首页> 外文期刊>MATEC Web of Conferences >Experimental determination and prediction of solid-liquid phase equilibria for binary (N-(2-acetoxyethyl)-p-nitroaniline (1) + N-ethyle-4-nitroaniline (2)) mixture
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Experimental determination and prediction of solid-liquid phase equilibria for binary (N-(2-acetoxyethyl)-p-nitroaniline (1) + N-ethyle-4-nitroaniline (2)) mixture

机译:二元(N-(2-乙酰氧基乙基)-对硝基苯胺(1)+ N-乙基-4-硝基苯胺(2))混合物固液相平衡的实验测定和预测

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The nitrocellulose based materials are degraded in a natural way during their storage; the processes of degradation are accelerated when the temperature or the humidity increases. To prevent this decomposition, these materials include in their composition stabilising agents which retain the nitro groups and avoid the auto-catalytic degradation of nitrocellulose. The aim of the present work is to improve our understanding of the basic mechanisms of the degradation of the nitrocellulose based materials and the way in which their stabilization evolves. Solid–liquid phase equilibrium for the binary system of (N-(2-acetoxyethyl)-p-nitroaniline (1) + N-ethyle-4-nitrooaniline (2)) is determined using DSC technique. The experimental results were correlated using Wilson and UNIQUAC models.As results, the system studied presents a simple eutectic, where the components are not miscible in the solid phase. Important deviations between experimental and predicted values are observed in the case of ideal model. These deviations can be attributed to the complexity of our system and principally to the presence of intermolecular effects. The best description of SLE was given by the two parameters UNIQUAC.
机译:硝酸纤维素基材料在存储过程中会自然降解。当温度或湿度增加时,降解过程加速。为了防止这种分解,这些材料在其组成中包括稳定剂,该稳定剂保留了硝基并避免了硝酸纤维素的自催化降解。本工作的目的是增进我们对硝化纤维素基材料降解的基本机理及其稳定化发展方式的理解。使用DSC技术确定(N-(2-乙酰氧基乙基)-对硝基苯胺(1)+ N-乙基-4-硝基苯胺(2))二元体系的固液相平衡。使用Wilson模型和UNIQUAC模型对实验结果进行了关联。结果,所研究的系统呈现出一种简单的共晶形式,其中各组分在固相中不易混溶。在理想模型的情况下,观察到实验值和预测值之间的重要偏差。这些偏差可以归因于我们系统的复杂性,并且主要归因于存在分子间效应。 SLE的最佳描述由两个参数UNIQUAC给出。

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