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Thermodynamic analysis of a solar-hybrid trigeneration system integrated with methane chemical-looping combustion

机译:结合甲烷化学循环燃烧的太阳能混合三代发电系统的热力学分析

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摘要

Chemical-looping combustion (CLC) that occurs without reacting air and fuel is a promising technology for achieving CO2 capture with a low energy penalty and without additional energy consumption. This paper proposed a solar-hybrid trigeneration system based on methane CLC to produce electricity, chilled water for cooling, and hot water. CaS and CaSO4 are the cycle materials of the CLC, and the reduction reaction in the CLC is driven by solar thermal energy. The thermodynamic performances of the new CLC trigeneration system, including energy and exergy efficiencies, are analyzed and compared on the basis of design conditions and variable parameters, respectively. The results indicate that the optimal solar heat collection temperature is approximately 900 degrees C, the pressure ratio of the air compressor is 20, and the energy and exergy efficiencies reach 67% and 55%, respectively. The output ratios of the three products vary with the solar collection temperature and pressure ratio. Meanwhile, the net SCLC-to-exergy efficiency and the saving rate of the solar collection area are expected to be 24% and 63%, respectively. (c) 2016 Elsevier Ltd. All rights reserved.
机译:在不使空气和燃料反应的情况下发生的化学循环燃烧(CLC)是一种有前途的技术,可实现二氧化碳捕集,且能耗低且无额外的能耗。本文提出了一种基于甲烷CLC的太阳能混合三代发电系统,用于发电,冷却的冷却水和热水。 CaS和CaSO4是CLC的循环材料,CLC中的还原反应是由太阳能驱动的。在设计条件和可变参数的基础上,分别对新的CLC三代发电系统的热力学性能(包括能量效率和火用效率)进行了分析和比较。结果表明,最佳的太阳能集热温度约为900摄氏度,空气压缩机的压力比为20,能量和火用效率分别达到67%和55%。三种产品的输出比率随太阳能收集温度和压力比率而变化。同时,预计净SCLC的火用效率和太阳能收集区域的节省率分别为24%和63%。 (c)2016 Elsevier Ltd.保留所有权利。

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