Akulenko Elena S, Hadadian Mahboubeh, Santasalo-Aarnio Annukka, Miettunen Kati
Department of Materials Engineering, Faculty of Science and Engineering, 20014 University of Turku, Finland.
Department of Mechanical Engineering, School of Engineering, 11000 Aalto University, Finland.
Heliyon. 2023 Feb 9;9(2):e13584. doi: 10.1016/j.heliyon.2023.e13584. eCollection 2023 Feb.
Photovoltaic development should be steered by the circular economy. However, it is not. In case of perovskite photovoltaics even current environmental directives divert from profitably recycling. Here, we study the profitability of noble metals recovery from wasted perovskite solar cells depending on recycling routes. Our results show that substrates play a major role in the recovery of precious metals and in contrast to previous research even recycling carbon-based devices could reach profitability. Going beyond the recovery of valuable elements, our findings show that revival of the perovskite solar cells is strongly dependent on the device architecture, so far viable for mesoscopic structures with carbon back contacts. Perovskite solar cells are still at the development stage, but the window of opportunity to ensure eco-design will close with market entry, and device complexity might compromise profitability recycling and even result in failure of recovery critical materials. Therefore, its eco-design should be prioritized by materials researchers to develop devices, where valuable components can be separated and liberated with safe and low energy processes.
光伏发展应由循环经济引导。然而,实际并非如此。就钙钛矿光伏而言,即便当前的环境指令也偏离了有利可图的回收利用方向。在此,我们研究了根据回收路线从废弃钙钛矿太阳能电池中回收贵金属的盈利能力。我们的结果表明,基板在贵金属回收中起着主要作用,与先前的研究不同,即使回收基于碳的器件也能实现盈利。除了回收有价值的元素,我们的研究结果表明,钙钛矿太阳能电池的修复很大程度上取决于器件结构,到目前为止,对于具有碳背接触的介观结构是可行的。钙钛矿太阳能电池仍处于发展阶段,但确保生态设计的机会之窗将随着市场进入而关闭,并且器件的复杂性可能会损害回收利用的盈利能力,甚至导致关键材料回收失败。因此,材料研究人员应优先考虑其生态设计,以开发出能够通过安全且低能耗的工艺分离和释放有价值组件的器件。