School of Metallurgy and Environment, Central South University, Changsha, 410083, PR China.
School of Metallurgy and Environment, Central South University, Changsha, 410083, PR China; Chinese National Engineering Research Centre for Control & Treatment of Heavy Metal Pollution, Changsha, 410083, PR China.
Chemosphere. 2022 Nov;306:135552. doi: 10.1016/j.chemosphere.2022.135552. Epub 2022 Jun 29.
The contamination of soils by mercury (Hg) seriously threatens the local ecological environment and public health. S-functionalized amendments are common remediation technology, yet, Hg re-activation often occurs in the commonly used immobilization remediation by S-functionalized amendments, resulting in an unsatisfactory remediation effect. In this study, a novel FeS-Se functionalized biochar composite (FeS-Se-BC) amendment was prepared and applied for the efficient remediation of Hg-polluted soil. An immobilization efficiency of 99.62% and 99.22% for HO-extractable Hg and TCLP solution-extractable Hg was achieved with the application of FeS-Se-BC after 180 d. The analyses of XPS, Hg-TPD, SEM-EDS demonstrated that excellent remediation performance by FeS-Se-BC resulted from the synergistic effect of FeS and Se to form HgS and HgSe concurrently. In comparison to the treatments of biochar and FeS-functionalized biochar (FeS-BC), FeS-Se-BC promoted the transformation of exchangeable, carbonate-bound, and Fe-Mn oxides-bound Hg fractions into organic material-bound, and residual fractions, effectively reducing the risk of Hg-contaminated soil from a highly dangerous level to a low risk. Furthermore, the introduction of Se clearly inhibited the re-activation of Hg and reduced the release of Hg by 81.12% compared to FeS-BC when the ratio of S to Hg was 5: 1 due to the formation of extremely stable HgSe. These results suggest that FeS-Se-BC has good potential for remediation of Hg-polluted soils which provides a new inhibitory idea for Hg re-activation after immobilization.
汞(Hg)污染土壤严重威胁着当地的生态环境和公众健康。S 功能化修复剂是常用的修复技术,但在常用的 S 功能化修复剂固定化修复中,Hg 经常会重新活化,导致修复效果不理想。本研究制备了一种新型的 FeS-Se 功能化生物炭复合材料(FeS-Se-BC)修复剂,并将其应用于 Hg 污染土壤的高效修复。应用 FeS-Se-BC 后 180d,HO-可提取态 Hg 和 TCLP 溶液可提取态 Hg 的固定化效率分别达到 99.62%和 99.22%。XPS、Hg-TPD、SEM-EDS 分析表明,FeS-Se-BC 的优异修复性能源于 FeS 和 Se 的协同作用,同时形成 HgS 和 HgSe。与生物炭和 FeS 功能化生物炭(FeS-BC)处理相比,FeS-Se-BC 促进了可交换态、碳酸盐结合态和 Fe-Mn 氧化物结合态 Hg 向有机物质结合态和残留态的转化,有效降低了 Hg 污染土壤从高危险水平到低风险水平的风险。此外,由于形成了极其稳定的 HgSe,与 FeS-BC 相比,当 S 与 Hg 的比例为 5:1 时,Se 的引入明显抑制了 Hg 的再活化,使 Hg 的释放减少了 81.12%。这些结果表明,FeS-Se-BC 具有修复 Hg 污染土壤的良好潜力,为固定化后 Hg 再活化提供了一种新的抑制思路。