College of Chemical & Biochemical Engineering, Zhejiang University, Zheda Road, Hangzhou 310027, China E-mail:
Water Sci Technol. 2021 Apr;83(7):1605-1618. doi: 10.2166/wst.2021.086.
Phosphorus removal is a crucial aspect of controlling water pollution and eutrophication. In this study, the preparation of lanthanum carbonate (LC) nano-adsorbents for the efficient removal of phosphate (P) from water and wastewater was investigated. Results from XRD, SEM and Zeta potential analyses revealed that addition of magnesium ions and adjustment of the reaction temperature could control the morphology and microstructure of LC. Effects of initial pH, adsorbent dosage, contact time, and the water matrix on P adsorption were investigated. Batch adsorption experiments revealed that LC showed strong performance on P removal over a wide pH range (3.0 to 11.0). The kinetic data followed a pseudo-second-order model, and equilibrium data were well fitted by the Langmuir model with a maximum adsorption capacity of 112.9 mg P/g. Adsorption thermodynamics showed that the adsorption process was exothermic and spontaneous. Results of a monolayer model for single adsorption indicated that P could completely interact with two or more functional groups from the LC surface. In the presence of competing ions (F, Cl, SO, NO, and HCO), LC maintained high selectivity for phosphate. For a real effluent, the P concentration was efficiently reduced from 3.2 mg P/L to below 0.5 mg P/L at a dose of 0.5 g/L LC. All the results suggested that LC can serve as a promising adsorbent for P removal in a wide range of pH, and thus could meet the stricter discharge regulations from actual wastewater.
磷的去除是控制水污染和富营养化的关键环节。本研究旨在制备碳酸镧(LC)纳米吸附剂,以实现从水中和废水中高效去除磷酸盐(P)。XRD、SEM 和 Zeta 电位分析结果表明,镁离子的加入和反应温度的调节可以控制 LC 的形态和微观结构。考察了初始 pH 值、吸附剂用量、接触时间以及水基质对 P 吸附的影响。批量吸附实验表明,LC 在较宽的 pH 范围(3.0 至 11.0)内对 P 的去除具有很强的性能。动力学数据符合准二级模型,平衡数据则很好地符合 Langmuir 模型,最大吸附容量为 112.9 mg P/g。吸附热力学表明,吸附过程是放热和自发的。单层模型的单吸附结果表明,P 可以与 LC 表面的两个或更多个功能基团完全相互作用。在存在竞争离子(F、Cl、SO、NO 和 HCO)的情况下,LC 对磷酸盐仍保持高选择性。对于实际废水,在 0.5 g/L LC 的剂量下,可将 P 浓度从 3.2 mg P/L 高效降低至 0.5 mg P/L 以下。所有结果表明,LC 可以作为一种在较宽 pH 范围内去除 P 的有前途的吸附剂,从而满足实际废水更严格的排放法规要求。