正辛烷蒸汽辐射引发的热裂解

S. Matsuoka, T. Tamura, K. Oshima, Y. Oshima
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引用次数: 0

摘要

研究了正辛烷蒸汽在184 ~ 551℃和常压条件下的辐射引发热裂解(RTC)。发现气相离子链反应与自由基链反应同时进行,而氨的加入完全抑制了离子链反应。主要的离子链产物是含有大量支链产物和β-烯烃的C3 ~ C5烷烃和烯烃,这些产物不是由正辛烷热裂解形成的。例如,异丁烷和异戊烷在524℃时的g值分别达到82和78。离子链产物占总产物的比例约为10mol%。C8H17+离子的异构化、热分解以及随后的氢化物离子从正辛烷分子向碎片离子的转移反应提出了离子链机理。载流子离子是C3 ~ C5的碳离子。指出了RTC的离子产物与酸性催化反应的离子产物之间的一些相似之处。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Radiation-initiated Thermal Cracking of n-Octane Vapor
The radiation-initiated thermal cracking (RTC) of n-octane vapor was studied at temperatures from 184 to 551°C and at atmospheric pressure. Vapor-phase ionic chain reactions, which were completely suppressed by the addition of ammonia, were found to proceed simultaneously with radical chain reactions. The main ionic chain products were C3∼C5 paraffins and olefins containing quantities of branched products and β-olefins which were not formed by the thermal cracking of n-octane. For example, the G-values of isobutane and isopentane reached 82 and 78, respectively, at 524°C. The proportion of the ionic chain products to the overall products was about 10mol%. Isomerization of C8H17+ ion, its thermal decomposition, and subsequent hydride ion transfer reaction from n-octane molecule to the fragment ion are proposed for the ionic chain mechanism. Carrier ions are carbonium ions of C3∼C5.Several similarities are pointed out between the ionic products from the RTC and those from catalytic reactions over acidic sites.
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