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February 2, 2026Ecotoxicology and Environmental Safety7 citationsOpen Access

Research progress on biochar-based photocatalytic materials for pollutant treatment: Structural regulation, electronic mechanisms, and engineering challenges

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ZWZhen WangQXQing XiangDZDaixiong Zhang

Key Points

  • The aim is to evaluate biochar-based photocatalytic materials for their effectiveness in treating environmental pollutants and to identify engineering challenges.
  • Systematic review of structural characteristics of biochar and regulation strategies
  • Analysis of biochar's roles in Z-scheme and S-scheme heterojunctions
  • Examination of photogenerated carrier dynamics and reactive oxygen species generation
  • Critical assessment of biochar composites' effectiveness in pollutant treatment
  • Discussion of engineering limitations and proposed strategies for development
  • Biochar materials effectively degrade organic pollutants and reduce heavy metal ions
  • Materials demonstrate high specific surface area and electrical conductivity
  • Identified challenges include raw material variability and limited mechanistic understanding
  • Proposed strategies for development emphasize green synthesis and data-driven optimization

Abstract

Biochar-based photocatalytic materials have shown broad application potential in environmental remediation, including the degradation of organic pollutants in aquatic systems, the reduction of heavy metal ions, and the purification of gaseous contaminants. These advantages stem from their high specific surface area, excellent electrical conductivity, and interfacial regulation capabilities. This review systematically summarizes the structural characteristics of biochar and its multiscale regulation strategies, with particular emphasis on its synergistic roles in the construction of Z-scheme and S-scheme heterojunctions, the regulation of photogenerated carrier dynamics, and the generation and transformation of reactive oxygen species (ROS). The practical performance of biochar-based composites in treating diverse pollutants is critically examined, followed by a comprehensive analysis of current challenges, including raw material variability, material stability, limited mechanistic understanding, insufficient engineering adaptability, and the absence of standardized performance evaluation frameworks. Based on these insights, this paper proposes a forward-looking development strategy centered on green synthesis and data-driven design optimization, offering theoretical guidance and technical pathways to accelerate the large-scale and sustainable application of biochar-based photocatalytic materials in complex environmental systems.

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Cite This Study

Wang et al. (2026) studied this question.

synapsesocial.com/papers/6980fe13c1c9540dea80fd34https://doi.org/10.1016/j.ecoenv.2026.119793
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