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Treatment of cooling appliances: Interrelations between environmental protection, resource conservation, and recovery rates

机译:冷却装置的处理:环境保护,资源节约和回收率之间的相互关系

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The treatment of cooling appliances in Austria is primarily influenced by two factors. On the one hand is their changing composition and on the other hand the ordinance on Waste Prevention, Collection and Treatment of Waste Electrical and Electronic Equipment (WEEE ordinance), which stipulates a minimum recycling rate of 75% for cooling appliances. This paper investigates whether this recycling rate leads to optimal treatment practices for cooling appliances with respect to resource conservation and environmental protection. Two different treatment technologies which achieve recycling rates between 50-60% and 80-90%, respectively, are compared both for cooling appliances containing Chlorofluorocarbons (CFCs) and for appliances containing Volatile Organic Compounds (VOC). Materials and energy balances are developed for each model. To evaluate resource consumption, expenditures as well as savings of energy and materials are incorporated via the Cumulative Energy Demand (CED). In order to analyse the environmental impact of the different practices, balances for CFC, COZ, HF, HCl and solid residues are established. The results show that the treatment type aiming for a maximum of materials recycling contributes more to resource conservation than the other treatment type. But for CFC appliances the former is associated with substantial CFC emissions, which turn out to be most relevant when treating these appliances. Generally, it is found that the optimum recycling rate is a function of the composition of the appliance and the technologies applied, both in recycling and in primary production. A high recycling rate per se does not automatically result in an optimal solution with regard to resource conservation and environmental protection. (c) 2007 Elsevier B.V. All rights reserved.
机译:奥地利冷却设备的处理主要受两个因素影响。一方面是它们的组成不断变化,另一方面是关于《废弃电器电子设备的废物预防,收集和处理条例》(WEEE条例),该条例规定制冷设备的最低回收率为75%。本文研究此回收率是否在资源节约和环境保护方面导致冷却设备的最佳处理方法。比较了两种不同的处理技术,分别将含氯氟烃(CFC)的制冷设备和含挥发性有机化合物(VOC)的设备实现了50-60%到80-90%的回收率。为每种模型开发了材料和能量平衡。为了评估资源消耗,可通过累积能源需求(CED)来考虑支出以及能源和材料的节省。为了分析不同做法对环境的影响,建立了CFC,COZ,HF,HCl和固体残留物的平衡。结果表明,与其他处理方式相比,旨在最大程度地回收材料的处理方式对资源节约的贡献更大。但是对于CFC电器,前者与大量的CFC排放有关,事实证明,在处理这些电器时,这与最重要。通常,发现在再循环和初级生产中,最佳的再循环率取决于器具的组成和所应用的技术。高回收率本身并不能自动为资源节约和环境保护提供最佳解决方案。 (c)2007 Elsevier B.V.保留所有权利。

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