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Title Technoeconomic analysis of high-value, crystalline silicon photovoltaic module recycling processes
ID_Doc 9072
Authors Cui, H; Heath, G; Remo, T; Ravikumar, D; Silverman, T; Deceglie, M; Kempe, M; Engel-Cox, J
Title Technoeconomic analysis of high-value, crystalline silicon photovoltaic module recycling processes
Year 2022
Published
DOI 10.1016/j.solmat.2022.111592
Abstract Recycling is an important circular economy strategy, and for photovoltaics (PV), the one that has received the greatest research attention. Recycling of PV modules is required in Europe; everywhere else it competes in the market of end-of-life options, where cost is a primary decision factor. The vast majority of PV modules sold globally are crystalline-silicon (c-Si); most of the rest of the market are cadmium telluride thin film modules whose primary manufacturer runs its own commercial-scale recycling program. While many different c-Si recycling approaches and technologies have been proposed, they generally lack accompanying cost estimates or enough process information to model costs. Herein we develop detailed estimates of seven categories of capital and operating costs along with estimates of revenue from recovered materials for each step in two proposed recycling processes for c-Si PV modules. Using these results, we develop a hypothetical third recycling process merging process steps from the original two, estimate surcharges required to achieve minimum sustainable prices for each recycling process, as well as consider how economies of scale could reduce costs. Increasing the purity of and identifying higher-value markets for recovered materials are approaches to reducing costs and increasing recycling rates in voluntary markets.
Author Keywords Crystalline silicon; Photovoltaic; Economic feasibility; Solar; Recycling
Index Keywords Index Keywords
Document Type Other
Open Access Open Access
Source Science Citation Index Expanded (SCI-EXPANDED)
EID WOS:000761243600002
WoS Category Energy & Fuels; Materials Science, Multidisciplinary; Physics, Applied
Research Area Energy & Fuels; Materials Science; Physics
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