首页> 美国卫生研究院文献>International Journal of Environmental Research and Public Health >Remediating Potentially Toxic Metal and Organic Co-Contamination of Soil by Combining In Situ Solidification/Stabilization and Chemical Oxidation: Efficacy Mechanism and Evaluation
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Remediating Potentially Toxic Metal and Organic Co-Contamination of Soil by Combining In Situ Solidification/Stabilization and Chemical Oxidation: Efficacy Mechanism and Evaluation

机译:通过原位固化/稳定化和化学氧化相结合来修复土壤中潜在的有毒金属和有机共污染:功效机理和评估

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摘要

Most soil remediation studies investigated single contaminants or multiple contaminants of the same type. However, in field conditions, soils are often contaminated with potentially both toxic metals and organic pollutants, posing a serious technical challenge. Here, batch experiments were conducted to evaluate the performance of combining in situ solidification/stabilization (ISS) and in situ chemical oxidation (ISCO) for the simultaneous removal of aniline (1000 mg/kg) and Cd (10 mg/kg). All four tested ISS amendments, especially quick lime and Portland cement, promoted in situ chemical oxidation with activated persulfate in contaminated soil. Combined ISS/ISCO remediation effectively removed aniline and reduced the bioavailable Cd content at optimal initial persulfate and ISS amendment concentrations of 1.08 mol/kg and 30 wt% with a seven-day curing time, and significantly reduced leaching. Persulfate inhibited the reduction of the bioavailable Cd content, and ISS amendment with persulfate did not synergistically remediate Cd in co-contaminated soil. Strong alkalinity and high temperature were the main mechanisms driving rapid pollutant removal and immobilization. The reaction of CaO with water released heat, and Ca(OH)2 formation increased the pH. The relative contributions of heat vs. alkaline activation, as well as the contaminant removal efficiency, increased with ISS amendment CaO content. Combined treatment altered the soil physicochemical properties, and significantly increased Ca and S contents. Activated persulfate-related reactions did not negatively impact unconfined compressive strength and hydraulic conductivity. This work improves the selection of persulfate activation methods for the treatment of soils co-contaminated with both potentially toxic metals and organic pollutants.
机译:大多数土壤修复研究都研究了单一污染物或同一类型的多种污染物。然而,在田间条件下,土壤经常被潜在的有毒金属和有机污染物污染,这构成了严峻的技术挑战。在这里,进行批处理实验以评估原位固化/稳定化(ISS)和原位化学氧化(ISCO)结合同时去除苯胺(1000 mg / kg)和Cd(10 mg / kg)的性能。所有这四个经过测试的ISS修正剂,特别是生石灰和硅酸盐水泥,都在受污染的土壤中利用活化的过硫酸盐促进了原位化学氧化。 ISS / ISCO联合修复可有效去除苯胺,并在最佳初始过硫酸盐和ISS修正浓度为1.08 mol / kg和30 wt%的情况下,以7天的固化时间降低了苯胺的生物利用度,并显着减少了浸出。过硫酸盐抑制了生物有效性Cd含量的降低,并且用过硫酸盐对ISS进行的改良未协同修复共同污染土壤中的Cd。强碱和高温是推动污染物快速去除和固定的主要机制。 CaO与水的反应释放热量,并且Ca(OH)2的形成增加了pH。热量相对于碱活化的相对贡献以及污染物去除效率随ISS修正CaO含量的增加而增加。联合处理改变了土壤的理化性质,并显着增加了Ca和S含量。活化的过硫酸盐相关反应不会对无限制的抗压强度和水力传导率产生负面影响。这项工作改进了过硫酸盐活化方法的选择,以处理被潜在有毒金属和有机污染物共同污染的土壤。

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