Fang Ya-Li, Zhu Zong-Qiang, Zhao Ning-Ning, Zhu Yi-Nian, Li Chao, Zhang Li-Hao
Collaborative Innovation Center for Water Pollution Control and Water Safety in Karst Area, Guilin University of Technology, Guilin 541004, China.
Guangxi Key Laboratory of Environmental Pollution Control Theory and Technology, Guilin University of Technology, Guilin 541004, China.
Huan Jing Ke Xue. 2020 Mar 8;41(3):1498-1504. doi: 10.13227/j.hjkx.201909122.
The specific characteristics and mechanism of passivation of Pb in soil were studied using HAP/C composite (PBGC-HAP/C) as passivation, and using proportion of PBGC-HAP/C, particle size and type of passivator, soil moisture content, soil pH value of Pb, and particle size of the material as influencing factors. The results showed that with an increase in dosage of the passivator and passivation time, the passivation effect increases gradually. Reducing the particle size of the passivator is beneficial to improving the passivation effect. pH has a greater impact on passivation, with the passivation effect obviously rising with increased pH, and the passivation rate in an alkaline environment can reach above 99%. An increase in water content is beneficial to the improvement of the passivation effect, but the contribution is not significant. Through comparative analysis of the XPS, XRD, and FT-IR of materials before and after passivation, the results indicated that the passivation of PBGC-HAP/C to Pb is mainly through direct and indirect effects. Direct effects include physical adsorption, chemical complexation, electrostatic interaction, ion exchange, and precipitation; the indirect effect is mainly enhanced by increasing the pH value of the organic matter.
以HAP/C复合材料(PBGC-HAP/C)为钝化剂,以PBGC-HAP/C比例、钝化剂粒径和类型、土壤含水量、土壤铅pH值以及材料粒径为影响因素,研究了土壤中铅的钝化特性及机制。结果表明,随着钝化剂用量和钝化时间的增加,钝化效果逐渐增强。减小钝化剂粒径有利于提高钝化效果。pH对钝化影响较大,随着pH升高钝化效果明显提高,在碱性环境下钝化率可达99%以上。含水量增加有利于钝化效果的提高,但贡献不显著。通过对钝化前后材料的XPS、XRD和FT-IR进行对比分析,结果表明PBGC-HAP/C对铅的钝化主要通过直接和间接作用。直接作用包括物理吸附、化学络合、静电作用、离子交换和沉淀;间接作用主要是通过提高有机质的pH值来增强。