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Life cycle assessment of integrated power-to-liquid e-gasoline production pathways using industrial CO2 and bio-hydrogen

delete2026-08-09
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R
Ratidzo Pauline Chibizhe
D
Denzel Christopher Makepa *
C
Chido Hermes Chihobo
DOI:10.1016/j.ecmx.2026.102206delete
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Abstract

Abstract

En 中文
• LCA of e-gasoline from molasses biohydrogen and captured industrial CO2. • Three PtL scenarios evaluated using all 18 ReCiPe 2016 midpoint impacts. • Green hydrogen reduced climate change impacts by 95% versus baseline. • Biohydrogen pathway increased land use and terrestrial ecotoxicity burdens. • PEM electrolysis raised water consumption and mineral scarcity impacts.
Keywords:
Power-to-liquid fuels
Life cycle assessment
E-gasoline synthesis
Dark fermentation
Industrial CO2 utilisation
E-fuels sustainability
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Journal

E
Energy Conversion and Management-X
IF:
7.6
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1.1K
Citations:
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