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用于高效除磷的 NaLa(CO)与 FeO 的杂化:合成与吸附机理研究。

NaLa(CO) hybridized with FeO for efficient phosphate removal: Synthesis and adsorption mechanistic study.

机构信息

College of Environmental Science and Engineering, Beijing Key Lab for Source Control Technology of Water Pollution, Beijing Forestry University, No. 35, Tsinghua East Rd, Beijing, 100083, China.

College of Environmental Science and Engineering, Beijing Key Lab for Source Control Technology of Water Pollution, Beijing Forestry University, No. 35, Tsinghua East Rd, Beijing, 100083, China.

出版信息

Water Res. 2019 May 15;155:1-11. doi: 10.1016/j.watres.2019.01.049. Epub 2019 Feb 11.

Abstract

Effectively eutrophication control and phosphate recovery have received increasing attention in recent years. In this study, a regenerable magnetic NaLa(CO)/FeO composites (MLC) which includes a novel phosphate-binding lanthanum species NaLa(CO) hybridized with FeO nanoparticle was developed through a modified solvothermal method for phosphate removal from contaminated water. Based upon preliminary screening of synthesized MLC with different La-to-Fe molar ratios in terms of phosphate adsorption capacity and synthetic product yield, a MLC composite with a La-to-Fe molar ratio of 2:1 (MLC-21) was selected for further characterization and evaluation. MLC-21 exhibits a high magnetic separation efficiency of 97%, high phosphate adsorption capacity of 77.85 mg P/g, wide applicable scope of pH ranging from 4 to 11, excellent selectivity for phosphate in the presence of competing ions (Cl, NO, HCO, SO, Ca, and Mg), good reusability with above 98% desorption efficiency using NaOHNaCl mixture and 83% adsorption capacity remained during five recycles. Furthermore, a real effluent wastewater with phosphate concentration of 1.96 mg P/L was used to verify the performance of MLC-21 through a magnetic separation integrated system (AMSS). By using the response surface methodology (RSM), the optimum parameters were determined to be 0.26 g/L of adsorbent dosage, 26.28 h of adsorption time and 24.12 min of magnetic separation time for meeting the phosphate emission standard of 0.5 mg P/L. The phosphorus in three representative eutrophic water bodies can be efficiently reduced to below 0.1 mg P/L by MLC-21 adsorption at different dosages. Electrostatic attraction and the inner-sphere complexation between La(HCO)/La(CO) and P via ligand exchange forming LaPO were responsible for the phosphate adsorption mechanisms of MLC.

摘要

近年来,有效控制富营养化和回收磷酸盐受到了越来越多的关注。在这项研究中,通过改进的溶剂热法,开发了一种可再生磁性 NaLa(CO)/FeO 复合材料(MLC),其中包括一种新型的磷酸盐结合镧物种 NaLa(CO)与 FeO 纳米粒子杂交,用于从受污染的水中去除磷酸盐。根据不同 La/Fe 摩尔比的合成 MLC 在磷酸盐吸附容量和合成产物产率方面的初步筛选,选择了 La/Fe 摩尔比为 2:1(MLC-21)的 MLC 复合材料进行进一步的表征和评估。MLC-21 表现出 97%的高磁分离效率、77.85mgP/g 的高磷酸盐吸附容量、4 至 11 的宽适用 pH 范围、在存在竞争离子(Cl、NO、HCO、SO、Ca 和 Mg)时对磷酸盐的优异选择性、使用 NaOHNaCl 混合物进行超过 98%的解吸效率和 83%的吸附容量在五次循环中保持良好的可重复使用性。此外,使用浓度为 1.96mgP/L 的实际废水通过磁分离集成系统(AMSS)验证了 MLC-21 的性能。通过响应面法(RSM),确定了最佳参数为 0.26g/L 的吸附剂剂量、26.28h 的吸附时间和 24.12min 的磁分离时间,以满足 0.5mgP/L 的磷酸盐排放标准。MLC-21 可以在不同剂量下有效地将三个代表性富营养化水体中的磷降低到 0.1mgP/L 以下。静电吸引和 La(HCO)/La(CO)与 P 之间的内球络合通过配体交换形成 LaPO 是 MLC 吸附磷酸盐的机制。

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