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Chemical structure evolution and mechanism during pre-carbonization of PAN-based stabilized fiber in the temperature range of 350-600 degrees C

机译:PAN基稳定纤维在350-600°C温度范围内预炭化过程中的化学结构演变及机理

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摘要

A series of PAN-based pre-carbonized fibers were prepared in pilot carbonization line at gradient temperature of 350-600 degrees C. DSC, FTIR, X-ray diffraction, EPR and elemental analysis were used to study the evolution of chemical structures in these pre-carbonized fibers. At the same time, the reaction mechanism during the pre-carbonization was also explored. According to the chemical structural changes, the process of pre-carbonization below 600 degrees C can be divided into three stages. Below 450 degrees C, cross-linking and aromatization are the main reactions accompanied by heat liberation and rearrangement of oxygen-containing groups. But around 500 degrees C the pyrolysis reactions acquire the priority and the aromatization structure is dominant in the fibers. Until 600 degrees C the ladder polymers cross-link to form the carbon basal planes, resulting in the growth of aromatization structures. Based on the dependence of fiber structure on temperature, the pre-carbonization technology was optimized. (C) 2007 Elsevier Ltd. All rights reserved.
机译:在梯度温度为350-600°C的中试炭化线中制备了一系列基于PAN的预碳化纤维,采用DSC、FTIR、X射线衍射、EPR和元素分析等方法研究了这些预碳化纤维化学结构的演变。同时,还探讨了预碳化过程中的反应机理。根据化学结构变化,600°C以下的预碳化过程可分为三个阶段。在450°C以下,交联和芳构化是伴有热释放和含氧基团重排的主要反应。但在500°C左右,热解反应获得优先权,芳构结构在纤维中占主导地位。直到600°C,梯形聚合物交联形成碳基面,导致芳构结构的生长。基于纤维结构对温度的依赖性,优化了预碳化技术。(C) 2007 爱思唯尔有限公司保留所有权利。

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