Comprehensive recycling of silicon photovoltaic modules incorporating organic solvent delamination - technical, environmental and economic analyses

被引:86
作者
Dias, Pablo [1 ,2 ]
Schmidt, Lucas [2 ]
Lunardi, Marina Monteiro [1 ]
Chang, Nathan L. [1 ]
Spier, Gustavo [2 ]
Corkish, Richard [1 ]
Veit, Hugo [2 ]
机构
[1] Univ New South Wales, Sch Photovolta & Renewable Energy Engn, Sydney, NSW 2052, Australia
[2] Univ Fed Rio Grande do Sul UFRGS, Programa Posgrad Engn Minas Met & Mat PPGE3M, Av Bento Goncalves 9500, Porto Alegre, RS, Brazil
关键词
Crystalline silicon; Material recovery; LCA; LCCA; Recycling; Solar panel;
D O I
10.1016/j.resconrec.2020.105241
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Photovoltaic (PV) panel manufacturing is increasing worldwide, which subsequently increases the amount of waste PV. This study proposes to recycle waste PV using organic solvent delamination followed by downstream thermal and leaching procedures. Firstly, experimental data is obtained using small commercial modules by replicating a recycling route taken from the literature. Based on the experimental results, life cycle cost analysis (LCCA) and life cycle assessment (LCA) are applied to evaluate the experimental and optimized industry scale processes. Results show that the main profitable recycling avenues are for aluminum frame and junction box removal; and that downstream processes can separate and recover all the remaining materials, but not profitably. The laboratory and high-throughput-optimized processes, considering the median costs and revenues, have a net cost of 29.00 and 3.30 USD per module, respectively. The complete recovery of materials using the proposed method is unlikely to be profitable and this may only be achievable where labor is not expensive. Alternatively, the complete recycling of waste PV could be made economically viable by reducing process time, increasing automation and/or providing financial subsidies. The environmental analysis, however, shows that the optimized process modelled here has a positive net environmental impact. The results are also compared against the cost/environmental impact of landfilling such waste. In summary, the proposed recycling route is capable of completely recovering the main materials in waste PV (aluminum frames, junction box, silver, copper tabbing, silicon, backsheet and unbroken glass) and can have a positive environmental impact, but it is not economically profitable.
引用
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页数:14
相关论文
共 60 条
[41]   Metal dissolution from end-of-life solar photovoltaics in real landfill leachate versus synthetic solutions: One-year study [J].
Nain, Preeti ;
Kumar, Arun .
WASTE MANAGEMENT, 2020, 114 (351-361) :351-361
[42]   Initial metal contents and leaching rate constants of metals leached from end-of-life solar photovoltaic waste: An integrative literature review and analysis [J].
Nain, Preeti ;
Kumar, Arun .
RENEWABLE & SUSTAINABLE ENERGY REVIEWS, 2020, 119
[43]  
NCBI, 2020, CID1140 NCBI
[44]   Electro-hydraulic fragmentation vs conventional crushing of photovoltaic panels - Impact on recycling [J].
Nevala, Sanna-Mari ;
Hamuyuni, Joseph ;
Junnila, Tero ;
Sirvio, Tuomas ;
Eisert, Stefan ;
Wilson, Benjamin P. ;
Serna-Guerrero, Rodrigo ;
Lundstrom, Mari .
WASTE MANAGEMENT, 2019, 87 :43-50
[45]   Electronic waste (e-waste): Material flows and management practices in Nigeria [J].
Nnorom, Innocent Chidi ;
Osibanjo, Oladele .
WASTE MANAGEMENT, 2008, 28 (08) :1472-1479
[46]   Revisiting the role of LCA and SLCA in the transition towards sustainable production and consumption [J].
Parent, Julie ;
Cucuzzella, Carmela ;
Reveret, Jean-Pierre .
INTERNATIONAL JOURNAL OF LIFE CYCLE ASSESSMENT, 2013, 18 (09) :1642-1652
[47]  
Philipps S., 2019, Photovoltaics Report
[48]  
Pinho J.T., 2014, Engineering Manual for Photovoltaic Systems
[49]   California households' willingness to pay for 'green' electronics [J].
Saphores, Jean-Daniel M. ;
Nixon, Hilary ;
Ogunseitan, Oladele A. ;
Shapiro, Andrew A. .
JOURNAL OF ENVIRONMENTAL PLANNING AND MANAGEMENT, 2007, 50 (01) :113-133
[50]  
SASIL, 2018, PROG LIFE12 ENV IT 0