Effective oxidation and adsorption of As(III) in water by nanoconfined Ce-Mn binary oxides with excellent reusability

Shun Qiu, Zhanxun Chen, Ling Yu, Chuying Liu,Chenghan Ji, Pengfei Shen, Sikai Cheng,Hui Qiu, Zhuoyao Fang,Xiaolin Zhang

Journal of Hazardous Materials(2024)

引用 0|浏览0
暂无评分
摘要
Herein, a highly efficient As(III) purifier Ce-Mn@N201 with excellent reusability was developed by stepwise precipitating hydrated cerium(IV) oxides (HCO) and hydrated manganese(IV) oxides (HMO) inside N201, a widely-used gel-type anion exchange resin. Owing to confinement of unique nanopores in N201, the in-situ generated nanoparticles (NPs) inside Ce-Mn@N201 were highly dispersed with ultra-small sizes of around 2.6nm. Results demonstrated that HMO NPs effectively oxidized As(III) to As(V) with the conversion of Mn(IV) to Mn(II), while the generated Mn2+ was mostly re-adsorbed onto the negatively-charged surface of HMO NPs. During the regeneration process by simple alkaline treatment, the re-adsorbed Mn2+ was firstly precipitated as (hydr)oxides of Mn(II) and then oxidized to HMO NPs by dissolved oxygen to fully refresh its oxidation capacity. Though HCO NPs mainly served as adsorbent for arsenic, they could partially oxidize As(III) to As(V) at the beginning, while the oxidation capacities continuously diminished with the irreversible conversion of Ce(IV) to Ce(III). In 10 consecutive adsorption-regeneration cycle, Ce-Mn@N201 efficiently decontaminated As(III) from 500μg/L to below 5μg/L with Mn2+ leaching less than 0.3% per batch. During 3 cyclic fixed-bed adsorptions, Ce-Mn@N201 steadily produced 8500-9150 bed volume (BV) and 3150-3350 BV drinkable water from the synthesized and real groundwater, respectively, with Mn leaching in effluent constantly < 100μg/L. Environmental Implication Arsenite contamination in groundwater remains a serious issue worldwide, demanding the development of highly effective As(III) purifiers. In this study, we developed a novel nanocomposite Ce-Mn@N201 containing sub-5 nm hydrated oxides of cerium and manganese for highly efficient purification of As(III) from water. The dissolution of Mn2+ was effectively controlled during the decontamination process, and both the oxidation and adsorption capacities were fully refreshed with simple alkaline treatment. Ce-Mn@N201 exhibited superior and renewable decontamination performance during both cyclic batch and column experiments. This study may contribute to the development of highly efficient purifiers for As(III)-contaminated water with practical application prospect.
更多
查看译文
关键词
Nanocomposite,Regeneration,Inner-sphere complex,Surface effect,Nanoconfinement
AI 理解论文
溯源树
样例
生成溯源树,研究论文发展脉络
Chat Paper
正在生成论文摘要