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首页> 外文期刊>Water Science and Technology >Adsorption study of a commonly used antidepressant drug, fluoxetine hydrochloride, onto a crosslinked β-cyclodextrin-carboxymethylcellulose polymer
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Adsorption study of a commonly used antidepressant drug, fluoxetine hydrochloride, onto a crosslinked β-cyclodextrin-carboxymethylcellulose polymer

机译:常用的抗抑郁药盐酸氟西汀在交联的β-环糊精-羧甲基纤维素聚合物上的吸附研究

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A study was carried out by ultraviolet-visible (UV-vis) and Fourier transform infrared (FTIR) spectroscopies to establish the efficiency of adsorption of fluoxetine hydrochloride (FLU), onto a crosslinked β-cyclodextrin-carboxymethylcellulose (β-CD-CMC) polymer. The adsorption was performed in mixtures containing aqueous FLU solution at 20 mg/L and 0.01-0.30 g of the β-CD-CMC polymer, at 25°C, and atmospheric pressure under stirring. The results have revealed that the adsorption is a rapid process and the polymer possesses a high affinity for FLU with an adsorption capacity of 5.076 mg of FLU/g of polymer. This adsorption may involve the formation of a stable inclusion compound β-CD-CMC/FLU through the penetration of the FLU aromatic ring (A and/or B) into the β-CD cavity, and a physical adsorption with the polymer network. The inclusion compound can be stabilized by the formation of H-bonds between the -CF _3 group of FLU and the 6′-OH group of β-CD, and van der Waals interactions between the FLU aromatic ring and β-CD cavity. The data from a kinetic study have also indicated that the adsorption process was well described by the pseudosecond- order kinetic model, in which the initial adsorption rate and constant were estimated at 1.938 mg/g min and 0.075 g/mg min, respectively. Moreover, the results of adsorption equilibrium fitted the Freundlich isotherm, indicating a multilayer coverage and heterogeneous surface. Together, these results suggest that the adsorption of FLU onto the crosslinked β-CD-CMC polymer could constitute an advantageous technology for removing this commonly used antidepressant drug from wastewater due to the high adsorption capacity of the polymer and non-toxic character of β-CD to humans and environment.
机译:通过紫外可见光谱(UV-vis)和傅里叶变换红外光谱(FTIR)进行了研究,以确定盐酸氟西汀(FLU)在交联的β-环糊精-羧甲基纤维素(β-CD-CMC)上的吸附效率。聚合物。在包含20mg / L的FLU水溶液和0.01-0.30g的β-CD-CMC聚合物的混合物中,在25℃和大气压下在搅拌下进行吸附。结果表明,吸附是一个快速过程,并且该聚合物对FLU具有高亲和力,其吸附容量为5.076 mg FLU / g聚合物。这种吸附可能涉及通过FLU芳香环(A和/或B)渗透到β-CD腔中形成稳定的包合物β-CD-CMC/ FLU,以及与聚合物网络的物理吸附。可以通过在FLU的-CF _3基团与β-CD的6'-OH基团之间形成H键以及FLU芳香环与β-CD腔之间的范德华相互作用来稳定包合物。动力学研究的数据还表明,吸附过程可以通过拟二级动力学模型很好地描述,其中初始吸附速率和常数分别估计为1.938 mg / g min和0.075 g / mg min。此外,吸附平衡的结果符合弗氏等温线,表明存在多层覆盖和表面不均匀。总之,这些结果表明,FLU在交联的β-CD-CMC聚合物上的吸附可能构成一种从废水中去除这种常用的抗抑郁药的有利技术,因为该聚合物的吸附能力高且β-光盘给人类和环境。

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