通过加入离子交换的ZSM-5沸石,提高硝化纤维素的热稳定性,增强性能

IF 3.6
Memdouh Chebbah, Ahmed Fouzi Tarchoun, Fouad Benaliouche, Amir Abdelaziz, Djalal Trache
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引用次数: 0

摘要

在这项研究中,硝酸纤维素(NC)是一种高能量聚合物,补充了两种不同类型的稳定剂:通常的二苯胺(DPA)和沸石分子筛(ZSM-5),它们与过渡金属离子(即铜、银和钴)进行离子交换。主要目的是评估这些Cu、Ag和co离子交换的ZSM-5微孔材料作为NC稳定剂的效果,并与原始NC和DPA稳定的样品进行比较。为了研究其分子相容性和化学成分,采用先进的分析方法对制备的样品进行了结构表征。红外光谱(FTIR)和x射线衍射(XRD)结果表明,NC基体的形貌和原有的理化性质得以保留。此外,对制备的样品进行加速热老化分析表明,制备的样品的热稳定性和整体特性得到了增强。不同样品的热行为也通过热重分析(TGA)进行了研究,结果表明,加入3.wt %的Cu、Ag和Co离子交换的ZSM-5沸石作为稳定剂,显著影响了NC的热裂解。具体来说,样品的失重明显减少,表明掺入分子筛分子吸附剂后NC的热分解明显减少。相比之下,DPA稳定剂在减缓NC热解方面表现出较差的性能。此外,基于先进的无模型动力学方法,即TAS和VYA/CE,研究了不同稳定剂对NC热分解动力学的影响。动力学结果表明,Cu, Ag和Co离子交换的ZSM-5吸附剂的掺入显著增强了NC的热稳定性。值得注意的是,这些基于沸石的稳定剂导致活化能垒的增加,从而有助于提高热稳定性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Advancing nitrocellulose thermal stability through the incorporation of ion-exchanged ZSM-5 zeolite for enhanced performance

Advancing nitrocellulose thermal stability through the incorporation of ion-exchanged ZSM-5 zeolite for enhanced performance
In this study, cellulose nitrate (NC), a highly energetic polymer, was supplemented with two distinct classes of stabilizing agents: the usual diphenylamine (DPA) and zeolite molecular sieves (ZSM-5) that were ion-exchanged with transition metal ions, namely copper, silver, and cobalt. The primary objective was to assess the efficacy of these Cu, Ag, and Co-ion-exchanged ZSM-5 microporous materials as stabilizers for NC in comparison to the pristine NC and sample stabilized with DPA. To study their molecular compatibility and chemical compositions, the prepared samples underwent structural characterization employing advanced analytical methods. FTIR and XRD results revealed that the morphology and the original physical and chemical properties of NC matrix were preserved. Additionally, the accelerated thermal aging analysis of the prepared samples demonstrated an enhancement in the thermal stability and overall characteristics. The thermal behavior of the different samples was also investigated by TGA, revealing that the incorporation of 3 wt.% of the Cu, Ag, and Co -ion-exchanged ZSM-5 zeolites as stabilizers considerably affected the thermolysis of NC. Specifically, the weight loss of samples was notably reduced, indicating a remarkable decrease in the thermal decomposition of NC when doped with the zeolite molecular adsorbents. In contrast, the DPA stabilizer exhibited inferior performance in mitigating the pyrolysis of NC. Furthermore, the influence of diverse stabilizers on the thermal decomposition kinetics of NC was studied based on advanced model-free kinetic approaches, namely TAS and VYA/CE. Kinetic results unveiled that the incorporation of Cu, Ag, and Co ion-exchanged ZSM-5 adsorbents provides a pronounced enhancement in the thermal stability of NC. Notably, these zeolite-based stabilizers led to an increase in the activation energy barrier, thereby contributing to improved thermal stability.
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