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Life Cycle Assessment of New High Concentration Photovoltaic (HCPV) Modules and Multi-Junction Cells

机译:新型高浓度光伏(HCPV)模块和多结细胞的生命周期评估

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摘要

Worldwide electricity consumption increases by 2.6% each year. Greenhouse gas emissions due to electricity production raise by 2.1% per year on average. The development of efficient low-carbon-footprint renewable energy systems is urgently needed. CPVMatch investigates the feasibility of mirror or lens-based High Concentration Photovoltaic (HCPV) systems. Thanks to innovative four junction solar cells, new glass coatings, Position Sensitive Detectors (PSD), and DC/DC converters, it is possible to reach concentration levels higher than 800× and a module efficiency between 36.7% and 41.6%. From a circular economy’s standpoint, the use of concentration technologies lowers the need in active material, increases recyclability, and reduces the risk of material contamination. By using the Life Cycle Assessment method, it is demonstrated that HCPV presents a carbon footprint ranking between 16.4 and 18.4 g CO2-eq/kWh. A comparison with other energy means for 16 impact categories including primary energy demand and particle emissions points out that the environmental footprint of HCPV is typically 50 to 100 times lower than fossil fuels footprint. HCPV’s footprint is also three times lower than that of crystalline photovoltaic solutions and is close to the environmental performance of wind power and hydropower.
机译:全球电力消耗以每年2.6%增加。每年2.1%的平均由于电力生产提高温室气体排放。高效的低碳足迹的可再生能源系统的发展迫切需要。 CPVMatch调查镜或基于透镜的高浓度光伏(HCPV)系统的可行性。由于创新是四个结太阳能电池,新的玻璃涂层,位置敏感探测器(PSD),和DC / DC转换器,有可能超过800×和36.7%和41.6%之间的组件效率达到浓度水平高。从循环经济的角度来看,使用浓度的技术降低了活性材料的需要,提高了可回收性,并且减少了材料污染的危险。通过使用生命周期评估方法中,证明了HCPV礼物碳足迹16.4和二氧化碳当量/千瓦时之间18.4克排名。与其它能量装置16个影响类别包括初级能源需求和颗粒排放物的比较指出,HCPV的环境足迹比化石燃料足迹降低一般为50至100倍。 HCPV的足迹也比晶体光伏解决方案的低三倍,靠近风电和水电的环保性能。

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