Wang Hetang, Wang Deming, Wang Qingguo, Jia Zhiqiang
a Key Laboratory of Gas and Fire Control for Coal Mines of Ministry of Education, Faculty of Safety Engineering, State Key Laboratory of Coal Resources and Safe Mining , China University of Mining & Technology , Xuzhou , Jiangsu , China.
J Occup Environ Hyg. 2014;11(3):154-64. doi: 10.1080/15459624.2013.848039.
The cutting dust created by the shearer drum is the main source of dust on a fully mechanized coal face. However, overexposure to respirable dust may cause pneumoconiosis in coal workers, while coal dust may lead to serious explosions. The fully mechanized face known as II1051 Face, found at the Zhuxianzhuang Coal Mine located in east China, generates dust by way of the drum on a high-power shear. The coal seam involves hard rock parting so there is a high concentration of cutting dust when the shearer is working. Thus, we developed a new foam dust suppression method with an air self-suction system based on an analysis of the dust generation characteristics that suppressed the shearer cutting dust level. The new foam system was evaluated in a field test where the dust concentration was measured at two points. The results showed that the foam reduced the cutting dust concentration significantly. The respirable dust exposure levels were reduced from 378.4 mg/m(3)to 53.5 mg/m(3)and the visibility was enhanced dramatically. Thus, we conclude that our new foam system is highly efficient at capturing cutting dust, and it has a much lower water consumption. [Supplementary materials are available for this article. Go to the publisher's online edition of Journal of Occupational and Environmental Hygiene for the following free supplemental resource: Contact angle of cutting dust sample, migration trajectory of cutting dust, technological process for suppressing shearer cutting dust using foam, the layout of the foam dust suppression system on coal face, real object of the air self-suction type foam generator, the special foam nozzle used for shearers, relevant experimental results of the air self-suction foam system.].
采煤机滚筒产生的切割粉尘是综采工作面粉尘的主要来源。然而,长期暴露于可吸入粉尘中可能会导致煤矿工人患尘肺病,同时煤尘可能引发严重爆炸。位于中国东部的朱仙庄煤矿的II1051综采工作面,通过大功率采煤机滚筒产生粉尘。该煤层含有硬岩夹层,因此采煤机工作时切割粉尘浓度很高。因此,我们在分析粉尘产生特性的基础上,开发了一种基于空气自吸系统的新型泡沫降尘方法,可抑制采煤机切割粉尘水平。在现场试验中对新的泡沫系统进行了评估,在两个点测量了粉尘浓度。结果表明,泡沫显著降低了切割粉尘浓度。可吸入粉尘暴露水平从378.4毫克/立方米降至53.5毫克/立方米,能见度显著提高。因此,我们得出结论,我们的新型泡沫系统在捕获切割粉尘方面效率很高,且耗水量低得多。[本文提供补充材料。请前往《职业与环境卫生杂志》出版商的网络版获取以下免费补充资源:切割粉尘样品的接触角、切割粉尘的迁移轨迹、使用泡沫抑制采煤机切割粉尘的工艺流程、采煤工作面泡沫降尘系统的布局、空气自吸式泡沫发生器实物、采煤机专用泡沫喷嘴、空气自吸泡沫系统的相关实验结果。]