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Influence of some minerals on the cellulose thermal degradation mechanisms - Thermogravimetic and pyrolysis-mass spectrometry studies

机译:某些矿物质对纤维素热降解机理的影响-热解和热解质谱研究

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摘要

The influence of different inorganic salts (MgCl2, ZnCl2, NiCl2 and H2PtCl6) on the primary mechanisms of cellulose thermal degradation has been conducted by using thermogravimetric (TG-DTG) and pyrolysis-mass spectrometry (Py-MS) analysis at low heating rate (10 degrees C min(-1)) from ambient temperature to 500 degrees C. The results clearly demonstrate that the used salts influence the primary degradation mechanisms. Furthermore, we can assume that some inorganic salts could be considered as specific catalysts and some others as inhibitors. MgCl2 promotes selectively initial low temperature dehydration as observed both by TG and Py-MS. ZnCl2 strongly changes the thermal behaviour of impregnated sample. The maximum mass loss rate temperature is shifted to lower temperature and on the basis of our results we can conclude that ZnCl2 acts as catalyst in all primary degradation mechanisms. NiCl2, and H2PtCl6 do not modify significantly the cellulose thermal behaviour but change the composition of both produced gases and liquids suggesting that these minerals catalyse some secondary reactions.
机译:通过在低升温速率下使用热重(TG-DTG)和热解质谱(Py-MS)分析进行了不同无机盐(MgCl2,ZnCl2,NiCl2和H2PtCl6)对纤维素热降解的主要机理的影响(从环境温度到500摄氏度至少10摄氏度min(-1))。结果清楚地表明,所用盐会影响主要的降解机理。此外,我们可以假设某些无机盐可被视为特定的催化剂,而另一些则可被视为抑制剂。 TG和Py-MS均观察到MgCl2选择性地促进了初始低温脱水。 ZnCl2强烈改变了浸渍样品的热行为。将最大质量损失速率温度移至较低温度,根据我们的结果,我们可以得出结论,ZnCl2在所有主要降解机理中均起催化剂的作用。 NiCl2和H2PtCl6不会显着改变纤维素的热行为,但会改变产生的气体和液体的组成,这表明这些矿物质催化了一些次级反应。

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