首页> 美国卫生研究院文献>Molecules >Application of Response Surface Methodology and Desirability Function in the Optimization of Adsorptive Remediation of Arsenic from Acid Mine Drainage Using Magnetic Nanocomposite: Equilibrium Studies and Application to Real Samples
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Application of Response Surface Methodology and Desirability Function in the Optimization of Adsorptive Remediation of Arsenic from Acid Mine Drainage Using Magnetic Nanocomposite: Equilibrium Studies and Application to Real Samples

机译:响应面方法学和期望函数在磁性纳米复合材料优化酸性矿山排水吸附吸附中的应用:平衡研究与实际样品的应用

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摘要

A magnetic multi-walled carbon nanotube/zeolite nanocomposite was applied for the adsorption and removal of arsenic ions in simulated and real acid mine drainage samples. The adsorption mechanism was investigated using two-parameter (Langmuir, Freundlich, Temkin) and three-parameter (Redlich–Peterson, and Sips) isotherm models. This was done in order to determine the characteristic parameters of the adsorptive removal process. The results showed that the removal process was described by both mono- and multilayer adsorptions. Adsorption studies demonstrated that a multi-walled carbon nanotube/zeolite nanocomposite could efficiently remove arsenic in simulated samples within 35 min. Based on the Langmuir isotherm, the adsorption capacity for arsenic was found to be 28 mg g−1. The nanocomposite was easily separated from the sample solution using an external magnet and the regeneration was achieved by washing the adsorbent with 0.05 mol L−1 hydrochloric acid solution. Moreover, the nanoadsorbent was reusable for at least 10 cycles of adsorption-desorption with no significant decrease in the adsorption capacity. The nanoadsorbent was also used for the arsenic removal from acid mine drainage. Overall, the adsorbent displayed excellent reusability and stability; thus, they are promising nanoadsorbents for the removal of arsenic from acid mine drainage.
机译:将磁性多壁碳纳米管/沸石纳米复合材料用于模拟和实际酸性矿山排水样品中砷离子的吸附和去除。使用两参数(Langmuir,Freundlich,Temkin)和三参数(Redlich-Peterson和Sips)等温线模型研究了吸附机理。这样做是为了确定吸附去除过程的特征参数。结果表明,去除过程是通过单层和多层吸附来描述的。吸附研究表明,多壁碳纳米管/沸石纳米复合材料可在35分钟内有效去除模拟样品中的砷。根据Langmuir等温线,对砷的吸附容量为28 mg g -1 。使用外部磁体可以轻松地从样品溶液中分离出纳米复合材料,并通过用0.05 mol L -1 盐酸溶液洗涤吸附剂来实现再生。而且,纳米吸附剂可重复使用至少10个吸附-解吸循环,而吸附能力没有明显降低。纳米吸附剂还用于从酸性矿山排水中去除砷。总体而言,该吸附剂具有出色的可重复使用性和稳定性;因此,它们是从酸性矿山排水中去除砷的有前途的纳米吸附剂。

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