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用于氨合成的钴铼催化剂的原位X射线吸收光谱研究。

An In Situ XAS Study of the Cobalt Rhenium Catalyst for Ammonia Synthesis.

作者信息

Mathisen Karina, Kirste Karsten Granlund, Hargreaves Justin S J, Laassiri Said, McAulay Kate, McFarlane Andrew R, Spencer Nicholas A

机构信息

1Department of Chemistry, Norwegian University of Science and Technology (NTNU), Høgskoleringen 5, 7491 Trondheim, Norway.

2WestCHEM, School of Chemistry, University of Glasgow, Joseph Black Building, Glasgow, G12 8QQ UK.

出版信息

Top Catal. 2018;61(3):225-239. doi: 10.1007/s11244-018-0892-7. Epub 2018 Feb 12.

Abstract

A cobalt rhenium catalyst active for ammonia synthesis at 400 °C and ambient pressure was studied using in situ XAS to elucidate the reducibility and local environment of the two metals during reaction conditions. The ammonia reactivity is greatly affected by the gas mixture used in the pre-treatment step. Following H/Ar pre-treatment, a subsequent 20 min induction period is also observed before ammonia production occurs whereas ammonia production commences immediately following comparable H/N pre-treatment. In situ XAS at the Co K-edge and Re L-edge show that cobalt initiates reduction, undergoing reduction between 225 and 300 °C, whereas reduction of rhenium starts at 300 °C. The reduction of rhenium is near complete below 400 °C, as also confirmed by H-TPR measurements. A synergistic co-metal effect is observed for the cobalt rhenium system, as complete reduction of both cobalt and rhenium independently requires higher temperatures. The phases present in the cobalt rhenium catalyst during ammonia production following both pre-treatments are largely bimetallic Co-Re phases, and also monometallic Co and Re phases. The presence of nitrogen during the reduction step strongly promotes mixing of the two metals, and the bimetallic Co-Re phase is believed to be a pre-requisite for activity.

摘要

使用原位X射线吸收光谱(XAS)研究了一种在400°C和环境压力下对氨合成具有活性的钴铼催化剂,以阐明反应条件下两种金属的还原性和局部环境。氨的反应活性受预处理步骤中使用的气体混合物的极大影响。在H/Ar预处理后,在氨生成之前还观察到20分钟的诱导期,而在类似的H/N预处理后氨立即开始生成。钴K边和铼L边的原位XAS表明,钴在225至300°C之间开始还原,而铼的还原在300°C开始。铼的还原在400°C以下几乎完成,H-TPR测量也证实了这一点。对于钴铼体系观察到协同共金属效应,因为钴和铼各自完全还原需要更高的温度。两种预处理后氨生成过程中钴铼催化剂中存在的相主要是双金属Co-Re相,还有单金属Co相和Re相。还原步骤中氮的存在强烈促进两种金属的混合,并且双金属Co-Re相被认为是活性的先决条件。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ca64/6413814/03ea3126843c/11244_2018_892_Fig1_HTML.jpg

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