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金属改性污水污泥生物炭管对非饱和土壤中铬固定的影响:降雨引起的地下水位波动。

Effect of metal-modified sewage sludge biochar tubule on immobilization of chromium in unsaturated soil: Groundwater table fluctuations induced by rainfall.

机构信息

State Environmental Protection Key Laboratory of Synergetic Control and Joint Remediation for Soil & Water Pollution (Chengdu University of Technology), Chengdu, 610059, China; College of Environment and Civil Engineering, Chengdu University of Technology, Chengdu, 610059, China.

College of Environment and Civil Engineering, Chengdu University of Technology, Chengdu, 610059, China.

出版信息

Chemosphere. 2024 Oct;365:143378. doi: 10.1016/j.chemosphere.2024.143378. Epub 2024 Sep 19.

Abstract

Many studies have studied biochar immobilizing chromium (Cr) in soil. However, few studies were conducted to reduce the environmental risks due to biochar aging in soil. In this study, we adopt FeCl, MgCl, and AlCl to activate sewage sludge to form modified biochar and produce biochar tubules. Then, the column experiments were carried out to study the effect of fluctuating groundwater table on Cr leaching behavior, total Cr, and fractions distribution with the insertion of biochar tubule. Results showed that the Cr immobilization performance was improved by metal-modification biochar, the biochar tubules can significantly decrease the Cr leaching amounts, retard the Cr downward migration in the soil, and there was a better effect with slightly Cr-contaminated soil. In addition, the immobilization effect is also impacted by the biochar's application mode and the hydrodynamic conditions. Detailedly, the Cr leaching amounts maximally decreased by 33.39%, the residual amounts maximally increased by 10.05% in the soil column, and the exchangeable (EX) and carbonates-bound (CB) fractions were maximally increased by 85.18%, 151.78% at the equal depth of soil column, respectively. BET, SEM-EDS, XRD, and FTIR analyses revealed that biochars' immobilization mechanisms on Cr involved reduction(predominately), physisorption, precipitation, and complexation. Risk assessment demonstrated that the sewage sludge biochar has very low environmental risk. This study indicates that the biochar tubule applied to immobilize Cr in soil has potential and provides new insights into reducing environmental risks due to biochar aging.

摘要

许多研究都研究了生物炭在土壤中固定铬(Cr)的作用。然而,由于生物炭在土壤中的老化,很少有研究来降低其环境风险。在本研究中,我们采用 FeCl、MgCl 和 AlCl 对污水污泥进行活化,形成改性生物炭并制备生物炭管。然后,通过柱状实验研究了波动地下水位对 Cr 浸出行为、总 Cr 和各形态分布的影响,同时插入生物炭管。结果表明,金属改性生物炭提高了 Cr 的固定性能,生物炭管可以显著减少 Cr 的浸出量,减缓 Cr 在土壤中的向下迁移,对轻度污染土壤的效果更好。此外,固定效果还受到生物炭的应用方式和水动力条件的影响。详细来说,Cr 的浸出量在土壤柱中最大减少了 33.39%,残留量最大增加了 10.05%,在土壤柱相同深度处,可交换态(EX)和碳酸盐结合态(CB)的 Cr 最大分别增加了 85.18%和 151.78%。BET、SEM-EDS、XRD 和 FTIR 分析表明,生物炭对 Cr 的固定机制包括还原(主要)、物理吸附、沉淀和络合。风险评估表明,污水污泥生物炭具有很低的环境风险。本研究表明,应用生物炭管固定土壤中的 Cr 具有潜力,并为降低生物炭老化带来的环境风险提供了新的思路。

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