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首页> 外文期刊>Applied thermal engineering: Design, processes, equipment, economics >Solar fuel production by developing an integrated biodiesel production process and solar thermal energy system
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Solar fuel production by developing an integrated biodiesel production process and solar thermal energy system

机译:太阳能燃料生产通过开发综合生物柴油生产工艺和太阳能热能系统

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摘要

To diminish the consumption of fossil fuels and their subsequent pollutions, biodiesel plays an important role in the transportation section. Biodiesel production processes can be coupled with renewable energy sources to achieve higher energy efficiency and higher renewability. Also, employing a sub-system to produce power simultaneously increases the process performance as well. In the present study, a new integrated cogeneration process for the production of biodiesel and power using solar energy is proposed and analyzed. Methanol, fresh oil, and sodium hydroxide, at 25 degrees C and 100 kPa, enter into the biodiesel production unit as feed. Yazd city in Iran, located between 31.88 N and 54.28 E, is considered as base region for simulating the parabolic trough solar collector. To design a cogeneration plant, the organic Rankine cycle is combined with the solar system to supply the required process power. The proposed system produces 991.42 kg/h of biodiesel with a yield of 94.42% and 1718 kW net power simultaneously. The total energy efficiency is 60.83%, showing the capability of the proposed process for biodiesel and power cogeneration from renewability and environmental perspective. Also, the exergy analysis applied to evaluate the proposed plants thermodynamic performance. The total exergy efficiency of the system is 74.38% when the highest exergy destruction rate takes place inside the parabolic trough solar collectors.
机译:为了减少化石燃料的消费及其随后的污染,生物柴油在运输部门发挥着重要作用。生物柴油生产过程可以与可再生能源相结合,以实现更高的能效和更高的可再生性。此外,使用子系统产生功率同时增加过程性能。在本研究中,提出并分析了用于使用太阳能的生物柴油和功率的新的集成热电化过程。甲醇,新油和氢氧化钠,在25℃和100 kPa,进入生物柴油生产单元作为饲料。位于伊朗的亚兹德市,位于31.88 N和54.28 E之间,被认为是模拟抛物线槽太阳能收集器的基础区域。为了设计热电联产工厂,有机朗肯循环与太阳系相结合,以提供所需的工艺功率。所提出的系统产生991.42kg / h的生物柴油,同时产生94.42%和1718千瓦净功率的产率。总能量效率为60.83%,显示了从再生性和环境视角的生物柴油和电力发电方法的能力。此外,施用的勘探分析适用于评估提出的植物热力学性能。当抛物线槽太阳能收集器中最高的漏洞破坏率发生时,系统的总漏洞效率为74.38%。

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