合成气
催化作用
甲醇
串联
选择性
丝光沸石
化学
醋酸
化学工程
材料科学
组合化学
有机化学
沸石
工程类
复合材料
作者
Jincan Kang,Shun He,Wei Zhou,Zheng Shen,Yangyang Li,Mingshu Chen,Qinghong Zhang,Ye Wang
标识
DOI:10.1038/s41467-020-14672-8
摘要
Abstract Synthesis of ethanol from non-petroleum carbon resources via syngas (a mixture of H 2 and CO) is an important but challenging research target. The current conversion of syngas to ethanol suffers from low selectivity or multiple processes with high energy consumption. Here, we report a high-selective conversion of syngas into ethanol by a triple tandem catalysis. An efficient trifunctional tandem system composed of potassium-modified ZnO–ZrO 2 , modified zeolite mordenite and Pt–Sn/SiC working compatibly in syngas stream in one reactor can afford ethanol with a selectivity of 90%. We demonstrate that the K + –ZnO–ZrO 2 catalyses syngas conversion to methanol and the mordenite with eight-membered ring channels functions for methanol carbonylation to acetic acid, which is then hydrogenated to ethanol over the Pt–Sn/SiC catalyst. The present work offers an effective methodology leading to high selective conversion by decoupling a single-catalyst-based complicated and uncontrollable reaction into well-controlled multi-steps in tandem in one reactor.
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