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作 者:杨金杯[1] 韩淑萃[2] 余美琼[1] 邱挺[3]
机构地区:[1]福建师范大学福清分校生物与化学工程系,福州350300 [2]福州大学至诚学院,福州350002 [3]福州大学化学化工学院,福州350108
出 处:《中国有色金属学报》2012年第6期1791-1797,共7页The Chinese Journal of Nonferrous Metals
基 金:福建省教育厅科研资助项目(JB10202)
摘 要:采用离子交换树脂法吸附铬(Ⅲ),通过树脂选型确定强酸性阳离子交换树脂001×14.5对铬(Ⅲ)吸附容量最大,用所选的001×14.5树脂研究铬(Ⅲ)的吸附性能。静态吸附实验表明:转速大于120 r/min时,对树脂吸附的影响可忽略,即外扩散基本消除,pH=7.0时,吸附最佳,铬(Ⅲ)吸附率随树脂用量的增加而增大;001×14.5树脂吸附铬(Ⅲ)的过程符合Langmuir等温曲线,且为优惠吸附;吸附过程符合拟二级动力学方程,吸附过程的表观活化能Ea=23.4 kJ/mol,颗粒内扩散为吸附速率的主要控制步骤;用1 mol/L的硫酸对吸附后的饱和树脂进行脱附再生,脱附率可达99%。Using ion exchange resin to adsorb Cr(III), 001 × 14.5 strong acidic cation ion exchange resin shows the best capacity through the resin selection experiment. The adsorption properties of selected 001 × 14.5 resin for Cr(III) were studied, and the effects of various parameters, including stirring speed, resin dosage and solution pH were studied by static experiments. The results indicate that the effect of external diffusion is eliminated when the stirring speed is over 120 r/min, the better pH value is 7, the percent removal of Cr(III) increases with the resin dosage consumption increasing. The adsorption behavior of 001 × 14.5 for Cr(III) obeys the Langrnuir isotherm, which is favourable adsorption. The adsorption of Cr(III) on this resin follows pseudo-second- order kinetic model, the apparent activation energy is 23.4 kJ/mol, the kinetics experiments show that the particle diffusion is the main limiting rate step. The saturated resin can be regenerated by 1 mol/L sulfuric acid, and the desorption rate reaches 99%.
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