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首页> 外文期刊>Chemical engineering journal >Adsorption of bisphenol-A by pH-responsive polymer grafted on porous polyethylene vinyl acetate disk: Effect of the side-chain length of hydrophobic component in polymer on adsorption
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Adsorption of bisphenol-A by pH-responsive polymer grafted on porous polyethylene vinyl acetate disk: Effect of the side-chain length of hydrophobic component in polymer on adsorption

机译:多孔聚乙烯乙酸乙烯酯圆盘上接枝的pH响应聚合物对双酚A的吸附:聚合物中疏水成分的侧链长度对吸附的影响

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Random copolymers of sodium 2-(acrylamido)-2-methylpropanesulfonate (NaAMPS) and sodium 6-methacrylamidohexanoate (NaMmH), [poly(NaAMPS-co-NaMmH)], and NaAMPS and 8-methacry-lamidooctanoate (NaMmO), [poly(NaAMPS-co-NaMmO)], were grafted on the surface of a porous polyethylene vinyl acetate (PEVA) disk by peroxide plasma polymerization, respectively. By permeating the pH-adjusted bisphenol-A (BPA) solution through the disk, the adsorption behavior of BPA was examined. The pendant alkyl carboxyl groups in the hydrophobic components, i.e., NaMmH and NaMmO, were pro-tonated at pH values lower than 7. The formation of polymer colloid composed of a single polymer chain, i.e., unimolecular micelle, by poly(NaAMPS-co-NaMmO) was observed according to the protonation of NaMmO. In contrast, polymer colloid formation by poly(NaAMPS-co-NaMmH) was not observed, even when NaMmH was protonated. The adsorption of BPA on the polymer-grafted PEVA disks increased abruptly at pH 10, although the protonation of NaMmH and NaMmO was not observed at this pH. Furthermore, the adsorption amount of BPA increased at pH 7, the pH at which the protonation of NaMmH and NaMmO occurred. In the case of poly(NaAMPS-co-NaMmO), BPA molecules were effectively and stably encapsulated in the hydrophobic microdomains in the micelles at pH values lower than 7. In contrast, in the case of poly(NaAMPS-co-NaMmH), BPA easily desorbed by permeation of an acidic solution through the disk.
机译:2-(丙烯酰胺基)-2-甲基丙烷磺酸钠(NaAMPS)和6-甲基丙烯酰胺基己酸钠(NaMmH),[聚(NaAMPS-co-NaMmH)]以及NaAMPS和8-甲基丙烯酸-酰胺基辛酸酯(NaMmO)的无规共聚物(NaAMPS-co-NaMmO)(NaAMPS-co-NaMmO)]分别通过过氧化物等离子体聚合接枝到多孔聚乙烯乙酸乙烯酯(PEVA)盘的表面上。通过将pH调节的双酚A(BPA)溶液通过圆盘渗透,检查了BPA的吸附行为。疏水性组分NaMmH和NaMmO中的侧链烷基羧基在pH值低于7时被质子化。由单根聚合物链(即单分子胶束)形成的聚合物胶体由聚(NaAMPS-co根据NaMmO的质子化观察到-NaMmO)。相反,即使NaMmH被质子化,也未观察到由聚(NaAMPS-co-NaMmH)形成的聚合物胶体。尽管在此pH下未观察到NaMmH和NaMmO的质子化,但在pH 10时,BPA在聚合物接枝的PEVA圆盘上的吸附突然增加。此外,在pH 7,NaMmH和NaMmO发生质子化的pH下,BPA的吸附量增加。在聚(NaAMPS-co-NaMmH)的情况下,BPA分子被有效稳定地包裹在pH值低于7的胶束的疏水微区中。相反,在聚(NaAMPS-co-NaMmH)的情况下, BPA易被酸性溶液透过圆盘渗透而解吸。

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