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March 3, 2026Energy Engineering1 citationsOpen Access

Photoreforming of Organic Waste into Hydrogen: Catalyst Design, Feedstock Valorization, and Future Perspectives

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MOMirna OmarSOSarah OmarKSKamaruzzaman Sopian

Key Points

  • Hydrogen is produced through photoreforming, highlighting the potential for dual waste valorization and clean energy generation.
  • Key photocatalyst design features include suitable band edge positions and the ability to utilize visible light for improved efficiency.
  • By analyzing various waste-derived feedstocks such as biomass and plastics, specific challenges and pretreatment strategies are outlined.
  • Future advancements in photocatalyst engineering and reactor design are essential to overcome current limitations and enhance scalability.

Abstract

Photoreforming is an emerging photocatalytic process that converts organic waste into hydrogen H2 using solar energy, offering a dual solution for waste valorization and sustainable fuel production. This review comprehensively examines the fundamental mechanisms of photoreforming, emphasizing the critical role of photocatalyst design in optimizing hydrogen evolution. Key criteria for effective photocatalysts including suitable band edge positions, broad spectrum solar absorption, and photostability are systematically analyzed alongside advances in heterojunction engineering and defect modulation. The review further explores diverse waste-derived feedstocks, such as biomass: alcohols, saccharides, lignin and plastics: PET, PLA, polyolefins, highlighting substrate, specific challenges and pretreatment strategies. Despite progress, challenges like catalyst deactivation, limited visible-light utilization, and scalability persist. Future directions advocate for robust photocatalyst engineering, mechanistic insights into charge dynamics, and scalable reactor designs to realize photoreforming’s potential as a sustainable hydrogen production technology.

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Cite This Study

Omar et al. (2026) studied this question.

synapsesocial.com/papers/69a75bc2c6e9836116a23b10https://doi.org/10.32604/ee.2026.072583
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