Panghal Vishal, Singh Asha, Hooda Vishwajit, Arora Dinesh, Bhateria Rachna, Kumar Sunil
Department of Environmental Sciences, Maharshi Dayanand University, Rohtak, 124001, Haryana, India.
Environ Sci Pollut Res Int. 2025 Jan;32(3):1139-1166. doi: 10.1007/s11356-024-35846-7. Epub 2024 Dec 31.
Constructed wetlands (CWs) are a cost-effective, efficient, and long-term wastewater treatment solution in various countries. The efficacy and performance of constructed wetlands are greatly influenced by the substrate. Recently, biochar as a substrate, along with sand and gravel in constructed wetlands, has gained importance due to its various physical, chemical, and biological properties. This review presents a detailed study of biochar as a substrate in CWs and the mechanism involved in efficiency enhancement in pollutant removal. Different methods for producing biochar using various types of biomasses are also addressed. The effect of biochar in removing pollutants like biological oxygen demand (BOD), chemical oxygen demand (COD), nitrogen, heavy metals, and non-conventional pollutants (microcystin, phenanthrene, antibiotics, etc.) are also discussed. Furthermore, post-harvest utilization of constructed wetland macrophytic biomass via bioenergy production, biochar formation, and biosorbent formation is explained. Various challenges and future prospects in biochar-amended constructed wetlands are also discussed. Biochar proved to be an effective substrate in the removal of pollutants and proved to be a promising technique for wastewater treatment, especially for developing countries where the cost of treatment is a constraint. Biochar is an effective substrate; further modification in biochar with the right plant combination for different wastewater needs to be explored in the future. Future researchers in the field of constructed wetlands will benefit from this review during the utilization of biochar in constructed wetlands and optimization of biochar characteristics, viz., quantity, size, preparation method, and other biochar modifications.
人工湿地是各国一种经济高效且长期的污水处理解决方案。人工湿地的功效和性能受基质的影响很大。近年来,生物炭作为一种基质,与人工湿地中的沙子和砾石一起,因其各种物理、化学和生物学特性而受到重视。本文综述详细研究了生物炭作为人工湿地基质以及其在提高污染物去除效率方面的作用机制。还探讨了使用各种生物质生产生物炭的不同方法。此外,还讨论了生物炭对去除生物需氧量(BOD)、化学需氧量(COD)、氮、重金属和非常规污染物(微囊藻毒素、菲、抗生素等)的影响。此外,还解释了通过生物能源生产、生物炭形成和生物吸附剂形成对人工湿地大型植物生物质进行收获后利用的情况。还讨论了生物炭改良人工湿地面临的各种挑战和未来前景。生物炭被证明是一种有效的污染物去除基质,也是一种有前景的废水处理技术,特别是对于那些处理成本受限的发展中国家。生物炭是一种有效的基质;未来需要探索针对不同废水需求,将生物炭与合适的植物组合进行进一步改性。人工湿地领域的未来研究人员在人工湿地中利用生物炭以及优化生物炭特性(即数量、尺寸、制备方法和其他生物炭改性)时将从本文综述中受益。