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室温合成的水稳定 Zr 基金属有机凝胶/海藻酸钠珠对盐酸金霉素吸附的综合研究

Comprehensive insight into adsorption of chlortetracycline hydrochloride by room-temperature synthesized water-stable Zr-based metal-organic gel/sodium alginate beads.

机构信息

Key Lab of Groundwater Resources and Environment, Ministry of Education, Jilin University, 2519 Jiefang Road, Changchun 130021, PR China.

International Joint Research Laboratory of Nano-Micro Architecture Chemistry, Institute of Theoretical Chemistry, College of Chemistry, Jilin University, Changchun 130021, PR China.

出版信息

Environ Res. 2023 Sep 1;232:116339. doi: 10.1016/j.envres.2023.116339. Epub 2023 Jun 7.

Abstract

Chlortetracycline hydrochloride (CTC) is one of the prevailing antibiotic pollutants that harm both environmental ecosystem and human health. Herein, Zr-based metal-organic gels (Zr-MOGs) with lower-coordinated active sites and hierarchically porous structures are fabricated via a facile straightforward room-temperature strategy for CTC treatment. More importantly, we incorporated the powder Zr-MOGs into low-cost sodium alginate (SA) matrix to achieve shaped Zr-based metal-organic gel/SA beads for enhancing the adsorption ability and ameliorating the recyclability. The Langmuir maximum adsorption capacities of Zr-MOGs and Zr-MOG/SA beads could reach 143.9 mg/g and 246.9 mg/g, respectively. What's more, in the manual syringe unit and continuous bead column experiments, Zr-MOG/SA beads could achieve an eluted CTC removal ratio as high as 96.3% and 95.5% in the river water sample, respectively. On top of that, the adsorption mechanisms were put forward as a combination of pore filling, electrostatic interaction, hydrophilic-lipophilic balance, coordination, π-π interaction as well as hydrogen bonding interaction. This study outlines a workable strategy for the facile preparation of candidate adsorbents for wastewater treatment.

摘要

盐酸金霉素(CTC)是一种流行的抗生素污染物,它危害着环境生态系统和人类健康。在此,我们通过简便的室温策略制备了具有低配位活性位点和分级多孔结构的锆基金属有机凝胶(Zr-MOGs),用于 CTC 处理。更重要的是,我们将粉末状 Zr-MOGs 掺入低成本的海藻酸钠(SA)基质中,以实现形状可控的 Zr 基金属有机凝胶/SA 珠,从而提高吸附能力并改善可回收性。Zr-MOGs 和 Zr-MOG/SA 珠的最大 Langmuir 吸附容量分别可达 143.9 mg/g 和 246.9 mg/g。此外,在手动注射器单元和连续珠柱实验中,Zr-MOG/SA 珠在河水样品中的洗脱 CTC 去除率分别高达 96.3%和 95.5%。除此之外,还提出了吸附机理,包括孔填充、静电相互作用、亲水-疏水平衡、配位、π-π 相互作用以及氢键相互作用。本研究为废水处理中候选吸附剂的简便制备提供了一种可行的策略。

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