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Thermochemical Hydrogen Production With A Copper-chlorine Cycle, Ⅱ: Flashing And Drying Of Aqueous Cupric Chloride

机译:铜-氯循环的热化学制氢,Ⅱ:氯化铜水溶液的闪蒸和干燥

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This paper examines the evaporative drying of aqueous cupric chloride (CuCl_2) droplets in the copper-chlorine (Cu-Cl) thermochemical cycle of hydrogen production. An aqueous CuCl_2 stream exiting from an electrochemical cell is preheated to 150 ℃, before entering a flash evaporator to produce solid CuCl_2(s). New innovations of heat recovery aim to develop alternatives that reduce costs and improve efficiency of the evaporation process for CuCl_2 particle production. The liquid phase flashes due to a sudden pressure drop. Analytical solutions are developed for the cupric chloride spraying and drying processes, including empirical correlations for heat and mass transfer, based on a single droplet of aqueous CuCl_2 solution. The study shows that considerable drying can be accomplished through differentials of humidity alone. It also shows that benefits of flashing the solution to enhance drying are relatively minor, compared to the rate of evaporative drying in the spray drying process.
机译:本文研究了在生产氢气的铜-氯(Cu-Cl)热化学循环中,氯化铜(CuCl_2)液滴的蒸发干燥。在进入闪蒸器生产固体CuCl_2之前,将从电化学池中流出的CuCl_2水溶液预热至150℃。热回收的新创新旨在开发可降低成本并提高生产CuCl_2颗粒的蒸发过程效率的替代方案。由于突然的压力下降,液相闪烁。基于一滴CuCl_2水溶液,开发了用于氯化铜喷涂和干燥过程的分析解决方案,包括传热和传质的经验关系式。研究表明,仅通过湿度差异即可实现相当大的干燥。还表明,与喷雾干燥过程中的蒸发干燥速率相比,使溶液闪蒸以增强干燥的益处相对较小。

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