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高效快速去除 EDTA 螯合 Pb(II)的 Fe(III)/烟气脱硫石膏 (FGDG)体系。

Efficient and rapid removal of EDTA-chelated Pb(II) by the Fe(III)/flue gas desulfurization gypsum (FGDG) system.

机构信息

Jiangsu Key Laboratory of Chemical Pollution Control and Resources Reuse, School of Environmental and Biological Engineering, Nanjing University of Science and Technology, Nanjing 210094, China.

Jiangsu Key Laboratory of Chemical Pollution Control and Resources Reuse, School of Environmental and Biological Engineering, Nanjing University of Science and Technology, Nanjing 210094, China.

出版信息

J Colloid Interface Sci. 2019 Apr 15;542:379-386. doi: 10.1016/j.jcis.2019.01.129. Epub 2019 Jan 31.

Abstract

This study introduces the application of the Fe(III)/flue gas desulfurization gypsum (FGDG) system to remove EDTA-chelated Pb(II). Systematic experiments were conducted to explore the possibility of removing EDTA-chelated Pb(II) and the crucial factors of the removal process, as well as to determine the underlying removal mechanism. The results showed that the removal reaction was a quick process, with the removal rate exceeding 90% after 1 min. The system removed 97.35% of EDTA-chelated Pb(II), reducing its concentration from 700 mg/L to 18.81 mg/L. EDTA-chelated Pb(II) can be most effectively removed at pH 2. This system had a high removal rate from 50 mg/L to 1000 mg/L of EDTA-chelated Pb(II), particularly at 700 mg/L when the removal rate reached 97.35%. When the molar ratio of Fe(III)/Pb(II) was greater or smaller than 1:1, an inhibitory effect on removal was observed. TOC and UV-Vis analyses indicated that ferric ions replaced lead ions, resulting in the conversion of the EDTA-chelated Pb(II) to EDTA-chelated Fe(III). Surface structure, crystalline phase and elemental distribution were analyzed to explore the transformation of substances. The results indicated that FGDG coprecipitated with free lead ions to form lead sulfate. Overall, the rapid and efficient removal performance with cost-effective characteristics makes the Fe(III)/FGDG system a potentially attractive method for the removal of EDTA-chelated Pb(II)in wastewater.

摘要

本研究介绍了 Fe(III)/烟气脱硫石膏(FGDG)体系在去除 EDTA 螯合 Pb(II)中的应用。系统地进行了实验,以探索去除 EDTA 螯合 Pb(II)的可能性及其去除过程的关键因素,并确定潜在的去除机制。结果表明,去除反应是一个快速过程,1 分钟后去除率超过 90%。该体系去除了 97.35%的 EDTA 螯合 Pb(II),将其浓度从 700mg/L 降低至 18.81mg/L。在 pH 2 时,EDTA 螯合 Pb(II)能被最有效地去除。该体系对 50mg/L 至 1000mg/L 的 EDTA 螯合 Pb(II)具有高去除率,在 700mg/L 时去除率达到 97.35%。当 Fe(III)/Pb(II)摩尔比大于或小于 1:1 时,观察到对去除的抑制作用。TOC 和 UV-Vis 分析表明,铁离子取代铅离子,导致 EDTA 螯合 Pb(II)转化为 EDTA 螯合 Fe(III)。对表面结构、晶体相和元素分布进行了分析,以探讨物质的转化。结果表明,FGDG 与游离铅离子共沉淀形成硫酸铅。总的来说,该体系具有快速高效的去除性能和经济有效的特点,使其成为去除废水中 EDTA 螯合 Pb(II)的一种很有吸引力的方法。

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