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H_2、CO、CH_4混合气体爆炸极限的多元回归分析 被引量:9
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作者 魏永生 周邦智 郑敏燕 《化学研究与应用》 CAS CSCD 北大核心 2004年第3期419-420,424,共3页
The concentration explosive limits of polybasic explosive mixture gas of synthetic ammonia containing H2,CO,CH4 were systematically researched under ambient conditions.The regression eguations of explosive limits-conc... The concentration explosive limits of polybasic explosive mixture gas of synthetic ammonia containing H2,CO,CH4 were systematically researched under ambient conditions.The regression eguations of explosive limits-concentrations were determined with the computer software SPSS.The results showed that the relative contents of H2,CH4 and CO had obvious effect on explosive limits,and the theoretical model was in good agreement with experment. 展开更多
关键词 氢气 一氧化碳 甲烷 混合气体 爆炸极限 多元回归分析 支链燃烧
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Determining Role of the Branched-Chain Reaction Mechanism in Combustion, Explosion and Detonation of Gases
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作者 V. V. Azatyan 《Journal of Chemistry and Chemical Engineering》 2013年第6期577-590,共14页
The role of branching-chain mechanism in gas phase combustion is considered. The results of experimental and theoretical investigations show that contrary the accepted for a long time views, branching-chain mechanism ... The role of branching-chain mechanism in gas phase combustion is considered. The results of experimental and theoretical investigations show that contrary the accepted for a long time views, branching-chain mechanism of the reaction, competition of chain branching and termination determine the origin and features of gas phase combustion of almost all compounds not only at pressures below atmospheric dozen times, but also at atmospheric and elevated pressures, in conditions of any self-heating. The latter becomes important in the course of developing chain combustion and enhances the chain avalanche. Kinetic methods for controlling combustion, explosion and detonation of gases have been developed by taking into account the decisive role of chain avalanche in these processes. The approach is based on purposeful variation of the rates of the competing reactions of chain branching and termination by means of special small additives. Suggested methods enable not only prevent combustion and explosion, but also adjust the intensity of the process, deflagration to detonation transition and destroy stationary detonation wave at a given distance from the place of its origin. 展开更多
关键词 Chain branching termination AVALANCHE inhibition DETONATION shock wave.
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