Meta-analysis and empirical research on the effectiveness of biochar in remediating tetracyclines pollution in water bodies
作者:Na Li, Xiaochen Zhu, Yahui Miao, Zhenyao Wang, Carol Sze Ki Lin, Chong Li · 发表于:Bioresource Technology · 年份:2025 · DOI:10.1016/j.biortech.2025.132917 · 被引用次数:7 · 研究领域:Pharmaceutical and Antibiotic Environmental Impacts、Environmental remediation with nanomaterials、Constructed Wetlands for Wastewater Treatment
• First empirical research to validate the results of meta -analysis. • Meta-analysis identified and predicted optimal conditions for biochar preparation. • Adsorption capacity peaked at 637.71 mg/g, the highest value ever reported. • Offers a new strategy for customised biochar preparation with specific functions. The rapid increase in tetracycline pollution from intensive aquaculture necessitates urgent action to reduce tetracycline levels in water bodies, as its stability promotes antibiotic resistance, disrupts aquatic ecosystems, and poses health risks to humans through bioaccumulation. Current treatment methods like ozone oxidation are often costly or ineffective. Biochar, recognised for its cost-effectiveness and adsorption capacity, provides a promising solution. Through a meta -analysis of 110 research articles integrating 537 observations focused on plant-based biomass, this study identified the following: 1) key factors influencing biochar’s adsorption of tetracyclines include preparation processes and environmental conditions; 2) higher pyrolysis temperatures can boost adsorption capacity, especially above 600℃; 3) pre-treatment using acids or salts is more effective than other modifiers. Additionally, a linear mixed-effects model predicted that specific pyrolysis temperatures combined with acid or salt modification would produce biochar with superior performance. Verification experiments with pine, poplar, and straw from wheat, rice, and corn modified with salts ...