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A novel facial composite adsorbent for enhanced copper(II) detection and removal from wastewater

机译:一种用于增强废水中铜(II)的检测和去除的新型面部复合吸附剂

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In this study, novel ligand immobilized facial composite adsorbent was prepared for sensitive and selective copper (Cu(II)) ions detection and removal from wastewater samples. Several effects such as initial pH, Cu(II) ions concentration, shaking time, foreign ions and regeneration was determined and systematically discussed. The process also allowed visual Cu(II) ions detection by a colorless to blackish change. The Cu(II) ions were detected and removed at pH 7.0. In the acidic pH region, Cu(II) ions was not detected and removed due to the high concentration of hydrogen ions. As an optical material, the composite adsorbent responded quickly to the addition of Cu(II) ions, and recognized the Cu(II) ions at ultra-trace level. Under optimum conditions, the limit of detection by the composite adsorbent for Cu(II) was 0.15 mu g/L. The presence of foreign ions did not interfere with Cu(II) detection, indicating the high selectivity toward Cu(II) ion at pH 7.0. The sorption equilibrium was achieved within a short contact time, which showed the superior properties among different forms of adsorbents. The maximum sorption capacity was 176.27 mg/g based on the Langmuir sorption isotherm study. The ion selectivity was also performed in the presence of diverse competing ions and Cu(II) ions was preferentially removed in a competitive environment. Moreover, adsorption-elution cyclic results demonstrated that Cu(II) adsorbed composite adsorbent could be effectively regenerated by a HCl acid, and the regenerated composite adsorbent could be employed for repeated use without significant deterioration in its real performances, demonstration the good stability of the adsorbents. Therefore, the composite adsorbent can be used potentially to detect and remove Cu(II) ions from water samples in practical applications for environmental remediation. (C) 2015 Elsevier B.V. All rights reserved.
机译:在这项研究中,制备了新型的固定有配体的面部复合吸附剂,用于敏感和选择性的铜(Cu(II))离子检测和从废水样品中去除。确定并系统地讨论了诸如初始pH,Cu(II)离子浓度,振荡时间,外来离子和再生等几种影响。该过程还允许通过无色至黑色的变化检测可见的Cu(II)离子。检测到Cu(II)离子,并在pH 7.0下将其除去。在酸性pH范围内,由于氢离子浓度高,未检测到Cu(II)离子并将其除去。作为一种光学材料,复合吸附剂对Cu(II)离子的添加​​反应迅速,并以超痕量水平识别Cu(II)离子。在最佳条件下,复合吸附剂对Cu(II)的检出限为0.15μg / L。外来离子的存在不会干扰Cu(II)的检测,表明在pH 7.0下对Cu(II)离子具有很高的选择性。在很短的接触时间内就达到了吸附平衡,这表明了不同形式的吸附剂之间的优越性能。根据Langmuir吸附等温线研究,最大吸附容量为176.27 mg / g。离子选择性也可在多种竞争性离子存在下进行,并且在竞争性环境中会优先去除Cu(II)离子。此外,吸附-洗脱循环结果表明,Cu(II)吸附的复合吸附剂可被HCl酸有效地再生,再生的复合吸附剂可重复使用而其实际性能没有明显下降,证明了其良好的稳定性。吸附剂。因此,在环境修复的实际应用中,复合吸附剂可潜在地用于检测和去除水样品中的Cu(II)离子。 (C)2015 Elsevier B.V.保留所有权利。

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