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不同 N-乙烯基吡咯烷酮含量聚合物对水溶液中四环素的高效吸附:平衡、动力学和动态吸附。

The efficient adsorption of tetracycline from aqueous solutions onto polymers with different N-vinylpyrrolidone contents: equilibrium, kinetic and dynamic adsorption.

机构信息

School of Environmental Engineering, Wuhan Textile University, Wuhan, 430073, People's Republic of China.

Engineering Research Center for Clean Production of Textile Dyeing and Printing, Ministry of Education, Wuhan, 430073, People's Republic of China.

出版信息

Environ Sci Pollut Res Int. 2023 Feb;30(6):15158-15169. doi: 10.1007/s11356-022-23243-x. Epub 2022 Sep 27.

Abstract

Extensive use of antibiotics in the world will cause potential risks to human health and ecosystems. The removal of these antibiotics has attracted much attention. Composite materials are growing attention for diverse pollutants separation and removal based on their specific functionality and surface area. In this study, a series of N-vinylpyrrolidone-divinylbenzene polymers (NVPD) with different N-vinylpyrrolidone (NVP) contents were facilely prepared for the adsorption of tetracycline (TC). The effect of polymer surface properties and aqueous solution chemistry (pH, ionic strength, humic acid) on TC adsorption was further studied. The dynamic adsorption and regeneration experiments were also assessed. The results showed that only 25% of NVP was involved in the reaction. When NVP dosage (%) was 75%, polymer (NVPD-g) owned the largest BET surface area (613.23 m/g) and obtained the maximum TC adsorption capacities (258.76 mg/g). In the kinetic, the adsorption between TC and polymers with NVP was controlled by chemical adsorption and intra-particle diffusion. The TC adsorption process of NVPD-g depended on the contribution of the hydrophobic effect, electrostatic interactions, H-bonding, π-π electron donor-acceptor (EDA) interactions, and cation-π bonding. Moreover, the removal efficiency of TC by NVPD-g was enhanced in the presence of humic acid (HA) in the dynamic adsorption and 1197 BV (2394 mL) of TC simulated wastewater can be treated. These findings suggest that NVPD-g has a potential application in the purification of TC.

摘要

抗生素在世界范围内的广泛使用将对人类健康和生态系统造成潜在风险。这些抗生素的去除引起了广泛关注。基于其特定的功能和表面积,复合材料在各种污染物的分离和去除方面受到越来越多的关注。在这项研究中,我们制备了一系列具有不同 N-乙烯基吡咯烷酮(NVP)含量的 N-乙烯基吡咯烷酮-二乙烯基苯聚合物(NVPD),用于吸附四环素(TC)。进一步研究了聚合物表面性质和水相化学(pH 值、离子强度、腐殖酸)对 TC 吸附的影响。还评估了动态吸附和再生实验。结果表明,只有 25%的 NVP 参与了反应。当 NVP 用量(%)为 75%时,聚合物(NVPD-g)拥有最大的 BET 表面积(613.23 m/g),并获得了最大的 TC 吸附容量(258.76 mg/g)。在动力学方面,TC 与含 NVP 的聚合物之间的吸附受化学吸附和颗粒内扩散控制。NVPD-g 对 TC 的吸附过程取决于疏水作用、静电相互作用、氢键、π-π 电子供体-受体(EDA)相互作用和阳离子-π 键的贡献。此外,在动态吸附过程中,NVPD-g 对 TC 的去除效率在腐殖酸(HA)存在的情况下得到提高,可处理 1197BV(2394mL)的 TC 模拟废水。这些发现表明 NVPD-g 在 TC 的净化方面具有潜在的应用前景。

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