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Adsorption And Thermodynamic Studies Of Cu(ii) And Zn(ii) On Organofunctionalized-kaolinite

机译:有机官能化高岭石对Cu(ii)和Zn(ii)的吸附和热力学研究

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Kaolinite-bearing clay samples from Perus, Sao Paulo state, Brazil, were used for chemical modification process with dimethyl sulfoxide and organofunctionalized with the silyating agent (RO)_3Si(CH_2)_3NH(CH_2)_2NH_2 in the present study. The resulting material and natural kaolinite were subjected adsorpion process with Cu(II) and Zn(II) from aqueous solution at pH 6.0 and controlated temperature of 298 K. The Langmuir adsorption isotherm model has been applied to fit the experimental data. The results showed that the chemical modification process increases the basal spacing of the natural kaolinite from 0.711 to 0.955 nm. The energetic effects caused by Cu(II) and Zn(II) interactions were determined through calorimetric titration at the solid-liquid interface and gave a net thermal effect that enabled the calculation of the exothermic values and the equilibrium constant.
机译:来自巴西圣保罗州秘鲁的含高岭石的粘土样品被用于二甲基亚砜的化学改性过程,并用甲硅烷基化剂(RO)_3Si(CH_2)_3NH(CH_2)_2NH_2有机官能化。在pH 6.0和控制温度298 K下,用水溶液中的Cu(II)和Zn(II)对所得材料和天然高岭石进行吸附处理。已使用Langmuir吸附等温线模型拟合了实验数据。结果表明,化学改性过程使天然高岭石的基距从0.711增加到0.955 nm。通过固-液界面的量热滴定法确定了由Cu(II)和Zn(II)相互作用引起的能量效应,并给出了净热效应,从而可以计算放热值和平衡常数。

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