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开发一种基于中波红外光谱的新方法,用于回收行业中消费后黑色塑料废物的分类。

Development of a new approach based on midwave infrared spectroscopy for post-consumer black plastic waste sorting in the recycling industry.

作者信息

Rozenstein Offer, Puckrin Eldon, Adamowski Jan

机构信息

Institute of Soil, Water and Environmental Sciences, Agricultural Research Organization, Volcani Center, HaMaccabim Road 68, P.O.B 15159, Rishon LeZion 7528809, Israel.

Defence Research and Development Canada (DRDC) - Valcartier, 2459 de la Bravoure, Québec, QC G3J 1X5, Canada.

出版信息

Waste Manag. 2017 Oct;68:38-44. doi: 10.1016/j.wasman.2017.07.023. Epub 2017 Jul 20.

Abstract

Waste sorting is key to the process of waste recycling. Exact identification of plastic resin and wood products using Near Infrared (NIR, 1-1.7µm) sensing is currently in use. Yet, dark targets characterized by low reflectance, such as black plastics, are hard to identify by this method. Following the recent success of Midwave Infrared (MWIR, 3-12µm) measurements to identify coloured plastic polymers, the aim of this study was to assess whether this technique is applicable to sorting black plastic polymers and wood products. We performed infrared reflectance contact measurements of 234 plastic samples and 29 samples of wood and paper products. Plastic samples included black, coloured and transparent Polyethylene Terephthalate (PET), Polyethylene (PE), Polyvinyl Chloride (PVC), Polypropylene (PP), Polylactic acid (PLA) and Polystyrene (PS). The spectral signatures of the black and coloured plastic samples were compared with clear plastic samples and signatures documented in the literature to identify the polymer spectral features in the presence of coloured material. This information was used to determine the spectral bands that best suit the sorting of black plastic polymers. The main NIR-MWIR absorption features of wood, cardboard and paper were identified as well according to the spectral measurements. Good agreement was found between our measurements and the absorption features documented in the literature. The new approach using MWIR spectral features appears to be useful for black plastics as it overcomes some of the limitations in the NIR region to identify them. The main limitation of this technique for industrial applications is the trade-off between the signal-to-noise ratio of the sensor operating in standoff mode and the speed at which waste is moved under the sensor. This limitation can be resolved by reducing the system's spectral resolution to 16cm, which allows for faster spectra acquisition while maintaining a reasonable signal-to-noise ratio.

摘要

垃圾分类是废物回收过程的关键。目前正在使用近红外(NIR,1 - 1.7µm)传感技术来准确识别塑料树脂和木制品。然而,低反射率的深色目标,如黑色塑料,很难通过这种方法识别。继中波红外(MWIR,3 - 12µm)测量成功用于识别有色塑料聚合物之后,本研究的目的是评估该技术是否适用于黑色塑料聚合物和木制品的分类。我们对234个塑料样品以及29个木材和纸制品样品进行了红外反射接触测量。塑料样品包括黑色、有色和透明的聚对苯二甲酸乙二酯(PET)、聚乙烯(PE)、聚氯乙烯(PVC)、聚丙烯(PP)、聚乳酸(PLA)和聚苯乙烯(PS)。将黑色和有色塑料样品的光谱特征与透明塑料样品以及文献中记录的特征进行比较,以识别存在有色材料时的聚合物光谱特征。这些信息用于确定最适合黑色塑料聚合物分类的光谱波段。根据光谱测量,还确定了木材、硬纸板和纸张的主要近红外 - 中波红外吸收特征。我们的测量结果与文献中记录的吸收特征之间发现了良好的一致性。使用中波红外光谱特征的新方法似乎对黑色塑料很有用,因为它克服了近红外区域识别它们的一些局限性。该技术在工业应用中的主要限制是在远距离模式下运行的传感器的信噪比与废物在传感器下方移动速度之间的权衡。通过将系统的光谱分辨率降低到16cm,可以解决这一限制,这允许更快地采集光谱,同时保持合理的信噪比。

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