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Biodeterioration of coated nylon fabric

机译:涂层尼龙织物的生物降解

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Biodegradation characteristics of nylon fabric coated with fluorocarbon polymer (oil and water repellent) and thiourea-formaldehyde (fire retardant) were studied. The fabric was exposed to soil burial, air exposure, and standard culture media for various intervals of time and evaluated for changes in physicomechanical properties, oil and water repellency, air permeability, as well as flame-retardant properties. Significant falls in these properties were observed, the extent of which was found to be maximum in the case of soil burial followed by air medium and standard culture. Themogravimetric analysis showed enhanced heat stability of the unexposed fabric compared with base nylon. Exposure of the coated fabric to various biomedia caused extensive damage of the fire retardant material and also resulted in a significant reduction in the flame-resistant properties. Fluorocarbon material, on the other hand, did not degrade on bioexposure and its presence improved the thermal stability of the coated fabric. Fourier transform infrared spectroscopy showed remarkable changes, e.g., peak shifts, intensity variations, as well as elimination of peaks in the case of soil burial compared with the unexposed sample. Scanning electron microscopy was used to investigate the changes in the surface topography associated with the degradation of the coated fabric vis-a-vis those of the controlled one. (C) 2000 John Wiley & Sons, Inc. [References: 26]
机译:研究了氟碳聚合物(拒水拒水)和硫脲甲醛(阻燃剂)包覆尼龙织物的生物降解特性。将该织物暴露于土壤掩埋,暴露于空气和标准培养基中不同的时间间隔,并评估其物理机械性能,拒油拒水性,透气性以及阻燃性的变化。观察到这些特性的显着下降,在土壤埋葬,随后进行空气培养基和标准培养的情况下,发现其最大程度。重量分析表明,与基础尼龙相比,未曝光织物的热稳定性增强。涂覆的织物暴露于各种生物介质中会导致阻燃材料的广泛破坏,并且还导致阻燃性显着降低。另一方面,氟碳材料在生物暴露下不会降解,并且它的存在改善了涂层织物的热稳定性。与未暴露的样品相比,傅里叶变换红外光谱法显示出显着的变化,例如峰位移,强度变化以及在土葬的情况下峰的消除。扫描电子显微镜用于研究与涂覆织物的降解相关的表面形貌与受控织物的降解相关的表面形貌的变化。 (C)2000 John Wiley&Sons,Inc. [参考:26]

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