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不同测量背景对使用近红外手持式光谱仪的多层聚烯烃薄膜分类的影响

Influence of Different Measuring Backgrounds on the Classification of Multilayer Polyolefin Films Using a Near-Infrared Handheld Spectrometer.

作者信息

Stipanovic Hana, Arth Patrick, Koinig Gerald, Kuhn Nikolai, Lederer Jakob, Blasenbauer Dominik, Lipp Anna-Maria, Tischberger-Aldrian Alexia

机构信息

Chair of Waste Processing Technology and Waste Management, Department of Environmental and Energy Process Engineering, Montanuniversitaet Leoben, Leoben, Austria.

Christian Doppler Laboratory for a Recycling-Based Circular Economy, Institute of Chemical, Environmental and Bioscience Engineering (ICEBE), TU Wien, Vienna, Austria.

出版信息

Appl Spectrosc. 2025 May;79(5):816-828. doi: 10.1177/00037028241307034. Epub 2024 Dec 26.

Abstract

The low thickness of plastic films poses a challenge when using near-infrared (NIR) spectroscopy as it affects the spectral quality and classification. This research focuses on offering a solution to the challenge of classifying multilayer plastic film materials with a focus on polyolefin multilayer plastics. It presents the importance of spectral quality on accurate classification. The aim is to demonstrate the suitability of the handheld NIR spectrometer in classifying multilayer polyolefin films and assess the impact of various measuring backgrounds (white tile, Teflon, aluminum, copper, silver, and gold) on classification accuracy in the wavelength range of 1596-2396 nm. Metallic backgrounds have been found to enhance spectral quality and classification accuracy. The classification accuracy was consistently high, ranging from 96.55% to 100%, with aluminum and gold backgrounds yielding the best results in theoretical accuracy. In experimental classification, the accuracy reached 100% when any metallic backgrounds were used. Conversely, Teflon showed a theoretically high accuracy of 96.21% but only achieved an experimental accuracy of 72.2%. These findings suggest that using metallic backgrounds can improve the spectral quality and classification of plastics with low thickness (films) and complex material composition (multilayers).

摘要

当使用近红外(NIR)光谱法时,塑料薄膜的低厚度会带来挑战,因为它会影响光谱质量和分类。本研究着重于提供一种解决方案,以应对多层塑料薄膜材料分类的挑战,重点是聚烯烃多层塑料。它阐述了光谱质量对准确分类的重要性。目的是证明手持式近红外光谱仪在多层聚烯烃薄膜分类中的适用性,并评估各种测量背景(白色瓷砖、特氟龙、铝、铜、银和金)在1596 - 2396 nm波长范围内对分类准确性的影响。已发现金属背景可提高光谱质量和分类准确性。分类准确率始终很高,在96.55%至100%之间,铝和金背景在理论准确率方面产生了最佳结果。在实验分类中,使用任何金属背景时准确率均达到100%。相反,特氟龙在理论上具有96.21%的高准确率,但实验准确率仅为72.2%。这些发现表明,使用金属背景可以改善低厚度(薄膜)和复杂材料成分(多层)塑料的光谱质量和分类。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a1d7/12053275/abcdd7cbbef0/10.1177_00037028241307034-img1.jpg

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