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Recycling of rare earths from fluorescent lamps: Value analysis of closing-the-loop under demand and supply uncertainties

机译:荧光灯中稀土的再循环:需求和供应不确定性下闭环的价值分析

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摘要

Rare earth element (REE) recycling remains low at 1%, despite significant uncertainties related to future supply and demand and EU 2020 energy efficiency objectives. We use a global production network framework of REE flows from mine to REE phosphors in energy-efficient lamps to illustrate the potential of closed-loop recycling for secondary supply under different scenarios of primary supply and forecasted demand for LEDs, CFLs and LFLs. We find that different End-of-Life Recycling Rate scenarios for REE secondary supply range between meeting forecasted REE demand and filling primary supply gaps, and competing with primary supply. Our argument centres on diversifying REE sourcing with recycling and the choice between primary and secondary supply. We stress that secondary REE phosphor supply requires further policy support for lamp collection and a discussion of the value of REE phosphor recycling which underlies its economic feasibility. (C) 2015 Elsevier B.V. All rights reserved.
机译:尽管未来供需以及欧盟2020年能源效率目标存在重大不确定性,但稀土元素(REE)的回收率仍然低至1%。我们使用节能灯中从矿山到稀土荧光粉的稀土流的全球生产网络框架,来说明在主要供应和预测的LED,CFL和LFL需求不同情况下,二次供应的闭环回收的潜力。我们发现REE二级供应的不同寿命终止回收率方案介于满足预测的REE需求和填补一级供应缺口之间,以及与一级供应竞争。我们的论点集中在通过循环利用使REE采购多样化,以及在一次和二次供应之间进行选择。我们强调二次REE磷光体的供应需要进一步的政策支持,以支持灯的收集以及对REE磷光体回收价值的讨论,这是其经济可行性的基础。 (C)2015 Elsevier B.V.保留所有权利。

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