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Study of removal of phenol species by adsorption on non-ionic silicon surfactant after cloud point extraction methodology

机译:浊点萃取法吸附在非离子硅表面活性剂上去除酚类的研究

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In the present study, CPE was carried out to extract phenol species from aqueous solution using the non-ionic silicone surfactant of DC193C. The non-ionic silicone surfactant of DC193C was chosen because of it is well known as an environmentally friendly solvent. The adsorption mechanism between the non-ionic silicone surfactant of DC193C and phenol species was studied. Our results indicate that, the adsorption of the phenol species from aqueous solution on the DC193C surfactant was in proportion to their hydrophobicities, according to the following order; 4-NP<2,4-DCP<2,4,6-TCP. The data of the equilibrium concentration and amount of adsorption in the CPE system for the three phenols species follow the Langmuir-type isotherm. On some assumptions, a developed Langmuir isotherm was used to calculate the feed surfactant concentration required for the removal of the three phenol species up to the extraction efficiency of 90%. The developed correlations may be useful to design a cloud point extractor of a desired efficiency. Thermodynamic parameters including the Gibbs free energy (G degrees), enthalpy (H degrees), and entropy (S degrees) were also calculated. These parameters indicated that the adsorption of the three phenol species solubilized into the non-ionic DC193C surfactant is feasible, spontaneous, and endothermic in the temperature ranging from 298 to 353 K.
机译:在本研究中,使用DC193C的非离子型有机硅表面活性剂进行CPE提取水溶液中的酚类。选择DC193C的非离子型有机硅表面活性剂是因为它是众所周知的环保溶剂。研究了DC193C非离子有机硅表面活性剂与酚类的吸附机理。我们的结果表明,DC193C表面活性剂从水溶液中吸附的酚类与疏水性成正比,顺序如下: 4-NP <2,4-DCP <2,4,6-TCP。三种酚的CPE体系中平衡浓度和吸附量的数据遵循Langmuir型等温线。在某些假设下,使用发达的Langmuir等温线来计算除去三种酚种类所需的进料表面活性剂浓度,直至提取效率达到90%。所建立的相关性对于设计期望效率的浊点提取器可能是有用的。还计算了包括吉布斯自由能(G度),焓(H度)和熵(S度)在内的热力学参数。这些参数表明在298至353 K的温度范围内,增溶到非离子DC193C表面活性剂中的三种酚的吸附是可行的,自发的并且是吸热的。

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