Bimetallic nickel molybdenum nitride catalyst with low pressure and reduced hydrogen consumption for hydrogenation of dimethyl oxalate to ethanol: the impact of reduction temperature on catalytic performance
Author:
Affiliation:
1. School of Chemistry and Chemical Engineering/State Key Laboratory Incubation Base for Green Processing of Chemical Engineering, Shihezi University, Shihezi 832003, P.R. China
Abstract
Funder
National Natural Science Foundation of China
Publisher
Royal Society of Chemistry (RSC)
Link
http://pubs.rsc.org/en/content/articlepdf/2024/GC/D4GC00142G
Reference59 articles.
1. Heterogeneous catalytic synthesis of ethanol from biomass-derived syngas
2. Space-Confined Self-Regulation Mechanism from a Capsule Catalyst to Realize an Ethanol Direct Synthesis Strategy
3. Identifying the activity origin of silver catalysts induced by interfacial electron localization for regioselective C O bond hydrogenation
4. Promoting effect of boron oxide on Ag/SiO2 catalyst for the hydrogenation of dimethyl oxalate to methyl glycolate
5. Understanding size-dependent hydrogenation of dimethyl oxalate to methyl glycolate over Ag catalysts
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1. Tuning the product selectivity of dimethyl oxalate hydrogenation over WO modified Cu/SiO2 catalysts;Journal of Energy Chemistry;2024-10
2. Cobalt-silver catalyst with low metal content for highly efficient synthesis of methyl glycolate through synergistic effect;Chemical Engineering Journal;2024-07
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