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首页> 外文期刊>International Journal of Heat and Mass Transfer >Direct contact heat transfer from molten salt droplets in a thermochemical water splitting process of hydrogen production
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Direct contact heat transfer from molten salt droplets in a thermochemical water splitting process of hydrogen production

机译:在制氢的热化学水分解过程中从熔融盐滴直接接触传热

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摘要

It is important to recover heat within the copper-chlorine cycle of hydrogen production to improve its overall efficiency. A major portion of heat recovery may be achieved by cooling and solidifying the molten salt exiting the oxygen reactor step of the cycle. Heat can be recovered from the molten salt by breaking the molten stream into smaller dispersed droplets. In this paper, a predictive model is developed to analyze heat transfer from molten salt droplets. Characteristics of a spray column, in which recovered heat from molten copper(I) chloride (CuCl) is used to produce superheated steam, are presented. Decreasing the droplet size may increase the heat transfer rate from the droplet, and hence decrease the required height of the heat recovery system. For a 1 mm droplet size, the height of the heat-recovery system is predicted to be about 7 m.
机译:重要的是在制氢的铜-氯循环中回收热量,以提高其整体效率。通过冷却和固化离开循环的氧气反应器步骤的熔融盐,可以实现大部分的热回收。通过将熔融流破碎成较小的分散液滴,可以从熔融盐中回收热量。在本文中,建立了一个预测模型来分析熔融盐滴的热传递。介绍了一种喷雾塔的特性,其中从熔融的氯化铜(I)(CuCl)中回收的热量用于产生过热蒸汽。减小液滴尺寸可增加来自液滴的传热速率,并因此减小热回收系统的所需高度。对于1 mm的液滴尺寸,热回收系统的高度预计约为7 m。

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