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高温高压下乙烷乙烯着火延迟时间测定和动力学建模 被引量:1
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作者 马守涛 姜杰 +3 位作者 孙冰 孟睿佶 朱云峰 徐伟 《石油炼制与化工》 CAS CSCD 北大核心 2023年第7期34-40,共7页
为研究乙烯乙烷在高温高压下的着火特性,采用试验与动力学建模工具考察了乙烷乙烯与氧气混合气在不同工况下的着火延迟时间变化规律。试验结果表明:在试验温度为680~800 K范围内,压力为1.0 MPa时,乙烯乙烷没有发生自着火现象;而当压力为... 为研究乙烯乙烷在高温高压下的着火特性,采用试验与动力学建模工具考察了乙烷乙烯与氧气混合气在不同工况下的着火延迟时间变化规律。试验结果表明:在试验温度为680~800 K范围内,压力为1.0 MPa时,乙烯乙烷没有发生自着火现象;而当压力为2.0 MPa时,乙烷乙烯会发生自着火现象,乙烯的起始着火温度低于乙烷的起始着火温度,且温度越高着火延迟时间越短。此外,对乙烯乙烷自着火过程的敏感性和反应途径分析结果显示:促进乙烷自着火的反应是脱氢和生成•C_(2)H_(5)、•OH自由基的基元反应,促进乙烯自着火的反应是氧化或脱氢等生成活泼自由基•HCO,•O,•OH,•C_(2)H_(3)的基元反应;对乙烯乙烷自着火起抑制作用的是消耗•OH、•HO_(2)等自由基,生成稳定化合物的反应;氧化脱氢是使乙烯、乙烷发生链引发而自着火的初始步骤,其反应速率对着火延迟时间影响很大。 展开更多
关键词 乙烷 乙烯 着火延迟 化学动力学
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双氧水法环氧氯丙烷工艺气安全处置方案 被引量:1
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作者 王振刚 孟睿佶 +1 位作者 文松 赵磊 《安全、健康和环境》 2021年第10期14-18,共5页
为防止双氧水法制环氧氯丙烷工艺过程中气相燃爆事故的发生,利用Aspen软件对反应器气相空间、一级冷凝器、二级冷凝器、吸附及尾气排放单元开展了组分模拟和燃爆风险分析,针对高风险单元开展了工况条件下的燃爆参数测试,根据测试结果制... 为防止双氧水法制环氧氯丙烷工艺过程中气相燃爆事故的发生,利用Aspen软件对反应器气相空间、一级冷凝器、二级冷凝器、吸附及尾气排放单元开展了组分模拟和燃爆风险分析,针对高风险单元开展了工况条件下的燃爆参数测试,根据测试结果制定了工艺气冷凝处理方案。结果表明:一级冷凝器冷凝温度低于33℃时,工艺气中氯丙烯含量低于该温度下的爆炸上限,进入爆炸区间,设定一级冷凝温度为35℃;二级冷凝器中氯丙烯的极限氧含量为10.9%,控制二级冷凝器中氧浓度低于8.9%,可以达到燃爆防控的目标。 展开更多
关键词 氯丙烯 环氧氯丙烷 冷凝器 燃爆 极限氧含量
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A Chemical Kinetics Perspective on the High-Temperature Oxidation of Methane and Propane through Experiments and Kinetic Analysis
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作者 Ma Shoutao Yang Zhe +4 位作者 Zhu Yunfeng Sun Bing Jiang Jie Xu Wei meng ruiji 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2022年第4期1-11,共11页
In the conversion of methane and propane under high temperature and pressure,the ignition delay time(IDT)is a key parameter to consider for designing an inherently safe process.In this study,the IDT characteristics of... In the conversion of methane and propane under high temperature and pressure,the ignition delay time(IDT)is a key parameter to consider for designing an inherently safe process.In this study,the IDT characteristics of methane and propane(700–1000 K,10–20 bar)were studied experimentally and using kinetic modeling tools at stoichiometric fuel-tooxygen ratios.All the experiments were conducted through insentropic compression.The reliable experimental data were obtained by using the adiabatic core hypothesis,which can be used to generate and validate the detailed chemical kinetics model.The IDTs of methane and propane were recorded by a rapid compression machine(RCM)and compared to the predicted values obtained by the NUIGMech 3.0 mechanism.To test the applicability of NUIGMech 3.0 under different reaction conditions,the influence of temperature in the range of 700–1000 K(and the influence of pressure in the range of 10–20 bar)on the IDT was studied.The results showed that NUIGMech 3.0 could reasonably reproduce the experimentally determined IDT under the wide range of conditions studied.The constant volume chemical kinetics model was used to reveal the effect of temperature on the elementary reaction,and the negative temperature coefficient(NTC)behavior of propane was also observed at 20 bar.The experimental data can serve as a reference for the correction and application of kinetic data,as well as provide a theoretical basis for the safe conversion of low-carbon hydrocarbon chemicals. 展开更多
关键词 ignition delay time NUIGMech 3.0 negative temperature coefficient kinetic analysis
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