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UV protection afforded by textile fabrics made of natural and regenerated cellulose fibres

机译:天然和再生纤维素纤维制成的纺织品提供的紫外线防护

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In the last decades the media have highlighted the ozone depletion as major environmental problem resulting in an increase in ultraviolet radiation (UVR) reaching the earth's surface. Besides the beneficial effects of human exposure to UVR, this radiation is capable of causing damage to human population. The healthy lifestyle is becoming widely accepted by the public, and the UV protection provided by clothing becomes the significant subject of interest of the producers and consumers of textile fabrics. Natural cellulose fibres are commonly used in summer clothing due to their excellent comfort properties. However, these fibres have very poor UV protection ability.In this project, the UV protection property of textile fabrics made of natural and regenerated cellulose fibres have been compared and analysed in order to highlight the potential of hemp fibre for the development of more sustainable and healthy functionalized (UV protective) textile products. A group of homogeneous and blended cellulose textile fabrics were manufactured in a knitwear factory, evaluated in terms of the structure, and spectrophotometrically assessed to indicate their UV protection ability. The knitted fabrics merited sun protection ratings of "good" for pure hemp, through "very good" for viscose containing fabrics to "excellent" UV protection category for cotton based fabrics. Relatively high values of the Ultraviolet Protection Factor (UPF) of the cellulose. materials resulted from the interaction of fibre type, yarn geometry, fabric properties and common processing techniques. The increased UVR transparency of the pure hemp fabric, which resulted from hemp elasticity limitations, overcame by blending with other softer and more elastic cellulose fibres (cotton, viscose). The engineering approach proposed in this study was confirmed as an effective way to create more sustainable (more sustainable resource, pollution prevention, energy and cost savings) textile products with high level of UV protection at the knitting production stage avoiding the use of any additional mechanical and chemical treatments. These results revealed that the future application of hemp fibres in textile products with high added-value are promising. A co-ordinated effort of different subjects of the agro-and textile-industry production chain need to continue so as to overcome the limitations associated with hemp production and fibres properties. (C) 2019 Elsevier Ltd. All rights reserved.
机译:在过去的几十年中,媒体强调臭氧消耗是主要的环境问题,导致到达地球表面的紫外线辐射(UVR)增加。除了人类暴露于UVR的有益影响外,这种辐射还能对人类造成损害。健康的生活方式已被公众广泛接受,并且服装提供的紫外线防护已成为纺织品生产商和消费者关注的重要课题。天然纤维素纤维由于其出色的舒适性而常用于夏季服装。但是,这些纤维的紫外线防护能力很差。在本项目中,对天然和再生纤维素纤维制成的纺织织物的紫外线防护性能进行了比较和分析,以突出大麻纤维在发展更可持续,更环保方面的潜力。健康的功能化(紫外线防护)纺织品。在针织工厂中生产了一组均质和混纺的纤维素纺织面料,对其结构进行了评估,并通过分光光度法进行了评估,以表明它们的紫外线防护能力。针织面料对纯麻的防晒等级为“好”,对于含粘胶的面料的防晒等级为“非常好”,对棉基面料的防晒等级为“优秀”。纤维素的紫外线保护因子(UPF)相对较高的值。这种材料是由纤维类型,纱线几何形状,织物特性和常用加工技术之间的相互作用产生的。通过与其他更柔软,更具弹性的纤维素纤维(棉,粘胶纤维)混纺,克服了由于大麻弹性限制而导致的纯大麻织物增加的UVR透明度。这项研究中提出的工程方法被确认为一种有效的方法,可以在针织生产阶段生产出具有更高防紫外线水平的,更具可持续性(更可持续的资源,污染预防,能源和成本节约)的纺织品,而无需使用任何其他机械设备。和化学治疗。这些结果表明,大麻纤维在具有高附加值的纺织品中的未来应用前景广阔。农业和纺织工业生产链中不同主题的协调工作需要继续进行,以克服与大麻生产和纤维特性相关的限制。 (C)2019 Elsevier Ltd.保留所有权利。

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