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Study of the performance of Co and Ni ferrites after several cycles involved in water-splitting thermochemical cycles

机译:水分解热化学循环中多次循环后Co和Ni铁氧体性能的研究

摘要

Water splitting thermochemical cycles based on metal oxide systems and using concentrated solar energy is a promising and sustainable clean process for hydrogen production. In this work, the capability of Ni and Co powder ferrites for hydrogen production via two step redox processes has been tested. In order to avoid decreasing of the hydrogen release with the number of cycles due to powder sintering, a simple handmade pellet preparation has been used. Then, samples in the forms of pellets or powders were tested for the water splitting reaction under the same experimental conditions, and the amount of hydrogen generated in each case has been compared. Results show that pellet samples maintain their shape after the cycling process, although higher hydrogen production rate is obtained for Ni ferrite powder samples. This study also includes a thorough chemical, structural and morphological characterization of the samples after thermochemical cycling.
机译:基于金属氧化物系统并使用集中太阳能的水分解热化学循环是一种有前途且可持续的清洁氢气生产工艺。在这项工作中,已经测试了镍和钴粉末铁氧体通过两步氧化还原工艺生产氢气的能力。为了避免由于粉末烧结而导致的氢释放随着循环次数的减少而减少,已经使用了一种简单的手工制粒剂。然后,在相同的实验条件下测试粒状或粉末状样品的水分解反应,并比较了每种情况下产生的氢气量。结果表明,尽管镍铁氧体粉末样品的制氢速率更高,但颗粒样品在循环过程后仍保持其形状。这项研究还包括对热化学循环后的样品进行彻底的化学,结构和形态表征。

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