Research Progress in Catalytic Total Oxidation of Methane
Author:
Publisher
Shanghai Institute of Ceramics
Subject
Inorganic Chemistry,General Materials Science
Reference72 articles.
1. SONG H, MENG X, WANG Z J, et al. Solar-energy-mediated methane conversion. Joule, 2019, 3(7): 1606.
2. NEWTON M A, KNORPP A J, SUSHKEVICH V L, et al. Active sites and mechanisms in the direct conversion of methane to methanol using Cu in zeolitic hosts: a critical examination. Chemical Society Reviews, 2020, 49(5): 1449.
3. SCHWACH P, PAN X, BAO X. Direct conversion of methane to value-added chemicals over heterogeneous catalysts: challenges and prospects. Chemical Reviews, 2017, 117(13): 8497.
4. VOOSE P. Ominous feedback loop may be accelerating methane emissions. Science, 2022, 377(6603): 250.
5. PENG S, LIN X, THOMPSON R L, et al. Wetland emission and atmospheric sink changes explain methane growth in 2020. Nature, 2022, 612(7940): 477.
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