碳足迹
织物
废物管理
人口
消费(社会学)
生态足迹
环境科学
生命周期评估
纺织工业
持续性
服装
环境影响评价
自然资源经济学
工程类
温室气体
生产(经济)
生态学
地理
经济
考古
人口学
社会学
宏观经济学
社会科学
生物
作者
Lorena Espinoza,Andrea Teresa Espinoza Pérez,Óscar C. Vásquez
标识
DOI:10.1016/j.scitotenv.2022.154542
摘要
Global population growth and rising living standards are increasing apparel consumption. Consequently, the consumption of resources and the generation of textile waste are increasing exponentially. For instance, according to the World Bank, Chile has increased textile imports by 500% in the last 20 years, even though the population has only increased by 26%. This textile import increase has resulted in the clothing desert that has been seen recently in northern Chile because most of the textiles at the end of their useful life will be disposed of in landfills or open dumps. This evidences the urgency of more efficient technologies that reduce the consumption of resources and that value waste on the way to a circular and sustainable economy. Since the textile recycling industry and environmental impact studies are currently in their nascent stages in Chile, the objective of this article is to explore the potential environmental benefits of a textile recycling process and, therefore, the related challenges towards more sustainable options. The considered textile recycling process incorporates mixed waste and is compared with landfills in terms of CO2eq because it represents the conventional treatment of waste and the substitution of products from primary sources. The results show that textile waste landfills emit 423.4 kg CO2eq per ton, while products from primary sources emit an average of 6496.65 kg CO2eq, compared to the textile recycling process that only it emits 1142.12 kg CO2eq per ton, obtaining an average of 5778 kg CO2eq avoided per ton of textile waste, achieving environmental benefits. However, it is necessary to highlight the dependence of this result on the choice of replaced products and the energy matrix. Thus, we assessed the energy matrix, evaluating the positive impact of implementing an energy matrix based on wind or solar energy.
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