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The carbon mitigation potential of emerging photovoltaic technology

机译:新兴光伏技术的碳减排潜力

摘要

Photovoltaic systems provide a solution for harnessing energy from the sun whilst reducing global greenhouse gas emissions. Organic photovoltaics (OPV), based on blends of polymer and fullerene materials, have recently received widespread interest within academia and business due to its potential for low costs, minimum environmental impact and rapid roll-to-roll manufacture. In addition, modules can be customised for flexibility, light-weight and colour. However, OPV modules also show considerably lower efficiencies than mature photovoltaic technologies, as well as much reduced lifetimes. ududThis thesis presents a framework for the analysis of the potential for GHG mitigation by assessing how unique characteristics of the technology may influence its GHG mitigation potential. In the first instance, the extent to which OPV can realise the goal of low costs and minimal environmental impact is assessed. This analysis shows that GHG emissions from OPV manufacture are considerably lower than mature PV technologies. However, the economic cost of OPV, whilst lower on the basis of capital costs, struggles to compete on a levelised basis assuming current projections for lifetime, suggesting that the technology will only have an impact on GHG mitigation outside conventional PV applications.ududTwo potential niche applications are analysed as case-studies. Analysis of using OPV materials as a partially transparent coating in greenhouse structures concludes that currently available OPV materials can provide significant power with minimal impact on crop growth. However, partial coverage with opaque crystalline silicon modules can provide more electricity with less impact on crops. The second case-study looks at the application of OPV in providing off-grid lighting, assessing the emissions and costs associated with this application as well as looking at the long term degradation of OPV in the harsh environments, through a field trial of the technology in Southern Rwanda.ududFinally, analysis of the transition to solar energy technology shows that OPV can provide much more rapid emission reductions in comparison to mature technology, despite higher levelised emissions. ududThis work concludes that organic photovoltaic technology may be limited to a few niche applications where inferior performance does not present a challenge, or unique properties are advantageous. However, the application case-studies presented in this thesis show a large GHG mitigation potential from such applications, and analysis of the transition to PV demonstrates the added advantage of OPV in realising rapid emission reductions.
机译:光伏系统提供了一种解决方案,可利用太阳能,同时减少全球温室气体排放。基于聚合物和富勒烯材料的混合物的有机光伏(OPV)最近因其低成本,最小化环境影响和快速卷对卷制造的潜力而在学术界和企业界引起了广泛关注。此外,可以定制模块以实现灵活性,轻巧和色彩。但是,OPV模块的效率也比成熟的光伏技术低很多,并且使用寿命大大缩短。 ud ud本文通过评估该技术的独特特征如何影响其温室气体减排潜力,为分析温室气体减排潜力提供了一个框架。首先,评估OPV可以实现低成本和对环境影响最小的目标的程度。该分析表明,OPV制造商产生的温室气体排放量大大低于成熟的光伏技术。但是,OPV的经济成本虽然在资本成本的基础上降低了,但在当前使用寿命预测的基础上,仍难以在均衡的基础上竞争,这表明该技术只会对常规PV应用以外的温室气体减排产生影响。 ud分析了两种潜在的利基应用作为案例研究。对将OPV材料用作温室结构中的部分透明涂层的分析得出的结论是,当前可用的OPV材料可以提供强大的动力,而对作物生长的影响却最小。但是,不透明晶体硅模块的部分覆盖可以提供更多的电力,而对农作物的影响较小。第二个案例研究着眼于OPV在提供离网照明方面的应用,评估了与该应用相关的排放和成本,并通过该技术的现场试验来考察OPV在恶劣环境中的长期退化。最后,对向太阳能技术过渡的分析表明,尽管排放水平较高,但与成熟技术相比,OPV可以更快地减少排放。 ud ud这项工作得出的结论是,有机光伏技术可能仅限于一些劣质应用,在这些应用中,劣质性能不会带来挑战,或者独特的性能是有优势的。然而,本文提出的应用案例研究显示了从此类应用中释放温室气体的巨大潜力,并且对向PV过渡的分析证明了OPV在实现快速减排方面的附加优势。

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