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Solar photovoltaic tree and its end-of-life management using thermal and chemical treatments for material recovery

机译:太阳能光伏树及其使用热处理和化学处理进行材料回收的报废管理

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Solar photovoltaic trees (SPVT's) are chosen as an alternative option for electricity generation due to numerous benefits (especially in land utilization, urban infrastructure, and landscaping). Currently, SPVT's are available in many designs, and one among them is the novel phyllotaxy pattern. Technically, SPVT's seem to be more reliable and cost-effective. The expected average lifetime of the photovoltaic (PV) modules used in SPVT's is around 25 years. Once, the lifetime is over, these SPVT's must undergo a waste management process, and the scope for recycling is very high. Even though the scope for PV waste recycling is very high, many recyclers face the problems especially in estimating material recovery potential. In this paper, thermal and chemical treatments based end-of-life (EOL) method is used to estimate the material recovery potential from the phyllotaxy pattern-based SPVT. Initial estimations on the total embodied materials of the SPVT system is evaluated based on the components material fraction. Next, under the applied EOL management method, material recovery potential is estimated as per the material (aluminum, copper, glass, silver, and steel). Lastly, a few limitations with this EOL method are highlighted, and presented results aim to serve as useful data for the recyclers to have decisions.
机译:由于具有众多优势(特别是在土地利用,城市基础设施和景观美化方面),太阳能光伏树木(SPVT)被选作发电的替代选择。当前,SPVT具有多种设计,其中之一是新颖的叶序模式。从技术上讲,SPVT似乎更可靠且更具成本效益。 SPVT中使用的光伏(PV)组件的预期平均寿命约为25年。一旦使用寿命结束,这些SPVT必须经过废物管理过程,并且回收的范围非常大。尽管光伏废料回收的范围非常大,但许多回收商仍面临这些问题,尤其是在估计材料回收潜力方面。在本文中,基于热处理的化学寿命终止(EOL)方法用于从基于叶序模式的SPVT估算材料的回收潜力。基于组件材料分数评估对SPVT系统的全部包含材料的初始估计。接下来,在应用的EOL管理方法下,根据材料(铝,铜,玻璃,银和钢)估算材料的回收潜力。最后,强调了这种EOL方法的一些局限性,提出的结果旨在为回收商做出决策提供有用的数据。

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