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The Adsorption of Cd(II) on Manganese Oxide Investigated by Batch and Modeling Techniques

机译:分批和模拟技术研究Cd(II)在氧化锰上的吸附

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摘要

Manganese (Mn) oxide is a ubiquitous metal oxide in sub-environments. The adsorption of Cd(II) on Mn oxide as function of adsorption time, pH, ionic strength, temperature, and initial Cd(II) concentration was investigated by batch techniques. The adsorption kinetics showed that the adsorption of Cd(II) on Mn oxide can be satisfactorily simulated by pseudo-second-order kinetic model with high correlation coefficients (R2 > 0.999). The adsorption of Cd(II) on Mn oxide significantly decreased with increasing ionic strength at pH < 5.0, whereas Cd(II) adsorption was independent of ionic strength at pH > 6.0, which indicated that outer-sphere and inner-sphere surface complexation dominated the adsorption of Cd(II) on Mn oxide at pH < 5.0 and pH > 6.0, respectively. The maximum adsorption capacity of Mn oxide for Cd(II) calculated from Langmuir model was 104.17 mg/g at pH 6.0 and 298 K. The thermodynamic parameters showed that the adsorption of Cd(II) on Mn oxide was an endothermic and spontaneous process. According to the results of surface complexation modeling, the adsorption of Cd(II) on Mn oxide can be satisfactorily simulated by ion exchange sites (X2Cd) at low pH and inner-sphere surface complexation sites (SOCd+ and (SO)2CdOH species) at high pH conditions. The finding presented herein plays an important role in understanding the fate and transport of heavy metals at the water–mineral interface.
机译:锰氧化物是次环境中普遍存在的金属氧化物。通过分批技术研究了Cd(II)在Mn氧化物上的吸附与吸附时间,pH,离子强度,温度和初始Cd(II)浓度的关系。吸附动力学表明,通过具有较高相关系数(R 2 6.0时,Cd(II)的吸附与离子强度无关,这表明外球和内球表面络合作用占主导分别在pH <5.0和pH> 6.0的Mn氧化物上吸附Cd(II)。根据Langmuir模型计算,在pH 6.0和298 K下,Mn氧化物对Cd(II)的最大吸附容量为104.17 mg / g。热力学参数表明Cd(II)在Mn氧化物上的吸附是吸热和自发过程。根据表面络合建模的结果,可以通过低pH值的离子交换位点(X2Cd)和内球表面络合位点(SOCd + )令人满意地模拟Cd(II)在Mn氧化物上的吸附。和(SO)2CdOH -物种)在高pH条件下。本文介绍的发现对于理解水-矿物质界面的重金属的命运和运输起着重要作用。

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