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Effect of manganese and cobalt ions on flame retardancy and thermal degradation of bio-based alginate films

机译:锰和钴离子对生物基藻酸盐薄膜阻燃性和热降解的影响

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摘要

Bio-based cobalt alginate and manganese alginate films were prepared by a facile ionic exchange and casting approach. Their flame retardancy, thermal degradation, and pyrolysis properties were investigated by vertical burning (UL-94), limiting oxygen index (LOI), thermogravimetric analysis, microscale combustion calorimetry (MCC), thermogravimetric analyzer coupled with Fourier transform infrared analysis (TG-FTIR), and pyrolysis-gas chromatography-mass spectrometry (Py-GC-MS). It showed that cobalt alginate film had much higher LOI value (45.0 %) than those of manganese alginate film (30.7 %) and sodium alginate film (24.5 %). Moreover, cobalt alginate film passed UL-94 V-0 rating, while manganese alginate and sodium alginate films showed no rating. Importantly, peak of heat release rate of cobalt alginate and manganese alginate in MCC test was much lower than that of sodium alginate, suggesting that the addition of cobalt ion and manganese ion decreases the release of combustible gases. TG-FTIR and Py-GC-MS results indicated that cobalt alginate and manganese alginate produced much less gaseous products than that of sodium alginate. Finally, a possible thermal degradation mechanism of cobalt alginate and manganese alginate had been proposed. The results provided useful information for understanding flame-retardant mechanism of alginate as well as for designing bio-based materials with excellent fire-retardant properties.
机译:通过简便的离子交换和流延方法制备生物基藻酸钴和藻酸锰薄膜。通过垂直燃烧(UL-94),极限氧指数(LOI),热重分析,微尺度燃烧量热法(MCC),热重分析仪与傅立叶变换红外分析(TG-FTIR)一起研究了它们的阻燃性,热降解和热解性能)和热解-气相色谱-质谱(Py-GC-MS)。结果表明,海藻酸钴薄膜的LOI值(45.0%)比海藻酸锰薄膜(30.7%)和海藻酸钠薄膜(24.5%)高得多。此外,藻酸钴膜通过UL-94 V-0等级,而藻酸锰和藻酸钠膜则没有评级。重要的是,MCC试验中海藻酸钴和海藻酸锰的放热速率峰值远低于海藻酸钠,这表明钴离子和锰离子的添加​​减少了可燃气体的释放。 TG-FTIR和Py-GC-MS结果表明藻酸钴和藻酸锰产生的气态产物比藻酸钠少得多。最后,提出了藻酸钴和藻酸锰的可能的热降解机理。研究结果为了解藻酸盐的阻燃机理以及设计具有优异阻燃性能的生物基材料提供了有用的信息。

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