Center for Environmental Systems, Stevens Institute of Technology, Hoboken, NJ, 07030, United States.
Center for Environmental Systems, Stevens Institute of Technology, Hoboken, NJ, 07030, United States. Electronic address: http://
Water Res. 2020 Jul 15;179:115853. doi: 10.1016/j.watres.2020.115853. Epub 2020 Apr 24.
As a commonly used corrosion inhibitor, phosphate (PO) has a complicated effect on the fate and transport of lead (Pb) in drinking water systems. While the formation of pyromorphite has been recognized to be the major driving force of the Pb immobilization mechanism, the role of adsorption on iron oxides is still not clear. This study aims to clarify the contributions of adsorption and precipitation to Pb removal in a system containing both iron oxides and PO. A combination of batch experiments, X-ray absorption spectroscopy, infrared spectroscopy, and electron spectroscopy was employed to distinguish the adsorbed and precipitated Pb species. The results indicated that the adsorption of Pb on iron oxides still occurred even when the solution was supersaturated to pyromorphite (i.e., 5 mg/L P with 0.1-30 mg/L Pb in 0.01 M NaCl solution at neutral pH). In the tap water containing 0.92 mg/L P and 1 mg/L Pb, adsorption on iron oxides contributed more (62-67%) than precipitation (33-38%) in terms of Pb removal. Surprisingly, the pre-formed pyromorphite is transformed to adsorbed species after mixing with iron oxides in water for 24 h. The illustration of this transformation is important to understand the immobilization mechanisms and transport behaviors of Pb in drinking water systems after the utilization of PO.
作为一种常用的腐蚀抑制剂,磷酸盐(PO)对饮用水系统中铅(Pb)的归趋和迁移有复杂的影响。尽管已经认识到磷铅矿的形成是 Pb 固定机制的主要驱动力,但吸附在氧化铁上的作用仍不清楚。本研究旨在澄清在含有氧化铁和 PO 的系统中,吸附和沉淀对 Pb 去除的贡献。采用批实验、X 射线吸收光谱、红外光谱和电子能谱相结合的方法来区分吸附和沉淀的 Pb 物种。结果表明,即使溶液过饱和于磷铅矿(即在中性 pH 值下,0.01 M NaCl 溶液中 5mg/L 的 P 与 0.1-30mg/L 的 Pb),Pb 仍会吸附在氧化铁上。在含有 0.92mg/L P 和 1mg/L Pb 的自来水中,吸附在氧化铁上的 Pb 去除量(62-67%)比沉淀(33-38%)更多。令人惊讶的是,预形成的磷铅矿在与水中的氧化铁混合 24 小时后会转化为吸附态物质。这种转化的说明对于理解 PO 应用后饮用水系统中 Pb 的固定机制和迁移行为非常重要。