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首页> 外文期刊>International journal of hydrogen energy >Novel Two-step Sno_2/sno Water-splitting Cycle For Solar Thermochemical Production Of Hydrogen
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Novel Two-step Sno_2/sno Water-splitting Cycle For Solar Thermochemical Production Of Hydrogen

机译:太阳能热化学制氢的新型两步Sno_2 / sno水分解循环

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摘要

The production of hydrogen from a novel two-step thermochemical cycle based on SnO_2/ SnO redox reactions is presented. This process targets CO_2-free hydrogen production by using renewable solar energy and water in a high-temperature water-splitting cycle. The cycle consists of a solar endothermic reduction of SnO_2 into SnO(g) and O_2 followed by a non-solar exothermic hydrolysis of SnO(s) to form H_2 and SnO_2(s). The objective of this study was to demonstrate this innovative concept for H_2 production and to establish the potential of cycle implementation in an integrated solar chemical process. The reduction and hydrolysis reactions were experimentally tested in order to define optimal operating conditions, chemical conversion and hydrogen yield. The thermal reduction occurs under atmospheric pressure at about 1600 ℃ and over. The solar step encompasses the formation of SnO nanoparticles that can be hydrolysed efficiently in the temperature range 500-600 ℃ with a H_2 yield over 90%. A preliminary process design is also proposed for cycle integration in solar chemical plants.
机译:提出了基于SnO_2 / SnO氧化还原反应的新型两步热化学循环生产氢的方法。该过程的目标是通过在高温水分解循环中使用可再生太阳能和水来生产无CO_2的氢气。该循环由太阳吸热将SnO_2还原为SnO(g)和O_2,然后将SnO(s)进行非太阳能放热水解而形成H_2和SnO_2(s)。这项研究的目的是证明这种创新的H_2生产概念,并确定在集成太阳能化学过程中实施循环的潜力。为了确定最佳操作条件,化学转化率和氢产率,对还原和水解反应进行了实验测试。热还原在约1600℃以上的大气压下发生。太阳能步骤包括形成SnO纳米颗粒,该纳米颗粒可以在500-600℃的温度范围内有效水解,H_2收率超过90%。还提出了用于太阳能化工厂中循环整合的初步工艺设计。

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