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Preparation of Ion-Exchanged TEMPO-Oxidized Celluloses as Flame Retardant Products

机译:作为阻燃产物的离子交换的细胞氧化纤维素的制备

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摘要

Cellulose, as one of the most abundant natural biopolymers, has been widely used in textile industry. However, owing to its drawbacks of flammability and ignitability, the large-scale commercial application of neat cellulose is limited. This study investigated some TEMPO-oxidized cellulose (TOC) which was prepared by selective TEMPO-mediated oxidation and ion exchange. The prepared TOC was characterized by Fourier transform infrared (FT-IR) spectroscopy and solid-state 13C-nuclear magnetic resonance (13C-NMR) spectroscopy. The thermal stability and combustion performance of TOC were investigated by thermogravimetry analysis (TG), microscale combustion calorimetry (MCC) and limiting oxygen index (LOI). The results demonstrated that the thermal stability of TOC was less than that of the pristine material cellulose, but the peak of heat release rate (pHHR) and the total heat release (THR) of all TOC were significantly reduced. Additionally, the LOI values of all TOC products were much higher 25%. In summary, the above results indicated that the modified cellulose with carboxyl groups and metal ions by selective oxidation and ion exchange endows efficient flame retardancy.
机译:纤维素,作为最丰富的天然生物聚合物之一,已广泛应用于纺织行业。然而,由于可燃性和可燃性的缺点,整齐纤维素的大规模商业化应用受到限制。本实验研究,其通过选择性的TEMPO介导的氧化和离子交换制得一些TEMPO氧化纤维素(TOC)。将制得的TOC的特点是傅里叶变换红外(FT-IR)光谱和固态13C核磁共振(13C-NMR)光谱。 TOC的热稳定性和燃烧性能进行了通过热分析(TG)的调查,微尺度燃烧量热法(MCC)和极限氧指数(LOI)。结果表明,TOC的热稳定性显着低于原始材料的纤维素,但热释放速率(pHHR)和所有TOC的总放热(THR)的峰均显著减少。此外,所有的TOC产品的LOI值高得多的25%。总之,上述结果表明,通过选择性氧化和离子交换与羧基和金属离子改性的纤维素赋予有效的阻燃性。

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