Suppr超能文献

双壳层 CuO@MnO 空心球(DCMHS)增强去除水中亚砷酸盐:行为和机制。

The enhanced removal of arsenite from water by double-shell CuO@MnO hollow spheres (DCMHS): behavior and mechanisms.

机构信息

School of Environmental and Municipal Engineering, Xi'an University of Architecture and Technology, No.13, Yanta Road, Beilin District, Xi'an, 710055, Shaanxi Province, China.

Key Laboratory of Water Resource, Environment and Ecology, MOE, Xi'an, 710055, China.

出版信息

Environ Sci Pollut Res Int. 2022 Oct;29(50):76417-76431. doi: 10.1007/s11356-022-20702-3. Epub 2022 Jun 7.

Abstract

To facilitate removing As(III) from water through an "oxidation-adsorption" process, the double-shell CuO@MnO hollow spheres (DCMHS) have been fabricated via a two-step co-precipitation route combined with the soft-template method. The surface characterization results showed that Mn oxides were formed without segregation and uniformly distributed on the surface of CuO hollow spheres. DCMHS could achieve outstanding performance to remove As(III) with an As maximum adsorption capacity of 32.15 mg/g. Meanwhile, the kinetics results illustrated that the oxidative activity of DCMHS was strengthened due to its specific structure, and part of As(III) was converted to As(V) during the adsorption process. Also, air aeration could further enhance As(III) oxidation and thus improving As removal. The As(III) removal performance could be maintained under neutral and weak alkaline conditions. Phosphate, silicate, and carbonate anions could depress the removal performance, while chloride ions and sulfate anions barely influenced As removal. Moreover, DCMHS could be regenerated using NaOH and KMnO solutions without breaking the hollow sphere structure. Based on the spectroscopic analysis results, As(III) molecules were converted to As(V) via two pathways, including the oxidation by Mn oxides or superoxide radicals. The Cu-Mn synergistic effect could not only enhance the oxidative activity of Mn oxides but also produce superoxide radicals via the activation of surface-adsorbed oxygen molecules. Afterwards, the newly formed As(V) could be attached to the hydroxyl groups through surface complexation. Therefore, this work has provided insights into the morphology design of Mn-oxide-containing adsorbents and supplemented the interface reaction mechanisms for enhancing As(III) removal.

摘要

为了通过“氧化-吸附”过程促进从水中去除 As(III),通过两步共沉淀法结合软模板法制备了双壳层 CuO@MnO 空心球(DCMHS)。表面特征化结果表明,Mn 氧化物没有发生分离并均匀分布在 CuO 空心球的表面上。DCMHS 能够实现出色的去除 As(III)性能,最大吸附容量为 32.15 mg/g。同时,动力学结果表明,由于其特殊结构,DCMHS 的氧化活性得到了增强,并且在吸附过程中部分 As(III)被转化为 As(V)。此外,空气曝气可以进一步增强 As(III)氧化,从而提高去除率。在中性和弱碱性条件下,仍能保持 DCMHS 的去除性能。磷酸根、硅酸根和碳酸根阴离子会抑制去除性能,而氯离子和硫酸根阴离子几乎不影响 As 的去除。此外,DCMHS 可以使用 NaOH 和 KMnO4 溶液再生,而不会破坏空心球结构。基于光谱分析结果,As(III)分子通过两种途径转化为 As(V),包括 Mn 氧化物或超氧自由基的氧化。Cu-Mn 协同作用不仅可以增强 Mn 氧化物的氧化活性,还可以通过表面吸附氧分子的活化产生超氧自由基。随后,新形成的 As(V)可以通过表面络合附着在羟基上。因此,这项工作为含 Mn 氧化物吸附剂的形态设计提供了思路,并补充了增强 As(III)去除的界面反应机制。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验