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Material Cycles and Chemicals: Dynamic Material Flow Analysis of Contaminants in Paper Recycling

机译:材料循环和化学品:纸张回收中污染物的动态物质流分析

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摘要

This study provides a systematic approach for assessment of contaminants in materials for recycling. Paper recycling is used as an illustrative example. Three selected chemicals, bisphenol A (BPA), diethylhexyl phthalate (DEHP) and mineral oil hydrocarbons (MOHs), are evaluated within the paper cycle. The approach combines static material flow analysis (MFA) with dynamic material and substance flow modeling. The results indicate that phasing out of chemicals is the most effective measure for reducing chemical contamination. However, this scenario was also associated with a considerable lag phase (between approximately one and three decades) before the presence of chemicals in paper products could be considered insignificant. While improved decontamination may appear to be an effective way of minimizing chemicals in products, this may also result in lower production yields. Optimized waste material source-segregation and collection was the least effective strategy for reducing chemical contamination, if the overall recycling rates should be maintained at the current level (approximately 70% for Europe). The study provides a consistent approach for evaluating contaminant levels in material cycles. The results clearly indicate that mass-based recycling targets are not sufficient to ensure high quality material recycling.
机译:这项研究为评估回收材料中的污染物提供了一种系统的方法。纸张再循环被用作说明性示例。在造纸周期内评估了三种选定的化学物质,双酚A(BPA),邻苯二甲酸二乙基己酯(DEHP)和矿物油烃(MOHs)。该方法将静态物料流分析(MFA)与动态物料和物质流建模结合在一起。结果表明,淘汰化学品是减少化学品污染的最有效措施。但是,这种情况还与相当大的滞后阶段(大约一到三十年之间)相关,在纸制品中化学物质的存在被认为无关紧要之前。尽管改善的去污似乎是使产品中的化学物质减至最少的有效方法,但它也可能导致较低的生产量。如果总体回收率应保持在当前水平(欧洲约为70%),则优化废料源的分类和收集是减少化学污染最无效的策略。该研究为评估材料循环中的污染物水平提供了一致的方法。结果清楚地表明,基于质量的回收目标不足以确保高质量的材料回收。

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