Green fuel from coal via Fischer–Tropsch process: scenario of optimal condition of process and modelling
Author:
Publisher
Springer Science and Business Media LLC
Subject
Energy Engineering and Power Technology,Geotechnical Engineering and Engineering Geology
Link
http://link.springer.com/article/10.1007/s40789-018-0204-7/fulltext.html
Reference30 articles.
1. Abelló S, Montané D (2011) Exploring iron-based multifunctional catalysts for Fischer–Tropsch synthesis: a review. ChemSusChem 4:1538–1556
2. Aitken ML, Loughlin DH, Dodder RS, Yelverton WH (2016) Economic and environmental evaluation of coal-and-biomass-to-liquids-and-electricity plants equipped with carbon capture and storage. Clean Technol Environ Policy 18:573–581
3. Ayodele BV, Khan MR, Nooruddin SS, Cheng CK (2017) Modelling and optimization of syngas production by methane dry reforming over samarium oxide supported cobalt catalyst: response surface methodology and artificial neural networks approach. Clean Technol Environ Policy 19:1181–1193
4. Bukur DB, Sivaraj C (2002) Supported iron catalysts for slurry phase Fischer–Tropsch synthesis. Appl Catal A 231:201–214
5. Bukur DB, Lang X, Akgerman A, Feng Z (1997) Effect of process conditions on olefin selectivity during conventional and supercritical Fischer–Tropsch synthesis. Ind Eng Chem Res 36:2580–2587
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