权利。

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