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Kinetics and Isotherms Studies of the Adsorption of Hg(II) onto Iron Modified Montmorillonite/Polycaprolactone Nanofiber Membrane

机译:动力学和等温机构对铁(II)吸附到铁改性蒙脱石/聚己内酯纳米纤维膜上的研究

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Hg(II) ions from mining and urban runoffs can easily contaminate various water sources due to their high solubility in water. Due to its simplicity and viability, adsorption was utilized to treat Hg(II)-contaminated water. An adsorbent was fabricated by immobilizing Fe-modified montmorillonite particles in polycaprolactone through electrospinning. The SEM images of the fabricated membrane showed a nanofiber network with fiber diameter ranging from 96 nm to 569 nm and an average of 198 nm. The adsorption behavior of the fabricated membrane was investigated using kinetics and isotherm models. It was found that the adsorption of Hg(II) ions onto the membrane follows a pseudo-second order model and was best described by the Freundlich isotherm. The adsorption capacity was found to increase with increasing contact time and with increasing initial Hg(II) concentration, with the highest adsorption capacity of 14.25 mg/g. The sorption energy was calculated using the Dubinin-Kaganer-Radushkevich isotherm, which obtained a value of-2.68 kJmol~(-1) suggesting that the type of adsorption was physisorption.
机译:来自挖掘和城市径流的HG(II)离子由于其在水中的高溶解度而容易污染各种水源。由于其简单性和可行性,利用吸附来治疗Hg(II) - 含水。通过通过静电纺丝将Fe改性的蒙脱石颗粒固定在聚己内酯中的Fe改性的蒙脱石颗粒来制造吸附剂。制造膜的SEM图像显示纳米恐怖网,纤维直径为96nm至569nm,平均为198nm。使用动力学和等温模型研究制造膜的吸附行为。发现Hg(II)离子在膜上吸附遵循伪二阶模型,并最好由Freundlich等温线描述。的吸附能力,发现增加随着接触时间和随初始汞(II)的浓度,用14.25毫克/克的最高吸附容量。使用Dubinin-Kaganer-Radushkevich等温线计算吸附能量,其值为-2.68kJmol〜(-1),表明吸附的类型是物理化。

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