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H_2 production by thermochemical water splitting with reticulated porous structures of ceria-based mixed oxide materials

机译:H_2通过热化学水分裂产生,具有基于氧化铈的混合氧化物材料的网状多孔结构

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In this work, we present for the first time the preparation and evaluation of Ceria-based mixed oxides reticulated porous ceramic (RPC) structures for H-2 production by thermochemical water splitting. After appropriate screening of the powder materials, ceria-based materials modified with Co, Mn and Zr were discarded due to their low cyclability and/or hydrogen productivity, derived from segregation of active phases or sintering during the thermal reduction and reoxidation. Sponge replica method has been optimized to allow obtaining a Ce(0.9)Fe(0.1)Oy RPC sponge structure with an outstanding hydrogen production of 15 STPcm(3/)g(material).cycle at a maximum temperature of 1300 degrees C. This better performance, comparing to the powder, can be attributed to the open macroporosity of the reticulated porous structure which enhances both heat and mass transfer. The H-2 production is maintained along several consecutive cycles without loss of activity, reinforcing the favorable prospects for large-scale hydrogen production. (C) 2020 Hydrogen Energy Publications LLC. Published by Elsevier Ltd. All rights reserved.
机译:在这项工作中,我们首次出现了通过热化学水分解的H-2产生的基于二氧化铈的混合氧化物网状多孔陶瓷(RPC)结构的制备和评估。在适当筛选粉末材料之后,由于它们的低环状性和/或氢生产率而被丢弃了用CO,Mn和Zr改性的基于二氧化铈的材料,从热还原和再氧化过程中衍生自活性相或烧结。已经优化了海绵复制品,以允许获得CE(0.9)Fe(0.1)OY RPC海绵结构,其具有15个STPCM(3 /)G(材料)。最高温度为1300℃的含量。这个与粉末相比,更好的性能可以归因于网状多孔结构的开放式大孔,其增强了热量和传质。 H-2生产沿着几个连续的循环维持而不会丧失活动,加强了大规模氢气生产的有利前景。 (c)2020氢能量出版物LLC。 elsevier有限公司出版。保留所有权利。

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