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首页> 外文期刊>Oxidation Communications >EFFECT OF THE ZEOLITE FILLER ON THE THERMAL DEGRADATION KINETICS OF POLYPROPYLENE
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EFFECT OF THE ZEOLITE FILLER ON THE THERMAL DEGRADATION KINETICS OF POLYPROPYLENE

机译:沸石填料对聚丙烯热降解动力学的影响

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In this study, the thermal degradation behaviour of polypropylene (PP)and polypropylene-zeolite composites was investigated.Clinoptilolite, a natural zeolitic tuff, was used as the filling material into the composites.Effect of both pure clinoptilolite and silver ion exchanged form of clinoptilolite addition on the thermal degradation kinetics of polypropylene composites was studied by using differential scanning calorimetry (DSC)and thermal gravimetry analysis (TGA)techniques.Polymer degradation was evaluated by using DSC with heating rates of 5, 10, and 20 degC/ min from room temperature up to 500deg C.Silver concentration (4.36, 27.85 and 183.8 mg Ag/g zeolite)was the selected parameter under consideration.From the DSC curves, it was observed that the heat of degradation values of the composites containing 2-6% silver exchanged zeolites (321-390 kJ/kg)were larger compared to that of the pure PP free of silver and zeolite (258 kJ/kg).From the DSC results it was confirmed that PP-zeolite composites can be used at higher temperatures compared to the pure PP polymer because of its higher thermal stability.The thermal decomposition activation energies of the composites were calculated by using both the Kissenger and Ozawa models.The values predicted from these two equations were in close agreement.From the TGA curves, it was found that zeolite addition into the PP matrix speeds down the decomposition reaction, however, silver exchanged zeolite addition into the matrix accelerates the reaction.The higher the silver concentration, the lower the thermal decomposition activation energies were obtained.As a result, PP was found to be much more susceptible to thermal decomposition in the presence of silver exchanged zeolite.
机译:本文研究了聚丙烯(PP)和聚丙烯-沸石复合材料的热降解行为,以天然沸石凝灰岩斜发沸石为填充材料,研究了纯斜发沸石和银离子交换形式的斜发沸石的效果。通过差示扫描量热法(DSC)和热重分析(TGA)技术研究了聚丙烯复合材料的热降解动力学,并通过DSC在室温,5、10和20 deg / min的加热速率下评估了聚合物的降解性能。最高温度可达500摄氏度。银浓度(4.36、27.85和183.8 mg Ag / g沸石)是考虑中的选定参数。从DSC曲线观察到,含有2-6%银的复合材料的降解热值与不含银和沸石的纯PP(258 kJ / kg)相比,交换沸石(321-390 kJ / kg)更大。从DSC结果确定PP-沸石与纯PP聚合物相比,该ite复合材料具有更高的热稳定性,因此可以在更高的温度下使用。使用Kissenger和Ozawa模型计算了该复合材料的热分解活化能,从这两个方程式得出的值相近从TGA曲线可知,向PP基体中加入沸石可加快分解反应,但向基体中加入银交换的沸石可加速反应。银浓度越高,热分解活化能越低。结果,发现在银交换沸石的存在下,PP对热分解的敏感性更高。

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