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作 者:杨鹏 王彦辉 闫大鹤 王杰 贾宏福 崔子岭 YANG Peng;WANG Yanhui;YAN Dahe;WANG Jie;JIA Hongfu;CUI Ziling(Shanxi Huajin Jining Coal Industry Co.,Ltd.,Linfen 042100,China;School of Emergency Management and Safety Engineering,China University of Mining and Technology-Beijing,Beijing 100083,China)
机构地区:[1]山西华晋吉宁煤业有限责任公司,山西临汾042100 [2]中国矿业大学(北京)应急管理与安全工程学院,北京100083
出 处:《煤炭技术》2024年第4期180-185,共6页Coal Technology
摘 要:为降低工业生产中的细微粉尘浓度,针对优选出的3种不同类型的活性剂单体采取二元单体复配的方式进行试验研究,通过润湿性能研究并分析表面活性剂对降尘效率的影响。研究结果表明,阴离子与非离子型、阴离子与两性离子型表面活性剂复配均可产生协同增效效应,其中AES与AEO-9质量比为5∶1至1∶5及AES与LAB-35质量比为5∶1、4∶2时增效显著。拟合结果显示:雾滴粒径在40~130μm内无尘雾滴粒径D_(w)与被捕粉尘平均粒径ΔD之间存在函数关系式,且PM_(10)的最佳捕尘雾滴粒径为80~120μm。In order to reduce the fine dust concentration in industrial production,the three different types of active agent monomers selected were experimentally studied by binary monomer compounding,and the influence of surfactants on dust reduction efficiency was studied and analyzed by wetting performance.The results show that the combination of anionic and nonionic,anionic and zwitterionic surfactants can produce synergistic effects,and the mass ratio of AES to AEO-9 is 5∶1 to 1∶5 and the mass ratio of AES and LAB-35 is 5∶1 and 4∶2.The function relationship between the droplet size D_(w) and the average particle size ΔD of captured dust was fitted with the droplet size in the range of 40-130μm,and the optimal dust droplet size for PM_(10) was proposed to be 80-120μm.
分 类 号:TD714[矿业工程—矿井通风与安全]
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