首页> 外文会议>International Conference on Frontiers of Composite Materials;International Conference on Energy Engineering and Smart Materials >Kinetics and Isotherms of an Iron-Modified Montmorillonite/Polycaprolactone Composite Nanofiber Membrane for the Adsorption of Cu(ll) Ions
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Kinetics and Isotherms of an Iron-Modified Montmorillonite/Polycaprolactone Composite Nanofiber Membrane for the Adsorption of Cu(ll) Ions

机译:铁改性蒙脱石/聚己内酯复合纳米纤维膜的动力学和等温物,用于吸附Cu(LL)离子

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Exposure to toxic concentrations of Cu(II) continues to rise as developing countries undergo rapid industrialization. Because of its high solubility in water, improperly disposed copper contaminate our water sources in its aqueous Cu(II) form. A nanofiber membrane composed of iron-modified montmorillonite (Fe-MMt) dispersed in polycaprolactone (PCL) was electrospun for the adsorption of Cu(II) ions. Kinetics and isotherm models were used to study the adsorption behavior of the fabricated membrane. The adsorption capacity of this membrane was observed as a function of increasing contact time and initial Cu(II) ion concentration. Kinetic studies showed that Cu(II) adsorption follows a pseudo-second order kinetic model, while isotherm studies determined the adsorption to be monolayer as described by the Langmuir isotherm. Furthermore, it was observed that the adsorption capacity increases with increasing contact time, and with increasing initial metal ion concentration up to a maximum value of 6.44 mgg~(-1). Lastly, the Dubinin-Kaganer-Radushkevich isotherm was used to calculate for the sorption energy and determine the type of adsorption. A sorption energy of-5.83 kJmol~(-1) was obtained, thus the adsorption was classified to be physical.
机译:随着发展中国家经历快速的工业化,暴露于Cu(II)的毒性浓度继续上升。由于其在水中的高溶解度,因此不正确地设置的铜在其Cu(II)形式中污染我们的水源。用于分散在聚己内酯(PCL)中的铁改性的蒙脱土(Fe-MMT)组成的纳米纤维膜被ElectropUp用于吸附Cu(II)离子。动力学和等温模型用于研究制造膜的吸附行为。观察到该膜的吸附能力作为增加接触时间和初始Cu(II)离子浓度的函数。动力学研究表明,Cu(II)吸附遵循伪二次阶动力学模型,而等温度研究确定了如Langmuir等温线所述的单层的吸附。此外,观察到吸附容量随着接触时间的增加而增加,并且随着初始金属离子浓度的增加,最大值为6.44mg,而且为-1)。最后,使用Dubinin-Kaganer-Radushkevich vich等温线来计算吸附能量并确定吸附的类型。得到-5.83kJmol〜(-1)的吸附能量,因此吸附被分类为物理。

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