北大马丁课题组实现常温常压甲烷一步活化高选择性制甲醇
作者:Jijia Xie, Renxi Jin, Ang Li, Yingpu Bi, Qiushi Ruan, Yucheng Deng, Yajun Zhang, Siyu Yao, Gopinathan Sankar, Ding Ma, Junwang Tang
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2018-11-12 17:36:47
把甲烷催化氧化为既可作为液体燃料又可用作化工基本原料的甲醇,是缓解能源紧张的有效途径。传统的甲烷两步法制甲醇的工艺路线(先将甲烷转化成合成气,再通过合成气制甲醇)存在反应条件苛刻、耗能高等多种问题,如何实现甲烷在温和条件下直接氧化制甲醇,是近百年来工业界和学术界共同的“Dream
Reaction”。
最近,北大马丁教授课题组突破传统研究思路,在外场(模拟太阳光)辅助下,以常规浸渍法获得的二氧化钛负载铁为催化剂、过氧化氢为氧化剂,在常温常压下实现了甲烷一步活化高选择性制甲醇。3小时内,甲烷的转化率可达15%,总醇选择性可达97%,其中甲醇的选择性高达90%,且该催化剂具有优异的循环稳定性。球差校正电镜和吸收谱学研究表明,该催化剂的活性中心为高度分散的三价铁物种。该研究工作构建了新的甲烷一步高效制甲醇体系,为温和条件下实现甲烷的高效活化提供了新思路。
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Highly selective oxidation of methane to methanol at ambient conditions by titanium dioxide-supported iron species
作者:Jijia Xie, Renxi Jin, Ang Li, Yingpu Bi, Qiushi Ruan, Yucheng Deng, Yajun Zhang, Siyu Yao, Gopinathan Sankar, Ding Ma, Junwang Tang
●
2018-11-12 17:36:47
导语
Methane activation under moderate conditions and with good selectivity for value-added chemicals still remains a huge challenge. Here, we present a highly selective catalyst for the transformation of methane to methanol composed of highly dispersed iron species on titanium dioxide. The catalyst operates under moderate light irradiation (close to one Sun) and at ambient conditions. The optimized sample shows a 15% conversion rate for methane with an alcohol selectivity of over 97% (methanol selectivity over 90%) and a yield of 18 moles of alcohol per mole of iron active site in just 3 hours. X-ray photoelectron spectroscopy measurements with and without xenon lamp irradiation, light-intensity-modulated spectroscopies, photoelectrochemical measurements, X-ray absorption near-edge structure and extended X-ray absorption fine structure spectra, as well as isotopic analysis confirm the function of the major iron-containing species—namely, FeOOH and Fe2O3, which enhance charge transfer and separation, decrease the overpotential of the reduction reaction and improve selectivity towards methanol over carbon dioxide production.
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