Recent Advances in Photocatalytic Oxidation of Methane to Methanol

被引:19
|
作者
Yuniar, Gita [1 ]
Saputera, Wibawa Hendra [1 ,2 ,3 ]
Sasongko, Dwiwahju [1 ,3 ]
Mukti, Rino R. [2 ,4 ,5 ]
Rizkiana, Jenny [1 ,2 ]
Devianto, Hary [1 ,3 ]
机构
[1] Inst Teknol Bandung, Fac Ind Technol, Dept Chem Engn, Res Grp Energy & Chem Engn Proc Syst, Jl Ganesha 10, Bandung 40132, Indonesia
[2] Inst Teknol Bandung, Ctr Catalysis & React Engn, Jl Ganesha 10, Bandung 40132, Indonesia
[3] Inst Teknol Bandung, Res Ctr New & Renewable Energy, Jl Ganesha 10, Bandung 40132, Indonesia
[4] Inst Teknol Bandung, Fac Math & Nat Sci, Div Inorgan & Phys Chem, Jl Ganesha 10, Bandung 40132, Indonesia
[5] Inst Teknol Bandung, Res Ctr Nanosci & Nanotechnol, Jl Ganesha 10, Bandung 40132, Indonesia
来源
MOLECULES | 2022年 / 27卷 / 17期
关键词
photocatalysis; methane oxidation; methanol; light; catalyst; ORDERED MESOPOROUS TIO2; REACTIVE; 001; FACETS; ZNO NANOPARTICLES; VISIBLE-LIGHT; ANATASE TIO2; SURFACE HETEROJUNCTION; CATALYTIC CONVERSION; SELECTIVE OXIDATION; CO2; REDUCTION; ZINC-OXIDE;
D O I
10.3390/molecules27175496
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Methane is one of the promising alternatives to non-renewable petroleum resources since it can be transformed into added-value hydrocarbon feedstocks through suitable reactions. The conversion of methane to methanol with a higher chemical value has recently attracted much attention. The selective oxidation of methane to methanol is often considered a "holy grail" reaction in catalysis. However, methanol production through the thermal catalytic process is thermodynamically and economically unfavorable due to its high energy consumption, low catalyst stability, and complex reactor maintenance. Photocatalytic technology offers great potential to carry out unfavorable reactions under mild conditions. Many in-depth studies have been carried out on the photocatalytic conversion of methane to methanol. This review will comprehensively provide recent progress in the photocatalytic oxidation of methane to methanol based on materials and engineering perspectives. Several aspects are considered, such as the type of semiconductor-based photocatalyst (tungsten, titania, zinc, etc.), structure modification of photocatalyst (doping, heterojunction, surface modification, crystal facet re-arrangement, and electron scavenger), factors affecting the reaction process (physiochemical characteristic of photocatalyst, operational condition, and reactor configuration), and briefly proposed reaction mechanism. Analysis of existing challenges and recommendations for the future development of photocatalytic technology for methane to methanol conversion is also highlighted.
引用
收藏
页数:45
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