Status of Catalyst Development for CO2 Hydrogenation to Platform Chemicals CH3OH and CO
Author:
Publisher
Springer Nature Singapore
Link
https://link.springer.com/content/pdf/10.1007/978-981-99-8822-8_4
Reference104 articles.
1. Tackett BM, Gomez E, Chen JG (2019) Net reduction of CO2 via its thermocatalytic and electrocatalytic transformation reactions in standard and hybrid processes. Nat Catal 2:381–386
2. Fernández-Torres MJ, Dednam W, Caballero JA (2022) Economic and environmental assessment of directly converting CO2 into a gasoline fuel. Energy Convers Manag 252:115115
3. Yarulina I, Chowdhury AD, Meirer F, Weckhuysen BM, Gascon J (2018) Recent trends and fundamental insights in the methanol-to-hydrocarbons process. Nat Catal 1:398–411
4. Riedel T et al (1999) Comparative study of Fischer–Tropsch synthesis with H2/CO and H2/CO2 syngas using Fe- and Co-based catalysts. Appl Catal A 186:201–213
5. Franke R, Selent D, Börner A (2012) Applied hydroformylation. Chem Rev 112:5675–5732
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