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Adsorption of nitrate ions onto sepiolite and surfactant-modified sepiolite

机译:海泡石和表面活性剂改性海泡石上硝酸根离子的吸附

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摘要

The adsorption of nitrate ions onto clay minerals has not been given much attention, possibly because clay surfaces are negatively charged. In order to increase the positive charge on the surface, sepiolite was modified in the present studies by treatment with dodecylethyldimethyl ammonium (DEDMA) bromide. After such modification, it was found that the maximum amount of nitrate ion adsorbed occurred at a pH value of 2.0.The chemical composition of natural sepiolite was determined by EDX methods and surface characterization of both natural and modified sepiolite samples was undertaken using FT-IR spectroscopic techniques. The adsorption of nitrate ions onto these adsorbents was determined by ion chromatography. The kinetic parameters of the adsorption process were calculated and it was shown that the reaction kinetic data could be fitted using the pseudo-second-order rate model. The calculated results indicate that both natural and surfactant-modified sepiolite are effective sorbents for the removal of anionic contaminants; however, the surfactant-modified sepiolite (453 mmol/kg) was more effective than the unmodified sepiolite (408 mmol/kg) in this respect. The adsorption data obtained were well described by the Freundlich adsorption isotherm.
机译:硝酸根离子在粘土矿物上的吸附一直没有引起足够的重视,这可能是因为粘土表面带负电。为了增加表面上的正电荷,在本研究中,通过用十二烷基乙基二甲基铵(DEDMA)溴处理对海泡石进行了改性。经过这种修饰后,发现最大的硝酸根离子吸附发生在pH值为2.0的情况下。通过EDX方法确定了天然海泡石的化学成分,并使用FT-IR对天然和改性海泡石样品进行了表面表征光谱技术。通过离子色谱法测定硝酸根离子在这些吸附剂上的吸附。计算了吸附过程的动力学参数,结果表明可以使用拟二级速率模型拟合反应动力学数据。计算结果表明,天然和表面活性剂修饰的海泡石都是去除阴离子污染物的有效吸附剂。然而,在这方面,表面活性剂改性的海泡石(453 mmol / kg)比未改性的海泡石(408 mmol / kg)更有效。 Freundlich吸附等温线很好地描述了获得的吸附数据。

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