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Thermo-Catalytic Methane Decomposition for Hydrogen Production: Effect of Palladium Promoter on Ni-based Catalysts

机译:用于产氢的热催化甲烷分解:钯助催化剂对镍基催化剂的影响

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摘要

Hydrogen production from the direct thermo-catalytic decomposition of methane is a promising alter-native for clean fuel production. However, thermal decomposition of methane can hardly be of any practical and empirical interest in the industry unless highly efficient and effective catalysts, in terms of both catalytic activity and operational lifetime have been developed. In this study, the effect of palladium (Pd) as a promoter onto Ni supported on alumina catalyst has been investigated by using co-precipitation technique. The introduction of Pd promotes better catalytic activity, operational lifetime and thermal stability of the catalyst. As expected, highest methane conversion was achieved at reaction temperature of 800 °C while the bimetallic catalyst (1 wt.% Ni -1 wt.% Pd/Al2O3) gave the highest methane conversion of 70% over 15 min of time-on-stream (TOS). Interestingly, the introduction of Pd as promoter onto Ni-based catalyst also has a positive effect on the operational lifetime and thermal stability of the catalyst as the methane conversion has improved significantly over 240 min of TOS.
机译:甲烷直接热催化分解制氢是清洁燃料生产的有希望的替代方法。但是,除非已开发出在催化活性和使用寿命方面都非常高效和有效的催化剂,甲烷的热分解在工业上几乎没有任何实际和经验上的意义。在这项研究中,已经通过使用共沉淀技术研究了钯(Pd)作为促进剂对负载在氧化铝催化剂上的镍的影响。钯的引入促进了更好的催化活性,使用寿命和催化剂的热稳定性。如预期的那样,在800°C的反应温度下实现了最高的甲烷转化率,而双金属催化剂(1 wt。%Ni -1 wt。%Pd / Al2O3)在15分钟内的最高甲烷转化率达到70%流(TOS)。有趣的是,将Pd作为助催化剂引入到Ni基催化剂中也对催化剂的使用寿命和热稳定性产生积极影响,因为在TOS的240分钟内甲烷转化率显着提高。

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