School of Land Science and Technology, China University of Geosciences, Beijing, 100083, China.
Key Laboratory of Land Consolidation and Rehabilitation, Ministry of Natural Resources, Beijing, 100035, China.
Environ Sci Pollut Res Int. 2022 Jul;29(32):49116-49125. doi: 10.1007/s11356-022-19419-0. Epub 2022 Feb 25.
Phosphate rock powder (PR) has been shown to possess the potential to stabilize lead (Pb) in soil. Most of the phosphorus (P) minerals in the world are low-grade ores, making it difficult to achieve the expected stabilization effect on heavy metals. This study compared the changes in the phase composition and structure of PR and three kinds of activated phosphate rock powder (APR) (organic acid-activated PR, thermal-activated PR, and thermal-organic acid-activated PR). The stabilization effectiveness of APR on Pb-contaminated soil was evaluated by toxicity leaching procedure; the Pb products adsorbed on APR and stabilization mechanism of APR on Pb were analyzed. The results demonstrated that APR showed decreased crystallinity and 3.4-fold increase in specific surface area, and a 53.07% and 49.32% increase in soluble P content in oxalic acid-activated PR and citric acid-activated PR, respectively, when compared with those of PR. These changes improved the stabilization effect of APR on Pb-contaminated soil, in which oxalic acid-600 °C-activated PR showed the best effect, presenting 94.0-99.8% reduction in Pb leaching concentration following addition of 2-10% modifier. Product characterization after Pb adsorption on APR showed that Pb was adsorbed onto APR by forming fluoropyromophite precipitation with APR.
磷矿粉(PR)已被证明具有稳定土壤中铅(Pb)的潜力。世界上大多数磷(P)矿物都是低品位矿石,难以对重金属达到预期的稳定效果。本研究比较了 PR 和三种活化磷矿粉(APR)(有机酸活化 PR、热活化 PR 和热-有机酸活化 PR)的相组成和结构变化。通过毒性浸出程序评估 APR 对 Pb 污染土壤的稳定效果;分析了 APR 上吸附的 Pb 产物和 APR 对 Pb 的稳定机制。结果表明,与 PR 相比,APR 的结晶度降低,比表面积增加了 3.4 倍,草酸活化 PR 和柠檬酸活化 PR 的可溶性 P 含量分别增加了 53.07%和 49.32%。这些变化提高了 APR 对 Pb 污染土壤的稳定效果,其中草酸-600°C 活化 PR 的效果最好,添加 2-10%改性剂后,Pb 的浸出浓度降低了 94.0-99.8%。APR 吸附 Pb 后的产物特征表明,Pb 通过与 APR 形成氟磷灰石沉淀而被吸附到 APR 上。