School of Chemistry and Chemical Engineering, Guizhou University, Guiyang, 550025, People's Republic of China.
Environ Sci Pollut Res Int. 2024 May;31(22):32416-32427. doi: 10.1007/s11356-024-33385-9. Epub 2024 Apr 23.
Mercury (Hg) tailings are hazardous solid wastes because of their high Hg concentrations. Modified phosphogypsum (PG) can decrease the bioactivity and mobility of heavy metals through chemisorption or electrostatic interactions. In this study, PG whiskers were modified by ZnCl and S, chitosan-hydrochloric acid, and thioglycolic materials; the resulting modified whiskers were used to decontaminate Hg tailings. Leaching tests and orthogonal experiments were conducted to optimize the modification parameters, including modifier quantity, pH, reaction temperature, and reaction time. The structure and physicochemical properties of the whiskers before and after modification were characterized through X-ray diffraction (XRD), scanning electron microscopy (SEM), and Fourier transform infrared spectroscopy (FTIR). The stabilization efficiency of the modified PG whiskers ranged from 93.05 to 97.50%, demonstrating excellent stabilization effects. The stabilization was achieved through chemisorption or complexation. The decontamination process using modified whiskers reduced the pH and total nitrogen of the tailings; increased the cation exchange, total phosphorus, organic carbon, and total carbon; and made the tailings suitable for planting. In addition, the modified PG promoted the morphological transformation of Hg in the tailings, thereby significantly decreasing the Hg content in the effective states and mitigating the risk of Hg contamination.
汞(Hg)尾矿因其高浓度的 Hg 而属于危险固体废物。改性磷石膏(PG)可以通过化学吸附或静电相互作用降低重金属的生物活性和迁移性。在这项研究中,PG 晶须用 ZnCl 和 S、壳聚糖-盐酸和巯基乙酸材料进行了改性;所得改性晶须用于去除 Hg 尾矿。进行了浸出试验和正交试验以优化改性参数,包括改性剂用量、pH 值、反应温度和反应时间。通过 X 射线衍射(XRD)、扫描电子显微镜(SEM)和傅里叶变换红外光谱(FTIR)对改性前后晶须的结构和物理化学性质进行了表征。改性 PG 晶须的稳定化效率在 93.05%至 97.50%之间,表现出优异的稳定化效果。稳定化是通过化学吸附或络合作用实现的。使用改性晶须的脱污染过程降低了尾矿的 pH 值和总氮含量;增加了阳离子交换、总磷、有机碳和总碳;使尾矿适合种植。此外,改性 PG 促进了尾矿中 Hg 的形态转化,从而显著降低了有效态 Hg 的含量,减轻了 Hg 污染的风险。