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Microporous organic polymers for efficient removal of sulfamethoxazole from aqueous solutions

机译:微孔有机聚合物,用于从水溶液中有效地除去磺胺甲恶唑

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摘要

Widespread use of pharmaceuticals, especially antibiotics is causing serious contamination of both surface and underground water. In this study, four different microporous organic polymers (MOP): microporous triazine polymer (MCTP), carbonyl-incorporated aromatic polymer (CBAP), CBAP-functionalized with ethylenediamine (CBAP-EDA), and CBAP-functionalized with sulfonic acid (CBAP-SO3H) were synthesized and tested for adsorptive removal of the common antibiotic sulfamethoxazole (SMX) from aqueous solutions. MCTP with the largest BET surface area (1406 m(2)/g) attained equilibrium in 1 h and showed the highest SMX adsorption capacities (ca. 483 mg/g), significantly better than that of a commercial activated carbon (AC, 259 mg/g) with the sequence of AC < CBAP-EDA < CBAP < CBAP-SO3H < MCTP. The pseudo-second-order model validated the adsorption kinetics while the Langmuir isotherm model gave the best fit for the experimental isotherm data involving MCTP. The effect of the solution pH on adsorption revealed that MCTP performs better in acidic than in basic media. pi-pi stacking interaction between SMX and MCTP was used to explain the adsorption behavior. Easy recyclability and reusability of MCTP were also demonstrated, and higher than 95% adsorption capacity after the 4th runs was possible after ethanol or acetone washing applied for adsorbent regeneration.
机译:广泛使用药物,尤其是抗生素导致表面和地下水的严重污染。在该研究中,四种不同的微孔有机聚合物(MOP):微孔三嗪聚合物(MCTP),碳基掺入芳族聚合物(CBAP),用乙二胺(CBAP-EDA)的CBAP官能化,并用磺酸官能化(CBAP- SO3H)被合成并测试了从水溶液中吸附的常见抗生素磺胺甲氧唑(SMX)的吸附除去。 MCTP具有最大的BET表面积(1406米(2)/ g)在1小时内达到平衡,并显示出最高的SMX吸附容量(约483mg / g),显着优于商业活性炭(AC,259) Mg / g)具有AC

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