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首页> 外文期刊>International Journal of Process Systems Engineering >Analytical and experimental investigation of thermal efficiency improvement of thermochemical water splitting for hydrogen production
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Analytical and experimental investigation of thermal efficiency improvement of thermochemical water splitting for hydrogen production

机译:用于制氢的热化学分水器热效率提高的分析和实验研究

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This paper examines heat recovery in a thermochemical Cu-Cl cycle for efficient hydrogen production. It is essential to recover heat within the Cu-Cl cycle to improve the overall thermal efficiency of the cycle. A major portion of heat recovery can be achieved by cooling and solidifying the molten salt exiting an oxygen reactor. Heat recovery from the molten salt is achieved by dispersing the molten stream into droplets. In this paper, an analytical study and experimental investigation of the thermal phenomena of a falling droplet quenched into water is presented, involving the droplet surface temperature during descent and resulting composition change in the quench process. The results show it is feasible to quench the molten salt droplets for an efficient heat recovery process without introducing any material imbalance for the overall cycle integration.
机译:本文研究了在热化学Cu-Cl循环中的热回收,以有效地制氢。在Cu-Cl循环中回收热量对于提高循环的整体热效率至关重要。可以通过冷却和固化离开氧气反应器的熔融盐来实现大部分热量回收。通过将熔融流分散成液滴,可以从熔融盐中回收热量。在本文中,对下落的液滴淬火到水中的热现象进行了分析研究和实验研究,涉及下降过程中的液滴表面温度以及淬火过程中导致的成分变化。结果表明,为有效的热回收过程淬灭熔融盐滴是可行的,而不会为整个循环集成引入任何材料失衡。

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