期刊文献+
共找到4篇文章
< 1 >
每页显示 20 50 100
Process mineralogy of copper-nickel sulphide flotation by a cyclonic-static micro-bubble flotation column 被引量:25
1
作者 CAO Yi-jun GUI Xia-hui +3 位作者 MA Zi-long YU Xiao-xia CHEN Xiao-dong ZHANG Xiu-pin 《Mining Science and Technology》 EI CAS 2009年第6期784-787,共4页
In our study we investigated a refractory copper-nickel sulfide ore separation by using a cyclonic-static micro-bubble flotation column (FCSMC). The process mineralogy of the main products was studied. Using a scannin... In our study we investigated a refractory copper-nickel sulfide ore separation by using a cyclonic-static micro-bubble flotation column (FCSMC). The process mineralogy of the main products was studied. Using a scanning electron microscope-energy dispersive system (SEM-EDS) and an X-ray spectrometer the mineral category and content of samples were analyzed. By using a mineral liberation analyzer (MLA) the mineral liberation characteristics were revealed. It is shown that in roughing feed the monomers liberation degree of nickel pyrite and chalcopyrite take up 84.11% and 88.82%, respectively. In tailings, the lost nickel pyrite and chalcopyrite are mainly monomers. Therefore, strengthening the micro-fine particle recovery capacity is the key to increase recovery. 展开更多
关键词 cyclonic-static micro-bubble flotation column process mineralogy copper-nickel sulphide micro-fine particles
下载PDF
Velocity distribution of the flow field in the cyclonic zone of cyclone-static micro-bubble flotation column 被引量:10
2
作者 Deng Xiao-wei Liu Jiong-tian +1 位作者 Wang Yong-tian Cao Yi-jun 《International Journal of Mining Science and Technology》 SCIE EI 2013年第1期89-94,共6页
Laboratory experiments have been conducted to study the flow field in a cyclone static micro-bubble flotation column. The method of Particle Image Velocimetry (PIV) was used. The flow field velocity distribution in bo... Laboratory experiments have been conducted to study the flow field in a cyclone static micro-bubble flotation column. The method of Particle Image Velocimetry (PIV) was used. The flow field velocity distribution in both cross section and longitudinal section within cyclonic zone was studied for different circulating volumes. The cross sectional vortex was also analyzed. The results show that in cross section as the circulating volume increases from 0.187 to 0.350 m 3 /h, the flow velocity ranges from 0 to 0.68 m/s. The flow field is mainly a non-vortex potential flow that forms a free vortex without outside energy input. In the cyclonic region the vortex deviates from the center of the flotation column because a single tangential opening introduces circulating fluid into the column. The tangential component of the velocity plays a defining role in the cross section. In the longitudinal section the velocity ranges from 0 to 0.08 m/s. The flow velocity increases as does the circulating volume. Advantageous mineral separation conditions arise from the combined effects of cyclonic flow in cross and longitudinal section. 展开更多
关键词 Cyclone-static micro-bubble flotation column PIV Cyclonic flow field Velocity distribution
下载PDF
贵州某卡林型金矿精锐微泡浮选生产实践
3
作者 彭科淇 周瑞仙 《黄金科学技术》 CSCD 2023年第4期689-697,共9页
贵州某卡林型金矿原矿金品位较低,有用矿物与脉石矿物嵌布粒度细,有害元素As和C含量较高,常规细磨浮选工艺金回收率仅为80.54%,尾矿金品位为0.97×10^(-6),浮选尾矿金损失较为严重。为了提高金精矿回收率,降低浮选尾矿金品位,开展... 贵州某卡林型金矿原矿金品位较低,有用矿物与脉石矿物嵌布粒度细,有害元素As和C含量较高,常规细磨浮选工艺金回收率仅为80.54%,尾矿金品位为0.97×10^(-6),浮选尾矿金损失较为严重。为了提高金精矿回收率,降低浮选尾矿金品位,开展了工艺矿物学及精锐微泡浮选工业试验研究。结果表明:常规细磨浮选尾矿中损失的金主要以-38μm粒级的贫连生体形式损失,且金含量较高。常规细磨浮选无法捕收的微细颗粒矿物,是造成浮选尾矿金损失的主要原因。采用精锐微泡浮选技术对扫选Ⅳ的尾矿进行再选试验,结果表明:精锐微泡浮选对尾矿中-38μm粒级的微细颗粒矿物有显著捕收效果,工艺优化后,金累计回收率为82.39%,提高了1.85个百分点,尾矿金品位为0.88×10^(-6),降低了0.09×10^(-6),浮选指标逐渐转好,提升了企业经济效益。 展开更多
关键词 工艺矿物学 精锐微泡浮选 浮选尾矿 回收率 微细颗粒
下载PDF
精锐微泡浮选机强化微细粒浮选的机理与实践 被引量:12
4
作者 陈晓东 《有色金属(选矿部分)》 CAS 北大核心 2021年第1期112-116,共5页
微细矿粒质量小、动能低,与气泡的碰撞概率低,难以和气泡发生矿化反应,制约了微细粒矿产资源的回收。精锐微泡浮选机利用矿浆的高速射流生成负压,被负压吸入的空气与射流矿浆剧烈搅拌形成微小气泡,同时水力空化作用产生纳米泡,大大提高... 微细矿粒质量小、动能低,与气泡的碰撞概率低,难以和气泡发生矿化反应,制约了微细粒矿产资源的回收。精锐微泡浮选机利用矿浆的高速射流生成负压,被负压吸入的空气与射流矿浆剧烈搅拌形成微小气泡,同时水力空化作用产生纳米泡,大大提高了气泡与矿粒碰撞附着几率。工业应用数据表明,精锐微泡浮选机对微小气泡的矿化和细粒矿物的浮选有特殊的功效。 展开更多
关键词 细粒浮选 jrf微泡浮选机 空化 纳米气泡 碰撞概率
下载PDF
上一页 1 下一页 到第
使用帮助 返回顶部