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空腔谐振式浮选柱在某极微细粒铝土矿石浮选中的应用
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作者 刘爱春 霍平 +4 位作者 李永全 Eric Yan 韩晓亮 崔花蕊 杨建超 《现代矿业》 CAS 2022年第6期168-171,共4页
交口地区低品位铝土矿石泥化严重,有用矿物嵌布粒度极细,浮选给料-10μm占56.16%。山西道尔铝业现场不仅药剂消耗量大,而且精矿产率低。针对该极微细粒难选矿石,采用EFD空腔谐振式浮选柱开展了一系列小试、中试及扩大连选试验。在半工... 交口地区低品位铝土矿石泥化严重,有用矿物嵌布粒度极细,浮选给料-10μm占56.16%。山西道尔铝业现场不仅药剂消耗量大,而且精矿产率低。针对该极微细粒难选矿石,采用EFD空腔谐振式浮选柱开展了一系列小试、中试及扩大连选试验。在半工业试验取得理想指标的基础上,采用6台EFDϕ5.0 m×8.5 m型空腔谐振式浮选柱扩建一条年处理50万t低品位铝土矿石的生产线。新建生产线采用1粗1精1扫流程取代原系统的2粗1精2扫流程。在精矿铝硅比相当的情况下,精矿产率比原系统提高了3.36个百分点、Al_(2)O_(3)回收率提高了3.68个百分点。浮选药剂消耗比原系统的1600 g/t降低了509 g/t,年经济效益超过1000万元。空腔谐振式浮选柱在超细粒铝土矿行业的成功应用,为具有超细粒嵌布特征的金属、非金属矿石的高效浮选开辟出了新思路,具有广阔的应用前景和推广价值。 展开更多
关键词 空腔谐振式浮选 铝土矿石 超细颗粒浮选 浮选脱硅 铝硅比
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Nano-microbubble flotation of fine and ultrafine chalcopyrite particles 被引量:30
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作者 Ahmadi Rahman Khodadadi Darban Ahmad +1 位作者 Abdollahy Mahmoud Fan Maoming 《International Journal of Mining Science and Technology》 SCIE EI 2014年第4期559-566,共8页
As is well known to mineral processing scientists and engineers, fine and ultrafine particles are difficult to float mainly due to the low bubble-particle collision efficiencies. Though many efforts have been made to ... As is well known to mineral processing scientists and engineers, fine and ultrafine particles are difficult to float mainly due to the low bubble-particle collision efficiencies. Though many efforts have been made to improve flotation performance of fine and ultrafine particles, there is still much more to be done. In this paper, the effects of nano-microbubbles (nanobuhbles and microbubbles) on the flotation of fine (-38 + 14.36 μm) and ultrafine (-14.36 + 5μm) chalcopyrite particles were investigated in a laboratory scale Denver flotation cell. Nano-microbubbles were generated using a specially-designed nano- microbubble generator based on the cavitation phenomenon in Venturi tubes. In order to better under- stand the mechanisms of nano-microbubble enhanced froth flotation of fine and ultrafine chalcopyrite particles, the nano-microbubble size distribution, stability and the effect of frother concentration on nano- bubble size were also studied by a laser diffraction method. Comparative flotation tests were performed in the presence and absence of nano-microbubbles to evaluate their impact on the fine and ultrafine chalcopyrite particle flotation recovery. According to the results, the mean size of nano-microbubbles increased over time, and decreased with increase of frother concentration. The laboratory-scale flotation test results indicated that flotation recovery of chalcopyrite fine and ultrafine particles increased by approximately 16-21% in the presence of nano-microbubbles, depending on operating conditions of the process. The presence of nano-microbubbles increased the recovery of ultrafine particles (-14.36 + 5 μm) more than that of fine particles (-38 + 14.36 μm). Another major advantage is that the use of nano-microbubbles reduced the collector and frother consumptions by up to 75% and 50%, respectively. 展开更多
关键词 Nanobubbles Nano-microbubble Bubble size distribution Chalcopyrite Froth flotation Fine particles
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