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多功能光活性和选择性吸附剂用于亚砷酸盐和砷酸盐:纳米二氧化钛增强的壳聚糖与铜交联的评估。

Multifunctional photoactive and selective adsorbent for arsenite and arsenate: Evaluation of nano titanium dioxide-enabled chitosan cross-linked with copper.

机构信息

Yale University, School of Forestry and Environmental Studies, 195 Prospect St., New Haven, CT 06511, United States; Nanosystems Engineering Research Center for Nanotechnology-Enabled Water Treatment (NEWT), Yale University, New Haven, CT 06511, United States.

Yale University, School of Forestry and Environmental Studies, 195 Prospect St., New Haven, CT 06511, United States.

出版信息

J Hazard Mater. 2018 Sep 15;358:145-154. doi: 10.1016/j.jhazmat.2018.06.033. Epub 2018 Jun 24.

Abstract

A novel multifunctional sorbent material of nano-titanium dioxide-enabled chitosan beads cross-linked with copper (CuTICB) is capable of photo-oxidation of As(III) to the less-toxic and more easily adsorbed As(V) in UV light and selective adsorption of arsenite (As(III)) and arsenate (As(V)) in the presence of phosphate, a strong adsorptive competitor and inhibitor of arsenic removal performance. CuTICB is an attractive sorbent as simultaneous photo-oxidation and adsorption reduces treatment time and cost while selective adsorption improves removal efficiency of arsenic in typical environmental conditions where competitive ions are predominant. In CuTICB, nano-titanium dioxide (n-TiO) anatase photo-oxidizes As(III) to As(V) through generation of reactive oxygen species. Additionally, Cu-chitosan bidentate crosslinkers form through Lewis acid-base coordinate bonding between Cu(II) and chitosan amine groups resulting in cationic behavior that electrostatically favors As(V) chelation even when phosphate concentrations are orders of magnitude higher. The influence of copper and n-TiO loading on arsenic photo-oxidation and selective removal over phosphate was explored to optimize CuTICB design using batch experiments under varying systems conditions. For a system requiring both photo-oxidation and selective adsorption, it was found that copper and n-TiO act non-linearly and synergistically, where maximum loadings of both does not yield the optimal selectivity or removal efficacy.

摘要

一种新型的多功能吸附材料纳米二氧化钛负载壳聚糖珠交联铜(CuTICB),在紫外光下能将砷(III)光氧化为毒性较小且更容易被吸附的砷(V),在存在磷酸盐的情况下能选择性吸附亚砷酸盐(As(III))和砷酸盐(As(V)),而磷酸盐是一种强烈的砷去除性能的吸附性竞争抑制剂。CuTICB 是一种很有吸引力的吸附剂,因为同时进行光氧化和吸附可以缩短处理时间和降低成本,而选择性吸附可以提高在典型环境条件下(竞争离子占主导地位)去除砷的效率。在 CuTICB 中,纳米二氧化钛(n-TiO)锐钛矿通过生成活性氧物种将 As(III)光氧化为 As(V)。此外,Cu-壳聚糖双齿交联剂通过 Cu(II)和壳聚糖胺基之间的路易斯酸碱配位键形成,导致阳离子行为,即使磷酸盐浓度高出几个数量级,也有利于静电络合 As(V)。通过在不同的系统条件下进行批量实验,探索了铜和 n-TiO 负载量对砷光氧化和对磷酸盐选择性去除的影响,以优化 CuTICB 的设计。对于需要同时进行光氧化和选择性吸附的系统,发现铜和 n-TiO 呈非线性协同作用,两者的最大负载量并不能产生最佳的选择性或去除效果。

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