有序介孔碳载体对一氧化碳加氢制醇的结构影响。

Min-Ji Kim, Ho-Jeong Chae, Kyoung Su Ha, Kwang-Eun Jeong, Chul-Ung Kim, Soon-Yong Jeong, Tae-Wan Kim
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引用次数: 9

摘要

采用模板合成的方法合成了一系列具有有序纳米孔和不同介孔结构的有序介孔碳材料(OMCs)。利用两种不同的硅模板和合成条件,制备了两种不同的孔结构(二维六边形和三维立方结构)和两种不同的骨架结构(棒状和空心型碳骨架)。采用初湿法制备了有序介孔碳负载的促进铑催化剂。在固定床反应器上对改进的Rh-OMC催化剂进行了合成气制醇的催化实验。通过透射电子显微镜(TEM)、粉末x射线衍射(XRD)、N2吸附分析等技术考察了催化剂的性能,并在固定床反应器中对催化剂的催化性能进行了测试。结果表明,促进的Rh-OMC催化剂表现出不同的醇催化活性和选择性,这可能是由于不同的omc介观结构限制了金属纳米颗粒的大小。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Structural influence of ordered mesoporous carbon supports for the hydrogenation of carbon monoxide to alcohols.

A series of ordered mesoporous carbon materials (OMCs) possessing well-ordered nanoporosity with different mesopore structures were synthesized by the template-synthesis route. Two different pore strucutes (2-dimensional hexagonal and 3-dimensional cubic structures) and two different framework-configurations (rod-type and hollow-type carbon frameworks) are prepared by using the two different silica templates and synthetic conditions. The ordered mesoporous carbon supported promoted-rhodium catalysts were preparted by an incipient wetness method. The promoted Rh-OMC catalysts are tested by a fixed bed reactor for the catalytic conversion of syngas-to-alcohols. The characteristics of the promoted Rh-OMCs catalysts were scrutinized through a series of different techniques, including transmission electron microscopy (TEM), powder X-ray diffraction (XRD), and N2 sorption analysis, and the catalytic performance was tested in a fixed-bed reactor. It was found that the promoted Rh-OMC catalysts exhibited the different catalytic activity and selectivity of alcohols, which could be attributed to the size of metal nanoparticles being confined by the different mesostructure of OMCs.

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来源期刊
Journal of nanoscience and nanotechnology
Journal of nanoscience and nanotechnology 工程技术-材料科学:综合
自引率
0.00%
发文量
0
审稿时长
3.6 months
期刊介绍: JNN is a multidisciplinary peer-reviewed journal covering fundamental and applied research in all disciplines of science, engineering and medicine. JNN publishes all aspects of nanoscale science and technology dealing with materials synthesis, processing, nanofabrication, nanoprobes, spectroscopy, properties, biological systems, nanostructures, theory and computation, nanoelectronics, nano-optics, nano-mechanics, nanodevices, nanobiotechnology, nanomedicine, nanotoxicology.
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