首页> 外文期刊>International Journal of Environmental Science and Technology >Remediation of manganese in mine impacted water by clay/manganese oxide hybrid adsorbent: equilibrium, kinetics and thermodynamic studies
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Remediation of manganese in mine impacted water by clay/manganese oxide hybrid adsorbent: equilibrium, kinetics and thermodynamic studies

机译:粘土/锰氧化物杂交吸附剂的矿井抗冲击水中锰的整理:平衡,动力学和热力学研究

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摘要

The present study investigated the potential of clay/manganese oxide (CMnO) hybrid adsorbent for the removal of manganese (Mn2+) from mine impacted water (MIW). The adsorbent was characterised by X-ray diffraction, Fourier transform infra-red (FT-IR), scanning electron microscopy (SEM), Brunauer-Emmet-Teller and X-ray photoelectron spectroscopy (XPS) techniques. The equilibrium sorption capacity was depended on solution pH, MnO content of the clay, concentration and temperature. Isothermal adsorption highly inclined towards Freundlich isotherm model while thermodynamic parameters directed that the adsorption process was spontaneous and endothermic in nature. The adsorption kinetics of Mn2+ onto CMnO fitted well with the pseudo-second-order model and the value of activation energy of adsorption (E-a) was 32kJ/mol, inferring that the adsorption proceeded by activated chemisorption process. Both intra-particle and film diffusion mechanisms were found to be the sorption rate-controlling steps. Experiments with real MIW water revealed that CMnO exhibited high Mn2+ removal efficiency in the presence of interfering ions but anions removal posed a great challenge. The XPS, FT-IR and pH analyses suggested that oxidation, complexation and ion-exchange mechanisms were responsible for Mn2+ removal by CMnO. These findings demonstrate that CMnO could serve as an inexpensive adsorbent for polishing Mn2+ polluted water.
机译:本研究研究了粘土/锰氧化物(CMNO)杂化吸附剂的潜力从矿井撞击水(MIW)中除去锰(MN2 +)。吸附剂的特征在于X射线衍射,傅里叶变换红外线(FT-IR),扫描电子显微镜(SEM),Brunauer-Emmet-exers和X射线光电子能谱(XPS)技术。平衡吸附能力取决于溶液pH,MNO含量的粘土,浓度和温度。等温吸附高度倾向于Freundlich等温线模型,而热力学参数指示吸附过程自发性和吸热本质上。 MN2 +上CMNO的吸附动力学与伪二阶模型很好,吸附(E-A)的激活能量值为32KJ / mol,推断出通过活化的化学吸附过程进行的吸附。发现颗粒中的颗粒和薄膜扩散机制都是吸附速率控制步骤。实验与真正的MIW水的实验表明,CMNO在干扰离子存在下表现出高MN2 +去除效率,但是阴离子去除构成了极大的挑战。 XPS,FT-IR和pH分析表明,氧化,络合和离子交换机制负责​​MN2 +通过CMnO除去。这些发现表明CMNO可以作为抛光MN2 +污染水的廉价吸附剂。

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