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Ceria-Based Materials for Hydrogen Production Via Hydrocarbon SteamReforming and Water-Gas Shift Reactions

机译:通过二氧化铈基材料通过烃蒸汽重整和水煤气变换反应制氢

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This review paper provides an overview of the use of ceria-based catalytic materials towards the industrial hydrogen production via the hydrocarbon steam reforming and the water-gas shift reaction routes with a focus on representative patenting activities mainly in the last 10 years. We first introduce the basic mechanisms of catalytic hydrocarbon steam reforming and conversion of carbon monoxide by steam towards a mixture of carbon dioxide and hydrogen at low and high temperatures, the main synthetic approaches of ceria material and its basic structural properties responsible for its catalytic activity exhibited towards the present reactions. In the case of hydrocarbon steam reforming, emphasis is given on the (i) sulphur tolerance of catalysts developed, (ii) efforts to reduce the reaction temperature, (iii) use of the "Absorption Enhanced Reforming" concept, and (iv) its application in fuel cells for power generation. In the case of water-gas shift reaction, progress in catalyst developments for low- and high- temperature applications is discussed. Future directions in these fields have been suggested.
机译:这篇综述文章概述了使用二氧化铈基催化材料通过碳氢化合物蒸汽重整和水煤气变换反应路线在工业制氢中的应用,主要侧重于最近十年的代表性专利活动。首先,我们介绍了催化烃蒸汽重整的基本机理,以及在低温和高温下蒸汽将一氧化碳转化为二氧化碳和氢气的混合物,展示了二氧化铈材料的主要合成方法及其负责催化活性的基本结构性质。对目前的反应。在烃蒸汽重整的情况下,重点放在(i)所开发催化剂的耐硫性,(ii)降低反应温度的努力,(iii)使用“吸收增强重整”概念和(iv)在燃料电池发电中的应用。在水煤气变换反应的情况下,讨论了在低温和高温应用中催化剂开发的进展。已经提出了这些领域的未来方向。

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