Sep 2026· Nanomaterials and Energy· 0 citations· 118 references
Abstract
Microalgae are promising renewable resources for sustainable hydrogen production, offering a pathway towards carbon-neutral energy systems and supporting the Sustainable Development Goals (SDGs). Biohydrogen production occurs through hydrogenase- and nitrogenase-mediated pathways, including direct and indirect biophotolysis, photofermentation and dark fermentation. In Chlamydomonas reinhardtii, the [FeFe]-hydrogenase HydA1 contributes approximately 75% of hydrogen evolution under anaerobic conditions, highlighting the importance of enzymatic regulation. This review examines the biological mechanisms and technological advances governing microalgal biohydrogen production, with particular emphasis on advanced bioreactor systems that improve light utilisation, gas exchange and reactor performance. Recent developments, including genetic engineering, microalgae-bacterial consortia and nanomaterial-assisted approaches, are discussed for their role in enhancing hydrogen productivity and process stability. Oxygen-tolerant HYDA variants in Chlorella sp. achieved up to 30-fold higher hydrogen production than wild-type strains, while plasma-generated mutants of C. reinhardtii exhibited 2.7–5.2-fold increases in yield. The economic feasibility, sustainability significance, SDG contributions and scale-up challenges associated with commercially viable microalgal biohydrogen production systems are also highlighted.
Dark fermentation is the conversion of various biomass wastes into biohydrogen. It occurs in the absence of light. The purpose of this review is to provide the latest advances in biohydrogen production via dark fermentation, focusing on feedstock characteristics, microbial community dynamics, and approaches to system...
Tarekegn Limore Binchebo, S. Narra, V. Ancha et al.· Frontiers in Energy Research· 1 citation
The increasing global demand for sustainable energy has intensified interest in bioethanol as a renewable alternative to fossil fuels. While first- and second-generation bioethanol technologies have advanced considerably, challenges related to production cost, efficiency, and sustainability remain. Filamentous fungi ha...
Mona Fatin Syazwanee Mohamed Ghazali, M. Mustafa· Biomass· 0 citations
Microalgae represent a crucial, multifunctional microbial cell factory platform for renewable energy and climate change mitigation. Their notably high lipid content (often exceeding 70% DCW) and rapid growth rates, which significantly surpass those of traditional terrestrial crops, making them an ideal feedstock for di...
Rehab H. Mahmoud, Hassan M. M. Mustafa, I. Kamika et al.· Microbial Cell Factories· 0 citations
The study explores advancements in bioprocess engineering, metabolic regulation, and novel extraction techniques to enhance astaxanthin yield while minimizing resource inputs, and the valorization of residual biomass post-extraction for sustainable fish feed and/or biofuel development is examined, offering a circular a...
A. Patel· Systems Microbiology and Bio...· 0 citations
The current state of photobiological H2 production is reviewed, focusing on mechanistic challenges, photobioreactor design, substrate utilisation, and immobilisation techniques, which is expected to play a crucial role in advancing photobiological H2 production towards large-scale implementation.
E. Touloupakis, Cecilia Faraloni, R. Zampieri· Hydrogen· 0 citations
Syngas fermentation offers a promising route for biological hydrogen (H2) production, yet industrial application is restrained by low yields and limited understanding of nutrient requirements in natural microbial consortia. This study investigated the macro- and micronutrient roles influencing carbon monoxide (CO)-to...
Alvaro dos Santos, Konstantinos Chandolias, M. Taherzadeh· ACS Sustainable Chemistry &a...· 0 citations
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