Progress in the synthesis and applications of hexaaluminate-based catalysts

J. J. Torrez-Herrera, S. Korili, Amparo Gil
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引用次数: 14

Abstract

ABSTRACT The development of materials that can exhibit thermal resistance at very high temperatures, thus allowing them to be applied as catalysts and thermal insulators, amongst other possible uses, is a research subject of great interest. This is the case for hexaaluminates, a class of hexagonal aluminate compounds with a unique structure that are stable at very high temperatures up to 1600°C and exhibit exceptional resistance to sintering and thermal shock, thus making them attractive catalysts for high-temperature applications. In this review, the structure of hexaaluminates is presented first. The most recent advances in synthetic methods (sol-gel, reverse microemulsion, hydrothermal synthesis, carbon-templating, solution combustion synthesis, and freeze-drying methods) are discussed subsequently, with the aim of maximizing textural properties and including in their structure metals known to be active in catalytic applications, such as combustion of CH4, partial oxidation, and dry reforming of CH4 to produce synthetic gas, and the decomposition of N2O. Finally, other applications, such as their function as a thermal barrier, are also addressed.
六铝酸盐基催化剂的合成及应用研究进展
开发能够在高温下表现出热阻的材料,从而使其能够作为催化剂和热绝缘体,以及其他可能的用途,是一个非常有趣的研究课题。六铝酸盐就是这种情况,这是一类六方铝酸盐化合物,具有独特的结构,在高达1600°C的高温下保持稳定,并具有优异的烧结和热冲击性能,因此成为高温应用的有吸引力的催化剂。本文首先介绍了六铝酸盐的结构。随后讨论了合成方法(溶胶-凝胶、反微乳液、水热合成、碳模板、溶液燃烧合成和冷冻干燥方法)的最新进展,目的是最大限度地提高结构性能,并在其结构中包括已知在催化应用中活跃的金属,如CH4的燃烧、部分氧化、CH4的干重整产生合成气以及N2O的分解。最后,还讨论了其他应用,例如它们作为热障的功能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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