简介:为有效降低矿井工作场所粉尘浓度,提高雾化水源利用率,基于对雾化捕尘机理的分析,在自建试验系统内,以1.7MHz超声波作为雾化动力源,将蒸馏水雾化为超细水雾,对双鸭山某矿三分之一焦煤煤样进行了雾化降尘试验。在分别完成1min、2min和5min的雾化作用后,立即测量试验系统内的粉尘质量浓度,每5min测量1次。绘制和分析各组试验数据所对应的回归方程,并以试验系统内无雾化煤尘自沉降试验数据作为对比。结果表明:超声波雾化作用能加速煤尘沉降,对降低试验系统内的残余粉尘浓度作用明显;雾化时间为1min、2min和5min时初次采样点的雾化降尘率分别为10.11%、12.73%和30.95%;粉尘沉降速率随时间延长而降低,但粉尘不能完全沉降;雾化时间与试验系统内的残余粉尘质量浓度负相关,雾化作用5min的残余质量浓度最低为自沉降残余质量浓度的30.6%。
简介:摘要:随着煤矿开采深度和开采强度不断增加,矿井开采条件越来越差,生产系统越来越复杂,矿井粉尘几乎存在于各个操作环节中,严重影响了作业人员的身体健康以及大大加大了
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