Single-Step Flame Aerosol Synthesis of Active and Stable Nanocatalysts for the Dry Reforming of Methane

被引:11
作者
Mohammadi, Mohammad Moein [1 ]
Shah, Chintan [1 ]
Dhandapani, Sandeep Kumar [1 ]
Chen, Junjie [1 ]
Abraham, Shema Rachel [1 ]
Sullivan, William [1 ]
Buchner, Raymond D. [1 ]
Kyriakidou, Eleni A. [1 ]
Lin, Haiqing [1 ]
Lund, Carl R. F. [1 ]
Swihart, Mark T. [1 ]
机构
[1] Univ Buffalo State Univ New York, Dept Chem & Biol Engn, Buffalo, NY 14260 USA
基金
美国国家科学基金会;
关键词
dry reforming; methane; CO2; utilization; flame aerosol synthesis; nickel; NI-BASED CATALYSTS; CARBON-DIOXIDE; HYDROGEN-PRODUCTION; SYNGAS PRODUCTION; MGO; PERFORMANCE; METAL; NANOPARTICLES; CONVERSION; EFFICIENT;
D O I
10.1021/acsami.1c02180
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
We introduce a flame-based aerosol process for producing supported non-noble metal nanocatalysts from inexpensive aqueous metal salt solutions, using catalysts for the dry reforming of methane (DRM) as a prototype. A flame-synthesized nickel-doped magnesia (MgO) nanocatalyst (NiMgO-F) was fully physicochemically characterized and tested in a flow reactor system, where it showed stable DRM activity from 500 to 800 degrees C. A kinetic study was conducted, and apparent activation energies were extracted for the temperature range of 500-650 degrees C. It was then compared with a Ni-decorated MgO nanopowder prepared by wet impregnation of (1) flame-synthesized MgO (NiMgO-FI) and (2) a commercial MgO nanopowder (NiMgO-CI) and with (3) a NiMgO catalyst prepared by co-precipitation (NiMgO-CP). NiMgO-F showed the highest catalytic activity per mass and per metallic surface area and was stable for continuous H-2 production at 700 degrees C for 50 h. Incorporation of potential promoters and co-catalysts was also demonstrated, but none showed significant performance improvement. More broadly, nanomaterials produced by this approach could be used as binary or multicomponent catalysts for numerous catalytic processes.
引用
收藏
页码:17618 / 17628
页数:11
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