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首页> 外文期刊>Carbon: An International Journal Sponsored by the American Carbon Society >The rheological behavior during carbonization of iodine-treated coal tar pitch
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The rheological behavior during carbonization of iodine-treated coal tar pitch

机译:碘处理煤焦油沥青碳化过程中的流变行为

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摘要

Changes of rheological properties, especially thermal fusibility, during carbonization processes of iodine-treated coal tar pitches have been investigated by TG-Mass, viscometer and proton nuclear magnetic resonance thermal analysis. It was found that iodine could exist in two distinct forms in coal tar pitch (CTP). Introduced iodine molecules, about 30 wt% against the CTP, formed charge-transfer complexes with the CTP molecules. These charge-transfer complexes decompose at temperature above 200°C to form HI and free radicals, which promote cross-linkage and reduce the re solidification temperature of CTP by two hundred degrees. Additional iodine (at levels of greater than 30 wt% ) could be eliminated by ethanol and be weakly bound to the CTP. Over extended periods of time at 100°C, latter form of iodine increases the softening temperature and viscosity of the CTP, possibly by acting as an oxidant. The combination of the two effects explains how iodine is so effective as a stabilizer of CTP.
机译:通过TG-Mass,粘度计和质子核磁共振热分析研究了碘处理煤焦油沥青碳化过程中的流变性质,特别是热熔性的变化。发现碘可以以两种不同的形式存在于煤焦油沥青(CTP)中。引入的碘分子相对于CTP约占30 wt%,与CTP分子形成了电荷转移复合物。这些电荷转移络合物在高于200°C的温度下分解以形成HI和自由基,从而促进交联并降低CTP的再固化温度200度。乙醇可以消除额外的碘(含量大于30 wt%),并与CTP弱结合。在100°C下的较长时间段内,碘的后一种形式可能会通过充当氧化剂来提高CTP的软化温度和粘度。两种作用的结合说明了碘作为CTP稳定剂的效果如何。

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