首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Life-cycle assessment of cradle-to-grave opportunities and environmental impacts of organic photovoltaic solar panels compared to conventional technologies
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Life-cycle assessment of cradle-to-grave opportunities and environmental impacts of organic photovoltaic solar panels compared to conventional technologies

机译:与传统技术相比,生命周期评估有机光伏太阳能电池板从摇篮到坟墓的机会和环境影响

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Recent developments in organic photovoltaic technology demonstrate the possibility of easily printable, light, thin, and flexible solar panels with fast manufacturing times. Prior life-cycle assessment studies show potential for organic photovoltaics to lower the environmental footprint and shorten the energy and carbon payback times compared to conventional silicon during the production of a solar cell on a watt-for-watt basis. This study extends such analyses beyond the manufacturing stage and evaluates the prospective cradle-to-grave life-cycle. impacts of organic photovoltaics compared with conventional ones. Two systems (solar rooftop array and portable solar charger) were chosen to illustrate how different product integrations, duration of use and disposal routes influence potential environmental benefits of organic photovoltaics while informing researchers on the prospects for continued development and scaling-up this technology. The results of the life-cycle assessment showed that environmental benefits for organic photovoltaics extend beyond the manufacture of the photovoltaic panels, with baseline cradle-to-grave impacts for both long-term uses (rooftop arrays) and short-term uses (portable chargers) on average 55% and 70% lower than silicon devices, respectively. These results demonstrate that further reductions can be leveraged by integrating organic photovoltaics into simpler devices that take advantage of their flexibility and ability to be used in applications that are less constrained by conventional technology. For example, organic photovoltaic charging units showed life-cycle impacts more than 39-89% lower than silicon along with energy and carbon payback times as short as 220 and 118 days, respectively. (C) 2016 Published by Elsevier B.V.
机译:有机光伏技术的最新发展表明,可以快速制造,易于印刷,轻便,薄而柔软的太阳能电池板的可能性。先前的生命周期评估研究表明,与常规硅相比,有机光伏技术在生产太阳能电池时,以瓦/瓦为基础,具有降低环境足迹,缩短能源和碳回收时间的潜力。这项研究将此类分析扩展到了制造阶段之外,并评估了从摇篮到坟墓的预期寿命周期。有机光伏与传统光伏相比的影响。选择了两个系统(太阳能屋顶阵列和便携式太阳能充电器)来说明不同的产品集成,使用期限和处置路线如何影响有机光伏的潜在环境效益,同时向研究人员告知继续开发和扩大该技术的前景。生命周期评估的结果表明,有机光伏的环境效益超出了光伏面板的制造范围,长期使用(屋顶阵列)和短期使用(便携式充电器)的基线从摇篮到坟墓的影响)分别平均比硅器件低55%和70%。这些结果表明,通过将有机光伏电池集成到更简单的设备中,可以利用进一步的减少,这些设备利用了它们的灵活性和能力,可用于受常规技术约束较少的应用中。例如,有机光伏充电装置的生命周期影响比硅低39-89%以上,同时能源和碳的回收时间分别短至220天和118天。 (C)2016由Elsevier B.V.发布

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