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具有低点火延迟时间的1-辛烯的低温自燃点火

Low-Temperature Hypergolic Ignition of 1-Octene with Low Ignition Delay Time.

作者信息

Sheng Haoqiang, Huang Xiaobin, Chen Zhijia, Zhao Zhengchuang, Liu Hong

机构信息

Shanghai Jiao Tong University School of Aeronautics and Astronautics, Shanghai 200240, China.

出版信息

J Phys Chem A. 2021 Jan 14;125(1):423-434. doi: 10.1021/acs.jpca.0c08999. Epub 2020 Dec 30.

DOI:10.1021/acs.jpca.0c08999
PMID:33377778
Abstract

The attainment of the efficient ignition of traditional liquid hydrocarbons of scramjet combustors at low flight Mach numbers is a challenging task. In this study, a novel chemical strategy to improve the reliable ignition and efficient combustion of hydrocarbon fuels was proposed. A directional hydroboration reaction was used to convert hydrocarbon fuel into highly active alkylborane, thereby leading to changes in the combustion reaction pathway of hydrocarbon fuel. A directional reaction to achieve the hypergolic ignition of 1-octene was designed and developed by using Gaussian simulation. Borane dimethyl sulfide (BDMS), a high-energy additive, was allowed to react spontaneously with 1-octene to achieve the hypergolic ignition of liquid hydrocarbon fuel at -15 °C. Compared with the ignition delay time of pure 1-octene (565 °C), the ignition delay time of 1-octene/BDMS (9:1.2) decreased by 3850% at 50 °C. Fourier transform infrared spectroscopy and gas chromatography-mass spectrometry confirmed the directional reaction of the hypergolic ignition reaction pathway of 1-octene and BDMS. Moreover, optical measurements showed the development trend of hydroxyl radicals (OH·) in the lower temperature hypergolic ignition and combustion of 1-octene. Finally, this study indicates that the enhancement of the low-temperature ignition performance of 1-octene by hydroboration in the presence of BDMS is feasible and promising for jet propellant design with tremendous future applications.

摘要

在低飞行马赫数下实现超燃冲压发动机燃烧室中传统液态烃的高效点火是一项具有挑战性的任务。在本研究中,提出了一种新颖的化学策略来改善烃类燃料的可靠点火和高效燃烧。利用定向硼氢化反应将烃类燃料转化为高活性烷基硼烷,从而导致烃类燃料燃烧反应途径的改变。通过高斯模拟设计并开发了一种实现1-辛烯自燃点火的定向反应。高能添加剂硼烷二甲硫醚(BDMS)与1-辛烯自发反应,在-15℃下实现了液态烃燃料的自燃点火。与纯1-辛烯(565℃)的点火延迟时间相比,1-辛烯/BDMS(9:1.2)在50℃下的点火延迟时间降低了3850%。傅里叶变换红外光谱和气相色谱-质谱联用技术证实了1-辛烯与BDMS自燃点火反应途径的定向反应。此外,光学测量显示了1-辛烯在低温自燃点火和燃烧过程中羟基自由基(OH·)的发展趋势。最后,本研究表明,在BDMS存在下通过硼氢化增强1-辛烯的低温点火性能对于喷气推进剂设计是可行且有前景的,具有巨大的未来应用价值。

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