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Novel Heterogeneous Catalysts for CO2 Hydrogenation to Liquid Fuels
Author(s) -
Peng Gao,
Lina Zhang,
Shenggang Li,
Zixuan Zhou,
Yuhan Sun
Publication year - 2020
Publication title -
acs central science
Language(s) - Uncategorized
Resource type - Journals
SCImago Journal Rank - 4.893
H-Index - 76
eISSN - 2374-7951
pISSN - 2374-7943
DOI - 10.1021/acscentsci.0c00976
Subject(s) - methanol , catalysis , gasoline , bifunctional , carbon monoxide , diesel fuel , renewable energy , fossil fuel , synthetic fuel , jet fuel , chemistry , chemical engineering , renewable fuels , materials science , organic chemistry , waste management , engineering , electrical engineering
Carbon dioxide (CO 2 ) hydrogenation to liquid fuels including gasoline, jet fuel, diesel, methanol, ethanol, and other higher alcohols via heterogeneous catalysis, using renewable energy, not only effectively alleviates environmental problems caused by massive CO 2 emissions, but also reduces our excessive dependence on fossil fuels. In this Outlook, we review the latest development in the design of novel and very promising heterogeneous catalysts for direct CO 2 hydrogenation to methanol, liquid hydrocarbons, and higher alcohols. Compared with methanol production, the synthesis of products with two or more carbons (C 2+ ) faces greater challenges. Highly efficient synthesis of C 2+ products from CO 2 hydrogenation can be achieved by a reaction coupling strategy that first converts CO 2 to carbon monoxide or methanol and then conducts a C-C coupling reaction over a bifunctional/multifunctional catalyst. Apart from the catalytic performance, unique catalyst design ideas, and structure-performance relationship, we also discuss current challenges in catalyst development and perspectives for industrial applications.

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