实现聚合物循环经济:塑料废物光致发光标签的创新,以加强分类

IF 4.7 Q1 POLYMER SCIENCE
Ryan R. Larder*,  and , Fiona L. Hatton*, 
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引用次数: 4

摘要

人们普遍认为,塑料从线性经济转向循环经济将有利于减少环境中的塑料污染,防止材料价值的损失。然而,塑料垃圾分类方面的挑战往往会导致受污染的废物流,使可回收物贬值并阻碍再处理。因此,塑料垃圾分类的改进可以显著提高可回收物的质量,并使塑料具有循环性。在这里,我们讨论了当前塑料垃圾的分类方法,并回顾了标签技术,以加强塑料回收物的分类。详细讨论了基于光致发光的标记,包括紫外-可见有机和无机光致发光标记、红外上转换和X射线荧光标记。还讨论了在包装中加入标签的方法,如挤出、表面涂层和在外部标签中加入标签。此外,我们还重点介绍了一些用于实现某些排序技术的实用模型,并对这一不断发展的研究领域进行了展望。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Enabling the Polymer Circular Economy: Innovations in Photoluminescent Labeling of Plastic Waste for Enhanced Sorting

Enabling the Polymer Circular Economy: Innovations in Photoluminescent Labeling of Plastic Waste for Enhanced Sorting

It is widely accepted that moving from a linear to circular economy for plastics will be beneficial to reduce plastic pollution in our environment and to prevent loss of material value. However, challenges within the sorting of plastic waste often lead to contaminated waste streams that can devalue recyclates and hinder reprocessing. Therefore, the improvement of the sorting of plastic waste can lead to dramatic improvements in recyclate quality and enable circularity for plastics. Here, we discuss current sorting methods for plastic waste and review labeling techniques to enable enhanced sorting of plastic recyclates. Photoluminescent-based labeling is discussed in detail, including UV–vis organic and inorganic photoluminescent markers, infrared up-conversion, and X-ray fluorescent markers. Methods of incorporating labels within packaging, such as extrusion, surface coatings, and incorporation within external labels are also discussed. Additionally, we highlight some practical models for implementing some of the sorting techniques and provide an outlook for this growing field of research.

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CiteScore
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