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新型海藻酸钠/单宁酸双网络水凝胶在较宽 pH 范围内对磷酸氯喹的高效吸附。

Efficient adsorption of chloroquine phosphate by a novel sodium alginate/tannic acid double-network hydrogel in a wide pH range.

机构信息

State Key Laboratory of Pollution Control and Resource Reuse, School of the Environment, Nanjing University, Nanjing 210023, PR China.

College of Resources and Environmental Sciences, Henan Agricultural University, Zhengzhou 450002, PR China.

出版信息

Sci Total Environ. 2024 Feb 20;912:168740. doi: 10.1016/j.scitotenv.2023.168740. Epub 2023 Nov 25.

Abstract

In this work, a novel double-network composite hydrogel (SA/TA), composed of sodium alginate (SA) and tannic acid (TA), was designed and fabricated by a successive cross-linking method using Ti(IV) and Ca(II) as crosslinkers. SA/TA exhibited reinforced mechanical strength and anti-swelling properties because of the double-network structure. SA/TA was used as an adsorbent for removal of a popular antiviral drug, chloroquine phosphate (CQ), in water. The adsorption performance of SA/TA was systematically investigated, to study various effects including those of TA mass content, solution pH, adsorption time, and initial CQ concentration. Adsorption was also examined in presence of inorganic and organic coexisting substances commonly found in wastewater, and under different actual water samples. Batch experimental results indicated that SA/TA could maintain higher and more stable CQ uptakes within a wide solution pH range from 3.0 to 10.0, compared to its precursor, SA hydrogel, owing to the addition of TA-Ti(IV) coordination network. The maximum experimental CQ uptake exhibited by the 1:1 (by wt) SA/TA (SA/TA2) was as high as 0.699 mmol/g at the initial pH of 9.0. A high concentration of coexisting NaCl evidently reduced the CQ uptakes of SA/TA2 due to the electrostatic shielding effect, moreover, divalent cations including Ca(II) and Mg(II) also inhibited the adsorption of CQ due to competitive adsorption. However, humic acid had little effect on this adsorption. Considering the apparent adsorption performance, the aforementioned effects of various factors and the spectroscopic characterizations, multi-interactions are suggested for adsorption including chelation, electrostatic interactions, π-π electron donor-acceptor interaction and hydrogen bonding. SA/TA showed a slight loss in adsorption capacity toward CQ and sustained physicochemical structural stability, even after six adsorption-desorption cycles. In addition to CQ, SA/TA could be efficiently used for adsorption of two other antivirus drugs, namely, hydroxychloroquine sulfate and oseltamivir phosphate. This work provides an effective strategy for the design and fabrication of novel adsorbents that can effectively adsorb antiviral drugs over a wide pH range.

摘要

在这项工作中,设计并制备了一种新型的双网络复合水凝胶(SA/TA),由海藻酸钠(SA)和单宁酸(TA)组成,采用 Ti(IV)和 Ca(II)作为交联剂的连续交联法制备。由于双网络结构,SA/TA 表现出增强的机械强度和抗溶胀性能。SA/TA 用作水中一种流行的抗病毒药物磷酸氯喹(CQ)的吸附剂。系统研究了 SA/TA 的吸附性能,研究了包括 TA 质量含量、溶液 pH 值、吸附时间和初始 CQ 浓度等各种影响因素。还在废水中常见的无机和有机共存物质以及不同实际水样存在的情况下进行了吸附研究。批量实验结果表明,与前驱体 SA 水凝胶相比,SA/TA 可以在较宽的 pH 值范围(3.0-10.0)内保持更高和更稳定的 CQ 吸收,这是由于添加了 TA-Ti(IV)配位网络。在初始 pH 为 9.0 时,1:1(质量比)SA/TA(SA/TA2)的最大实验 CQ 吸收量高达 0.699mmol/g。高浓度的共存 NaCl 由于静电屏蔽作用明显降低了 SA/TA2 的 CQ 吸收,此外,Ca(II)和 Mg(II)等二价阳离子由于竞争吸附也抑制了 CQ 的吸附。然而,腐殖酸对这种吸附几乎没有影响。考虑到明显的吸附性能、各种因素的上述影响以及光谱特性,建议存在多种相互作用,包括螯合作用、静电相互作用、π-π 电子给体-受体相互作用和氢键。即使经过六次吸附-解吸循环,SA/TA 对 CQ 的吸附容量也略有损失,且保持物理化学结构稳定性。除 CQ 外,SA/TA 还可有效用于吸附两种其他抗病毒药物,即硫酸羟氯喹和奥司他韦磷酸盐。这项工作为设计和制备新型吸附剂提供了一种有效的策略,可在较宽的 pH 范围内有效吸附抗病毒药物。

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