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Adsorption behavior of Sb(Ⅲ) in single and binary Sb(Ⅲ)-Fe(Ⅱ) systems on cationic ion exchange resin: Adsorption equilibrium, kinetic and thermodynamic aspects 被引量:6
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作者 F.MOGHIMI A.H.JAFARI +1 位作者 H.YOOZBASHIZADEH M.ASKARI 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2020年第1期236-248,共13页
The present study dealt with the mechanism of competitive adsorption of Sb(Ⅲ)and Fe(Ⅱ)ions from a copper-containing aqueous solution on Purolite S957,a commercially available cationic ion-exchange adsorbent.Experime... The present study dealt with the mechanism of competitive adsorption of Sb(Ⅲ)and Fe(Ⅱ)ions from a copper-containing aqueous solution on Purolite S957,a commercially available cationic ion-exchange adsorbent.Experiments were conducted using aqueous copper sulfate solutions containing either single or conjoint ions,using both sedentary and batch adsorption techniques to ascertain the sensitivity of the adsorption process to variation in p H,mass of resin,contact time,and temperature as well as establishing the optimal range of variables for maximum ion removal.The data from single ion adsorption tests were fitted by non-linear regression techniques to Henry,Langmuir,Freundlich,Temkin,and Dubinin–Radushkevich isotherm models.Freundlich isotherm for Sb(Ⅲ)and Freundlich and Henry models for Fe(Ⅱ)solutions best express the adsorption equilibrium data;while for binary ion electrolytes,the extended Freundlich model fitted the data satisfactorily.The kinetic model adequately describing adsorption was shown to be the pseudo-first-order,underscoring the dominant role of physical adsorption playing in the process.Thermodynamic parameters for the adsorption process reveal differences in the Sb(Ⅲ)adsorption mechanism from single ion and Sb(Ⅲ)-Fe(Ⅱ)containing electrolytes.The adsorption of Sb(Ⅲ)alone is endothermic,whereas the process becomes exothermic in the Sb(Ⅲ)-Fe(Ⅱ)system. 展开更多
关键词 Sb(Ⅲ) ion exchange copper refining THERMODYNAMICS kinetics purolite adsorbent
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Purolite A172树脂对铼和钼的静态分离 被引量:1
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作者 刘伟 丁留亮 +2 位作者 朱鹏飞 李继文 魏世忠 《中国有色金属学报》 EI CAS CSCD 北大核心 2019年第7期1519-1527,共9页
针对目前溶液体系中铼和钼分离困难的问题,通过树脂选型确定选用中强碱性阴离子交换树脂Purolite A172分离铼和钼,研究A172树脂对铼的吸附性能和对铼钼的分离性能。结果表明:A172树脂吸附铼的反应为放热反应,而且吸附速率很大,吸附速率... 针对目前溶液体系中铼和钼分离困难的问题,通过树脂选型确定选用中强碱性阴离子交换树脂Purolite A172分离铼和钼,研究A172树脂对铼的吸附性能和对铼钼的分离性能。结果表明:A172树脂吸附铼的反应为放热反应,而且吸附速率很大,吸附速率常数k298K=7.719×10^-4s^-1,受内扩散控制,树脂对铼的静态饱和吸附容量达到340.13mg/g湿树脂;当铼溶液pH=9、摇床往复震荡速率110r/min、摇床水浴温度25℃、吸附时间1h时,树脂对铼的吸附量最大;当以浓度为2mol/L硫氰酸铵为解吸剂,在溶液pH=5、摇床往复震荡速率150r/min、摇床水浴温度50℃下解吸5h时,铼的解吸率最高,达到99.19%。大量的钼会阻碍铼的吸附,但随着吸附时间的延长,被吸附的钼逐渐被铼取代,铼和钼的分离因数最大值达到1192;解吸时,负载的钼对铼的解吸也有抑制作用,随着钼铼质量比的增加,铼的解吸率降低。 展开更多
关键词 purolite A172 离子交换
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