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拉曼技术在塑料废物管理中的应用与 FAIR 原则保持一致,以支持即将出台的塑料和环境倡议。

Raman technology application for plastic waste management aligned with FAIR principle to support the forthcoming plastic and environment initiatives.

机构信息

Babeș-Bolyai University, Faculty of Physics, Kogălniceanu 1, RO-400084 Cluj-Napoca, Romania.

Babeș-Bolyai University, Faculty of Physics, Kogălniceanu 1, RO-400084 Cluj-Napoca, Romania.

出版信息

Waste Manag. 2022 May 1;144:479-489. doi: 10.1016/j.wasman.2022.04.021. Epub 2022 Apr 21.

Abstract

Plastic production and worldwide use of plastic materials have continued to rise due to their convenience and excellent marketing advantages. This is generating an environmental crisis and global scale pollution which is one of the greatest threats to our planet. One of the best responses could be accomplished by improving recycling and waste management strategies. In this paper we conducted Raman analyses of representative stock of plastics aged in terrestrial or aquatic environments spanning in age up to 15 years. We aimed to establish any potential influence of the aging conditions on the Raman signature of specific plastics. This information is further used to build up a Raman logic gate for automatic sorting of plastic waste recovered from environment. Pigments and aging introduced indeed small changes in the Raman signature of the respective plastics. However, we were able to identify unique spectral ranges characteristic for the main plastic types and intensity threshold of fingerprint bands sufficiently strong for building robust Raman barcodes for sorting. Waste plastics Raman data handling and the proposed methodology for sorting complies with the FAIR (Findability, Accessibility, Interoperability and Reusability) principles of scientific data, being useful for researchers, policymakers and stakeholders. Our spectral characterization of solid plastic waste comes in support of improved waste plastic management and could have economic and environmental positive impact.

摘要

由于其便利性和出色的营销优势,塑料的生产和全球使用持续增长。这正在引发环境危机和全球性污染,这是对我们星球的最大威胁之一。最好的应对措施之一是通过改进回收和废物管理策略来实现。在本文中,我们对陆地或水生环境中老化的代表性塑料库存进行了 Raman 分析,这些塑料的年龄长达 15 年。我们旨在确定老化条件对特定塑料 Raman 特征的任何潜在影响。此信息进一步用于构建用于自动分拣从环境中回收的塑料废物的 Raman 逻辑门。颜料和老化确实会使各自塑料的 Raman 特征发生微小变化。但是,我们能够识别出主要塑料类型的独特光谱范围以及指纹带的强度阈值,足以用于构建用于分拣的强大 Raman 条码。废物塑料的 Raman 数据处理和所提出的分类方法符合科学数据的 FAIR(可发现性、可访问性、互操作性和可重用性)原则,对研究人员、政策制定者和利益相关者都有用。我们对固体塑料废物的光谱特征分析有助于改进废塑料管理,并可能产生积极的经济和环境影响。

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