2022
DOI: 10.7836/kses.2022.42.3.001
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Silicon Recovery from Solar Module Waste by a Physical Method

Abstract: This paper describes the physical process used to recover silicon from a solar module, where the solar cell recovery rate (87.4 %) was determined under optimized process conditions. This physical recycling method requires a particle separation process because selective separation of the recovered materials is difficult, and the recovery rate and purity of the recovered materials can be low after the initial particle separation. In this study, the recovery rate was determined with respect to the crushing time a… Show more

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Cited by 3 publications
(1 citation statement)
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“…The solar power generation market has been growing rapidly worldwide over the past few years due to increased energy demand, expanded government support, increased interest in environmental pollution, etc., and solar module installations are increasing exponentially in line with this trend [1,2]. As of 2019, the cumulative solar cell installation worldwide exceeds 500 GW, and the total cumulative installation volume is expected to exceed TW by 2023 [3,4].…”
Section: Introductionmentioning
confidence: 99%
“…The solar power generation market has been growing rapidly worldwide over the past few years due to increased energy demand, expanded government support, increased interest in environmental pollution, etc., and solar module installations are increasing exponentially in line with this trend [1,2]. As of 2019, the cumulative solar cell installation worldwide exceeds 500 GW, and the total cumulative installation volume is expected to exceed TW by 2023 [3,4].…”
Section: Introductionmentioning
confidence: 99%