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

机译:加工工厂的技术评估,以轻量包装废料中的饮料纸盒分类为例

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摘要

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 21-50 Mg. 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 120 mm, a modified sampling plan was implemented and targeted multiple sampling (3-11 individual samplings) and a total sample size of respectively 1200 I (ca. 60 kg) for the BC-products and of about 2400 I (ca. 120 kg) 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.
机译:分析了三种轻量包装废物加工厂(LP)中饮料纸箱(BC)的回收率,分析了不同投入物料和投入质量在21-50 Mg之间的情况。数据是通过重量分析确定分选产品,取样和分选分析生成的。由于饮料纸箱的粒径大于120毫米,因此实施了修改后的采样计划,目标是针对BC产品进行多次采样(3-11次单独采样),总样本大小分别为1200 I(约60 kg)。约2400 I(约120 kg)用于物料非均质混合塑料(MP)和分选残渣产品。结果表明,只能在相当大的波动范围内确定过程中饮料纸盒产量的量化,即通过包括所有含产物的物料流。因此,对所有产品流的总体评估是定性的而不是定量的。不规则的操作条件以及不利的采样条件和容量过载可能是高置信区间的原因。从当前研究的结果来看,基本上可以得出建议,以便在LP加工厂进行更好的采样。尽管统计结果欠佳,但结果非常清楚地表明,这些植物在饮料纸盒的产量以及所需的产品纯度方面显示出确定的优化潜力。由于分选试验的测试特性,工厂参数设置对于此分选任务并不理想,因此应谨慎解释结果。

著录项

  • 来源
    《Waste Management》 |2016年第2期|95-105|共11页
  • 作者单位

    I.A.R., Department of Processing and Recycling, RWTH Aachen University, Wuellnerstrasse 2, 52062 Aachen, Germany;

    Food & Biobased Research, Wageningen University (WUR), Bornse Weilanden 9, 6700 AA Wageningen, Netherlands;

    I.A.R., Department of Processing and Recycling, RWTH Aachen University, Wuellnerstrasse 2, 52062 Aachen, Germany;

    I.A.R., Department of Processing and Recycling, RWTH Aachen University, Wuellnerstrasse 2, 52062 Aachen, Germany;

    I.A.R., Department of Processing and Recycling, RWTH Aachen University, Wuellnerstrasse 2, 52062 Aachen, Germany;

    I.A.R., Department of Processing and Recycling, RWTH Aachen University, Wuellnerstrasse 2, 52062 Aachen, Germany;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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

    机译:轻型包装废物加工厂;饮料纸箱;取样;技术评估;

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