School of Environmental Science and Engineering, Shaanxi University of Science & Technology, Xi'an, 710021, People's Republic of China.
Environ Sci Pollut Res Int. 2024 Mar;31(11):17481-17493. doi: 10.1007/s11356-024-32346-6. Epub 2024 Feb 12.
Excessive phosphorus will lead to eutrophication in aquatic environment; the efficient removal of phosphorus is crucial for wastewater engineering and surface water management. This study aimed to fabricate a nanorod-like sepiolite-supported MgO (S-MgO) nanocomposite with high specific surface area for efficient phosphate removal using a facile microwave-assisted method and calcining processes. The impact of solution pH, adsorbent dosage, contact time, initial phosphate concentrations, Ca addition, and N/P ratio on the phosphate removal was extensively examined by the batch experiments. The findings demonstrated that the S-MgO nanocomposite exhibited effective removal performance for low-level phosphate (0 ~ 2.0 mM) within the pH range of 3.0 ~ 10.0. Additionally, the nanocomposite can synchronously remove phosphate and ammonium in high-level nutrient conditions (> 2.0 mM), with the maximum removal capacities of 188.49 mg P/g and 89.78 mg N/g. Quantitative and qualitative analyses confirmed the successful harvesting of struvite in effluent with high-phosphate concentrations, with the mechanisms involved attributed to a synergistic combination of sorption and struvite crystallization. Due to its proficient phosphate removal efficiency, cost-effectiveness, and substantial removal capacity, the developed S-MgO nanocomposite exhibits promising potential for application in phosphorus removal from aquatic environments.
过量的磷会导致水生环境富营养化;高效去除磷对于废水工程和地表水管理至关重要。本研究旨在使用简便的微波辅助方法和煅烧工艺制备具有高比表面积的纳米棒状海泡石负载氧化镁(S-MgO)纳米复合材料,以有效去除磷酸盐。通过批量实验广泛研究了溶液 pH 值、吸附剂用量、接触时间、初始磷酸盐浓度、Ca 添加剂和 N/P 比等因素对磷酸盐去除的影响。研究结果表明,S-MgO 纳米复合材料在 3.0 至 10.0 的 pH 值范围内对低浓度磷酸盐(0 至 2.0 mM)具有有效的去除性能。此外,该纳米复合材料可以在高浓度营养条件下(>2.0 mM)同步去除磷酸盐和铵盐,最大去除容量分别为 188.49 mg P/g 和 89.78 mg N/g。定量和定性分析证实,在高磷浓度的废水中成功收获了鸟粪石,其机制归因于吸附和鸟粪石结晶的协同组合。由于其高效的除磷效率、成本效益和较大的去除容量,开发的 S-MgO 纳米复合材料在从水生环境中去除磷方面具有广阔的应用前景。