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Sustainable urban electricity supply chain – Indicators of material recovery and energy savings from crystalline silicon photovoltaic panels end-of-life

机译:可持续城市电力供应链 - 晶体硅光伏电池板末端晶体恢复和节能的指标

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摘要

Solar photovoltaic (PV) electricity has the potential to be a major energy solution, sustainably suitable for urban areas of the future. However, although PV technology has been projected as one of the most promising candidates to replace conventional fossil based power plants, the potential disadvantages of the PV panels end-of-life (EoL) have not been thoroughly evaluated. The current challenge concerning PV technology resides in making it more efficient and competitive in comparison with traditional fossil powered plants, without neglecting the appraisal of EoL impacts. Indeed, considering the fast growth of the photovoltaic market, started 30 years ago, the amount of PV waste to be handled and disposed of is expected to grow drastically. Therefore, there is a real need to develop effective and sustainable processes to address the needed recycle of the growing number of decommissioned PV panels. Many laboratory-scale or pilot industrial processes have been developed globally during the years by private companies and public research institutes to demonstrate the real potential offered by the recycling of PV panels. One of the tested up lab-scale recycling processes - for the crystalline silicon technology - is the thermal treatment, aiming at separating PV cells from the glass, through the removal of the EVA (Ethylene Vinyl Acetate) layer. Of course, this treatment may entail that some hazardous components, such as Cd, Pb, and Cr, are released to the environment, therefore calling for very accurate handling. To this aim, the sustainability of a recovery process for EoL crystalline silicon PV panels was investigated by means of Life Cycle Assessment (LCA) indicators. The overall goal of this paper was to compare two different EoL scenarios, by evaluating the environmental advantages of replacing virgin materials with recovered materials with a special focus on the steps and/or components that can be further improved.The results demonstrate that the recovery process has a positive effect in all the analyzed impact categories, in particular in freshwater eutrophication, human toxicity, terrestrial acidification and fossil depletion indicators. The main environmental benefits arise from the recovery of aluminum and silicon. In particular, the recovered silicon from PV waste panels would decrease the need for raw silicon extraction and refining in so lowering the manufacturing costs, and end-of-life management of PV panels. Moreover, the amount of the recovered materials (silicon, aluminum and copper, among others) suggests a potential benefit also under an economic point of view, based on present market prices.
机译:太阳能光伏(PV)电力有可能成为一个主要的能源解决方案,可持续适用于未来城市地区。然而,尽管PV技术被预测为更换传统化石的发电厂的最有前途的候选人之一,但PV面板寿命终生(EOL)的潜在缺点尚未得到彻底评估。关于光伏技术的目前挑战在于与传统化石动力厂的比较,使其更有效和竞争,而不会忽视EOL影响的评估。实际上,考虑到了30年前的光伏市场的快速增长,预计会彻底增长和处理的光伏废物量。因此,真正需要开发有效和可持续的流程来解决越来越多的退役PV面板的循环。在私营公司和公共研究机构多年来,全球已经在全球范围内开发了许多实验室规模或试点工业流程,以证明PV面板回收的实际潜力。其中一个测试的实验室级回收过程 - 用于结晶硅技术 - 是热处理,其旨在通过除去EVA(乙烯乙酸乙烯酯)层来分离从玻璃中的PV电池。当然,这种治疗可能需要一些危险组件,例如Cd,Pb和Cr,因此释放到环境中,因此要求非常准确的处理。为此目的,通过生命周期评估(LCA)指标研究了EOL晶体硅PV面板的恢复过程的可持续性。本文的总体目标是通过评估用回收的材料进行了替代原始材料的环境优势来比较两种不同的EOL情景,并特别关注可以进一步提高的步骤和/或组件。结果表明恢复过程在所有分析的影响类别中具有积极影响,特别是在淡水富营养化,人类毒性,陆地酸化和化石耗尽指标中。主要的环境效益来自铝和硅的恢复。特别地,来自PV废板的回收的硅将降低对原料硅提取和精炼的需求,从而降低PV面板的制造成本和寿命终端管理。此外,回收的材料(硅,铝和铜等)的量也在经济角度下,基于目前的市场价格,也表明了潜在的好处。

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