Hubei Key Laboratory for Efficient Utilization and Agglomeration of Metallurgic Mineral Resources, Wuhan University of Science and Technology, Wuhan, 430081, China.
School of Resource and Environmental Engineering, Wuhan University of Science and Technology, Wuhan, 430081, China.
Environ Geochem Health. 2024 Jun 7;46(7):224. doi: 10.1007/s10653-024-02005-3.
This study aimed to evaluate the effect of modified nanoscale zero-valent iron (SAS-nZVI) on chemical leaching of lead and cadmium composite contaminated soil by citric acid (CA). The synthesized SAS-nZVI was used as a leaching aid to improve the removal rate of soil heavy metals (HMs) by CA chemical leaching. The effects of various factors such as SAS-nZVI dosage, elution temperature and elution time were studied. At the same time, the effect of chemical leaching on the basic physical and chemical properties of soil and the morphology of HMs was evaluated. The results show that when the SAS-nZVI dosage is 2.0 g/L, the leaching temperature is 25 °C, and the leaching time is 720 min, the maximum removal rates of Pb and Cd in the soil are 77.64% and 97.15% respectively. The experimental results were evaluated using elution and desorption kinetic models (Elovich model, double constant model, diffusion model). The elution and desorption process of Pb and Cd in soil by SAS-nZVI-CA fitted well with the double-constant model, indicating that the desorption kinetic process of Pb and Cd is a heterogeneous diffusion process, and the elution process is controlled by diffusion factors. After leaching with SAS-nZVI-CA, the physical and chemical properties of the soil changed little, the mobility and toxicity of HMs in the soil were reduced, and the HMs content in the leaching waste liquid was reduced. It can be concluded that SAS-nZVI enhances the efficiency of CA in extracting Pb and Cd from soil, minimizes soil damage resulting from chemical leaching technology, and alleviates the challenges associated with treating leaching waste liquid.
本研究旨在评估改性纳米零价铁(SAS-nZVI)对柠檬酸(CA)化学浸出法处理铅镉复合污染土壤的影响。合成的 SAS-nZVI 被用作浸出助剂,以提高 CA 化学浸出法去除土壤重金属(HM)的去除率。研究了各种因素的影响,如 SAS-nZVI 用量、洗脱温度和洗脱时间。同时,评价了化学浸出对土壤基本理化性质和 HM 形态的影响。结果表明,当 SAS-nZVI 用量为 2.0 g/L、浸出温度为 25°C、浸出时间为 720 min 时,土壤中 Pb 和 Cd 的最大去除率分别为 77.64%和 97.15%。采用洗脱和解吸动力学模型(Elovich 模型、双常数模型、扩散模型)对实验结果进行评价。SAS-nZVI-CA 浸出 Pb 和 Cd 的洗脱和解吸过程均较好地符合双常数模型,表明 Pb 和 Cd 在土壤中的解吸动力学过程是一个非均相扩散过程,洗脱过程受扩散因素控制。SAS-nZVI-CA 浸出后,土壤的物理化学性质变化不大,土壤中 HM 的迁移性和毒性降低,浸出废液中 HM 含量降低。可以得出结论,SAS-nZVI 提高了 CA 从土壤中提取 Pb 和 Cd 的效率,使化学浸出技术对土壤的破坏最小化,并缓解了处理浸出废液的挑战。