利用纺织工业废料生产纳米复合材料,目的是产生热收缩薄膜和不形成微塑料

D. Garcia, Bruno de Paula Amantes, M. Tavares
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引用次数: 0

摘要

随着环境中不正确丢弃的材料(包括衣服)的增加,根据3r法则,回收和再利用这些材料成为解决这一问题的替代方案之一。然而,这些沉积在海洋环境和陆地上的聚合物材料由于天气的作用而降解/破碎,在这些地区会产生微塑料。包括空运和从不同地区运输。为了减少这种不当处理的影响,并获得一种不会产生微塑料的材料,这项研究使用了纺织工业的废物,这将是不可用的,以及一种可生物降解的聚合物。在挤压过程中,将组织残留物用硫酸进行酸水解,以削弱纤维素原纤维之间的相互作用,促进后者在与聚合物一起加工时更好地分散,从而生成可生物降解的聚合物纳米复合材料。结果表明,经酸水解的样品具有较高的结晶度、较多的相互作用和较低的氢原子迁移率。此外,经过较长时间处理的样品显示出少量原纤维的释放,这表明这种处理有助于纳米复合材料在挤压过程中的生产。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Employment of Waste from the Textile Industry for the Production of Nanocomposites Aiming at the Generation of Thermal Shrinkable Films and the Non-Formation of Microplastics
With the increase of incorrectly discarded materials in the environment, including clothes, the need for recycling and reusing them becomes one of the alternatives to work around this problem, following the law of the 3 Rs. However, these polymeric materials which are deposited in the marine environment and land generate microplastics, due to their degradation/fragmentation due to the action of the weather, in these regions, including being carried by the air and transported from various regions. With the aim of reducing the impact of this inappropriate disposal and obtaining a material that does not generate microplastics, this study used waste from the textile industry, which would be unusable, and a biodegradable polymer. The tissue residues were submitted to acid hydrolysis with sulfuric acid, in order to weaken the interactions between the cellulose fibrils and promote a better dispersion of the latter when processed with the polymer, during the extrusion process, generating biodegradable polymeric nanocomposites. The results showed that the samples submitted to acid hydrolysis presented a higher degree of crystallinity and a greater number of interactions and lower mobility of hydrogen atoms. In addition, the samples treated for a longer time showed a small release of fibrils, suggesting that this treatment can help in the production of nanocomposites during their extrusion.
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