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Mechanism and kinetics of oxidation during the thermal stabilization of polyacrylonitrile fibers

机译:聚丙烯腈纤维热稳定过程中的氧化机理和动力学

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摘要

The thermal behavior and structural evolution during the thermal stabilization of polyacrylonitrile (PAN) fibers in N_2 and air were investigated using differential scanning calorimetry and solid-state ~(13)C nuclear magnetic resonance. It was found that an oxidation reaction, that generated carbonyl (Ci=O) groups could occur at 160°C which has not been reported in the literature. It is proposed that the cyclized structures in the PAN macromolecule chains are a prerequisite for the oxidation. Further investigations indicate that with more cyclized structures in the PAN macromolecule chains, the oxidation proceeds more readily, which is consistent with the proposed mechanism. The kinetic parameters for the oxidation and cyclization reactions were estimated using the Kissinger method. The activation energies for the reactions of oxidation and cyclization for PAN fibers are about 96.4 kJ/mol and 190.0 kJ/mol, respectively, which implies that the cyclization is the rate determining step during the thermal stabilization of PAN fibers.
机译:利用差示扫描量热法和固态〜(13)C核磁共振技术研究了聚丙烯腈纤维(PAN)在N_2和空气中热稳定过程中的热行为和结构演变。已发现在160℃下可能发生产生羰基(Ci = O)基团的氧化反应,这在文献中没有报道。提出PAN大分子链中的环化结构是氧化的先决条件。进一步的研究表明,PAN大分子链中的环化结构越多,氧化作用就越容易进行,这与所提出的机理是一致的。氧化和环化反应的动力学参数是使用Kissinger方法估算的。 PAN纤维氧化和环化反应的活化能分别约为96.4 kJ / mol和190.0 kJ / mol,这意味着环化是PAN纤维热稳定过程中的速率决定步骤。

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