Verma Yaksha, Iqbal Jibran, Naushad Mu, Bhaskaralingam Aishwarya, Kumar Amit, Dhiman Pooja, Lai Chin Wei, Sharma Gaurav
International Research Centre of Nanotechnology for Himalayan Sustainability (IRCNHS), Shoolini University of Biotechnology and Management Sciences, India.
College of Natural and Health Sciences, Zayed University, Abu Dhabi, 144534, United Arab Emirates.
J Environ Manage. 2025 Feb;374:123976. doi: 10.1016/j.jenvman.2024.123976. Epub 2025 Jan 9.
The global shift towards renewable energy sources highlights the urgent need for sustainable hydrogen production, with photo-fermentative hydrogen evolution (PFHP) emerging as a promising solution. This review addresses the challenges and opportunities in optimizing PFHP, specifically the role of photosynthetic bacteria (PBS) in utilizing sunlight for hydrogen production. We focus on the key factors influencing PFHP, including light intensity, reactor design, substrate selection, carbon-to-nitrogen ratio, metal ions, temperature, pH, charge transfer and genetic engineering. Additionally, we explore recent advances in techniques such as immobilization, nanoparticles, biochar, and co-culturing to enhance hydrogen production efficiency. By synthesizing the latest research, this review provides new insights into improving PFHP processes, offering strategies for more efficient biohydrogen production. This work contributes to the development of sustainable hydrogen production technologies, advancing the potential for biohydrogen as a clean energy source.
全球向可再生能源的转变凸显了可持续制氢的迫切需求,光合发酵产氢(PFHP)成为一种有前景的解决方案。本综述探讨了优化PFHP过程中的挑战与机遇,特别是光合细菌(PBS)利用阳光产氢的作用。我们重点关注影响PFHP的关键因素,包括光照强度、反应器设计、底物选择、碳氮比、金属离子、温度、pH值、电荷转移和基因工程。此外,我们还探索了固定化、纳米颗粒、生物炭和共培养等技术的最新进展,以提高产氢效率。通过综合最新研究,本综述为改进PFHP工艺提供了新见解,为更高效的生物制氢提供了策略。这项工作有助于可持续制氢技术的发展,提升生物氢作为清洁能源的潜力。