Wang Shao-Po, Bai Long-Xiao, Liu Ling-Jie, Zhong Yuan, Bi Yan-Meng, Qiu Chun-Sheng, Yu Jing-Jie, Meng Fan-Sheng, Wang Si-Yu
School of Environmental and Municipal Engineering, Tianjin Chengjian University, Tianjin 300384, China.
Tianjin Key Laboratory of Aquatic Science and Technology, Tianjin 300192, China.
Huan Jing Ke Xue. 2025 Jan 8;46(1):263-271. doi: 10.13227/j.hjkx.202312234.
Constructed wetlands, serving as artificially simulated natural wetland water treatment systems, have emerged as effective technologies for ecologically treating wastewater. Biochar, a carbon material derived from biomass waste pyrolysis, possesses significant specific surface area, abundant functional groups, and high stability. The integration of biochar into artificial wetland systems enhances the removal efficiency of pollutants. This review explores various types of biochar utilized in artificial wetland technology and their impacts on pollutants. Moreover, the modification methods applied to biochar in artificial wetlands are summarized. The mechanisms underlying pollutant removal by biochar in artificial wetlands are elucidated. Concluding with an outlook on future research directions for biochar in artificial wetlands, this review aims to offer theoretical guidance for both research and engineering applications of biochar in this field.
人工湿地作为人工模拟的自然湿地水处理系统,已成为生态处理废水的有效技术。生物炭是一种由生物质废物热解产生的碳材料,具有显著的比表面积、丰富的官能团和高稳定性。将生物炭整合到人工湿地系统中可提高污染物的去除效率。本文综述了人工湿地技术中使用的各种类型生物炭及其对污染物的影响。此外,还总结了人工湿地中生物炭的改性方法。阐明了生物炭在人工湿地中去除污染物的机制。本文最后展望了生物炭在人工湿地中的未来研究方向,旨在为该领域生物炭的研究和工程应用提供理论指导。