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基于镍铝催化体系的高选择性和稳定铜催化剂用于生物乙醇升级制正丁醇

Highly Selective and Stable Cu Catalysts Based on Ni-Al Catalytic Systems for Bioethanol Upgrading to n-Butanol.

作者信息

Xiao Yan, Zhan Nannan, Li Jie, Tan Yuan, Ding Yunjie

机构信息

Hangzhou Institute of Advanced Studies, Zhejiang Normal University, 1108 Gengwen Road, Hangzhou 311231, China.

Dalian National Laboratory for Clean Energy, Dalian Institute of Chemical Physics, Chinese Academy of Sciences, 457 Zhongshan Road, Dalian 116023, China.

出版信息

Molecules. 2023 Jul 27;28(15):5683. doi: 10.3390/molecules28155683.

Abstract

The catalytic upgrading of ethanol into butanol through the Guerbet coupling reaction has received increasing attention recently due to the sufficient supply of bioethanol and the versatile applications of butanol. In this work, four different supported Cu catalysts, i.e., Cu/AlO, Cu/NiO, Cu/NiAlO, and Cu/NiAlO (Ni/Al molar ratios of 3 and 1), were applied to investigate the catalytic performances for ethanol conversion. From the results, Ni-containing catalysts exhibit better reactivity; Al-containing catalysts exhibit better stability; but in terms of ethanol conversion, butanol selectivity, and catalyst stability, a corporative effect between Ni-Al catalytic systems can be clearly observed. Combined characterizations such as XRD, TEM, XPS, H-TPR, and CO/NH-TPD were applied to analyze the properties of different catalysts. Based on the results, Cu species provide the active sites for ethanol dehydrogenation/hydrogenation, and the support derived from Ni-Al-LDH supplies appropriate acid-base sites for the aldol condensation, contributing to the high butanol selectivity. In addition, catalysts with strong reducibility (i.e., Cu/NiO) may be easily deconstructed during catalysis, leading to fast deactivation of the catalysts in the Guerbet coupling process.

摘要

由于生物乙醇的充足供应以及丁醇的广泛应用,通过盖尔伯特偶联反应将乙醇催化升级为丁醇最近受到了越来越多的关注。在这项工作中,应用了四种不同的负载型铜催化剂,即Cu/AlO、Cu/NiO、Cu/NiAlO和Cu/NiAlO(Ni/Al摩尔比为3和1)来研究乙醇转化的催化性能。结果表明,含镍催化剂表现出更好的反应活性;含铝催化剂表现出更好的稳定性;但在乙醇转化率、丁醇选择性和催化剂稳定性方面,可以清楚地观察到镍 - 铝催化体系之间的协同效应。应用XRD、TEM、XPS、H - TPR和CO/NH - TPD等联合表征方法来分析不同催化剂的性能。基于这些结果,铜物种为乙醇脱氢/加氢提供活性位点,而源自镍 - 铝 - 层状双氢氧化物的载体为羟醛缩合提供合适的酸碱位点,这有助于实现高丁醇选择性。此外,具有强还原性的催化剂(即Cu/NiO)在催化过程中可能容易解构,导致在盖尔伯特偶联过程中催化剂快速失活。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9c46/10419762/219aeb7cc673/molecules-28-05683-sch001.jpg

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