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Efficient removal of heavy metal ions using hydrophilic thiacalix[4]arene doped polyaniline prepared by emulsion polymerization: conductivity, isotherm and kinetic study

机译:通过乳液聚合制备的亲水噻唑并[4]芳烃掺杂的聚苯胺有效去除重金属离子:电导率,等温线和动力学研究

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The adsorption capacity of conductive polyaniline doped by thiacalix[4]arene tetrasulfonate (PANI-TCAS) towards Cu(II), Cd(II), Co(II) and Cr(III) was investigated through batch adsorption techniques, and the extent of adsorption was measured as a function of pH, initial metal ion concentration and contact time. It was found that the metal ion removal reached maximum at pH 8.0 and remained constant after 60 min. Experimental data was fitted to Langmuir, Freundlich, Redlich-Peterson and Temkin equation models with the maximum adsorption capacity calculated to be 833.3, 555.5, 526.3 and 500 for Cr3+, Cu2+, Co2+ and Cd2+, respectively, from the Langmuir isotherm model. The kinetic study was carried out through pseudo-first-order, pseudo-second-order, Elovich kinetic and intraparticle diffusion models in which the related correlation coefficient for each kinetic model showed that the pseudo-second-order rate equation was better described by the adsorption process. XRD spectra, SEM and TEM images of the adsorbent revealed a homogeneous distribution of nano-sized particle structure with a porous surface, the morphology of which brings about high adsorption capacity for the PANI-TCAS molecular nanocomposite which in turn was observed by the AFM micrograph. The conductivity of thiacalix[4]arene tetrasulfonate doped polyaniline after metal ion adsorption was also assessed, and the four-probe measurement technique revealed conductivity increment as high as 102.4 S cm(-1) with a 100 order of magnitude enhancement. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:通过分批吸附技术研究了噻唑杯[4]芳烃四磺酸盐(PANI-TCAS)掺杂的导电聚苯胺对Cu(II),Cd(II),Co(II)和Cr(III)的吸附能力,以及吸附程度。根据pH,初始金属离子浓度和接触时间测量吸附。发现金属离子的去除在pH 8.0达到最大并且在60分钟后保持恒定。将实验数据拟合到Langmuir,Freundlich,Redlich-Peterson和Temkin方程模型中,根据Langmuir等温模型,对Cr3 +,Cu2 +,Co2 +和Cd2 +的最大吸附容量分别计算为833.3、555.5、526.3和500。通过伪一阶,伪二阶,Elovich动力学和粒子内扩散模型进行了动力学研究,其中每个动力学模型的相关系数表明,伪二阶速率方程可以更好地描述为吸附过程。吸附剂的XRD光谱,SEM和TEM图像显示了具有多孔表面的纳米尺寸颗粒结构的均匀分布,其形态对PANI-TCAS分子纳米复合物具有很高的吸附能力,而这又通过AFM显微照片观察到。还评估了金属离子吸附后噻唑杯[4]芳烃四磺酸盐掺杂的聚苯胺的电导率,并且四探针测量技术显示电导率增加高达102.4 S cm(-1),幅度提高了100个数量级。版权所有(C)2015 John Wiley&Sons,Ltd.

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