Harnessing recalcitrant lignocellulosic biomass for enhanced biohydrogen production: Recent advances, challenges, and future perspective DOI
Sameh S. Ali,

Rania Al-Tohamy,

Tamer Elsamahy

et al.

Biotechnology Advances, Journal Year: 2024, Volume and Issue: 72, P. 108344 - 108344

Published: March 21, 2024

Language: Английский

Biofuel production: exploring renewable energy solutions for a greener future DOI Creative Commons
R. El-Araby

Biotechnology for Biofuels and Bioproducts, Journal Year: 2024, Volume and Issue: 17(1)

Published: Oct. 15, 2024

Biofuel production has emerged as a leading contender in the quest for renewable energy solutions, offering promising path toward greener future. This comprehensive state-of-the-art review delves into current landscape of biofuel production, exploring its potential viable alternative to conventional fossil fuels. study extensively examines various feedstock options, encompassing diverse sources such plants, algae, and agricultural waste, investigates technological advancements driving processes. highlights environmental benefits biofuels, emphasizing their capacity significantly reduce greenhouse gas emissions compared those Additionally, this elucidates role biofuels enhancing security by decreasing reliance on finite fuel reserves, thereby mitigating vulnerabilities geopolitical tensions price fluctuations. The economic prospects associated with are also elucidated, job creation, rural development, additional revenue streams farmers landowners engaged cultivation. While highlighting promise addresses challenges considerations surrounding production. Potential issues land use competition, resource availability, sustainability implications critically evaluated. Responsible implementation, including proper land-use planning, management, adherence criteria, is emphasized critical long-term viability Moreover, underscores importance ongoing research development efforts aimed at efficiency, productivity, conversion Technological hold key increasing yields, reducing costs, improving overall sustainability. uniquely synthesizes latest across entire spectrum from selection end-use applications. It gaps providing analysis emerging technologies, metrics, pathways. Unlike previous reviews, work offers an integrated perspective interplay between innovation, impact, socio-economic factors holistic framework future policy directions energy.

Language: Английский

Citations

28

Hydrogen and the Global Energy Transition—Path to Sustainability and Adoption across All Economic Sectors DOI Creative Commons
Praveen Cheekatamarla

Energies, Journal Year: 2024, Volume and Issue: 17(4), P. 807 - 807

Published: Feb. 8, 2024

This perspective article delves into the critical role of hydrogen as a sustainable energy carrier in context ongoing global transition. Hydrogen, with its potential to decarbonize various sectors, has emerged key player achieving decarbonization and sustainability goals. provides an overview current state technology, production methods, applications across diverse industries. By exploring challenges opportunities associated integration, we aim shed light on pathways toward economy. Additionally, underscores need for collaborative efforts among policymakers, industries, researchers overcome existing hurdles unlock full transition low-carbon future. Through balanced analysis present landscape future prospects, this aims contribute valuable insights discourse surrounding hydrogen’s

Language: Английский

Citations

24

A review of hydrogen production and storage materials for efficient integrated hydrogen energy systems DOI Creative Commons
Feras Alasali, Mohammed I. Abuashour, Waleed Hammad

et al.

Energy Science & Engineering, Journal Year: 2024, Volume and Issue: 12(5), P. 1934 - 1968

Published: March 6, 2024

Abstract The rapidly growing global need for environmentally friendly energy solutions has inspired extensive research and development efforts aimed at harnessing the potential of hydrogen energy. Hydrogen, with its diverse applications relatively straightforward acquisition, is viewed as a promising carrier capable tackling pressing issues, such carbon emissions reduction storage. This study conducts preliminary investigation into effective generation storage systems, encompassing methods like water electrolysis, biomass reforming, solar‐driven processes. Specifically, focuses on assessing nanostructured catalysts innovative materials to enhance productivity versatility systems. Additionally, utilization novel not only improves capacity safety but also opens up possibilities inventive applications, including on‐demand release efficient transportation. Furthermore, critical factors catalyst design, material engineering, system integration, technoeconomic viability are examined identify challenges chart paths future advancements. emphasizes importance fostering interdisciplinary collaborations advance technologies contribute sustainable future.

Language: Английский

Citations

23

Visible light-activated S-scheme CuAl2O4/Bi2WO6 heterostructure for sustainable and highly efficient H2 generation DOI
Soha M. Albukhari, Tamer M. Khedr, Reda M. Mohamed

et al.

Materials Science in Semiconductor Processing, Journal Year: 2024, Volume and Issue: 180, P. 108544 - 108544

Published: May 22, 2024

Language: Английский

Citations

22

Harnessing recalcitrant lignocellulosic biomass for enhanced biohydrogen production: Recent advances, challenges, and future perspective DOI
Sameh S. Ali,

Rania Al-Tohamy,

Tamer Elsamahy

et al.

Biotechnology Advances, Journal Year: 2024, Volume and Issue: 72, P. 108344 - 108344

Published: March 21, 2024

Language: Английский

Citations

20