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界面和富氧空位的催化剂衍生自 Cu-Mn-Al 水滑石用于高效水汽变换反应。

Interfaces and Oxygen Vacancies-Enriched Catalysts Derived from Cu-Mn-Al Hydrotalcite towards High-Efficient Water-Gas Shift Reaction.

机构信息

College of Chemistry and Chemical Engineering, Jishou University, Jishou 416000, China.

Hunan Province Key Laboratory of Mineral Cleaner Production and Green Functional Materials, Jishou University, Jishou 416000, China.

出版信息

Molecules. 2023 Feb 4;28(4):1522. doi: 10.3390/molecules28041522.

Abstract

The water-gas shift (WGS) reaction is an important process in the hydrogen industry, and its catalysts are of vital importance for this process. However, it is still a great challenge to develop catalysts with both high activity and high stability. Herein, a series of high-purity Cu-Mn-Al hydrotalcites with high Cu content have been prepared, and the WGS performance of the Cu-Mn-Al catalysts derived from these hydrotalcites have been studied. The results show that the Cu-Mn-Al catalysts have both outstanding catalytic activity and excellent stability. The optimized Cu-Mn-Al catalyst has displayed a superior reaction rate of 42.6 μmolCO-1⋅gcat-1⋅s-1, while the CO conversion was as high as 96.1% simultaneously. The outstanding catalytic activities of the Cu-Mn-Al catalysts could be ascribed to the enriched interfaces between Cu-containing particles and manganese oxide particles, and/or abundant oxygen vacancies. The excellent catalytic stability of the Cu-Mn-Al catalysts may be benefitting from the low valence state of the manganese of manganese oxides, because the low valence manganese oxides have good anti-sintering properties and can stabilize oxygen vacancies. This study provides an example for the construction of high-performance catalysts by using two-dimensional hydrotalcite materials as precursors.

摘要

水汽变换(WGS)反应是氢气工业中的一个重要过程,其催化剂对该过程至关重要。然而,开发具有高活性和高稳定性的催化剂仍然是一个巨大的挑战。在此,我们制备了一系列高纯度、高铜含量的 Cu-Mn-Al 水滑石,并研究了由这些水滑石衍生的 Cu-Mn-Al 催化剂的 WGS 性能。结果表明,Cu-Mn-Al 催化剂具有出色的催化活性和优异的稳定性。优化后的 Cu-Mn-Al 催化剂表现出了优越的反应速率 42.6 μmolCO-1⋅gcat-1⋅s-1,同时 CO 转化率高达 96.1%。Cu-Mn-Al 催化剂具有出色的催化活性可以归因于富含 Cu 颗粒和氧化锰颗粒之间的界面,和/或丰富的氧空位。Cu-Mn-Al 催化剂具有优异的催化稳定性可能得益于氧化锰中的锰的低价态,因为低价态的氧化锰具有良好的抗烧结性能,并能稳定氧空位。本研究为使用二维水滑石材料作为前体制备高性能催化剂提供了一个范例。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0288/9966559/2ff9a23bc95f/molecules-28-01522-g001.jpg

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