Baolin Hou
Dalian Institute of Chemical Physics
38 Papers
46 Citations
Baolin Hou is an academic researcher from Dalian Institute of Chemical Physics. The author has contributed to research in topics: Catalysis & Mass transfer. The author has an hindex of 16, co-authored 34 publications. Previous affiliations of Baolin Hou include Chinese Academy of Sciences.
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Papers
Catalytic carbon dioxide hydrogenation to methane: A review of recent studies
TL;DR: A comprehensive overview of recent publications on CO2 methanation can be found in this paper, where various aspects on this reaction system are described in detail, such as thermodynamic considerations, catalyst innovations, the influence of reaction conditions, overall catalytic performance, and reaction mechanism.
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Characterization of aerogel Ni/Al2O3 catalysts and investigation on their stability for CH4-CO2 reforming in a fluidized bed
TL;DR: In this paper, the performance of nano-sized aerogel Ni/Al2O3 catalysts was investigated in a CH4-CO2 reforming in a fluidized bed reactor.
197
Influence of pretreatment temperature on catalytic performance of rutile TiO2-supported ruthenium catalyst in CO2 methanation
Jinghua Xu,Jinghua Xu,Xiong Su,Hongmin Duan,Baolin Hou,Qingquan Lin,Xiaoyan Liu,Xiaoli Pan,Guangxian Pei,Haoran Geng,Yanqiang Huang,Tao Zhang +11 more
TL;DR: In this paper, the authors investigated catalytic hydrogenation of CO2 to methane over Ru/rutile TiO2, focusing on the influence of the pretreatment temperature on the activity.
152
Study on Kinetics of Iron Oxide Reduction by Hydrogen
TL;DR: In this paper, the intrinsic kinetics of iron oxide reduction by hydrogen were established and the newly established kinetic models were validated by the experimental data, in order to distinguish the reduction of Fe3O4 to FeO from that of FeO to Fe, the reaction temperature in the experiment was set to be greater than 570 degrees C.
131
Making JP-10 Superfuel Affordable with a Lignocellulosic Platform Compound.
TL;DR: A preliminary economic analysis indicates that the price of bio-JP-10 fuel can be greatly decreased from ~7,091 US$/ton (by fossil route) to less than 5,600 US $/ton using the new strategy reported.
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