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Experimental Study on Fluorine Release from Photovoltaic Backsheet Materials Containing PVF and PVDF during Pyrolysis and Incineration in a Technical Lab-Scale Reactor at Various Temperatures

机译:在工业实验室规模的反应器中,在不同温度下热解和焚烧过程中,从含PVF和PVDF的光伏背板材料中释放氟的实验研究

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With a sharp increase in photovoltaic (PV) installations across the world, PV waste is now a relatively new addition to the e-waste category. From 45,000 tonnes in 2016, the PV waste stream is rapidly increasing and is projected to reach 60 million tonnes by 2050. Backsheets are composite structures made from several material layers of polymer, adhesive, and primer. Widely used PV backsheets can be classified into three core types: (a) KPK (Kynar ? /polyethylene terephthalate (PET)/Kynar ? ), (b) TPT (Tedlar ? /PET/Tedlar ? ), and (c) PPE (PET/PET/ethylvinylacetate). Kynar ? and Tedlar ? are based on polyvinylidene fluoride (PVDF) and polyvinyl fluoride (PVF), respectively. PPE backsheets are fluorine-free composites made primarily from PET. With increasing focus on the end-of-life (EoL) handling of PV waste, the handling of fluoropolymers, which is largely unexplored, requires closer examination to avoid environmental damage. The aim of this study was to obtain information on the fluorine released from PV backsheet materials into the gas phase during combustion and pyrolysis as EoL pathways. Therefore, several experimental trials were conducted to measure fluorine transfer into the gas phase at 300 °C, 400 °C, 500 °C, and 900 °C (for pyrolysis) and at 750 °C, 850 °C, and 950 °C (for incineration).
机译:随着全球光伏(PV)装置的急剧增加,PV废物现在已成为电子废物类别中相对较新的补充。从2016年的4.5万吨开始,光伏废物流正在迅速增加,预计到2050年将达到6000万吨。背板是由聚合物,粘合剂和底漆等多种材料层制成的复合结构。广泛使用的PV背板可分为三种核心类型:(a)KPK(Kynar®/聚对苯二甲酸乙二酯(PET)/Kynar®),(b)TPT(Tedlar®/ PET /Tedlar®)和(c)PPE( PET / PET /醋酸乙烯乙酯)。基纳尔?和特德拉?分别基于聚偏二氟乙烯(PVDF)和聚偏氟乙烯(PVF)。 PPE底片是主要由PET制成的无氟复合材料。随着越来越多地关注PV废料的报废(EoL)处理,对于含氟聚合物的处理(很大程度上尚未开发),需要进行仔细检查以避免对环境的破坏。这项研究的目的是获得有关在燃烧和热解过程中作为EoL途径从PV背板材料释放到气相中的氟的信息。因此,进行了一些实验试验,以测量氟在300°C,400°C,500°C和900°C(用于热解)以及在750°C,850°C和950°C时向气相的转移。 (用于焚化)。

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