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Typical roles of metal ions in mineral flotation:A review 被引量:15
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作者 Zhi-yong GAO Zhe-yi JIANG +1 位作者 Wei SUN Yue-sheng GAO 《Transactions of Nonferrous Metals Society of China》 SCIE EI CAS CSCD 2021年第7期2081-2101,共21页
In flotation,metal ions possess significant roles that are usually fulfilled by either selectively activating or depressing the target minerals.Despite that tremendous efforts have been made to address the roles of me... In flotation,metal ions possess significant roles that are usually fulfilled by either selectively activating or depressing the target minerals.Despite that tremendous efforts have been made to address the roles of metal ions in flotation,it still lacks a comprehensive review,especially to compare various ions instead of focusing on a specific one.This review begins by elaborately categorizing the factors involved in affecting the roles of metal ions in flotation.After that,well-accepted mechanisms are updated and discussed from the ore type.Furthermore,typical approaches to explore the underlying mechanisms are emphasized,including traditional techniques such as micro-flotation,contact angle measurement,zeta potential measurement,and other recent prevailing methodologies,like computational method,solution chemistry calculation,and cyclic voltammetry.This work will pave the way to promote flotations via activities like selectively adding/reducing metal ions,choosing reagents,and regulating the slurry chemistry. 展开更多
关键词 metal ions FLOTATION oxide mineral silicate mineral sulfide mineral
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月桂酰肌氨酸钠选择性分离萤石和方解石及其作用机理 被引量:3
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作者 陶黎明 王建军 +6 位作者 张晚佳 哲伊 孙伟 高志勇 汪聪 伍思回 胡阳 《中国有色金属学报》 EI CAS CSCD 北大核心 2022年第6期1810-1820,共11页
战略含钙矿物萤石与方解石具有相似的表面钙活性位点,导致两者的高效分离是浮选领域世界难题之一。在本文中,绿色、低廉和具有特殊官能团的月桂酰肌氨酸钠(SNLS)被用作一种新型萤石捕收剂。结果表明:在单矿物浮选试验中,当pH值为9.0和S... 战略含钙矿物萤石与方解石具有相似的表面钙活性位点,导致两者的高效分离是浮选领域世界难题之一。在本文中,绿色、低廉和具有特殊官能团的月桂酰肌氨酸钠(SNLS)被用作一种新型萤石捕收剂。结果表明:在单矿物浮选试验中,当pH值为9.0和SNLS用量为1.5×10^(−5)mol/L时,萤石和方解石的回收率存在54.59%的最大差值。在人工混合矿浮选试验中,当pH值为9.0且不使用任何抑制剂时,用量为1.3×10^(−5)mol/L的SNLS可实现萤石和方解石的选择性分离。与方解石相比,SNLS在萤石表面吸附更多,其原因是萤石表面的钙原子密度更大和活性更高,使得SNLS在萤石表面吸附更强。因此,SNLS在萤石和方解石表面显著的吸附行为差异为工业上萤石的高效分选提供了可能。 展开更多
关键词 萤石 方解石 浮选 月桂酰肌氨酸钠 捕收剂
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