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- W4308697139 abstract "Global population growth and the exponential rise in energy consumption have put immense strain on finite fossil fuel supplies and presented a danger to the environment. Waste may be converted into energy using sustainable biological method. Biohydrogen generation from lignocellulosic materials is a clean as well as environmentally friendly path for producing biofuels with a bright future. The advancement of biohydrogen advanced technologies has resulted in the emergence of new power generation, which is important for the long-term utilization of power. Due to the limited energy needs and cost involved, biohydrogen production has many benefits over photo-electrochemical or thermo-chemical methods. Although beneficial and favored, the hydrogen production from biomass and carbohydrate raw material has always been at the lab scale. The main aim of the article was to review the various biomass and biohydrogen from biomass. This paper also goes over the various methods for producing biohydrogen, including dark fermentation, photo-fermentation, combined dark and photo fermentation, bio-photolysis, and microbial electrolysis cells. Each form of production's methods, benefits and drawbacks, and variables affecting microbial electrolysis cell have been investigated. Based on the existing research, nanoparticles can play an essential role in strengthening this process in a sustainable basis, allowing for significant yields of biohydrogen to be achieved on a feasible scale. Due to this topic is still in its initial stages, further research is required to close the current gap in terms of practical applications and commercial viability. • Various sources and types of the plastic waste was discussed. • Occurrence and impact of plastic waste has been reviewed. • Different methods for the thermochemical conversion of plastic waste were elucidated. • Sustainable products from plastic waste were explored. • Circular Economy in handling of plastic waste were addressed." @default.
- W4308697139 created "2022-11-14" @default.
- W4308697139 creator A5024547255 @default.
- W4308697139 creator A5029662149 @default.
- W4308697139 creator A5049372903 @default.
- W4308697139 creator A5087968628 @default.
- W4308697139 date "2022-11-01" @default.
- W4308697139 modified "2023-10-03" @default.
- W4308697139 title "A critical review on Biohydrogen generation from biomass" @default.
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