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Comparative study of the adsorption of phenol and salicylic acid from aqueous solution onto nonionic polymeric resins

机译:非离子型聚合物树脂对水溶液中苯酚和水杨酸的吸附比较研究

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摘要

Phenolic compounds are undesirable pollutants in the environment,specifically in aquatic media.Salicylic acid is a phenolic compound,and,together with phenol,which is its precursor,it is present in wastewaters from different industries.Adsorption being one of the most common ways for these wastewaters treatment,the comparison of the adsorption on these compounds onto two different polymeric resins (Amberlite XAD16 and Duolite S861) was the aim of this work.The adsorptive behavior of these resins has been compared in batch and fixed bed operation.Langmuir isotherm model was used to fit equilibrium data.In order to ascertain the fixed bed implementation of the adsorbents,adsorption runs were carried out at laboratory scale and the effects of temperature and flow-rate were addressed.For modelling,the adsorption kinetics a linear driving force (LDF) approximation was used.The LDF rate constant accounting for macropore diffusion and adsorption and the film mass transfer resistance were grouped in an overall mass transfer coefficient.According to the results,the capacity of Duolite S861 for phenol adsorption (96.13 mg g~(-1)) was slightly higher than for Amberlite XAD (81.68 mg g~(-1)).On the contrary,Amberlite XAD salicylic acid adsorptive capacity (85.06 mg g~(-1)) was nearly double than that of Duolite S861 (43.01 mg g~(-1)).From a kinetic point of view,for both the resins the overall mass transfer coefficient was higher when adsorbing phenol than salicylic acid.Nevertheless,in the temperature range studied (293-333 K),the separation parameter for thermal parametric pumping purification is larger for Amberlite XAD16 for both phenol and salicylic acid.
机译:苯酚类化合物是环境中有害的污染物,尤其是在水生介质中。水杨酸是一种酚类化合物,与苯酚(其前体)一起存在于不同行业的废水中。吸附是最常见的吸附方法之一。在这些废水处理中,比较了这些化合物在两种不同的聚合树脂(Amberlite XAD16和Duolite S861)上的吸附性能。比较了这些树脂在间歇和固定床操作中的吸附性能。Langmuir等温线模型为了确定吸附剂的固定床实施方案,在实验室规模下进行了吸附运行,并研究了温度和流速的影响。为进行建模,吸附动力学采用线性驱动力(使用LDF近似法。考虑到大孔扩散和吸附以及膜传质阻力的LDF速率常数为结果表明,Duolite S861的苯酚吸附能力(96.13 mg g〜(-1))略高于Amberlite XAD(81.68 mg g〜(-1))。相反,Amberlite XAD水杨酸的吸附能力(85.06 mg g〜(-1))几乎是Duolite S861(43.01 mg g〜(-1))的两倍。从动力学角度来看,两种树脂对吸附苯酚时,总传质系数高于水杨酸。但是,在研究的温度范围(293-333 K)中,Amberlite XAD16用于苯酚和水杨酸的热参量抽提分离参数较大。

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