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首页> 外文期刊>Resources >Shedding Light on the Anthropogenic Europium Cycle in the EU–28. Marking Product Turnover and Energy Progress in the Lighting Sector
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Shedding Light on the Anthropogenic Europium Cycle in the EU–28. Marking Product Turnover and Energy Progress in the Lighting Sector

机译:阐明欧盟28中的人为Euro循环。标记照明行业的产品周转量和能源进度

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Phase-out strategies for incandescent bulbs in favor of advanced energy-efficiency lighting systems such as fluorescent lamps and solid-state technology have considerably reduced the energy use for lighting, but have also resulted in dependence on many critical materials like rare earth elements and shifted the attention to sustainable use and recovery of resources. In this work, a dynamic material flow model was developed to analyze the socio-economic metabolism of europium in the EU–28. The analysis shows that europium marked product turnover and progress in lighting efficiency, with this element being employed both in traditional and novel lighting technology to provide luminescence. The results also demonstrate that the current anthropogenic reserve could constitute an attractive source of secondary europium with substantial potentials for environmental benefits. However, nonexistent recycling and market forces hinder strategies for material circularity. In particular, the transition from fluorescent lamps to solid-state technology is quickly decreasing the demand for europium. This trend adds further constraints to the creation of a sustainable recycling industry for europium, with primary sources that might remain the preferable route to supply phosphors to future lighting systems.
机译:白炽灯泡的逐步淘汰策略有利于先进的节能照明系统,例如荧光灯和固态技术,已大大减少了照明能耗,但也导致了对许多关键材料(如稀土元素)的依赖,并逐渐转移对可持续利用和资源回收的重视。在这项工作中,开发了动态物质流模型来分析欧盟28国中the的社会经济代谢。分析表明,marked标志了产品的周转率和照明效率的提高,该元素同时在传统和新颖的照明技术中使用以提供发光。研究结果还表明,目前的人为储备可能构成次级attractive的诱人来源,具有潜在的环境效益。但是,不存在的回收利用和市场力量阻碍了物质流通的战略。特别是,从荧光灯到固态技术的过渡正在迅速减少对euro的需求。这种趋势为建立可持续的for回收产业增加了更多的限制,主要来源可能仍然是向未来照明系统提供磷光体的首选途径。

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