Engineering Research Center for Nanomaterials, Henan University, Kaifeng, 475004, China; Engineering Research Center for Nanomaterials Co. Ltd., Henan University, Jiyuan, 459000, PR China.
Key Laboratory for Monitor and Remediation of Heavy Metal Polluted Soils of Henan Province, Jiyuan, 459000, China.
Environ Pollut. 2021 Jul 1;280:116879. doi: 10.1016/j.envpol.2021.116879. Epub 2021 Mar 9.
Heavy metal contamination has been threatening the health of human beings. To decrease the bio-toxicity of heavy metals, a thiol-functionalized nano-silica (SiO-SH) was adopted to remediate the soil contaminated by lead (Pb), cadmium (Cd) and copper (Cu). The remediation effect of SiO-SH on contaminated soils was investigated by the uptake of the heavy metals into lettuce and pakchoi in pot experiment. The bio-toxicity of the SiO-SH was evaluated, and its immobilization mechanisms were proposed by the fraction distribution of Cd, Pb and Cu. It was found that the SiO-SH can significantly reduce the uptake of Cd, Pb, Cu into pakchoi by 92.02%, 68.03%, 76.34% and into lettuce by 89.81%, 43.41%, 5.76%, respectively. The chemical species analyses of Cd, Pb, Cu indicate SiO-SH can transform the heavy metal in acid soluble states into reducible fraction and oxidizable fraction, thereby inhibiting the extraction of heavy metals into soil solution. The concentrations of microbial biomass carbon, organic matter, and cation exchange capacity of the soil increased while the soil bulk density decreased after remediation. Those changes demonstrate that SiO-SH not only has no bio-toxic impact on the soil environment but also improves the soil environment, which proves the prepared SiO-SH is environmental-friendly. The SiO-SH could be a promising amendment for heavy metal contaminated soils.
重金属污染一直威胁着人类的健康。为了降低重金属的生物毒性,采用巯基功能化纳米二氧化硅(SiO-SH)来修复受铅(Pb)、镉(Cd)和铜(Cu)污染的土壤。通过盆栽实验研究了 SiO-SH 对污染土壤中重金属的吸收情况,考察了 SiO-SH 对污染土壤的修复效果。通过对 Cd、Pb 和 Cu 的赋存形态分布,评价了 SiO-SH 的生物毒性,并提出了其固定机制。结果表明,SiO-SH 可显著降低小白菜和生菜对 Cd、Pb、Cu 的吸收,分别降低 92.02%、68.03%、76.34%和 89.81%、43.41%、5.76%。Cd、Pb、Cu 的化学形态分析表明,SiO-SH 可以将重金属从可酸溶态转化为可还原态和可氧化态,从而抑制重金属向土壤溶液中的提取。修复后,土壤微生物生物量碳、有机质和阳离子交换容量增加,土壤容重降低。这些变化表明,SiO-SH 不仅对土壤环境没有生物毒性影响,而且还改善了土壤环境,证明了所制备的 SiO-SH 是环保的。SiO-SH 可能是一种很有前途的重金属污染土壤修复剂。