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季铵型阳离子捕收剂在一水硬铝石和高岭石表面的吸附机理
引用本文:蒋昊,徐龙华,胡岳华,王淀佐,李长凯,孟玮,王兴杰.季铵型阳离子捕收剂在一水硬铝石和高岭石表面的吸附机理[J].中国有色金属学会会刊,2011,21(11):2528-2534.
作者姓名:蒋昊  徐龙华  胡岳华  王淀佐  李长凯  孟玮  王兴杰
作者单位:中南大学资源加工与生物工程学院;
基金项目:Projects (50974134,50804055) supported by the National Natural Science Foundation of China; Project (2005CB623701) supported by the National Basic Research Program of China
摘    要:研究十二烷基三甲基氯化铵(DTAC)和十六烷基三甲基氯化铵(CTAC)对一水硬铝石和高岭石的浮选行为。通过残余浓度法测定吸附等温线,荧光探针法和Zeta电位测试方法研究季铵型阳离子捕收剂在矿物表面的吸附机理。浮选结果表明:将DTAC和CTAC作为捕收剂,一水硬铝石的浮选回收率随着pH的增大而增加,而高岭石的浮选回收率随着pH的增大反而下降。当捕收剂的碳链增长时,矿物浮选回收率提高,但高岭石的增加幅度小于一水硬铝石的。在低浓度范围内,阳离子表面活性剂通过静电作用吸附在一水硬铝石表面,而对于高岭石,还存在离子交换作用。当浓度增大时,阳离子表面活性剂通过碳链间疏水缔合作用在两种矿物表面进一步吸附。矿物表面微极性研究表明:CTAC的疏水性比DTAC强,相同溶液浓度下CTAC在一水硬铝石表面能形成比在高岭石表面更大的胶团,这也说明阳离子表面活性剂碳链的增长对一水硬铝石吸附的影响要大,与浮选结果相吻合。

关 键 词:一水硬铝石  高岭石  DTAC  CTAC  浮选  吸附  离子交换  微极性
收稿时间:18 November 2010

Flotation and adsorption of quaternary ammonium cationic collectors on diaspore and kaolinite
JIANG Hao,XU Long-hua,HU Yue-hua,WANG Dian-zuo,LI Chang-kai,MENG Wei,WANG Xing-jie School of Resources Processing , Bioengineering,Central South University,Changsha ,China.Flotation and adsorption of quaternary ammonium cationic collectors on diaspore and kaolinite[J].Transactions of Nonferrous Metals Society of China,2011,21(11):2528-2534.
Authors:JIANG Hao  XU Long-hua  HU Yue-hua  WANG Dian-zuo  LI Chang-kai  MENG Wei  WANG Xing-jie School of Resources Processing  Bioengineering  Central South University  Changsha  China
Affiliation:JIANG Hao,XU Long-hua,HU Yue-hua,WANG Dian-zuo,LI Chang-kai,MENG Wei,WANG Xing-jie School of Resources Processing and Bioengineering,Central South University,Changsha 410083,China
Abstract:The flotation and adsorption behaviors of dodecyltrimethylammonium chloride(DTAC) and cetyltrimethylammonium chloride(CTAC) on diaspore and kaolinite were studied.Solution depletion methods were used to determine adsorption isotherms.Fluorescence probe test along with Zeta potential measurement was also conducted for further investigation into the adsorption of quaternary amines at the mineral-water interface.The results show that the flotation recovery of kaolinite decreases with an increase in pH when DTA...
Keywords:diaspore  kaolinite  DTAC  CTAC  flotation  adsorption  ion exchange  micro-polarity  
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