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首页> 外文期刊>Environmental Progress & Sustainable Energy >Effects of reactor pressure and inlet temperature on n-butane/dimethyl ether oxidation and the formation pathways of the aromatic species
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Effects of reactor pressure and inlet temperature on n-butane/dimethyl ether oxidation and the formation pathways of the aromatic species

机译:反应堆压力和进气温度的影响正丁烷/二甲醚氧化和芳香物种的形成途径

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摘要

Oxidation of n-butane/dimethyl ether (DME)/O-2/Ar system was studied by chemical kinetic modeling in a tubular reactor operated adiabatically and at constant pressure. Effects of the reactor pressure on the formation of various major, minor, and trace oxidation products were investigated for two different pressures (1 and 5 atm) and at six different inlet temperature values (700, 800, 900, 1100, 1300, and 1500 K). The analysis was carried out for two different concentrations of dimethyl ether in the inlet fuel mixture (20 and 50 mol %). Higher pressure (5 atm) resulted in higher mole fractions of methane, vinylacetylene, and cyclopentadiene; and lower mole fractions of formaldehyde, acetylene, acetaldehyde, ethane, propargyl, and propane. The mole fractions of CO and CO2 were not affected considerably by the pressure change. The main formation routes of benzene were developed at two different inlet temperature values (1100 and 1300 K), and the main precursors participating in these routes were found to be propargyl, propene, and diacetylene. A skeletal mechanism was developed for the oxidation of n-butane/DME mixture from the detailed mechanism by reduction of the elementary reactions by 79%, and it was tested for accuracy by comparison with the data from the literature. (c) 2015 American Institute of Chemical Engineers Environ Prog, 35: 230-240, 2016
机译:正丁烷氧化/二甲醚/ 0 2 / Ar(测距装置)系统研究了化学动力学建模在管式反应器绝热地和操作在恒定的压力。压力的形成不同的专业,小,跟踪氧化产品追究(1和5两个不同的压力atm)和六个不同的入口温度值(700、800、900、1100、1300和1500 K)。两个不同的进行了分析在进气浓度二甲醚燃料混合物(20 - 50摩尔%)。(5 atm)导致更高的摩尔分数甲烷、乙烯基乙炔和环戊二烯;降低甲醛的摩尔分数、乙炔、炔丙基乙醛,乙烷,丙烷。CO和CO2的摩尔分数没有影响很大的压力变化。形成的苯被开发的两个途径不同入口温度的值(1100年和1300年K),主要前兆参与这些路线是炔丙基、丙烯和丁二炔。发达的正丁烷氧化/测距装置混合物的详细机制,减少的基本反应了79%,检测精度与数据相比从文学。化学工程师环境掠夺,35:230 - 240,2016

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