Investigating the Remanufacturing Potential of Dye-Sensitized Solar Cells

Author:

Schoden FabianORCID,Detzmeier Joscha,Schnatmann Anna Katharina,Blachowicz TomaszORCID,Schwenzfeier-Hellkamp Eva

Abstract

Resources are becoming more expensive and less accessible, for instance construction wood or semiconductors. In addition, climate change requires the conversion of the energy system to 100% renewable energy. Therefore, we need resources to prevent the climate crisis from worsening, but at the same time, we are suffering from a worsening resource crisis. State-of-the-art technologies, such as silicon-based photovoltaic or wind power plants, are harnessing renewable energy but causing problems and resource losses at the end of their useful life. This alarming situation must be addressed with renewable energy technologies that can be used longer, repaired and remanufactured, and properly recycled at the end of their useful life. An emerging technology that can complement the established systems is dye-sensitized solar cells (DSSCs). Their production is less energy intensive and they can be manufactured without toxic materials. In line with the concept of the circular economy, the service life of all products must be improved in order to reduce resource consumption. Therefore, we investigated the potential for remanufacturing DSSCs by taking apart old DSSCs, cleaning the components, and building new DSSCs from the remanufactured components. The remanufactured DSSCs have the same or higher efficiencies and can be remanufactured multiple times.

Funder

Deutsche Forschungsgemeinschaft

Publisher

MDPI AG

Subject

Management, Monitoring, Policy and Law,Renewable Energy, Sustainability and the Environment,Geography, Planning and Development

Reference59 articles.

1. Paris Agreement on Climate Change

2. Why Lumber Prices Are Suddenly Rising again|Fortunehttps://fortune.com/2021/09/27/lumber-prices-rising-2021-covid/

3. JPMorgan on Semiconductor Shortage and Outlook for 2022, 2023https://www.cnbc.com/2021/11/19/jpmorgan-on-semiconductor-shortage-and-outlook-for-2022-2023.html

4. Towards the Circular Economy: An Economic and Business Rationale for an Accelerated Transition,2013

5. Growth within: A Circular Economy Vision for a Competitive Europe,2015

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