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首页> 外文期刊>Journal of Molecular Liquids >Effect of the surface functionalization of a waste-derived activated carbon on pharmaceuticals' adsorption from water
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Effect of the surface functionalization of a waste-derived activated carbon on pharmaceuticals' adsorption from water

机译:废弃物衍生的活性炭表面官能化对水中药物吸附的影响

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The functionalization of a paper mill sludge-based activated carbon (AC) was addressed in this work for the first time. Four different procedures have been accomplished in order to introduce amine functional groups (AC-NH2 and AC-APTES), thiol functional groups (AC-MPTMS), and a covalent organic polymer (AC-COP) onto the AC surface. The materials were characterized showing that the functionalization was succeeded, with a reduction of the specific surface area (S-BET), except for AC-MPTMS. The produced AC were tested for the removal of six pharmaceuticals - carbamazepine (CBZ), lorazepam (LOR), sulfamethoxazole (SMX), piroxicam (PIR), paroxetine (PAR), and venlafaxine (VEN) - from different matrices (ultrapure water, ultrapure water with pH adjusted to 7.6, and effluent from a municipal wastewater treatment plant (WWTP)). The results indicated textural parameters, S-BET, micropore area and micropore volume, as the main factors influencing the adsorption, except for AC-NH2 which showed a great specificity for PAR and VEN. Also, AC-MPTMS presented a high removal percentage of the antibiotic SMX in wastewater. Overall, AC-MPTMS and AC-APTES provided, respectively, the best and the poorest adsorptive performance. Although the functionalization did not result in the enhancement of pharmaceuticals' adsorption as compared with the parent AC, the selectivity for some pharmaceuticals was highly improved. (C) 2019 Elsevier B.V. All rights reserved.
机译:在这项工作中首次解决了纸碎片污泥的活性炭(AC)的官能化。已经完成了四种不同的程序,以将胺官能团(AC-NH 2和AC-APT),硫醇官能团(AC-MPTM)和共价有机聚合物(AC-COP)引入AC表面上。表征物的表明,除了AC-MPTM外,官能化成功地成功,特异性表面积(S-BET)还原。测试所产生的AC用于去除六种药物 - 尿嘧啶(CBZ),洛拉西泮(LOR),磺胺甲恶唑(SMX),皮索里康(PIR),帕罗西汀(PAR)和Venlafaxine(Ven) - 来自不同基质(超纯水,用pH调节至7.6的纯水,来自市政废水处理厂(WWTP)的流出物。结果表明纹理参数,S-BET,微孔面积和微孔体积,作为影响吸附的主要因素,除了AC-NH2,表现出对PAR和VEN的巨大特异性。此外,AC-MPTMS在废水中呈现出高抗生素SMX的高脱离百分比。总体而言,AC-MPTMS和AC-APTES分别提供,最佳和最贫困的吸附性能。尽管与母体AC相比,功能化并未导致药物吸附的增强,但是一些药物的选择性高度改善。 (c)2019 Elsevier B.v.保留所有权利。

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