Wang Jie, Jiang Yongcan, Xu Musheng, Han Cong, Zhang Lichao, Liu Guanglong
College of Resources and Environment, Huazhong Agricultural University, Wuhan, 430070, China.
Power China Huadong Engineering Corporation Ltd., Hangzhou, 311122, China.
Environ Sci Pollut Res Int. 2023 Jan;30(2):4642-4652. doi: 10.1007/s11356-022-22525-8. Epub 2022 Aug 16.
Adsorption technology can effectively remove phosphorus from water and realize phosphorus recovery. Hence, it is used to curb the eutrophication of water and alleviate the crisis caused by the shortage of phosphorus resources. Resin has been attracting increasing interest as an ideal adsorption material; however, its practical application is greatly affected by environmental factors. To solve the competitive adsorption and pore blockage caused by humic acid and coexisting ions during the removal of phosphorus by ion-exchange resin, this study has developed an iron-manganese oxide-modified resin composite adsorbent (Fe/Mn-402) based on the nanoconfinement theory. The structural characterization results of XRD, FT-IR, SEM, and XPS showed that the iron-manganese binary oxide was successfully loaded on the skeleton of the strongly alkaline anion resin and showed good stability under both neutral and alkaline conditions. The batch adsorption experiments showed that the maximum adsorption capacity of Fe/Mn-402 for phosphorus can reach up to 50.97 mg g under the optimal raw material ratio (Fe:Mn = 1:1). In addition, Fe/Mn-402 shows good selectivity for phosphorus removal. Fe/Mn-402 can maintain good adsorption performance for phosphate even under high concentrations of SO, HCO, and humic acid. The regenerated Fe/Mn-402 can be recycled without any obvious change in its treatment capacity. Hence, it is suitable for stable, long-term usage. In general, this work puts forward a new idea for the development of phosphorus-removal adsorbents for the treatment of wastewater containing coexisting ions and HA.
吸附技术可以有效去除水中的磷并实现磷的回收。因此,它被用于抑制水体富营养化并缓解磷资源短缺所引发的危机。树脂作为一种理想的吸附材料,一直备受关注;然而,其实际应用受到环境因素的极大影响。为了解决离子交换树脂除磷过程中腐殖酸和共存离子引起的竞争吸附和孔堵塞问题,本研究基于纳米限域理论开发了一种铁锰氧化物改性树脂复合吸附剂(Fe/Mn-402)。XRD、FT-IR、SEM和XPS的结构表征结果表明,铁锰二元氧化物成功负载在强碱性阴离子树脂骨架上,在中性和碱性条件下均表现出良好的稳定性。批量吸附实验表明,在最佳原料比(Fe:Mn = 1:1)下,Fe/Mn-402对磷的最大吸附量可达50.97 mg/g。此外,Fe/Mn-402对磷的去除表现出良好的选择性。即使在高浓度的SO、HCO和腐殖酸存在下,Fe/Mn-402对磷酸盐仍能保持良好的吸附性能。再生后的Fe/Mn-402可以循环使用,其处理能力没有明显变化。因此,它适合稳定、长期使用。总的来说,这项工作为开发用于处理含有共存离子和腐殖酸废水的除磷吸附剂提出了新思路。