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首页> 外文期刊>Environmental research >Tetracycline removal by polyelectrolyte copolymers in conjunction with ultrafiltration membranes through liquid-phase polymer-based retention
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Tetracycline removal by polyelectrolyte copolymers in conjunction with ultrafiltration membranes through liquid-phase polymer-based retention

机译:聚电解质共聚物结合超滤膜通过液相聚合物基保留去除四环素

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In this study, we used a liquid-phase polymer-based retention technique assisted by polyelectrolyte copolymers containing quaternary ammonium and sulfonate groups that are capable of removing the antibiotic tetracycline (TC) through electrostatic interactions. The polymers were synthesized using zwitterionic, anionic, and cationic monomers with the aim of obtaining copolymers with different charge balances at the ratios of 1:1, 2:1, and 1:2 (negative: positive). The parameters investigated for each copolymer included the pH, ionic strength, concentration of polymer, maximum retention capacity, and sorption-elution process at pH 11.0 and 3.0. The copolymers with a charge ratio of 1:2 achieved the highest retention (80.0%) at alkaline pH, while the copolymers with charge ratios of 2:1 and 1:1 exhibited the maximum retention (72.0%) at acidic pH. Based on these results, the pH and charge of the polyelectrolyte copolymers play important roles in the TC removal processes. Additionally, the maximum retention capacity (MRC) recorded was 731.2, 176.8, and 214.8 mg TC/g of copolymer in the first charge for the three copolymer polyelectrolytes, and the second charge of the MRC process did not improve compared with the first load.
机译:在这项研究中,我们使用了一种基于液相聚合物的保留技术,该技术由含有季铵和磺酸盐基团的聚电解质共聚物辅助,该共聚物能够通过静电相互作用去除抗生素四环素(TC)。使用两性离子,阴离子和阳离子单体合成聚合物,其目的是获得具有不同电荷平衡的共聚物,它们的比例为1:1、2:1和1:2(负:正)。对每种共聚物研究的参数包括pH,离子强度,聚合物浓度,最大保留容量以及在pH 11.0和3.0下的吸附-洗脱过程。电荷比为1:2的共聚物在碱性pH值下具有最高的保留率(80.0%),而电荷比为2:1和1:1的共聚物在酸性pH值下具有最大保留率(72.0%)。基于这些结果,聚电解质共聚物的pH和电荷在TC去除过程中起着重要作用。另外,三种共聚物聚电解质的第一次进料中记录的最大保留容量(MRC)为731.2、176.8和214.8 mg TC / g共聚物,与第一次加载相比,MRC工艺的第二次进料没有改善。

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