College of Resources and Environment, Hunan Agricultural University, Changsha 410128, China.
College of Resources and Environment, Hunan Agricultural University, Changsha 410128, China.
Chemosphere. 2018 Apr;197:165-180. doi: 10.1016/j.chemosphere.2017.12.193. Epub 2018 Jan 2.
Nowadays, agricultural contamination is becoming more and more serious due to the rapid growth of agricultural industry, which discharged antibiotics, pesticides or toxic metals into farmlands. A large number of researchers have applied biochar-based functional materials to the treatment of agricultural wastewater contamination. Meanwhile, biochar has also proved to be a very promising and effective technology in water purification field due to its various beneficial properties (e.g., cost effective, high specific surface area, and surface reactive groups). The focus of this review is to highlight the fabrication methods and application of biochar-based functional materials with the removal of different agricultural contaminants, and discuss the underlying mechanisms. However, the application of biochar-based functional materials is currently under its infancy, with the main hindrance is identified as the gap between laboratory scale and field application, immaturity of engineered biochar production technologies, and lack of quality standards. In order to fill these knowledge gaps, more efforts should be made to pay for the relevant research in future studies.
如今,随着农业产业的快速发展,农业污染问题日益严重,抗生素、农药或有毒金属被排放到农田中。大量研究人员将基于生物炭的功能材料应用于处理农业废水污染。同时,由于生物炭具有各种有益特性(例如,成本效益高、比表面积大、表面反应基团多),在水净化领域也被证明是一种非常有前途和有效的技术。本综述的重点是强调具有去除不同农业污染物功能的生物炭基功能材料的制备方法和应用,并讨论其潜在机制。然而,基于生物炭的功能材料的应用目前还处于起步阶段,主要的障碍是实验室规模和现场应用之间的差距、生物炭生产技术的不成熟以及缺乏质量标准。为了填补这些知识空白,未来的研究应该投入更多的相关研究。