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- W4205086952 abstract "The dual crisis of climate change and fossil fuel depletion has led to the search for a clean, environmentally sustainable, and globally available fuel which is also able to meet the surging energy demand. Hydrogen is one such element that could fulfill all these criteria. However, the major source of hydrogen generated today globally (approximately 95%) is fossil fuel and carbon oxides, including CO2, a greenhouse gas (GHG) are generated in the process. Other methods of H2 production from renewable sources such as water and biomass, although they are environmentally sustainable, are cost-intensive and/or operate at H2 production efficiencies lower than with methods based on conventional fossil fuel sources (60%–85%). Therefore, development of technologies for capture and storage of the CO2 by-product in the case of fossil fuel generated H2, upgrading the production efficiency of methods employing renewable sources for H2 production, and applying waste biorefinery concepts are the key challenges of the H2 fuel-based circular bioeconomy today. The present chapter gives a brief account of these concepts and their associated challenges." @default.
- W4205086952 created "2022-01-26" @default.
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- W4205086952 date "2022-01-01" @default.
- W4205086952 modified "2023-09-26" @default.
- W4205086952 title "Hydrogen production and carbon sequestration for biofuels and biomaterials" @default.
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- W4205086952 doi "https://doi.org/10.1016/b978-0-12-823500-3.00016-9" @default.
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