Open challenges and opportunities in photovoltaic recycling

Ying Sim,  Ankit, Yeow Boon Tay, Dwarakanath Ravikumar, Nripan Mathews
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Abstract

Photovoltaics — the fastest-growing renewable energy — has seen rapid growth in global cumulative installations, owing to continuous technological advancements in module and cell designs and a decreasing levelized cost of energy. However, this growth brings challenges associated with end-of-life (EOL) management of photovoltaic (PV) modules. Recycling, an important pillar of the circular economy, has a pivotal role in the liberation and recovery of embedded materials present in the EOL PV modules. In this Review, we discuss the current PV recycling strategies, covering liberation of materials and metal recovery approaches, for both pilot trials and laboratory-scale demonstrations. We then highlight their characteristic parameters, performance and key differences, as well as open challenges to PV recycling in terms of cost-effectiveness, policy regulations and data availability. Next, we summarize the technological innovations needed to achieve adequate separation of embedded materials and efficient material recovery. Finally, we propose a way forward to achieve cost-effective, energy-efficient and environmentally friendly recycling of EOL PV modules. This Review provides a critical assessment of the existing photovoltaic recycling technologies, discusses open challenges and makes key recommendations, such as the promotion of design for recycling, widening data availability, policy developments and incentives for upcycling.

Abstract Image

光伏回收的挑战与机遇
由于组件和电池设计的持续技术进步以及能源成本的降低,光伏发电- - -增长最快的可再生能源- - -在全球累计安装量迅速增长。然而,这种增长带来了与光伏(PV)组件的寿命终止(EOL)管理相关的挑战。回收利用是循环经济的重要支柱,在EOL光伏组件中嵌入材料的释放和回收中起着关键作用。在这篇综述中,我们讨论了目前的光伏回收策略,包括材料的解放和金属回收方法,用于试点试验和实验室规模的示范。然后,我们强调了它们的特征参数、性能和关键差异,以及光伏回收在成本效益、政策法规和数据可用性方面面临的公开挑战。接下来,我们总结了实现嵌入材料的充分分离和有效材料回收所需的技术创新。最后,我们提出了实现成本效益,节能和环保的EOL光伏组件回收的方法。本综述对现有光伏回收技术进行了批判性评估,讨论了开放的挑战,并提出了关键建议,例如促进回收设计,扩大数据可用性,制定政策和激励升级回收。
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