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粉矿仓移动卸料槽口密闭方案优化研究 被引量:1
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作者 李刚 赵燕鹏 吴将有 《工业安全与环保》 北大核心 2017年第4期59-61,共3页
介绍了粉矿仓移动卸料槽口的几种传统密闭方式,分析了各密闭技术存在的不足。针对移动卸料车定点卸料的作业特点,提出了一种移动卸料槽口新型动态密封装置,该动态密封装置摩擦阻力小、检修方便、密闭效果好。以某铁矿粉矿仓移动卸料槽... 介绍了粉矿仓移动卸料槽口的几种传统密闭方式,分析了各密闭技术存在的不足。针对移动卸料车定点卸料的作业特点,提出了一种移动卸料槽口新型动态密封装置,该动态密封装置摩擦阻力小、检修方便、密闭效果好。以某铁矿粉矿仓移动卸料槽口为研究对象,证明了该新型动态密封装置在移动卸料槽口的密闭效果,成功解决了移动卸料车作业产生的扬尘,具有很好的经济效益和环境效益。 展开更多
关键词 移动卸料槽口 密闭方式 优化研究 动态密封装置 密闭效果 环境效益
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Inhibiting effect of Al(OH)_3 and Mg(OH)_2 dust on the explosions of methane-air mixtures in closed vessel 被引量:4
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作者 WANG QiuHong WEN Hu +1 位作者 WANG QingSong SUN JinHua 《Science China(Technological Sciences)》 SCIE EI CAS 2012年第5期1371-1375,共5页
The inhibiting effect of AI(OH)3 and Mg(OH)2 dust on explosion of methane-air mixtures was investigated by means of explosion parameter tests in a 20-liter closed vessel. The influences of varying methane concentr... The inhibiting effect of AI(OH)3 and Mg(OH)2 dust on explosion of methane-air mixtures was investigated by means of explosion parameter tests in a 20-liter closed vessel. The influences of varying methane concentration and dust concentration on explosion parameters were characterized based on the experimental data to determine the maximum explosion pressure, maximum rate of pressure rise, lower explosion limits and upper explosion limits. The inhibiting mechanisms of these kinds of dust were analyzed as well. The investigations indicate that AI(OH)3 and Mg(OH)2 dust can be used as inhibitors to prevent meth- ane explosion, however, their inhibiting effects are less than those of inert gas such as N2 and CO2 in that their dust can weaken the methane explosion but cannot totally eliminate it. The tests show that all of the explosion parameters with dust additives are strongly dependent on methane/air ratio and dust concentration, and AI(OH)3 dust has better performance than Mg(OH)2 dust in inhibiting methane explosion. The average percentage decreases of maximum explosion pressure and maximum rate of pressure rise with AI(OH)3 dust are 11.08% and 66.15%, respectively. Experiments also showed that there is a special phe- nomenon when methane explosion is inhibited by AI(OH)3 and Mg(OH)2 dust, in which is that during the process of explosion the maximum explosion pressure value first decreases then increases as dust concentration increases. The best dust concentrations to inhibit the explosion are 250 g/m3 with methane/air ratio at 9.5%, and 200 g/m3 with methane/air ratio at 7%. It is suggested that water vapor produced by the thermal decomposition of metal hydroxides makes the particles of descending dust combine, resulting in a decrease of the real dust concentration in the vessel. Water vapor also is the major cause of another phenomenon that the LEL curve and the UEL curve never meet with the increase of gas concentration. 展开更多
关键词 explosion inhibition explosion pressure explosion limits DUST metal hydroxides
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