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Systematic Investigation of the Synergistic and Antagonistic Effects on the Removal of Pyrene and Copper onto Mesoporous Silica from Aqueous Solutions

机译:对水溶液中of和铜去除P和铜的协同和拮抗作用的系统研究

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摘要

Polycyclic aromatic hydrocarbons (PAHs) and heavy metals have attracted greater attention due to their single or complex risks. It is urgent to find useful methods to remove these two pollutants together. In this study, SBA15 and MCM-41 were selected and used for the simultaneous removal of pyrene and copper from aqueous solution. Batch experiments were conducted systematically by investigating the adsorption behavior and effects including kinetics, isotherms, ionic strength and pH effects. Experimental results showed that the Langmuir and pseudo-second-order model fitted the adsorption behavior better. The solution pH values and ionic strength affected the adsorption behavior greatly. Furthermore, the synergistic or antagonistic effects could be observed on the adsorption of pyrene and copper onto MCM-41 and SBA15, respectively. The synergistic and antagonistic effects of pyrene and copper onto mesoporous silica may be attributed to the size of pyrene–copper complex and the average pore size of adsorbents. With the higher pore size, the complex would be adsorbed onto the inner surface of MCM-41 which showed synergistic effect on the adsorption of pyrene and copper. This study shows new guidelines and insight into the study of adsorption behavior of PAHs and heavy metals from aquatic environments.
机译:多环芳烃(PAH)和重金属由于其单一或复杂的风险而引起了更多关注。迫切需要找到有用的方法来一起去除这两种污染物。在这项研究中,选择了SBA15和MCM-41并用于从水溶液中同时去除pyr和铜。通过研究吸附行为和影响(包括动力学,等温线,离子强度和pH值影响),系统地进行了批量实验。实验结果表明,Langmuir模型和拟二级模型更好地拟合了吸附行为。溶液的pH值和离子强度极大地影响了吸附行为。此外,可以观察到on和铜分别吸附在MCM-41和SBA15上的协同或拮抗作用。 and和铜对介孔二氧化硅的协同和拮抗作用可能归因于of-铜配合物的尺寸和吸附剂的平均孔径。随着孔尺寸的增大,络合物将被吸附到MCM-41的内表面上,这对on和铜的吸附具有协同作用。这项研究为研究水生环境中PAHs和重金属的吸附行为提供了新的指南和见识。

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