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This paper aims to identify specific and generic success factors and barriers in the re-use of electrical and electronic equipment for a variety of different operating models. The scope of the study is information and communication technologies (ICT) and large household appliances. Success factors and barriers for re-use were identified through the conducting of semi-structured interviews with 28 case study partners representing the different models. A list of generic success factors and barriers was identified. From this generic list, the re-use success factors and barriers were ranked by the interviewees with regards to their importance. On the one hand, the difficulty in accessing sufficient volumes of good quality used equipment and the lack of legislations, which support, incentivize and – if necessary – enforce this access, were identified as most impactful barriers. On the other hand, the control and securing of product and process quality were ranked as most important success factors. Re-use organisations, which adhere to good re-use practices, differentiate themselves through quality guarantee from non-compliant, informal competitors. Moreover, proven quality strengthens confidence in re-use of important stakeholders like suppliers, customers, authorities and the general public. Differences in reuse barriers and success factors were also explored for varying geographical regions, product category and operating models. 相似文献
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以某再生资源公司的废旧电脑拆解为案例进行研究,介绍了工艺技术、拆解回收各种资源的数据。研究结果表明,我国废旧电脑人工拆解-破碎-冶炼相结合的工艺,是电子废弃物循环利用、资源高效回收、减少环境风险的较好工艺技术,符合固废处理的3R(替代、减少、优化)原则。 相似文献
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通过介绍废旧锂离子电池的组成成分及近年来废旧锂离子电池资源化处理技术的研究进展,提出目前主要回收方法有溶解分离法和直接回收正极材料的新型方法等,并对现有研究中存在的二次污染、安全性问题进行了初步探讨。 相似文献
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Optimization of the recovery of plastics for recycling by density media separation cyclones 总被引:1,自引:0,他引:1
Gent Malcolm Richard Menendez MarioToraño Javier Torno Susana 《Resources, Conservation and Recycling》2011,55(4):472-482
Material recovery processes are presented as the optimum option for recycling plastic wastes as a means of recovering hydrocarbon resources. There exist a large variety of automated material recovery processes for recycling of such wastes but each with significant limitations. Of these, the separation based on differences in densities is advocated as the optimum process either for producing recycled products or preparing wastes for subsequent recovery processing.Density separation processes based on cyclone type density media separation (DMS) is presented as an important, potential method for increasing plastics recycling process capacities. It is demonstrated to have the capacity to separate a significantly larger range of particle sizes than those presently processed industrially. The mathematical relationship for the prediction of quality of typical LARCODEMS type density media separations by particle size and density as expressed by the Ecart Probable is presented.A proposed device configuration is presented for density media separation to optimize the recovery and purity of both density fractions produced. It is also suggested that to be economically viable, a large scale of operation is required for industrial plastics recycling operations recovering and producing a number of different plastics with a purity to be used as a substitute for virgin material. 相似文献
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通过分析与电子废物回收处理密切联系的工艺技术、规划管理和各种外部环境等因素,剖析我国电子废物处理产业面临的障碍,并提出解决建议。 相似文献
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