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为了探讨玻璃纤维过滤器处理含DEP雾废气的效率问题,在实验室进行了DEP雾去除实验。考查了不同气体入口浓度、过滤流速下玻璃纤维过滤捕集装置对含DEP雾废气的净化能力,结果表明:利用玻璃纤维过滤器去除DEP雾,在DEP雾粒径主要分布为0.48~3.4μm之间,DEP雾浓度小于220 mg/m3,过滤流速小于10 cm/s情况下,玻璃纤维过滤器对DEP雾的去除率大于99%,最大气体流量下的压力降小于1610Pa;同时对含油(酸)雾废气除雾效果好,特别是对于粒径特别细微的油(酸)雾,捕集效率也很高,还可回收利用,不会产生二次污染。 相似文献
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Characteristics of large cooking oil pool fires and their extinguishment by water mist 总被引:1,自引:0,他引:1
Z. Liu D. Carpenter A.K. Kim 《Journal of Loss Prevention in the Process Industries》2006,19(6):516-526
Large cooking oil pool fires, occurring in industrial oil cookers, present a severe hazard to food processing plants due to their size and the large amount of hot oil involved. This paper reports a series of full-scale fire experiments conducted in a large industrial oil cooker mock-up. The characteristics of large cooking oil pool fires and the effect of oil depth and hood position in the oil cooker on fire growth were studied. The use of water mist for extinguishing large oil pool fires and their extinguishing performance under different discharge pressure and with different types of water mist systems were investigated. Experimental results showed that the cooking oil underwent a substantial expansion in volume during heating. The fires developed quickly once the oil auto-ignited. The fire growth rate was affected by the oil depth in the pan and the hood position in the oil cooker. The water mist fire suppression systems effectively extinguished large cooking oil fires and prevented them from re-igniting. Their extinguishing performance was determined by the type of water mist system, discharge pressure and hood position in the oil cooker. 相似文献
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细水雾阻隔火焰热辐射的模拟研究 总被引:1,自引:2,他引:1
从热辐射传递方程出发,根据Mie散射理论,考虑雾滴对热辐射的散射和吸收特性,建立细水雾阻隔火焰热辐射的两通量模型,并给出简化算法;同时建立小尺度模拟实验系统,对理论模型进行验证。结果表明,两通量模型较为合理地预测了细水雾对火焰热辐射的衰减作用。在此基础上,应用上述理论模型进一步探讨火焰温度、细水雾特性参数、雾场厚度对阻隔热辐射效率的影响,为细水雾系统的实际工程应用提供了理论和依据。 相似文献
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In this study, in order to research the synergistic inhibition effect of nitrogen and ultrafine water mist on gas explosion in a vented duct, a semi-confined transparent chamber was designed with the size of 120 × 120 × 840 mm, and the experiments were carried out with stoichiometric methane/air premixed mixture (fraction of methane: 9.5%), adding different fractions of nitrogen and ultrafine water mist. The experimental results showed the following: The combination of nitrogen and ultrafine water mist had a synergistic inhibiting effect on methane/air explosion, which was preferable to the single use of any kind. With the increase of spraying time of water mist and fraction of nitrogen, the initial shape of the explosion flame became snakelike, and at the same time the peak flame propagation speed and peak overpressure decreased significantly. When the nitrogen fraction was increased to 10% and the mist spraying time was increased to 2min, synergistic inhibiting effect on overpressure was high efficient. However, with the increase of spraying time of water mist and fraction of nitrogen going on, the amount of increase of explosion inhibition efficiency was gradually reduced. 相似文献
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以大涡模拟、混合物分数模拟和欧拉-拉格朗日粒子运动描述法为基础,采用火灾动力学软件FDS研究了细水雾对障碍物不同程度遮挡火的抑制作用,通过改变雾滴粒径、喷头操作压力来分析细水雾对不同遮挡情况油池火的抑制灭火作用。结果表明:当火源被障碍物完全遮挡时,操作压力低于1MPa,细水雾很难达到抑制作用,当压力达到4MPa以上时,细水雾能够将温度控制在较低范围内;细水雾粒径小于50μm时,细水雾对障碍物遮挡火有较好的抑制作用;从整体来看,随着细水雾粒径的减小、压力的升高,细水雾对障碍物遮挡火的抑制作用逐渐增强。 相似文献
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