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氧化石墨烯改性κ-卡拉胶/海藻酸钠双网络水凝胶用于批式和固定床柱系统中有效吸附抗生素。

Graphene oxide modified κ-carrageenan/sodium alginate double-network hydrogel for effective adsorption of antibiotics in a batch and fixed-bed column system.

机构信息

College of Marine Ecology and Environment, Shanghai Ocean University, No 999, Huchenghuan Road, Shanghai 201306, PR China.

College of Marine Ecology and Environment, Shanghai Ocean University, No 999, Huchenghuan Road, Shanghai 201306, PR China; Shanghai Engineering Research Center of Solid Waste Treatment and Resource Recovery, Shanghai Jiao Tong University, Shanghai 200240, PR China.

出版信息

Sci Total Environ. 2022 Sep 1;837:155662. doi: 10.1016/j.scitotenv.2022.155662. Epub 2022 May 4.

DOI:10.1016/j.scitotenv.2022.155662
PMID:35525355
Abstract

The treatment of antibiotic wastewater pollution is imminent, the studies of double-network hydrogels as adsorbents have gradually increased, it is quite important to develop a non-toxic hydrogel with excellent properties as adsorbent. In this study, a graphene oxide modified κ-carrageenan/sodium alginate (GO-κ-car/SA) gel was prepared by calcium hardening. The addition of GO nanosheets enhances the mechanical strength and anti-swelling property of the double-network hydrogel, making it possible for the application in the fixed-bed column system. The elastic modulus is twice as much as the hydrogel without GO. The maximum adsorption capacity in the experiments of the GO-κ-car/SA gel for CIP and OFL can reach 272.18 mg g and 197.39 mg g, respectively. The GO-κ-car/SA gel always remains negatively charged, which means that the adsorption capacity of the gel is better in an acidic environment. In the fixed-bed column system, through Thomas fitting, the maximum adsorption capacity of the simulated OFL wastewater (200 mg L) is 83.99 mg g. The adsorption mechanism of antibiotics by GO-κ-car/SA gel depends on hydrogen bond, functional groups and electrostatic adsorption. The good hydrophilic properties, excellent adsorption capacity and high mechanical strength, which can ensure that the adsorbent is in full contact with the contaminants without major deformation or damage, makes the study more helpful for the further study on hydrogel in the fixed-bed column system.

摘要

抗生素废水污染的处理迫在眉睫,作为吸附剂的双网络水凝胶的研究逐渐增多,开发一种具有优良性能的无毒水凝胶作为吸附剂是非常重要的。本研究采用钙离子交联法制备了氧化石墨烯改性κ-卡拉胶/海藻酸钠(GO-κ-car/SA)凝胶。GO 纳米片的加入增强了双网络水凝胶的机械强度和抗溶胀性能,使其有可能应用于固定床柱系统。弹性模量是没有 GO 的水凝胶的两倍。GO-κ-car/SA 凝胶对 CIP 和 OFL 的实验最大吸附容量分别可达 272.18 和 197.39 mg g。GO-κ-car/SA 凝胶始终带负电荷,这意味着凝胶在酸性环境中的吸附容量更好。在固定床柱系统中,通过 Thomas 拟合,模拟 OFL 废水(200 mg L)的最大吸附容量为 83.99 mg g。GO-κ-car/SA 凝胶吸附抗生素的机制依赖于氢键、官能团和静电吸附。良好的亲水性、优异的吸附容量和较高的机械强度,能确保吸附剂与污染物充分接触,而不会发生大的变形或损坏,这使得研究更有助于深入研究固定床柱系统中的水凝胶。

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