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高气泡表面积通量浮选柱选煤参数的研究
引用本文:陈泉源,张泾生,王淀佐,Kuyumcu H Z.高气泡表面积通量浮选柱选煤参数的研究[J].矿冶工程,2006,26(2):33-37.
作者姓名:陈泉源  张泾生  王淀佐  Kuyumcu H Z
作者单位:1. 东华大学 环境科学与工程学院, 上海 200051; 2. 长沙矿冶研究院, 湖南 长沙 410012; 3. 中国工程院, 北京 100038; 4. Technische Universitt Berlin, Berlin 10623
基金项目:致谢:柏林工业大学Kuyumcu教授提供实验条件和很多好建议,陈泉源感谢长沙矿冶研究院余永富院士、中南大学徐竞高级工程师、胡岳华教授和柏林工业大学选矿研究所Dr Rolf L、Dr Salas M、Thamas女士、Hinkel Dipl M、Duddek Dipl K等人帮助.柏林工业大学Bernick先生、Teubert先生不仅制造了此浮选柱,而且在此浮选柱的安装和调试中给予了极大的帮助.
摘    要:采用高气泡表面积通量浮选柱浮选肥煤和气煤,检验浮选柱的性能, 探讨浮选规律,并根据试验结果对浮选柱的结构和操作参数进行调整。试验表明,多段发泡器的采用和布置显著增大浮选柱的气泡表面积通量, 还可以使气泡输送某些疏水颗粒的路程得到缩短, 有效地防止气泡的兼并以及疏水大颗粒因输送路程长而脱落的现象, 增加了对物料粒级的适应性, 提高了煤浮选效率。

关 键 词:浮选柱  高气泡表面积通量  选煤  
文章编号:0253-6099(2006)02-0033-05
收稿时间:2005-04-10
修稿时间:2005年4月10日

Parameters of Coal Flotation Using Novel Column of High Bubble Surface Area Flux
CHEN Quan-yuan,ZHANG Jing-sheng,WANG Dian-zuo,Kuyumcu H Z.Parameters of Coal Flotation Using Novel Column of High Bubble Surface Area Flux[J].Mining and Metallurgical Engineering,2006,26(2):33-37.
Authors:CHEN Quan-yuan  ZHANG Jing-sheng  WANG Dian-zuo  Kuyumcu H Z
Affiliation:1. School of Environmental Science & Engineering, Donghua University, Shanghai 200051, China; 2. Changsha Research Institute of Mining and Metallurgy, Changsha 410012, Hunan, China; 3. China Academy of Engineering, Beijing 100038, China; 4. Technology University Berlin, Berlin 10623, Germany
Abstract:The newly developed column of high bubble surface area flux has been applied to the flotation of gas coal and fat coal. The flotation performances and parameters of the flotation column are described as well as their modifications. The experimental results confirmed that the flotation column of high bubble surface area flux can produce very fine bubbles at a very high superficial gas velocity. The adoption of multi-stage bubbler created a more favorable environment for the collisions of particles and bubbles and the subsequent collections of hydrophobic particles than the mechanical flotation cell or conventional column, showing higher separation efficiency. The designed column has versatility for the flotation of both fine and coarse particles, because it can reduce the coalescences of bubbles and the dropping out of big hydrophobic particles due to a long transfer distance. The adaptability of the column to the size fraction of the materials is improved thereby. Therefore, the coal floatation efficiency is promoted.
Keywords:floatation column  high bubble surface area flux  coal flotation
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