Published May 22, 2012 | Version 11237
Journal article Open

Identification and Classification of Plastic Resins using Near Infrared Reflectance Spectroscopy

Description

In this paper, an automated system is presented for identification and separation of plastic resins based on near infrared (NIR) reflectance spectroscopy. For identification and separation among resins, a "Two-Filter" identification method is proposed that is capable to distinguish among polyethylene terephthalate (PET), high density polyethylene (HDPE), polyvinyl chloride (PVC), polypropylene (PP) and polystyrene (PS). Through surveying effects of parameters such as surface contamination, sample thickness, label and cap existence, it was obvious that the "Two-Filter" method has a high efficiency in identification of resins. It is shown that accurate identification and separation of five major resins can be obtained through calculating the relative reflectance at two wavelengths in the NIR region.

Files

11237.pdf

Files (570.8 kB)

Name Size Download all
md5:108cd943ca158a8f8bd33036772d34d1
570.8 kB Preview Download

Additional details

References

  • Zhuang, Y., Wu, S.W., Wang, Y.L., Wu, W.X., Chen Y.X., "Source separation of household waste: A case study in China" Waste Management 28, 2008, pp. 2022-2030.
  • Carvalho, M.T., Ferreira, C., Portela, A., Santos, J.T., "Application of fluidization to separate packaging waste plastics" Waste Management 29, 2009, pp. 1138-1143.
  • Awaja, F., Pavel, D., "Recycling of PET. European Polymer Journal 41, 2005.
  • Navarro, R., Ferr├índiz, S., L├│pez, J., Segu├¡, V.J., "The influence of polyethylene in the mechanical recycling of polyethylene terephtalate" Journal of Materials Processing Technology 195, 2008, pp. 110-116.
  • Scheirs, J., Polymer Recycling, Wiley Publication, 1998.
  • Enick, R., "The microsortation of post-consumer thermoplastics using near critical liquids" proc. Globec 96, Davos, Switzerland, 1996, pp. 18-25.
  • Safavi, S.M., Masoumi, H., Mirian, S.S., Tabrizchi, M., "Sorting of polypropylene resins by color in MSW using visible reflectance spectroscopy" Waste Management 30, 2010, pp. 2216-2222.
  • Tachwali, Y., Al-Assaf, Y., Al-Ali, A.R., "Automatic multistage classification system for plastic bottles recycling" Resources, Conservation and Recycling 52, 2007, pp. 266-285.
  • Scott, D.M., "A two-color near-infrared sensor for sorting recycled plastic waste" Measurement Science and Technology 6, 1995, pp. 156- 159. [10] Sommer, E. J., "Methods and technologies for post-consumer plastic identification and sortation" Proc. SPE 3rd Annual Recycling Conf., Chicago, IL, Nov., 1996, pp. 299-304. [11] Inculet, I., "Electrostatic separation of mixed plastic waste" Proc. Davos 92 Recycle, 1992. [12] American Plastics Council,. "Best Practices in PET Recycling, Automated Sorting Systems" NAPCOR, 1997. [13] Edward, J., Sommer, J. R., "Method and Apparatus for Near Infrared Sorting of Recycled Plastic Waste" Patent, United States, Pub. No.: US 2001/0045518 A1, 2001. [14] Robinson, J.W., Undergraduate Instrumental Analysis, sixth ed. M. Dekker Publication, 2005. [15] Smidt, E., Meissl, K., Schwanninger, M., Lechner, P., "Classification of waste materials using Fourier transform infrared spectroscopy and soft independent modeling of class analogy" Waste Management 28, 2008, pp. 1699-1710. [16] Optical Components and Assemblies, Optical Filters, http://www.cvilaser.com, 2009. [17] Feldhoff, R., Wienke, D., Cammann, K., Fuchs, H., "On-line post consumer package identification by NIR spectroscopy combined with a FuzzyARTMAP classifier in an industrial environment" Applied Spectroscopy 51, 1997, 362-368.