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Eco-design for dye solar cells: From hazardous waste to profitable recovery

机译:染料太阳能电池的生态设计:从危险废物到有利可图的恢复

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Recycling is rarely considered in the field of dye solar cells. However, recycling should be a critical part of holistic eco-design, which considers the efficiency, lifetime, return of energy investment, safety, and availability of materials. The novelty and focus of this work is recycling, and this is the first contribution systematically analyzing how different material choices and their combinations affect the recycling of dye solar cells. By understanding the recycling processes and how the recycling of materials is interlinked in a multicomponent system, it is possible to eco-design systems and guide future research toward selecting materials that support sustainability and enable economically motivated recycling. Economic incentive is the biggest factor determining whether or not recycling will take place. With eco-design, it is possible to avoid future problems, such as trapping rare and expensive critical metals in waste from which they are difficult or even impossible to recover. In fact, the conventional dye solar cells create harmful waste with no economically profitable way of recycling. Interestingly, many of the alternative materials that enable recycling have not been originally designed for that purpose, and it is rarely obvious how the combination of different materials affects recycling. For instance, using thin flexible substrates, which have been developed for roll-to-roll manufacturing, supports the retrieval of Ag, and using high performance Co- or Cu-based electrolytes instead of iodine electrolyte eliminates toxic gas problems in pyrometallurgical recycling processes.
机译:在染料太阳能电池领域很少考虑回收。然而,回收应该是整体生态设计的关键部分,它考虑了材料的效率,寿命,能源投资回报,安全性和材料的可用性。这项工作的新颖性和重点是回收,这是第一种系统地分析不同材料选择和它们的组合如何影响染料太阳能电池的再循环的贡献。通过理解回收过程以及如何在多组分系统中相互交互的回收过程以及如何在多组分系统中相互连接,可以对生态设计系统并指导未来的研究选择支持可持续性的材料并实现经济动力的再循环。经济激励是确定是否会循环循环的最大因素。通过生态设计,可以避免未来的问题,例如在废物中捕获稀有和昂贵的关键金属,它们难以从中难以恢复甚至不可能。事实上,传统的染料太阳能电池产生有害的浪费,没有经济上有利可图的回收方式。有趣的是,许多使再循环的替代材料尚未为此目的而设计,并且很少明显不同材料的组合如何影响回收。例如,使用已经开发的薄柔性基板用于滚动制造,支持Ag的检索,并且使用高性能的Co-或Cu基电解质代替碘电解质消除了Pyrome冶金回收过程中的有毒气体问题。

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