TY - JOUR
T1 - Recent advances in biochar-mediated mitigation of microplastics
T2 - A comprehensive review on removal mechanisms, toxicity alleviation strategies, and synergistic environmental impacts
AU - Luo, Hongwei
AU - Xu, Shizhe
AU - Zhang, Qianya
AU - He, Dongqin
AU - Sun, Jianqiang
AU - Xu, Juan
AU - Pan, Xiangliang
N1 - Publisher Copyright:
© 2026 Elsevier Ltd. All rights are reserved, including those for text and data mining, AI training, and similar technologies.
PY - 2026/5/15
Y1 - 2026/5/15
N2 - Biodegradable plastics are broadly applied in different industries because of their biodegradability, pliability and durability. The improper disposal of their waste has triggered serious plastic contamination, with microplastics (MPs) becoming ubiquitous pollutants in the environment worldwide, adversely impairing soil ecosystems, aquatic ecosystems, the atmosphere and human health. Biochar is considered a prospective candidate for MPs removal and toxicity reduction due to its high specific surface area, abundant porosity and widespread availability. This study overviews the interception, filtration, adsorption and degradation of MPs via biochar-mediated processes facilitated by its honeycomb-like porous structure. How biochar-MPs interactions influence environmental systems and the mechanisms behind are discussed, including hydrophobic interactions, π-π stacking, electrostatic attraction, microbial community restructuring and modulation of oxidative stress. Notably, biochar has been shown to remove more than 90% of MPs and mitigate the emission of greenhouse gases (e.g., CO2 and N2O) generated by MPs-induced microbial processes. Biochar-derived dissolved organic matter (BDOM) synergistically facilitates the photoaging of MPs by promoting oxidative reactions at surface-active sites. Collectively, this review consolidates current knowledge on biochar-mediated remediation of MPs, with a focus on their environmental fate, associated environmental impacts and potential human health risks. Building upon the proven efficacy of biochar, this review advocates for integrated strategies to mitigate MPs pollution and their cross-media effects to ultimately protect global environment.
AB - Biodegradable plastics are broadly applied in different industries because of their biodegradability, pliability and durability. The improper disposal of their waste has triggered serious plastic contamination, with microplastics (MPs) becoming ubiquitous pollutants in the environment worldwide, adversely impairing soil ecosystems, aquatic ecosystems, the atmosphere and human health. Biochar is considered a prospective candidate for MPs removal and toxicity reduction due to its high specific surface area, abundant porosity and widespread availability. This study overviews the interception, filtration, adsorption and degradation of MPs via biochar-mediated processes facilitated by its honeycomb-like porous structure. How biochar-MPs interactions influence environmental systems and the mechanisms behind are discussed, including hydrophobic interactions, π-π stacking, electrostatic attraction, microbial community restructuring and modulation of oxidative stress. Notably, biochar has been shown to remove more than 90% of MPs and mitigate the emission of greenhouse gases (e.g., CO2 and N2O) generated by MPs-induced microbial processes. Biochar-derived dissolved organic matter (BDOM) synergistically facilitates the photoaging of MPs by promoting oxidative reactions at surface-active sites. Collectively, this review consolidates current knowledge on biochar-mediated remediation of MPs, with a focus on their environmental fate, associated environmental impacts and potential human health risks. Building upon the proven efficacy of biochar, this review advocates for integrated strategies to mitigate MPs pollution and their cross-media effects to ultimately protect global environment.
KW - Biochar
KW - Environmental behavior
KW - Interaction mechanisms
KW - Microplastics (MPs)
KW - Toxicity alleviation
UR - https://www.scopus.com/pages/publications/105034339367
U2 - 10.1016/j.envpol.2026.127920
DO - 10.1016/j.envpol.2026.127920
M3 - 文献综述
C2 - 41791697
AN - SCOPUS:105034339367
SN - 0269-7491
VL - 397
JO - Environmental Pollution
JF - Environmental Pollution
M1 - 127920
ER -