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Removal of iron and manganese from aqueous solution using some clay minerals collected from Saudi Arabia

机译:使用从沙特阿拉伯收集的一些粘土矿物去除水溶液中的铁和锰

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摘要

The existence of excessive concentrations of iron and manganese in water results in economic, technological and health problems. The adsorption characteristics of four clay minerals collected from different localities of Saudi Arabia, Osfan (OS1 and OS2) and Gholaa (GH1 and GH2), on the adsorption of Fe3+ and Mn7+ ions were investigated. The quantitative phase composition of the selected samples was calculated from their X-ray diffraction technique, while the chemical constitution was determined through X-ray fluorescence technique. The adsorption of Fe3+ onto different clays was complied with Langmuir isotherm (R-2 = 0.9996, 0.9956, 0.9840 and 0.9932, respectively). OS1 and OS2 (Q(max) = 6.872 and 8.258; 1/b = 0.315 and 0.296, respectively) have higher adsorption capacity than GH1 and GH2 (Qmax = 2.109 and 3.457; 1/b = 0.596 and 0.465, respectively). The adsorption of Fe3+ onto OS1, OS2, GH1 and GH2 clay minerals cannot be described by Freundlich isotherm model where R-2 = 0.831, 0.92, 0.70 and 0.52, respectively. The mean adsorption energy recorded indicates that the sorption process is physisorption.
机译:水中铁和锰的浓度过高会导致经济,技术和健康问题。研究了从沙特阿拉伯,奥斯芬(OS1和OS2)和古拉(GH1和GH2)不同地区收集的四种粘土矿物对Fe3 +和Mn7 +离子的吸附特性。所选样品的定量相组成是通过X射线衍射技术计算的,而化学成分是通过X射线荧光技术确定的。朗格缪尔等温线符合Fe3 +在不同粘土上的吸附(R-2分别为0.9996、0.9956、0.9940和0.9932)。 OS1和OS2(Q(max)= 6.872和8.258; 1 / b = 0.315和0.296)具有比GH1和GH2(Qmax = 2.109和3.457; 1 / b = 0.596和0.465)高的吸附能力。用Freundlich等温模型无法描述Fe3 +在OS1,OS2,GH1和GH2粘土矿物上的吸附,其中R-2分别为0.831、0.92、0.70和0.52。记录的平均吸附能表明吸附过程是物理吸附。

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