Process intensification of fine coal separation using two-stage flotation column

被引:0
作者
桂夏辉 [1 ]
刘炯天 [2 ]
曹亦俊 [2 ]
程敢 [3 ]
张海军 [2 ]
王永田 [2 ]
机构
[1] School of Chemical Engineering and Technology, China University of Mining and Technology
[2] Chinese National Engineering Research Center of Coal Preparation and Purification
[3] School of Chemical and Environmental Engineering, China University of Mining and Technology (Beijing)
关键词
flotation column; coal; energy input; handling ability; two-stage flotation;
D O I
暂无
中图分类号
TD94 [选煤]; TD923 [浮游选矿];
学科分类号
081902 ;
摘要
Flotation column is widely used as the separation equipment for fine mineral due to its high selectivity. However, this device may be unsuitable for the coarse particle flotation and has high handling ability. A two-stage flotation column with dimensions of 2 000 mm×1 000 mm×4 000 mm was designed to enhance the column flotation process. The energy input was modified by adjusting the flow rate and the head of circulating pump. The flotation column was designed with low energy input in the first stage(speed flotation stage) to recover easy-to-float materials quickly, and high energy input in the second stage(recovery stage) to recover difficult-to-float minerals compulsorily. Contrast experiments on the throughput and coarse coal recovery of high ash coal from the Kailuan Mine were conducted using conventional single-stage flotation column and the two-stage flotation column. The results show that the combustible matter recovery of the two-stage flotation column is 5.25% higher than that of the conventional single-stage flotation column. However, the ash contents of clean coal for both columns are similar. Less coarse coals with low ash are obtained using the two-stage flotation column than that using the single-stage column flotation with the same handling ability. The two-stage flotation column process can enhance coal flotation compared with the conventional single-stage column flotation.
引用
收藏
页码:3648 / 3659
页数:12
相关论文
共 19 条
[1]   能量输入对煤泥浮选过程的影响 [J].
桂夏辉 ;
刘炯天 ;
程敢 ;
廖寅飞 ;
曹亦俊 ;
王永田 .
中南大学学报(自然科学版), 2012, 43 (06) :2075-2083
[2]   难浮煤泥浮选速率试验研究 [J].
桂夏辉 ;
刘炯天 ;
陶秀祥 ;
王永田 ;
曹亦俊 .
煤炭学报, 2011, 36 (11) :1895-1900
[3]  
Modification technology for separation of oily sludge[J]. 李小兵,刘炯天,肖云奇,肖鑫.Journal of Central South University of Technology. 2011(02)
[4]   Improving Oxidized Coal Flotation Using Biodiesel as a Collector [J].
Xia, Wencheng ;
Yang, Jianguo ;
Liang, Chuan .
INTERNATIONAL JOURNAL OF COAL PREPARATION AND UTILIZATION, 2013, 33 (04) :181-187
[5]  
A short review of improvement in flotation of low rank/oxidized coals by pretreatments[J] . Wencheng Xia,Jianguo Yang,Chuan Liang.Powder Technology . 2013
[6]   The Effect of Dimensionless Parameters on Coal Flotation [J].
Shahbazi, Behzad ;
Rezai, Bahram ;
Koleini, S. M. Javad ;
Noaparast, Mohammad .
INTERNATIONAL JOURNAL OF COAL PREPARATION AND UTILIZATION, 2012, 32 (04) :157-168
[7]   The Effects of Pretreatment on the Flotation Kinetics of Waste Coal [J].
Sokolovic, Jovica M. ;
Stanojlovic, Rodoljub D. ;
Markovic, Zoran S. .
INTERNATIONAL JOURNAL OF COAL PREPARATION AND UTILIZATION, 2012, 32 (03) :130-142
[8]   Potential use of model predictive control for optimizing the column flotation process [J].
Maldonado, M. ;
Desbiens, A. ;
del Villar, R. .
INTERNATIONAL JOURNAL OF MINERAL PROCESSING, 2009, 93 (01) :26-33
[9]   PICOBUBBLE COLUMN FLOTATION OF FINE COAL [J].
Tao, Daniel ;
Yu, Samuel ;
Zhou, Xiaohua ;
Honaker, R. Q. ;
Parekh, B. K. .
INTERNATIONAL JOURNAL OF COAL PREPARATION AND UTILIZATION, 2008, 28 (01) :1-14
[10]  
Selective detachment process in column flotation froth[J] . Rick Q. Honaker,Ahmet V. Ozsever,B.K. Parekh.Minerals Engineering . 2005 (6)