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Solar water splitting for hydrogen production with monolithic reactors

机译:整体式反应器用于生产氢气的太阳能分流

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The present work proposes the exploitation of solar energy for the dissociation of water and production of hydrogen via an integrated thermo-chemical reactor/receiver system. The basic idea is the use of multi-channelled honeycomb ceramic supports coated with active redox reagent powders, in a configuration similar to that encountered in automobile exhaust catalytic aftertreatment. Iron-oxide-based redox materials were synthesized, capable to operate under a complete redox cycle: they could take oxygen from water producing pure hydrogen at reasonably low temperatures (800℃) and could be regenerated at temperatures below 1300℃. Ceramic honeycombs capable of achieving temperatures in that range when heated by concentrated solar radiation were manufactured and incorporated in a dedicated solar receiver/reactor. The operating conditions of the solar reactor were optimised to achieve adjustable, uniform temperatures up to 1300℃ throughout the honeycomb, making thus feasible the operation of the complete cycle by a single solar energy converter.
机译:本工作提出了通过集成的热化学反应器/接收器系统利用太阳能来分解水和产生氢的方法。基本思想是使用涂有活性氧化还原剂粉末的多通道蜂窝状陶瓷载体,其结构类似于汽车尾气催化后处理中遇到的结构。合成了基于氧化铁的氧化还原材料,该材料能够在完整的氧化还原循环中运行:它们可以在合理的低温(800℃)下从水中吸收氧气生成纯氢,并可以在1300℃以下的温度下再生。制造了当通过集中的太阳辐射加热时能够达到该温度范围的陶瓷蜂窝,并将其结合到专用的太阳能接收器/反应器中。通过优化太阳能反应器的运行条件,可在整个蜂窝结构中实现高达1300℃的可调且均匀的温度,从而使单个太阳能转换器在整个循环中的运行成为可能。

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