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Quantification of environmental impact and ecological sustainability for textile fibres

机译:量化对纺织纤维的环境影响和生态可持续性

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摘要

This paper reports the development of a unique model to quantify the environmental impact made by various textile fibres and also to position them in terms of ecological sustainability. A wide range of textile fibres and the major contributing factors in terms of environmental impact during manufacturing phase (starting from growth/extraction stage to production of a useful fibre which can be spun) have been selected. Amount of oxygen produced/carbon-di-oxide absorbed consequently contributing to offset global warming during the production phase of a fibre, utilisation of renewable resources, land use, usage of fertilisers and pesticides, fibre recyclability and biodegradability of chosen fibres have been considered. Amount of energy consumed, quantity of water utilised and amount of green house gases emitted have been considered for life cycle inventory (LCI) and a life cycle impact assessment (LCIA) study has been accomplished to derive certain impact categories pertaining to the damage created to human health, ecosystem quality and resources, which will elucidate the characteristics of ecological sustainability. A scoring system based on the above mentioned factors which predominantly determine ecological sustainability has been framed, from which an Environmental Impact index (El) has been developed. Further, an Ecological Sustainability Index (ESI) has been derived from El values for the chosen fibres. According to this system, organic cotton is the most and acrylic is the least preferred fibre. A sensitivity study has been done to check the robustness of the developed model and the results of the same have been reported.
机译:本文报告了一种独特模型的开发,该模型可以量化各种纺织纤维对环境的影响,并根据生态可持续性对它们进行定位。选择了多种纺织纤维以及在制造阶段(从生长/提取阶段开始到可纺制有用纤维的生产)对环境的影响方面的主要影响因素。因此,已考虑了所产生的氧气/二氧化碳的吸收量,从而抵消了纤维生产阶段的全球变暖,可再生资源的利用,土地使用,化肥和农药的使用,所选纤维的纤维可回收性和生物降解性。生命周期清单(LCI)已考虑消耗的能源量,水的使用量和温室气体的排放量,并且已经完成了生命周期影响评估(LCIA)研究,以得出与造成的破坏有关的某些影响类别。人类健康,生态系统质量和资源,这将阐明生态可持续性的特征。基于主要确定生态可持续性的上述因素,建立了评分系统,并据此开发了环境影响指数(El)。此外,已经从所选纤维的E1值中得出了生态可持续性指数(ESI)。根据该系统,有机棉是最高的纤维,而丙烯酸是最不优选的纤维。已经进行了敏感性研究,以检查所开发模型的鲁棒性,并且已经报告了该模型的结果。

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