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Pyrolysis and hydrolysis behaviors during steam pyrolysis of polyimide

机译:聚酰亚胺蒸汽热解过程中的热解和水解行为

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Kapton film, which is a typical aromatic polyimide (PI) film, exhibits excellent thermal stability and flexibility. Therefore, it is used widely for flexible printed circuit boards in combination with other resins and metals. However, this makes it difficult to recycle it. In this work, we focused on the steam pyrolysis technique, which is a method of depolymerizing condensation polymers without solvents, catalysts, or high pressure, as a way of overcoming this issue. The steam pyrolysis of Kapton film was carried out using a thermogravimetric (TG) analyzer equipped with a steam generator. In addition, the TG results were evaluated further using model fitting techniques. It was found that steam enhanced the hydrolysis of the imide ring, which occurred on the surface of the PI film. The hydrolysis selectivity was as high as 89% at 528 degrees C. However, steam did not significantly enhance the Kapton decomposition rate, owing to rapid carbonization, which took place because of the simultaneous occurrence of pyrolysis. Thus, the obtained results implied that high-yield monomer recovery can be achieved by lowering the temperature to prevent pyrolysis and by improving the steam contact efficiency to enhance hydrolysis within the material. (C) 2016 Elsevier B.V. All rights reserved.
机译:Kapton膜是一种典型的芳香族聚酰亚胺(PI)膜,具有出色的热稳定性和柔韧性。因此,与其他树脂和金属组合使用时,广泛用于挠性印刷电路板。但是,这使其难以回收。在这项工作中,我们专注于蒸汽热解技术,这是一种无需溶剂,催化剂或高压即可使缩合聚合物解聚的方法,以此来解决这一问题。使用配备有蒸汽发生器的热重分析仪(TG)对Kapton膜进行蒸汽热解。此外,使用模型拟合技术进一步评估了TG结果。发现蒸汽增强了在PI膜的表面上发生的酰亚胺环的水解。在528℃下,水解选择性高达89%。然而,由于同时发生热解而发生了快速碳化,因此蒸汽并未显着提高Kapton的分解速率。因此,获得的结果暗示可以通过降低温度以防止热解并通过改善蒸汽接触效率以增强材料内的水解来实现高产率的单体回收。 (C)2016 Elsevier B.V.保留所有权利。

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