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Removal of Decontaminating Agent from Aqueous Solution Using Microporous and Mesoporous Materials: Activated Carbon as an Effective Adsorbent

机译:使用微孔和中孔材料从水溶液中去除去污剂:活性炭作为有效吸附剂

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摘要

Wastewater from nuclear plants contains oxalic acid, a chelating compound used to remove surface activity. This forms complexes with radioactive cations, thereby impeding their removal by conventional techniques. In this study, oxalic acid was removed by adsorption techniques using commercial activated carbon and various synthesised mesoporous materials, viz. Al-MCM-41 (Si/Al = 50), Al-MCM-41 (Si/Al = 100) and Si-MCM-41, as adsorbents, all of which were characterised by XRD, N2 sorption and TEM analysis. The extent of oxalic acid removal was increased by optimising parameters such as the adsorbent employed, the contact time, the initial concentration of oxalic acid, the pH value of the aqueous solution and the temperature. Activated carbon removed a higher percentage of oxalic acid than any of the other adsorbents studied. The experimental data obtained could be fitted by the Langmuir adsorption model and also followed first-order kinetics. In addition, the negative value of the enthalpy obtained indicated that the adsorption process was exothermic in nature.
机译:核电厂的废水中含有草酸,一种用于去除表面活性的螯合化合物。这与放射性阳离子形成络合物,从而阻碍了它们通过常规技术的去除。在这项研究中,草酸是通过吸附技术使用商业活性炭和各种合成的介孔材料,即脱除的。 Al-MCM-41(Si / Al = 50),Al-MCM-41(Si / Al = 100)和Si-MCM-41作为吸附剂,所有这些均通过XRD,N 2 吸附和TEM分析。通过优化参数,例如使用的吸附剂,接触时间,草酸的初始浓度,水溶液的pH值和温度,可以增加草酸的去除程度。活性炭去除的草酸百分比高于其他任何研究的吸附剂。所获得的实验数据可以通过Langmuir吸附模型进行拟合,也可以遵循一级动力学。另外,获得的焓的负值表明吸附过程本质上是放热的。

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