首页> 外文会议>International conference on energy sustainability >REACTIVE PELLETS FOR IMPROVED SOLAR HYDROGEN PRODUCTION BASED ON SODIUM MANGANESE FERRITE THERMOCHEMICAL CYCLE
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REACTIVE PELLETS FOR IMPROVED SOLAR HYDROGEN PRODUCTION BASED ON SODIUM MANGANESE FERRITE THERMOCHEMICAL CYCLE

机译:基于锰铁氧体热化学循环的改善太阳能氢气产生的活性颗粒

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Hydrogen production by water-splitting thermochemical cycle based on manganese ferrite /sodium carbonate reactive system is reported. Two different preparation procedures for manganese ferrite/sodium carbonate mixture were adopted and compared in terms of materials capability to cyclical hydrogen production. According to the first procedure conventionally synthesized manganese ferrite, i. e. high temperature (1250 °C) heating in Ar of carbonate/oxide precursors, was mixed with sodium carbonate. The blend was tested inside a TPD reactor using a cyclical hydrogen production/material regeneration scheme. After few cycles the mixture resulted rapidly passivated and unable to further produce hydrogen. An innovative method that avoids the high temperature synthesis of manganese ferrite is presented. This procedure consists in a set of consecutive thermal treatments of a manganese carbonate/sodium carbonate/iron oxide mixture in different environments (inert, oxidative, reducing) at temperatures not exceeding 750 °C. Such material, whose observed chemical composition consists in manganese ferrite and sodium carbonate in stoiehiometric amount, is able to evolve hydrogen during 25 consecutive water-splitting cycles, with a small decrease in cyclical production efficiency.
机译:报道了基于锰铁氧体/碳酸钠反应性系统的水分解热化学循环的氢气产生。采用两种不同的制备锰铁/碳酸钠混合物的方法,并在材料能力方面进行比较,对周期性氢气产生。根据第一个程序常规合成锰铁氧体,I。 e。碳酸盐/氧化物前体的AR中加热高温(1250℃)加热,与碳酸钠混合。使用循环氢气产生/材料再生方案在TPD反应器内测试混合物。在几十循环后,混合物迅速钝化,不能进一步产生氢。提出了一种避免高温合成锰铁氧体的创新方法。该方法包括在不同环境中的一组连续的热处理碳酸锰/氧化铁混合物(惰性,氧化,还原),在不超过750℃的温度下。这些材料,其观察到的化学成分在锰铁氧体和碳酸钠中组成的锰料,能够在25个连续的水分裂循环期间进化氢,周期性生产效率小。

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