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High Coke-Resistance Pt/Mg1-xNixO Catalyst for Dry Reforming of Methane

机译:用于甲烷干重整的高抗焦炭Pt / Mg1-xNixO催化剂

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摘要

A highly active and stable nano structured Pt/Mg1-xNixO catalysts was developed by a simple co-precipitation method. The obtained Pt/Mg1-xNixO catalyst exhibited cubic structure nanocatalyst with a size of 50–80 nm and realized CH4 and CO2 conversions as high as 98% at 900°C with excellent stability in the dry reforming of methane. The characterization of catalyst was performed using various kinds of analytical techniques including XRD, BET, XRF, TPR-H2, TGA, TEM, FESEM, FT-IR, and XPS analyses. Characterization of spent catalyst further confirms that Pt/Mg1-xNixO catalyst has high coke-resistance for dry reforming. Thus, the catalyst demonstrated in this study, offers a promising catalyst for resolving the dilemma between dispersion and reducibility of supported metal, as well as activity and stability during high temperature reactions.
机译:通过简单的共沉淀方法开发了高活性和稳定的纳米结构Pt / Mg1-xNixO催化剂。所得的Pt / Mg1-xNixO催化剂呈现出尺寸为50-80 nm的立方结构纳米催化剂,并在900°C下实现CH4和CO2转化率高达98%,并且在甲烷干重整中具有出色的稳定性。催化剂的表征使用各种分析技术进行,包括XRD,BET,XRF,TPR-H2,TGA,TEM,FESEM,FT-IR和XPS分析。废催化剂的表征进一步证实,Pt / Mg1-xNixO催化剂具有用于干重整的高耐焦炭性。因此,本研究中证明的催化剂为解决负载金属的分散性和还原性以及高温反应期间的活性和稳定性之间的难题提供了有希望的催化剂。

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