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March 12, 2026Molecules2 citationsOpen Access

Unlocking the Potential of Macroalgae: Innovative Pretreatment Strategies for Efficient Biorefinery

XGXiucheng GuYZYing Zhou

Key Points

  • This review aims to evaluate pretreatment strategies for improving the bioconversion of macroalgae into bioenergy and biochemicals.
  • Integrated analysis of physical, chemical, biological, and combined pretreatment methods
  • Assessment of mechanisms, effectiveness, and limitations of each pretreatment approach
  • Exploration of genetic editing tools like CRISPR-Cas for enhancing macroalgal traits
  • Discussion of future technological innovations in macroalgal biorefinery
  • Identified various effective pretreatment strategies to deconstruct macroalgal cell walls
  • Showed the potential to convert pretreated biomass into bioethanol, organic acids, and polyhydroxyalkanoates
  • Highlighted the role of genetic modifications in reducing recalcitrance and improving carbohydrate yields
  • Forecasted advancements toward industrial-scale macroalgal biorefinery applications

Abstract

Macroalgae represent a promising third-generation feedstock for biorefinery due to their high biomass productivity and non-reliance on arable land. However, their complex cell wall structure poses a significant barrier to efficient bioconversion. This review integrates current pretreatment methods, including physical, chemical, biological, and combined approaches, with a focus on their mechanisms, effectiveness, and limitations. Furthermore, it explores the conversion of pretreated macroalgal biomass into bioenergy and biochemicals, such as bioethanol, organic acid and polyhydroxyalkanoate, via microbial fermentation. The review also examines the application of genetic editing tools (e.g., CRISPR-Cas systems) for the targeted modification of macroalgae to improve their inherent characteristics for biorefinery, such as reducing biomass recalcitrance or increasing the content of target carbohydrates. Finally, future perspectives on technological innovations and integrated industrial chains of macroalgal biorefinery are discussed. This review serves as a systematic reference for deepening the understanding of macroalgal cell wall deconstruction processes and supports the development of efficient and environmentally benign pretreatment strategies to advance macroalgal biorefinery toward industrialization.

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Cite This Study

Gu et al. (2026) studied this question.

synapsesocial.com/papers/69b2586696eeacc4fcec801ehttps://doi.org/10.3390/molecules31050909
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