首页> 外文期刊>Arabian Journal for Science and Engineering. Section A, Sciences >Modification of Natural Zeolite by Carboxylate Compounds and Minerals for Removal of Zinc Ions from Wastewater: Equilibrium and Kinetic Studies
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Modification of Natural Zeolite by Carboxylate Compounds and Minerals for Removal of Zinc Ions from Wastewater: Equilibrium and Kinetic Studies

机译:通过羧酸盐化合物和矿物改性天然沸石,从废水中除去锌离子:平衡和动力学研究

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摘要

In this study, zeolite composite with different compounds (minerals containing: gypsum, gypsum- bentonite, bentonite, calcite and pumice, and carboxylates containing: tartrate, citrate and oxalate) was investigated as an adsorbent of zinc ions. The oxalate-loaded zeolite composite was recognized as the best composite to remove zinc. This composite was characterized by X-ray diffraction and FTIR spectroscopy. The effect of initial Zn(I) concentration and mass of adsorbent have been investigated on adsorption process. The equilibrium study was performed and followed by six different isotherm models which include two-parameter (Langmuir, Freundlich, Temkin and D-R) and three-parameter (Redlich-Peterson and Khan) models. The successful fitted results were obtained by using Langmuir model which indicated to homogeneity adsorption and the maximum adsorption capacity of oxalate-loaded zeolite composite for zinc ions (57 mg/g). Based on free energy of adsorption value (12KJ/mol), interaction between zinc ions and oxalate-loaded zeolite composite is chemical adsorption, that is to say, ion exchange. The kinetic of adsorption has been investigated by considering four kinetic equations as pseudofirst- order, pseudo-second-order, intra-particle diffusion and Elovich models that kinetic mechanism is well described by pseudo-second-order model with correlation coefficient (r~2) more than 0.994. This means that amount of oxalate-loaded zeolite composite and concentration of Zn(II) are main rate of adsorption controller.
机译:在该研究中,研究了不同化合物的沸石复合材料(含有:石膏,石膏 - 膨润土,膨润土,方解石和浮石,含有:酒石酸盐,柠檬酸盐和草酸盐)作为锌离子的吸附剂。将载氧酸盐的沸石复合物被认为是最佳复合材料以除去锌。该复合材料的特征在于X射线衍射和FTIR光谱。已经研究了吸附过程的初始Zn(i)浓度和质量的吸附剂的效果。进行均衡研究,然后进行六种不同的等温模型,包括两参数(Langmuir,Freundlich,Temkin和D-R)和三参数(雷尔里希 - Peterson和Khan)模型。通过使用表明均匀性吸附的Langmuir模型和锌离子加载的沸石复合材料的最大吸附能力(57mg / g)来获得成功的拟合结果。基于吸附值的自由能量(12KJ / mol),锌离子和载氧酸盐沸石复合物之间的相互作用是化学吸附,即表示离子交换。通过将四个动力学方程视为假翅目,伪二阶,颗粒的颗粒型扩散和ELOVICH模型来研究吸附的动力学,该伪二阶模型具有相关系数的伪二阶模型(R〜2 )超过0.994。这意味着荷兰酸盐的沸石复合材料和Zn(II)的浓度是吸附控制器的主要速率。

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