Key Laboratory of Coarse Cereal Processing, Ministry of Agriculture and Rural Affairs, Sichuan Engineering & Technology Research Center of Coarse Cereal Industrialization, School of Food and Biological Engineering, Chengdu University, Chengdu, Sichuan, China.
State Environmental Protection Key Laboratory of Food Chain Pollution Control, School of Ecology and Environment, Beijing Technology and Business University, Beijing, 100048, China.
Environ Pollut. 2022 Nov 15;313:120184. doi: 10.1016/j.envpol.2022.120184. Epub 2022 Sep 13.
Soil pollution has become a real threat to mankind in the 21st century. On the one hand, soil pollution has reduced the world's arable land area, resulting in the contradiction between the world's population expansion and the shortage of arable land. On the other hand, soil pollution has seriously disrupted the soil ecological balance and significantly affected the biodiversity in the soil. Soil pollutants may further affect the survival, reproduction and health of humans and other organisms through the food chain. Several studies have suggested that biochar has the potential to act as a soil conditioner and to promote crop growth, and is widely used to remove environmental pollutants. Biochar modified by physical, chemical, and biological methods will affect the treatment efficiency of soil pollution, soil quality, soil ecology and interaction with organisms, especially with microorganisms. Therefore, in this review, we summarized several main biochar modification methods and the mechanisms of the modification and introduced the effects of the application of modified biochar to soil pollutant control, soil ecological regulation and soil nutrient regulation. We also introduced some case studies for the development of modified biochars suitable for different soil conditions, which plays a guiding role in the future development and application of modified biochar. In general, this review provides a reference for the green treatment of different soil pollutants by modified biochar and provides data support for the sustainable development of agriculture.
土壤污染已成为 21 世纪人类面临的严峻挑战之一。一方面,土壤污染导致世界可耕地面积减少,加剧了世界人口膨胀与耕地短缺的矛盾;另一方面,土壤污染严重破坏了土壤生态平衡,显著影响土壤生物多样性。土壤污染物可能通过食物链进一步影响人类和其他生物体的生存、繁殖和健康。一些研究表明,生物炭具有作为土壤改良剂和促进作物生长的潜力,并广泛用于去除环境污染物。物理、化学和生物方法改性的生物炭会影响土壤污染的处理效率、土壤质量、土壤生态以及与生物的相互作用,尤其是与微生物的相互作用。因此,在本综述中,我们总结了几种主要的生物炭改性方法及其改性机制,并介绍了改性生物炭在土壤污染物控制、土壤生态调节和土壤养分调节中的应用效果。我们还介绍了一些适合不同土壤条件的改性生物炭的案例研究,为改性生物炭的未来发展和应用提供了指导。总的来说,本综述为改性生物炭对不同土壤污染物的绿色处理提供了参考,为农业的可持续发展提供了数据支持。