Department of Environmental Science and Engineering, College of Architecture and Environment, Sichuan University, No. 24 South Section 1, Yihuan Road, Chengdu, 610065, China.
Institute of New Energy and Low Carbon Technology, Sichuan University, No. 24 South Section 1, Yihuan Road, Chengdu, 610065, People's Republic of China.
Environ Sci Pollut Res Int. 2020 Jul;27(19):24495-24506. doi: 10.1007/s11356-020-08458-0. Epub 2020 Apr 19.
Lead (Pb) pollution in soil has become one of the most serious environmental problems, and it is more urgent in areas where acid rain is prevalent. Curing agents to solidify heavy metals in soil are efficiently applied to remediate Pb-contaminated soil. In this study, we prepared biochar, biochar loaded with nano-zero-valent iron (BC-nZVI), and biochar loaded with nano-ferroferric oxide (BC-nFeO), and investigated the Pb-immobilizing efficiency in contaminated soil in the condition of acid rain by them. The results showed that 8 g/kg is the best added dosage of curing agents for immobilizing Pb, which of the immobilizing efficiency of Pb were 19% (biochar), 42% (BC-nZVI), and 23% (BC-nFeO), respectively. Besides, the curing agents had positive effects on immobilizing Pb under acid rain condition, which could significantly reduce the content of acid extractable Pb, especially BC-nZVI (1.5%). And the immobilization efficiency of modified biochar was better than biochar, especially BC-nZVI (66%). BC-nZVI showed a more ideal effect on decreasing the leaching amount of Pb in the condition of acid rain. The results highlighted that biochar-loaded nano-iron-based materials, especially BC-nZVI, was promising and environmentally friendly materials for remediating Pb-contaminated soils, which provided scientific reference and theoretical basis for the treatment of Pb-contaminated soils around industrial sites particularly in acid rain area.
土壤中的铅污染已成为最严重的环境问题之一,在酸雨盛行的地区,情况更为紧迫。固化土壤中重金属的固化剂被有效地应用于修复受铅污染的土壤。在本研究中,我们制备了生物炭、负载纳米零价铁的生物炭(BC-nZVI)和负载纳米氧化铁的生物炭(BC-nFeO),并研究了它们在酸雨条件下对污染土壤中铅的固定效率。结果表明,8 g/kg 是固定铅的最佳固化剂添加量,其固定效率分别为 19%(生物炭)、42%(BC-nZVI)和 23%(BC-nFeO)。此外,固化剂在酸雨条件下对固定铅有积极作用,可显著降低酸可提取铅的含量,尤其是 BC-nZVI(1.5%)。改性生物炭的固定效率优于生物炭,尤其是 BC-nZVI(66%)。BC-nZVI 在减少酸雨条件下铅的浸出量方面表现出更理想的效果。结果表明,负载纳米铁基材料的生物炭,尤其是 BC-nZVI,是一种很有前景且环保的修复受铅污染土壤的材料,为工业场地周边特别是酸雨地区受铅污染土壤的处理提供了科学参考和理论依据。