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Product-Centric Simulation-Based Design for Recycling: Case of LED Lamp Recycling

机译:基于产品中心仿真的回收设计:LED灯回收案例

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This paper will illustrate how a product-centric simulation approach to recycling is core to Design for Recycling (DfR) & Design for Resource Efficiency. This approach is underpinned by rigorous recycling rate calculations, building on the extensive expertise, knowhow and tools of classical minerals, and metallurgical processing. Process simulation and design tools such as the commercial HSC Sim software are applied to quantify critical DfR rules for a particular product as well as to quantify the recycling rates of all materials and elements in a product. The ten DfR rules we have developed for Waste Electric and Electronic Waste recycling in a study performed for NVMP/Wecycle (the Netherlands) are applied to light emitting diode (LED) lamps. The results produced include recycling and recovery rates, as well as recyclate qualities and quantities, and losses and emissions of materials during recycling for various LED lamp redesigns. Metallurgical processing is also briefly discussed, showing that, in many cases, element recoveries are reduced to zero due to product complexity and ppm levels in the products. Simulation models are linked to life cycle assessment (LCA) and exergy, demonstrating how the applied simulation basis provides the detail to innovate the system. In addition, rigorous environmental assessment is a further outcome of the approach, while at the same time revealing the development that has to occur in LCA databases to improve their value for Ecodesign.
机译:本文将说明以产品为中心的回收模拟方法是回收设计(DfR)和资源效率设计的核心。这种方法以严格的回收率计算为基础,该方法以经典矿物以及冶金加工的广泛专业知识,专业知识和工具为基础。过程仿真和设计工具(例如商业HSC Sim软件)用于量化特定产品的关键DfR规则,以及量化产品中所有材料和元素的回收率。在针对NVMP / Wecycle(荷兰)进行的一项研究中,我们为废电和电子废物回收开发的十项DfR规则适用于发光二极管(LED)灯。产生的结果包括回收率和回收率,以及回收物的质量和数量,以及各种LED灯重新设计过程中回收过程中材料的损失和排放。还简要讨论了冶金过程,表明在许多情况下,由于产品复杂性和产品中的ppm水平,元素的回收率降低到零。仿真模型与生命周期评估(LCA)和火用度相关联,证明了所应用的仿真基础如何为系统创新提供细节。此外,严格的环境评估是该方法的进一步成果,同时揭示了LCA数据库中为提高其生态设计价值而必须进行的开发。

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