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DENG Zeng-she, XU Wen-quan, WANG Peng, SI Jun-hong, WANG Xiao-jun, SONG Chao. Design and Application of Water Film Dust Removal Device[J]. Safety in Coal Mines, 2013, 44(8): 91-93.
Citation: DENG Zeng-she, XU Wen-quan, WANG Peng, SI Jun-hong, WANG Xiao-jun, SONG Chao. Design and Application of Water Film Dust Removal Device[J]. Safety in Coal Mines, 2013, 44(8): 91-93.

Design and Application of Water Film Dust Removal Device

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  • Published Date: August 19, 2013
  • According to the problems and deficiencies of coal mine dust control, a water film dust removal device was designed by using the water film to capture and adsorb the dust, which formed a large section of water film in the roadway, and the numerical simulation and field experiments were carried out. The results showed that after using this device to purify the dust in the roadway, the highest concentration of dust was 3.9%, and the highest purifying rate was 95.5%. Furthermore, the highest concentration of respirable dust was 1.0%, and the highest purifying rate was 94.3%.
  • [1]
    徐厚学,施国华,郑彦奎.综采面采煤机割煤粉尘分布特性及防治技术[J].煤矿安全,2013,44(3):75-77.
    [2]
    姚锡文,鹿广利.大倾角综放面粉尘浓度分布规律的数值模拟[J].煤矿安全,2013,44(2): 22-24,25.
    [3]
    时均坡.矿井封闭式水幕除尘装置的研究与应用[J].山东煤炭科技,2011(5):207.
    [4]
    王德明.矿井通风与安全[M].徐州:中国矿业大学出版社,2005.
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