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首页> 外文期刊>Egyptian journal of petroleum >Utilization of surface modified phyllosilicate mineral for heavy metals removal from aqueous solutions
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Utilization of surface modified phyllosilicate mineral for heavy metals removal from aqueous solutions

机译:利用表面改性的层状硅酸盐矿物去除水溶液中的重金属

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摘要

The objective of this work is to enhance the adsorbing performance of the natural Egyptian phyllosilicate mineral, glauconite (greensand), through surface modification to obtain a particular combination of physical and chemical properties. It was found that Zn removal increased from 84% to 94%, while Pb removal varied from 96.67% to 99% by using 10–25g/l modified glauconite in a solution having 50mg/l Zn2+and 30mg/l pb2+ions. Adsorption data were investigated using Langmuir, Freundlich, Temkin and Dubinin–Radushkevich isotherms. Linear regression methods are used to determine adsorption capacities and optimum adsorption isotherms. R2value of Langmuir isotherm model for pb2+is higher than other models. The maximum monolayer coverage (Qo) from Langmuir isotherm model was calculated to be 15.363 and 21.654mg/g and the separation factor indicating a favorable sorption experiment is 0.0324 and 0.13207 for Zn2+and Pb2+respectively. Also from Freundlich isotherm model, the intensities of adsorption (n) that indicated favorable sorption are 1.3036 and 1.364 for Zn2+and Pb2+respectively. The heat of sorption process was calculated from Temkin isotherm model to be 6.44101 and 4.1353J/mol for Zn2+and Pb2+respectively, that indicated to the physisorption process which B<20kJ/mol so, Temkin isotherm is not fitted with experimental adsorption but the mean free energy was calculated from DRK isotherm which are 24.693 and 47.093kJ/mol, where ED<8 proved that the adsorption experiment followed a chemisorption process. So the relative adsorption capacity for metals was in the order Pb.
机译:这项工作的目的是通过表面改性来获得物理和化学性质的特定组合,从而增强埃及天然页硅酸盐矿物,青绿石(绿砂)的吸附性能。结果发现,在具有50mg / l Zn2 +和30mg / l pb2 +离子的溶液中使用10–25g / l改性的青绿钙石,锌的去除率从84%增至94%,而Pb的去除率则从96.67%变为99%。使用Langmuir,Freundlich,Temkin和Dubinin-Radushkevich等温线研究了吸附数据。线性回归方法用于确定吸附容量和最佳吸附等温线。 Langmuir等温模型对pb2 +的R2值高于其他模型。 Langmuir等温线模型的最大单层覆盖度(Qo)计算为15.363和21.654mg / g,表明有利的吸附实验的分离因子分别为Zn2 +和Pb2 +为0.0324和0.13207。同样从Freundlich等温线模型中,表明有利吸附的吸附强度(n)对于Zn2 +和Pb2 +分别为1.3036和1.364。根据Temkin等温模型,吸附过程的热分别为Zn2 +和Pb2 +,分别为6.44101和4.1353J / mol,这表明B <20kJ / mol的物理吸附过程并不适合实验性吸附,但Temkin等温线符合实验吸附条件。从DRK等温线计算得出的平均自由能为24.693和47.093kJ / mol,其中ED <8证明吸附实验遵循化学吸附过程。因此,金属的相对吸附能力约为Pb。

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