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Thermal degradation of cellulose acetate in presence of bis-phosphoramidates

机译:双膦酰胺酸酯存在下醋酸纤维素的热降解

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摘要

Novel bis-phosphoramidate compounds phosphoramidic acid, 1,2-ethanediylbis-, tetraethylester (PAEDBTEE) and phosphoramidic acid, 1,4-piperazinediylbis-, tetraethylester (PAPDBTEE) were synthesized as potential flame retardants. Films of cellulose acetate (CA) were prepared by addition of these compounds as flame retardants. The burning tests such as limiting oxygen index and small scale fire test showed improved flame protection of CA in presence of these bis-phosphoramidates. Thermal decomposition studies carried out using pyrolysis combustion flow calorimetry (PCFC) and thermal gravimetric analyzer showed that addition of bis-phosphoramidate increased the peak heat release rates and char content but decreased the total heat of combustion. Further analysis performed using evolved gas analysis techniques such as thermo gravimetric analyzer-Fourier transform infrared spectroscopy (TGA-FT1R) and pyrolysis gas chromatography mass spectrometry (Py-GC-MS) provided insights into the decomposition pathways of cellulose in presence of these additives. The novel compounds were tested for toxicity using Microtox test and were found to be relatively less toxic as compared to phenol and a commercially available flame retardant.
机译:合成了新型双磷酸氨基酯化合物磷酰胺酸,1,2-乙二基双-四乙酯(PAEDBTEE)和磷酰胺酸,1,4-哌嗪二基双-四乙酯(PAPDBTEE)作为潜在的阻燃剂。通过添加这些化合物作为阻燃剂来制备醋酸纤维素(CA)薄膜。燃烧测试(例如极限氧指数和小规模燃烧测试)表明,在这些双膦酰胺酸酯存在下,CA的阻燃性得到了改善。使用热解燃烧流量热法(PCFC)和热重分析仪进行的热分解研究表明,添加双氨基磷酸酯可增加峰值放热速率和炭含量,但可降低燃烧总热量。使用诸如热重分析仪-傅立叶变换红外光谱仪(TGA-FT1R)和热解气相色谱质谱仪(Py-GC-MS)等进化的气体分析技术进行的进一步分析提供了有关存在这些添加剂时纤维素分解途径的见解。使用Microtox测试测试了该新型化合物的毒性,发现与苯酚和市售阻燃剂相比,该化合物的毒性相对较低。

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