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Hydrogen and methane oxidation performances of hybrid honeycomb catalyst for a tritium removal system

机译:honey除杂混合蜂窝催化剂的氢气和甲烷氧化性能。

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The oxidation properties of new type honeycomb catalysts using NA honeycomb support material were evaluated with hydrogen and methane gases in air to compare the simple catalysts with platinum or palladium to hybrid catalysts with both platinum and palladium. Hybrid catalysts impregnated plat-mum and palladium were made by a co-impregnation method (Pt + Pd) and a sequential impregnation method (Pt/Pd) and the total amount of noble metal was prepared to 2g/L. The oxidation performance was conducted with specific flow of about 1.2 s~(-1) in the temperature range of less than 400 ℃. As the results, the NA honeycomb catalysts impregnated platinum gave the highest oxidation reaction rate for hydrogen gas among various type honeycomb catalysts. However, methane oxidation performances were inferior to other honeycomb catalysts. On the other hand, only hybrid NA catalyst manufactured by the co-impregnation method exhibited the high oxidation performance of both hydrogen and methane. It was suggested that the impregnation method of two noble metals was the key technique to take a synergic effect.
机译:使用空气中的氢气和甲烷气体评估了使用NA蜂窝载体材料的新型蜂窝催化剂的氧化性能,以比较含铂或钯的简单催化剂与含铂和钯的混合催化剂。通过共浸渍法(Pt + Pd)和顺序浸渍法(Pt / Pd)制备了浸渍了钯和钯的杂化催化剂,并且贵金属的总量被制备为2g / L。在小于400℃的温度范围内,以约1.2 s〜(-1)的比流进行氧化性能。结果,在各种类型的蜂窝状催化剂中,浸渍有铂的NA蜂窝状催化剂对氢气的氧化反应速率最高。但是,甲烷的氧化性能不如其他蜂窝催化剂。另一方面,仅通过共浸渍法制造的杂化NA催化剂表现出氢气和甲烷的高氧化性能。有人提出,两种贵金属的浸渍方法是发挥协同作用的关键技术。

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