Life Cycle Assessment of an Exemplary Agrivoltaic System in Thuringia (Germany)

Christin Busch, Kerstin Wydra
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Abstract

Agrivoltaic systems create numerous synergies between the aspects of agriculture, climate protection, climate change adaptation, land use and energy. For this reason, the present study examined the environmental impact of this technology using the life cycle assessment approach. Three scenarios were developed: An APV scenario with combined production of electricity and potatoes on one field (scenario 1), a PV scenario with separate production of PV electricity and potatoes (scenario 2) and a scenario in which electricity production is covered by the German electricity mix (scenario 3). All three scenarios showed the same output in energy production (500.13 kWp) and in potato production (307.87 dt/a or 9,236 dt/30 years). The results show that APV systems have similar impacts as open-space PV systems and achieve significantly better performances than the German electricity mix. In half of the impact categories examined, the environmental impacts were caused by potato production, in the other half by electricity production. Due to current developments in system design and solar module development, it can be expected that the life cycle impact of APV systems will continue to improve in the future.
图林根州(德国)示范性农业光伏系统的生命周期评估
农业光伏系统在农业、气候保护、气候变化适应、土地利用和能源等方面产生了许多协同效应。因此,本研究采用生命周期评估方法研究了该技术对环境的影响。研究制定了三种方案:一种是在一块土地上同时生产电力和马铃薯的 APV 情景(情景 1),一种是分别生产光伏电力和马铃薯的光伏情景(情景 2),一种是电力生产由德国电力组合覆盖的情景(情景 3)。所有三种方案的发电量(500.13 kWp)和马铃薯产量(307.87 dt/a 或 9,236 dt/30年)均相同。结果表明,APV 系统的影响与空地光伏系统相似,其性能明显优于德国的电力组合。在所考察的影响类别中,一半的环境影响是由马铃薯生产造成的,另一半是由电力生产造成的。由于目前在系统设计和太阳能模块开发方面的发展,可以预计,APV 系统的生命周期影响在未来将继续改善。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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