Thermal separation of plastic components from waste crystalline silicon solar cells: Thermogravimetric characteristics and thermokinetics.

IF 2.1 4区 环境科学与生态学 Q3 ENGINEERING, ENVIRONMENTAL Journal of the Air & Waste Management Association Pub Date : 2023-11-01 Epub Date: 2023-11-02 DOI:10.1080/10962247.2023.2262426
Qing Huang, Wenyi Yuan, Yaping Guo, Qinfei Ke
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Abstract

Thermal treatment is a mainstream technique to separate plastic components from waste crystalline silicon (c-Si) photovoltaic (PV) modules. In this study, the thermogravimetric analysis (TGA) was conducted for a better understanding of the characteristics of plastic components mainly poly(ethylene-co-vinyl) acetate (EVA) binder and polyfluoroethylene composite membrane (TPT) backsheet in waste c-Si PV panels through thermal treatment at four different heating rates (5-20°C·min-1) under nitrogen and air conditions, respectively. The thermal process of the EVA binder whether in a nitrogen or air atmosphere could be divided into two phases, which were 300-400°C and 400-515°C in nitrogen with the total weight loss reached 99.64%; the two phases in the air were 270-405°C and 405-570°C with the total weight loss was 99.68%. The thermal weight loss of TPT in nitrogen has only one phase occured between 380°C and 520°C, and the weight loss rate is about 83%. There are two weight loss phases in the air atmosphere, which the first phase starts from 265°C to 485°C and the second phase ends at 635°C with a final weight loss reaching 97%. Furthermore, the Kissinger-Akahira-Sunose (KAS) method was chosen to calculate the pyrolysis kinetic parameters. The activation energy for EVA in nitrogen (261.16 kJ·mol-1) was higher than in air (209.04 kJ·mol-1), also the TPT in nitrogen (188.28 kJ·mol-1) higher than in air (172.21 kJ·mol-1). That indicated that the thermal decomposition of EVA binder was accelerated at first phase in nitrogen, but there is little difference in air atmosphere. Moreover, the activation energy of PVF of the TPT backsheet in the first phase was lower than that in the second phase. This study provides the fundamental basis to develop efficient thermal separation for the plastic components EVA and TPT in waste PV panels.Implications: This study mainly aims to explore the thermal separation of plastic components of waste c-Si panels for heating treatment, so that developing an accurate heat treatment approach that is efficient to implement for the separation of secondary raw material i.e., glass and silicon wafer from end-of-life PV panels. Therefore, this research findings have significant implications for providing the basic data support for waste PV panels management recycling standards, specifications, or policy documents.

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从废晶体硅太阳能电池中热分离塑料组件:热重特性和热动力学。
热处理是从废弃晶体硅(c-Si)光伏组件中分离塑料组件的主流技术。在本研究中,通过分别在氮气和空气条件下以4种不同的加热速率(5-20°c·min-1)进行热处理,进行了热重分析(TGA),以更好地了解废弃c-Si光伏电池板中塑料成分(主要是乙烯-醋酸乙烯酯(EVA)粘合剂和聚四氟乙烯复合膜(TPT)背板)的特性。EVA粘合剂在氮气或空气气氛中的热过程可分为两个阶段,在氮气中分别为300-400°C和400-515°C,总重量损失达到99.64%;在空气中的两相温度分别为270-405°C和405-570°C,总失重率为99.68%。TPT在氮气中的热失重只有一个阶段发生在380-520°C之间,失重率约为83%。空气中有两个失重阶段,第一阶段从265°C开始到485°C,第二阶段在635°C结束,最终失重达到97%。此外,采用Kissinger-Akahira Sunose(KAS)方法计算了热解动力学参数。EVA在氮气中的活化能(261.16 kJ·mol-1)高于空气(209.04 kJ·mol-1),以及氮中的TPT(188.28 kJ·mol-1)高于空气中(172.21 kJ·mol-1)。这表明EVA粘合剂在氮气中的热分解在第一阶段加速,但在空气气氛中差异不大。此外,TPT背板的PVF在第一相中的活化能低于在第二相中的活化能。本研究为开发废旧光伏电池板中塑料组件EVA和TPT的有效热分离提供了基础。含义本研究主要旨在探索用于热处理的废弃c-Si面板塑料部件的热分离,以便开发一种准确的热处理方法,有效地将二次原材料(即玻璃和硅片)与报废光伏面板分离。因此,本研究结果对为废旧光伏电池板管理回收标准、规范或政策文件提供基础数据支持具有重要意义。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Journal of the Air & Waste Management Association
Journal of the Air & Waste Management Association ENGINEERING, ENVIRONMENTAL-ENVIRONMENTAL SCIENCES
CiteScore
5.00
自引率
3.70%
发文量
95
审稿时长
3 months
期刊介绍: The Journal of the Air & Waste Management Association (J&AWMA) is one of the oldest continuously published, peer-reviewed, technical environmental journals in the world. First published in 1951 under the name Air Repair, J&AWMA is intended to serve those occupationally involved in air pollution control and waste management through the publication of timely and reliable information.
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