Technical assessment of processing plants as exemplified by the sorting of beverage cartons from lightweight packaging wastes

Waste Manag. 2016 Feb:48:95-105. doi: 10.1016/j.wasman.2015.10.023. Epub 2015 Nov 4.

Abstract

The recovery of beverage cartons (BC) in three lightweight packaging waste processing plants (LP) was analyzed with different input materials and input masses in the area of 21-50Mg. The data was generated by gravimetric determination of the sorting products, sampling and sorting analysis. Since the particle size of beverage cartons is larger than 120mm, a modified sampling plan was implemented and targeted multiple sampling (3-11 individual samplings) and a total sample size of respectively 1200l (ca. 60kg) for the BC-products and of about 2400l (ca. 120kg) for material-heterogeneous mixed plastics (MP) and sorting residue products. The results infer that the quantification of the beverage carton yield in the process, i.e., by including all product-containing material streams, can be specified only with considerable fluctuation ranges. Consequently, the total assessment, regarding all product streams, is rather qualitative than quantitative. Irregular operation conditions as well as unfavorable sampling conditions and capacity overloads are likely causes for high confidence intervals. From the results of the current study, recommendations can basically be derived for a better sampling in LP-processing plants. Despite of the suboptimal statistical results, the results indicate very clear that the plants show definite optimisation potentials with regard to the yield of beverage cartons as well as the required product purity. Due to the test character of the sorting trials the plant parameterization was not ideal for this sorting task and consequently the results should be interpreted with care.

Keywords: Beverage carton; Lightweight packaging waste processing plant; Sample taking; Technical assessment.

MeSH terms

  • Beverages
  • Netherlands
  • Plastics
  • Product Packaging*
  • Recycling / methods*
  • Recycling / statistics & numerical data
  • Refuse Disposal / methods*
  • Refuse Disposal / statistics & numerical data

Substances

  • Plastics