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XU Jian. Carbon Monoxide Filtering Device for Coal Mine Refuge Chamber[J]. Safety in Coal Mines, 2015, 46(2): 89-91.
Citation: XU Jian. Carbon Monoxide Filtering Device for Coal Mine Refuge Chamber[J]. Safety in Coal Mines, 2015, 46(2): 89-91.

Carbon Monoxide Filtering Device for Coal Mine Refuge Chamber

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  • Published Date: February 19, 2015
  • Taking precious metals loaded on activated aluminum oxide or titanium oxide which is processed into precious metal catalyst system as carbon monoxide removal catalyst, by analyzing the structures of catalyst filter bed and testing its resistance, we designs the device for removing carbon monoxide which is suitable for coal mine refuge chamber, test the device capability of removing carbon monoxide by simulation experiment. The device can reduce carbon monoxide concentration to a safe level quickly and reliably in the limited space.
  • [1]
    赵利安,王铁力.国外井工矿避灾硐室的应用与启示[J].煤矿安全,2008(2).
    [2]
    张婕.一氧化碳中毒的急救和护理[J].山西医药杂志,2011(10).
    [3]
    王莉,罗新乐,吴砚会.一氧化碳低温变换催化剂研究进展[J].化肥设计,2011(2).
    [4]
    施申忠.国内外CO氧化触媒的研究动向[J].煤矿安全,2002(4):36-38.
    [5]
    赵立,聂亚玲,马善清.人类用呼吸保护装备[M].徐州:中国矿业大学出版社,2009:298-303.
    [6]
    栗婧,金龙哲,汪声.矿用救生舱中二氧化碳净化装置研究[J].煤矿安全,2010(10):1-4.
    [7]
    矿井下紧急避险系统建设管理暂行规定[S].
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