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作 者:覃文庆[1] 王佩佩[1] 任浏祎[1] 魏茜[1] 彭志兵[1] 谷艳玲[1]
机构地区:[1]中南大学资源加工与生物工程学院,湖南长沙410083
出 处:《中国矿业大学学报》2012年第3期420-424,438,共6页Journal of China University of Mining & Technology
基 金:国家重点基础研究发展计划(973)项目(2010CB630900)
摘 要:针对细粒锡石难以分选的问题,采用改进的Hallimond管对不同粒级细粒锡石的浮选行为进行研究,并采用电解H2浮选和高速摄影仪研究颗粒与气泡间的匹配关系.在确定捕收剂用量和pH值的条件下,对颗粒粒度、电解条件(如阴极孔径、电流强度等)对锡石浮选回收率的影响进行了探索,考察了气泡大小变化及分布规律,探索了颗粒与气泡间相互作用.结果表明,颗粒粒度、阴极孔径、电流强度均对浮选回收率有很大影响;颗粒与气泡间有一个最佳匹配范围,在这个范围内,颗粒气泡捕集概率最大,浮选回收率较高.当pH约为4.5,MOS用量为100mg/L时,锡石矿物浮选效果较好.Because of the difficulty to beneficiate fine cassiterite, the flotation behaviors of cas- siterite with different size fractions were investigated using a modified Hallimond tube, and the best matching relationship between particles and bubbles was studied by H2electrolysis flota- tion tests and high speed charge coupled device camera (high speed CCD camera). Under a fixed collector concentration and pH value, the effects of particle size fraction, electrolytic con- ditions, including cathode aperture and current intensity, on the cassiterite recovery were ex- plored. The size change and distribution of bubbles were observed. Meanwhile, the interaction between particles and bubbles was also studied. The results show that in the presence of 100 mg/L MOS and pH of about 4.5, the flotation efficiency of cassiterite is considerably better. The cathode aperture, current intensity and particle sizes exert significant influence on the re- covery of cassiterite. There is an optimum matching range between particle size and bubble size within which the peak point of acquisition probability and recovery of the cassiterite occurred.
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