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Adsorption of Cr(VI) in Aqueous Solution Using a Surfactant-Modified Bentonite

机译:使用表面活性剂改性膨润土对水溶液中Cr(VI)的吸附

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Clay minerals can be modified organically by a cationic surfactant resulting in materials known as organoclays. The organoclays have been used as adsorbents of most of the organic contaminants in the aqueous solution and oxyanions of the heavy metal. In this study, a Colombian bentonite was modified with hexadecyltrimethylammonium bromide to obtain an organobentonite, and its capacity to adsorb Cr(VI) oxyanions in the aqueous solution was evaluated. The effect of pH, stirring speed, adsorbent amount, contact time, and ionic strength were investigated at 25°C. Stirring speeds above 200?rpm, contact times greater than 120?min, and the addition of NaCl (0.1 to 2.0?mM) did not have a significant effect on Cr(VI) removal. The influence of the adsorbent amount and pH on Cr(VI) adsorption was studied by the response surface methodology (RSM) approach based on a complete factorial design 32. Results proved that the Cr(VI) adsorption follows a quadratic model with high values of coefficient of determination (R2?=?95.1% and adjusted R2?=?93.9%). The optimal conditions for removal of Cr(VI) from an aqueous solution of 50?mg/L were pH of 3.4 and 0.44?g amount of the adsorbent. The adsorption isotherm data were fitted to the Langmuir and Freundlich adsorption isotherm models, and the model parameters were evaluated. The maximum adsorption capacity of Cr(VI) onto organobentonite calculated from the Langmuir model equation was 10.04?±?0.34?mg/g at 25°C. The results suggest that organobentonite is an effective adsorbent for Cr(VI) removal, with the advantage of being a low-cost material.
机译:粘土矿物质可以通过阳离子表面活性剂有机改性,得到称为有机粘土的材料。有机纤维粘土已被用作大部分有机污染物中的水溶液和重金属的氧合的吸附剂。在该研究中,用十六烷基三甲基溴化铵改性哥伦比亚膨润土,得到有机诺诺钛矿,并评估其在水溶液中的吸附Cr(VI)氧合的能力。在25℃下研究了pH,搅拌速度,吸附量,接触时间和离子强度的影响。搅拌速度高于200≤rpm,接触时间大于120?min,加入NaCl(0.1至2.0×mm)对Cr(VI)除去的显着效果。基于完整的因子设计32,研究了吸附量和pH对Cr(VI)吸附的影响。结果证明了CR(VI)吸附遵循具有高值的二次模型测定系数(R2?= 95.1%并调整R2?= 93.9%)。从50μm含水溶液中除去Cr(VI)的最佳条件为吸附剂的pH值为3.4和0.44Ω·克。吸附等温数据适用于Langmuir和Freundlich吸附等温线模型,评估模型参数。 Cr(vi)对来自Langmuir模型方程计算的Cr(VI)的最大吸附容量为10.04°?±0.34Ω·mg / g在25℃。结果表明,有机诺代岩是Cr(VI)去除的有效吸附剂,其优点是作为低成本材料。

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