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Adsorption and recovery of nonylphenol ethoxylate on a crosslinked beta-cyclodextrin-carboxymethylcellulose polymer

机译:壬基酚乙氧基化物在交联的β-环糊精-羧甲基纤维素聚合物上的吸附和回收

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A study of adsorption/recovery of nonylphenol 9 mole ethoxylate (NP9EO) on a crosslinked beta-cyclodextrin-carboxymethylcellulose (beta-CD-CMC) polymer was carried out by ultraviolet-visible (UV-vis) and Fourier transform infrared (FTIR) spectroscopies. The adsorption was performed in mixtures containing 500 mg of the beta-CD-CMC polymer and aqueous NP9EO solutions at concentrations 12-82 mg/L, whereas the recovery of NP9EO was effectuated by shaking the beta-CD-CMC polymer loaded with methanol. The assays were made at 25 degrees C and atmospheric pressure under agitation. The results have shown that the adsorption is a rapid process and the beta-CD-CMC polymer exhibits a high NP9EO adsorption capacity of 83-92w% (1.1-6.8 mg NP9EO/g beta-CD-CMC polymer) dependent of the initial NP9EO concentration in liquid phase. This adsorption may involve the formation of an inclusion complex beta-CD-NP9EO and a physical adsorption in the polymer network. The adsorption equilibrium measurements, which were analyzed using the Langmuir isotherm, have indicated a monolayer coverage and the homogeneous distribution of active sites at the surface of the beta-CD-CMC polymer. Moreover, the negative value obtained for the free energy change (-13.2 kJ/mol) has indicated that the adsorption process is spontaneous. In parallel, the beta-CD-CMC polymer exhibited a high NP9EO recovery efficiency of 97 w% that may occur through a decrease of binding strength between beta-CD-CMC polymer and NP9EO. Together, these results suggest that the beta-CD-CMC polymer could constitute a good adsorbent for removing nonylphenol ethoxylates from wastewater due to its high adsorption capacity and non-toxic character of beta-CD and CMC to environment.
机译:通过紫外-可见光谱和傅里叶变换红外光谱研究了壬基酚9摩尔乙氧基化物(NP9EO)在交联的β-环糊精-羧甲基纤维素(β-CD-CMC)聚合物上的吸附/回收率。 。吸附是在含有500 mgβ-CD-CMC聚合物和NP9EO水溶液的浓度为12-82 mg / L的混合物中进行的,而NP9EO的回收是通过摇晃装有甲醇的β-CD-CMC聚合物来实现的。在25℃和大气压下在搅拌下进行测定。结果表明,吸附是一个快速过程,β-CD-CMC聚合物表现出83-92w%的高NP9EO吸附能力(1.1-6.8 mg NP9EO / gβ-CD-CMC聚合物),取决于初始NP9EO液相浓度。这种吸附可能涉及在聚合物网络中形成包合物β-CD-NP9EO和物理吸附。使用Langmuir等温线进行分析的吸附平衡测量结果表明,单层覆盖和β-CD-CMC聚合物表面活性位的均匀分布。而且,对于自由能变化(-13.2kJ / mol)获得的负值表明吸附过程是自发的。同时,β-CD-CMC聚合物表现出97 w%的高NP9EO回收效率,这可能是由于β-CD-CMC聚合物与NP9EO之间的结合强度降低而引起的。总之,这些结果表明,β-CD-CMC聚合物由于其高吸附能力以及β-CD和CMC对环境的无毒特性,可以构成从废水中去除壬基酚乙氧基化物的良好吸附剂。

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