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Effects of inert gas addition, oxygen concentration, and pressure on explosion characteristics of propylene

机译:惰性气体添加,氧气浓度和压力对丙烯爆炸特性的影响

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摘要

Propylene is used for manufacturing commonly used raw materials and synthetic materials for petrochemical processes. However, it is a volatile and flammable material that poses fire and explosion risks. Nitrogen is inexpensive and can lower the propylene explosion limit because of the dilution effect when used as an inert gas. This study measures the explosion limit, minimum oxygen concentration (MOC), explosion pressure, explosion pressure rise rate, and deflagration index (K-g) values for propylene and nitrogen at 25 degrees C. Results showed that the lower explosion limit of the explosion range did not significantly change with an increase in pressure from 0.10 MPa to 0.25 MPa; however, the upper explosion limit increased significantly. Furthermore, the MOC decreased as pressure increased at 25 degrees C, while both the maximum explosion pressure and maximum explosion pressure rise rate increased, thereby increasing the explosion risk. The risk of propylene was predicted by the K-g values determined using the maximum explosion pressure rise rate and volume based on the experimental data. Therefore, through this study, we provide basic data on safety references for preventing fire and explosion accidents.
机译:丙烯用于制造常用的原料和用于石化工艺的合成材料。然而,它是一种挥发性和易燃的材料,造成火灾和爆炸风险。由于当用作惰性气体时,氮气廉价并且可以降低丙烯爆炸极限。该研究测量丙烯和氮在25℃下爆炸极限,最小氧浓度(MOC),爆炸压力,爆炸压力上升率和净化指数(kg)值,结果表明,爆炸范围的爆炸极限较低没有显着变化,增加到0.10 mpa至0.25 mpa的压力;然而,上部爆炸极限显着增加。此外,MOC随着25℃的压力增加而降低,而最大爆炸压力和最大爆炸压力升高率增加,因此增加了爆炸风险。通过使用基于实验数据的最大爆炸压力上升速率和体积确定的K-G值来预测丙烯的风险。因此,通过本研究,我们提供有关防止火灾和爆炸事故的安全参考资料的基本数据。

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