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Noble Metal Nanoparticles Incorporated Siliceous TUD-1 Mesoporous Nano-Catalyst for Low-Temperature Oxidation of Carbon Monoxide

机译:贵金属纳米颗粒掺入硅质TUD-1介孔纳米催化剂用于一氧化碳的低温氧化

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摘要

This report, for the first time, demonstrated the low-temperature oxidation of carbon monoxide (CO) using nano-catalysts consisting of noble metal nanoparticles incorporated in TUD-1 mesoporous silica nano-structures synthesized via a one-pot surfactant-free sol–gel synthesis methodology. Herein, we investigated a nano-catalyst, represented as M-TUD-1 (M = Rh, Pd, Pt and Au), which was prepared using a constant Si/M ratio of 100. The outcome of the analytical studies confirmed the formation of a nano-catalyst ranging from 5 to 10 nm wherein noble metal nanoparticles were distributed uniformly onto the mesopores of TUD-1. The catalytic performance of M-TUD-1 catalysts was examined in the environmentally impacted CO oxidation reaction to CO . The catalytic performance of Au-TUD-1 benchmarked other M-TUD-1 catalysts and a total conversion of CO was obtained at 303 K. The activity of the other nano-catalysts was obtained as Pt-TUD-1 > Pd-TUD-1 > Rh-TUD-1, with a total CO conversion at temperatures of 308, 328 and 348 K, respectively. The Au-TUD-1 exhibited a high stability and reusability as indicated by the observed high activity after ten continuous runs without any treatment. The outcomes of this research suggested that M-TUD-1 are promising nano-catalysts for the removal of the toxic CO gas and can also potentially be useful to protect the environment where a long-life time, cost-effectiveness and industrial scaling-up are the key approaches.
机译:该报告首次展示了使用纳米催化剂进行的一氧化碳(CO)的低温氧化,该催化剂由贵金属纳米颗粒组成,该纳米颗粒通过单罐无表面活性剂溶胶合成而掺入TUD-1介孔二氧化硅纳米结构中,凝胶合成方法。在这里,我们研究了一种纳米催化剂,表示为M-TUD-1(M = Rh,Pd,Pt和Au),它是使用恒定的Si / M比100制备的。分析研究的结果证实了这种催化剂的形成。 5-100nm的纳米催化剂,其中贵金属纳米颗粒均匀地分布在TUD-1的中孔上。在受环境影响的CO氧化为CO的过程中,研究了M-TUD-1催化剂的催化性能。 Au-TUD-1基准的其他M-TUD-1催化剂的催化性能和CO的总转化率在303 K下获得。其他纳米催化剂的活性为Pt-TUD-1> Pd-TUD- 1> Rh-TUD-1,总的CO转化率分别为308、328和348K。 Au-TUD-1表现出高稳定性和可重复使用性,如连续十次未经任何处理后观察到的高活性所表明。这项研究的结果表明,M-TUD-1是有前途的纳米催化剂,可用于去除有毒的CO气体,并且还可以潜在地用于保护环境,延长使用寿命,降低成本并扩大工业规模是关键方法。

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