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新型脂肪酸协同螯合类捕收剂对黑钨矿与脉石矿物浮选行为的影响
引用本文:付广钦,周晓彤.新型脂肪酸协同螯合类捕收剂对黑钨矿与脉石矿物浮选行为的影响[J].矿产保护与利用,2021,41(2):28-33.
作者姓名:付广钦  周晓彤
作者单位:广东省科学院资源综合利用研究所,广东 广州510650;稀有金属分离与综合利用国家重点实验室,广东 广州510650;广东省矿产资源开发和综合利用重点实验室,广东 广州510650
基金项目:广东省科学院建设国内一流研究机构行动专项项目2019GDASYL-0105051广东省科学院建设国内一流研究机构行动专项项目2019GDASYL-0501007
摘    要:螯合类捕收剂与脂肪酸类捕收剂的组合使用是黑钨矿浮选的重要研究方向.采用单矿物试验方法研究了GYB螯合捕收剂和731、GYR、TAB-3三种代表性脂肪酸类捕收剂联用对黑钨矿和脉石矿物浮选行为的影响,并采用表面电位测定、红外光谱测定方法,对GYB、TAB-3以及两种捕收剂联用的作用机理进行了探讨.结果表明:GYB与脂肪酸捕...

关 键 词:黑钨矿  TAB-3捕收剂  浮选  机理
收稿时间:2021-03-12

Flotation Behavior Research on Collector Combination of Novel Fatty Acid and Chelating Collector on Wolframite and Gangue Minerals
FU Guangqin,ZHOU Xiaotong.Flotation Behavior Research on Collector Combination of Novel Fatty Acid and Chelating Collector on Wolframite and Gangue Minerals[J].Conservation and Utilization of Mineral Resources,2021,41(2):28-33.
Authors:FU Guangqin  ZHOU Xiaotong
Affiliation:1.Guangdong Institute of Resources Comprehensive Utilization, Guangzhou 510650, China2.State Key Laboratory of Rare Metals Separation and Comprehensive Utilization, Guangzhou 510650, China3.Guangdong Provincial Key Laboratory of Development and Comprehensive Utilization of Mineral Resources, Guangzhou 510650, China
Abstract:The combined use of fatty acid collectors and chelating collectors is an important research direction for wolframite flotation. The single mineral test method was used to study the effect of the combination of GYB chelating collector and three representative fatty acid collectors of 731, GYR and TAB-3 on the flotation behavior of wolframite and gangue minerals.Furthermore, the mechanism of combined use of GYB, TAB-3 and the two collectors were discussed by Zeta potential measurement, Infrared spectroscopy methods. The results showed that the combined use of GYB and fatty acid collectors increased the maximum recovery of wolframite flotation to above 70%, and reduced the total dosage of collectors by about 1/2; among the three fatty acid collectors, TAB-3 reagent had the strongest collecting ability to wolframite, which recovery of wolframite was 78%, and the weakest collecting ability to fluorite, quartz, calcite gangue minerals; the combination of GYB and TAB-3 made the surface potential of wolframite move negatively, and the absorption peaks of the infrared spectrum on its surface shift to a high wave number, such as the C=N stretching vibration absorption peak of GYB and the C-H stretching vibration peak of TAB-3. Then the adsorption capacity of the two collectors on the wolframite surface was stronger than the collector was used alone, and the adsorption form was chemical adsorption. 
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