Research and development priorities for silicon photovoltaic module recycling to support a circular economy

Nature Energy - Tập 5 Số 7 - Trang 502-510
Garvin Heath1, Timothy J. Silverman1, Michael Kempe1, Michael G. Deceglie1, Dwarakanath Ravikumar2, Timothy Remo1, Hao Cui3, Parikhit Sinha4, Cara Libby5, Stephanie L. Shaw5, Keiichi Komoto4, K. Wambach6, Evelyn Butler7, Teresa M. Barnes1, Andreas Wade8
1National Renewable Energy Laboratory, Golden, CO USA
2School for Environment and Sustainability, University of Michigan, Ann Arbor, MI, USA
3Metallurgical and Materials Engineering Department, Colorado School of Mines, CO, USA
4International Energy Agency, Photovoltaics Power Systems Technology Collaboration Programme, Task 12 Sustainability, St. Ursen, Switzerland
5Electric Power Research Institute, Palo Alto, CA, USA
6Wambach-Consulting, Aindling, Germany
7Solar Energy Industries Association, Washington, DC, USA
8First Solar Inc., Tempe, AZ, USA

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Trends in Photovoltaic Applications 2019 (International Energy Agency Photovoltaics Power Systems Technology Collaboration Programme, 2019).

Photovoltaics Report (Fraunhofer ISE, 2018).

Hsu, D. et al. Life cycle greenhouse gas emissions from crystalline silicon photovoltaic electricity generation: Systematic review and harmonization. J. Ind. Ecol. 16, S122–S135 (2012).

National Solar Jobs Census 2019 (The Solar Foundation, 2020).

End-of-Life Management: Solar Photovoltaic Panels IEA-PVPS Task 12, Report #T12–06:2016 (International Renewable Energy Agency, International Energy Agency Photovoltaics Power Systems Technology Collaboration Programm, 2016).

Baldé, C. P., Forti, V., Gray, V., Kuehr, R. & Stegmann, P. The Global E-waste Monitor – 2017 (United Nations University, International Telecommunication Union, International Solid Waste Association, 2018).

Mahmoudi, S., Huda, N. & Behnia, M. Photovoltaic waste assessment: Forecasting and screening of emerging waste in Australia. Resour. Conserv. Recycl. 146, 192–205 (2019).

Domínguez, A. & Geyer, R. Photovoltaic waste assessment of major photovoltaic installations in the United States of America. Renew. Energy https://doi.org/10.1016/j.renene.2018.08.063 (2018).

Santos, J. D. & Alonso-García, M. C. Projection of the photovoltaic waste in Spain until 2050. J. Clean. Prod. 196, 1613–1628 (2018).

Paiano, A. Photovoltaic waste assessment in Italy. Renew. Sustain. Energy Rev. 41, 99–112 (2015).

Wade, A., Sinha, P., Drozdiak, K. & Brutsch, E. Beyond waste – the fate of end-of-life photovoltaic panels from large scale PV installations in the EU - the socio-economic benefits of high value recycling compared to reuse. In Proc. 33rd European Photovoltaic Solar Energy Conference Amsterdam 1507–1514 (WIP Wirtschaft und Infrastruktur GmbH & Co Planungs-KG, 2017).

Huang, B. et al. Environmental influence assessment of China’s multi-crystalline silicon (multi-Si) photovoltaic modules considering recycling process. Sol. Energy 143, 132–141 (2017).

Müller, A., Wambach, K. & Alsema, E. Life cycle analysis of solar module recycling process. In Proc. 20th European Photovoltaic Solar Energy Conference 3211–3213 (WIP Wirtschaft und Infrastruktur GmbH & Co Planungs-KG, 2005).

Lunardi, M., Alvarez-Gaitan, J., Bilbao, J. & Corkish, R. Comparative life cycle assessment of end-of-life silicon solar photovoltaic modules. Appl. Sci. 8, 1396 (2018).

Stolz, P., Frischknecht, R., Wambach, K., Sinha, P. & Heath, G. Life Cycle Assessment of Current Photovoltaic Module Recycling IEA PVPS Task 12 Report #T12–T13:2018 (International Energy Agency Photovoltaic Power Systems Programme, 2018).

Directive 2012/19/EU of the European Parliament and of the Council of 4 July 2012 on Waste Electrical and Electronic Equipment (WEEE) (recast) (European Commission, 2012).

EN50625-2-4:2017, Collection, logistics & treatment requirements for WEEE - Part 2–4: Treatment requirements for photovoltaic panels. CENELEC https://www.cenelec.eu/dyn/www/f?p=104:110:124258077628101::::FSP_ORG_ID,FSP_PROJECT,FSP_LANG_ID:1258637,59265,25 (2017).

Photovoltaic module stewardship and takeback program. RCW 70.355.010. Washington State Legislature https://app.leg.wa.gov/RCW/default.aspx?cite=70.355.010 (2020).

Preparation of a Recycling Scheme for Future Waste such as PV Panel (in Korean) (Korean Ministry of Environment (2018); http://www.me.go.kr/home/web/board/read.do?menuId=286&boardMasterId=1&boardCategoryId=39&boardId=913050

Dudley, M. Victorian e-Waste Materials Flow Analysis: PV Panels and Systems - Part 3 Report (Sustainability Victoria, Randell Environmental Consulting, 2017).

Concept Note/Blue Print on Management of Antimony Containing Glass from End-of-Life of the Solar PV Panels (Ministry of New and Renewable Energy, 2019); http://164.100.94.214/sites/default/files/webform/notices/DraftBluePrintAntimony.pdf

Guidelines for Promoting Recycling of Solar Power Generation Equipment 2nd edn (Japanese Ministry of the Environment, 2018); https://www.env.go.jp/press/files/jp/110488.pdf

Wambach, K., Heath, G. & Libby, C. Life Cycle Inventory of Current Photovoltaic Module Recycling Processes in Europe IEA-PVPS Task 12 Report #T12–T12:2017 (International Energy Agency Photovoltaic Power Systems Programme, 2017).

Solar PV Module End of Life: Options and Knowledge Gaps for Utility-Scale Plants (Electric Power Research Institute, 2018).

Komoto, K. et al. End-of-Life Management of Photovoltaic Panels: Trends in PV Module Recycling Technologies IEA PVPS Task 12 Report #T12–10:2018 (International Energy Agency Photovoltaic Power Systems Programme, 2018).

Deng, R., Chang, N. L., Ouyang, Z. & Chong, C. M. A techno-economic review of silicon photovoltaic module recycling. Renew. Sustain. Energy Rev. 109, 532–550 (2019).

Tsanakas, J. A. et al. Towards a circular supply chain for PV modules: Review of today’s challenges in PV recycling, refurbishment and re-certification. Prog. Photovolt. Res. Appl. 28, 454–464 (2019).

Latunussa, C., Mancini, L., Blengini, G., Ardente, F. & Pennington, D. Analysis of Material Recovery from Silicon Photovoltaic Panels EUR 27797 (Publications Office of the European Union, 2016).

Latunussa, C., Ardente, F., Blengini, G. & Mancini, L. Life cycle assessment of an innovative recycling process for crystalline silicon photovoltaic panels. Sol. Energy Mater. Sol. Cells 156, 101–111 (2016).

Ercole, P. FRELP 2 Project – full recovery end of life photovoltaic. In Proc. 32nd European Photovoltaic Solar Energy Conference 1775–1783 (WIP GmbH & Co Planungs-KG, 2016).

Huang, W., Shin, W., Wang, L., Sun, W. & Tao, M. Strategy and technology to recycle wafer-silicon solar modules. Sol. Energy 144, 22–31 (2017).

Wang T., Hsiao J. & Du C. Recycling of materials from silicon base solar cell module. In Proc. 38th IEEE Photovoltaic Specialists Conference 2355–2358 (Institute for Electrical and Electronics Engineers, 2011).

Woodhouse, M. Smith B., Ramdas A. & Margolis R. Crystalline Silicon Photovoltaic Module Manufacturing Costs and Sustainable Pricing: 1H 2018 Benchmark and Cost Reduction Roadmap (National Renewable Energy Laboratory, 2019); https://www.nrel.gov/docs/fy19osti/72134.pdf.

Silicon metals. Shanghai Metals Market https://price.metal.com/Silicon (2018).

PV spot price. Energy Trend https://www.energytrend.com/solar-price.html (2018).

Liu, Z. et al. Revisiting thin silicon for photovoltaics: A technoeconomic perspective. Energy Environ. Sci. https://doi.org/10.1039/c9ee02452b (2020).

Terheiden, B. et al. Manufacturing 100-µm-thick silicon solar cells with efficiencies greater than 20% in a pilot production line. Physica status solidi (a) 212, 13–24 (2015).

World Energy Outlook 2017: China (International Energy Agency, 2017); https://www.iea.org/reports/world-energy-outlook-2017-china.

Trends in Photovoltaic Applications 2018 Report IEA PVPS T1–34:2018 (International Energy Agency, Photovoltaics Power Systems Technology Collaboration Programme, 2018).

Ravikumar, D., Wender, B., Seager, T. P., Fraser, M. P. & Tao, M. A Climate Rationale for Research and Development on Photovoltaics Manufacture. Appl. Energy 189, 245–256 (2017).

Peng, J., Lu, L. & Yang, H. Review on life cycle assessment of energy payback and greenhouse gas emission of solar photovoltaic systems. Renew. Sustain. Energy Rev. 19, 255–274 (2013).

Olson, C., Geerligs, B., Goris, M., Bennett, I. & Clyncke, J. Current and future priorities for mass and material in silicon PV module recycling. In Proc. 8th European Photovoltaic Solar Energy Conference and Exhibition 4629–4633 (WIP Wirtschaft und Infrastruktur GmbH & Co Planungs-KG, 2013).

Fu, Y., Liu, X. & Yuan, Z. Life-Cycle assessment of multi-crystalline photovoltaic (PV) systems in China. J. Clean. Prod. 86, 180–190 (2015).

Bohland, J. R. & Anisimov, I. I. Possibility of recycling silicon PV modules. In Proc. 26th Photovoltaic Specialists Conference 1173–1175 (IEEE, 1997).

Frisson, L. Recent improvements in industrial PV module recycling. In Proc. 16th European Photovoltaic Solar Energy Conference and Exhibition (WIP Wirtschaft und Infrastruktur GmbH & Co Planungs-KG, 2000).

Schlenker, S. et al. The second life of a 300 kw PV generator manufactured with recycled wafers from the oldest German PV power plant. In Proc. 21st European Photovoltaic Solar Energy Conference (WIP Wirtschaft und Infrastruktur GmbH & Co Planungs-KG, 2006).

Köntges, M., Kajari-Schröder, S. & Kunze, I. Crack statistic for wafer-based silicon solar cell modules in the field measured by UV fluorescence. IEEE J. Photovoltaics 3, 95–101 (2013).

Reil, F., Althaus, J., Vaassen, W., Herrmann, W. & Strohkendl, K. The effect of transportation impacts and dynamic load tests on the mechanical and electrical behavior of crystalline PV modules. In Proc. 5th World Conference on Photovoltaic Energy Conversion 3989–3992 (WIP Wirtschaft und Infrastruktur GmbH & Co Planungs-KG, 2010).

Morlier, A., Siebert, M., Kunze, I., Mathiak, G. & Kontges, M. Detecting photovoltaic module failures in the field during daytime with ultraviolet fluorescence module inspection. IEEE J. Photovoltaics 7, 1710–1716 (2017).

Philipps, S. & Warmuth, W. Photovoltaics Report (Fraunhofer ISE, 2018).

International Technology Roadmap for Photovoltaic (VDMA, 2018).

Syvertsen, M. et al. Recycling of broken Si based structures and solar cells. In Proc. 32 nd European Photovoltaic Solar Energy Conference 1768–1774 (WIP Wirtschaft und Infrastruktur GmbH & Co Planungs-KG, 2016).

Draoua, A. D. et al. On the fabrication of solar cells based on newly produced recycled silicon feedstocks from Cabriss – a comparative study between material properties and solar cells performances. In Proc. 33rd European Photovoltaic Solar Energy Conference 483–487 (WIP Wirtschaft und Infrastruktur GmbH & Co Planungs-KG, 2017).

Davis, J. R. et al. Impurities in silicon solar cells. IEEE Trans. Electron Devices 27, 677–687 (1980).

Coletti, G. et al. Impact of metal contamination in silicon solar cells. Adv. Func. Mater. 21, 879–890 (2011).

Seigneur, H. et al. Manufacturing metrology for c-Si photovoltaic module reliability and durability, part I: feedstock, crystallization and wafering. Renew. Sustain. Energy Rev. 59, 84–106 (2016).

SEMI PV17–1012 Specification for Virgin Silicon Feedstock Materials for Photovoltaic Applications (SEMI, 2012).

Davis, J. R., Hopkins, R. H. & Rohatgi, A. Definitions of solar grade silicon. In Proc. Third Symposium on Materials and New Processing Technologies for Photovoltaics (Electrochemical Society, 1982).

Naumann, V. et al. Explanation of potential-induced degradation of the shunting type by Na decoration of stacking faults in Si solar cells. Sol. Energy Mater. Sol. Cells 120, 383–389 (2014).

Aasly, K. Properties and Behavior of Quartz for The Silicon Process. PhD thesis, Norwegian University of Science and Technology (2008); https://core.ac.uk/download/pdf/52098782.pdf

Wender, B. A. et al. Illustrating anticipatory life cycle assessment for emerging photovoltaic technologies. Environ. Sci. Technol. 48, 10531–10538 (2014).

Powell, D. M. et al. The capital intensity of photovoltaics manufacturing: barrier to scale and opportunity for innovation. Energy Environ. Sci. 8, 3395–3408 (2015).

Müller, A., Wambach, K. & Alsema, E. Life cycle analysis of solar module recycling process. MRS Proc. 895, G03–G07 (2005).

Takami, K. et al. Effect of HF and HNO3 concentration on etching rate of each component in waste crystalline silicon solar cells. Mater. Trans. 56, 2047–2052 (2015).

Klugmann-Radziemska, E. & Ostrowski, P. Chemical treatment of crystalline silicon solar cells as a method of recovering pure silicon from photovoltaic modules. Renew. Energy 35, 1751–1759 (2010).

Huang, W. H. & Tao, M. A simple green process to recycle Si from crystalline-Si solar cells. In Proc. 2015 IEEE 42nd Photovoltaic Specialty Conference 1–4 (Institute of Electrical and Electronics Engineers Inc., 2015).

Park, J., Kim, W., Cho, N., Lee, H. & Park, N. An eco-friendly method for reclaimed silicon wafers from a photovoltaic module: from separation to cell fabrication. Green Chem. 18, 1706–1714 (2016).

Dias, P., Javimczik, S., Benevit, M., Veit, H. & Bernardes, A. M. Recycling WEEE: extraction and concentration of silver from waste crystalline silicon photovoltaic modules. Waste Manag. 57, 220–225 (2016).

Doi, T. et al. Experimental study on PV module recycling with organic solvent method. Sol. Energy Mater. Sol. Cells 67, 397–403 (2001).

Huang, W. H., Shin, W. J., Wang, L. & Tao, M. Recovery of valuable and toxic metals from crystalline-Si modules. In Proc. IEEE 42nd Photovoltaic Specialty Conference 3602–3605 (Institute of Electrical and Electronics Engineers Inc., 2016); https://doi.org/10.1109/PVSC.2017.8366856.

Sinha, P., Raju, S., Drozdiak, K. & Wade, A. Life cycle management and recycling of PV systems, Photovolt. Int. 38, 47–50 (2017).

Liang, T. S. et al. A review of crystalline silicon bifacial photovoltaic performance characterisation and simulation. Energy Environ. Sci. 12, 116–148 (2019).

Tamizhmani, G. et al. Evaluating PV module sample removal methods for TCLP testing. In Proc. 2018 IEEE 7th World Conference on Photovoltaic Energy Conversion (WCPEC) 2610–2615 (Institute of Electrical and Electronics Engineers Inc., 2018).

Ravikumar, D., Sinha, P., Seager, T. P. & Fraser, M. P. An anticipatory approach to quantify energetics of recycling CdTe photovoltaic systems. Prog. Photovolt. Res. Appl. 24, 735–746 (2016).

Della Rosa, F. Circular Economy: Solar Panel Recycling. La Mia Energia. Presentation at PV in the Circular Economy Workshop (National Renewable Energy Laboratory, 2019).

Jordan, D. C., Silverman, T. J., Wohlgemuth, J. H., Kurtz, S. R. & VanSant, K. T. photovoltaic failure and degradation modes. Prog. Photovolt. Res. Appl. 25, 318–326 (2017).

Dupuis, J. et al. NICE module technology – from the concept to mass production: a 10 years review. In Proc. 38th IEEE Photovoltaic Specialty Conference (Institute of Electrical and Electronics Engineers Inc., 2012).

What is cradle to cradle certified? Cradle to Cradle Products Innovation Institute https://www.c2ccertified.org/get-certified/product-certification (2020).

Sustainability Leadership Standard for Photovoltaic Modules and Photovoltaic Inverters NSF/ANSI 457 – 2019 (National Sanitation Foundation and American National Standards Institute, 2019); https://www.techstreet.com/standards/nsf-457-2019?product_id=2091842.

Woditsch, P. & Koch, W. Solar grade silicon feedstock supply for PV industry. Sol. Energy Mater. Sol. Cells 72, 11–26 (2002).

Veolia opens the first European plant entirely dedicated to recycling photovoltaic panels. Veolia https://www.veolia.com/en/newsroom/news/recycling-photovoltaic-panels-circular-economy-france (2018).

Wiederverwertung von Photovoltaikmodulen. Suez https://www.suez-deutschland.de/leistungen/verwertungstechnologien/photovoltaikrecycling/ (2018).

Bestätigte abholvorgänge. Stiftung EAR https://www.stiftung-ear.de/de/service/statistische-daten/bestaetigte-abholungen (2019).

Statistical data set: waste electrical and electronic equipment (WEEE) in the UK. UK Environment Agency https://www.gov.uk/government/statistical-data-sets/waste-electrical-and-electronic-equipment-weee-in-the-uk (2019).

Rapport annuel du registre des Déchets d'équipements électriques et électroniques: Données 2017. ADEME (French Environment & Energy Management Agency) https://www.ademe.fr/rapport-annuel-registre-dechets-dequipements-electriques-electroniques-donnees-2017 (2018).

Barème des Écoparticipations (PV CYCLE France, 2020); https://www.pvcycle.fr/https-www-pvcycle-fr-wp-content-uploads-pv-cycle-france-bareme-des-eco-participations-2020-en-pdf

Regelsetzung Garantiehöhe (PBÜ). Stiftung Elektro-Altgeräte Register https://www.stiftung-ear.de/de/herstellerbevollmaechtigte/produktbereiche-regelsetzung-und-regeln/produktuebergreifende-arbeitsgruppe/regelsetzung-garantiehoehe (2018).

A List of Intermediate Processors which can Treat PV Modules Properly (Japan Photovoltaic Energy Association, 2019); http://www.jpea.gr.jp/pdf/t180827.pdf

Announcement on Dissolution of Joint Venture (NPC Incorporated, 2019); http://contents.xj-storage.jp/xcontents/62550/4190e7da/80d9/4e6e/9913/6dc99f5bc4a7/20190627150819652s.pdf

Products and Services: Photovoltaic Panels Reuse/Recycling. NPC Incorporated https://www.npcgroup.net/eng/product_and_service/reuse_recycle_e.html (2019).

Interim Report of Committee for a Mass-Introduction of Renewable Energy and Future Electricity Networks (in Japanese) (Japanese Ministry of the Economy, Trade and Industry, 2019); https://www.meti.go.jp/shingikai/enecho/denryoku_gas/saisei_kano/pdf/20190128001_01.pdf

SEIA National PV Recycling Program. SEIA (Solar Energy Industries Association) https://www.seia.org/initiatives/seia-national-pv-recycling-program (2019).

Butler, E. PV End-of-life management. AdminMonitor http://www.adminmonitor.com/ca/cpuc/workshop/20190403/(2019).

California Product Stewardship Council, Solar Panel & Battery Recycling. The time to do something is now. AdminMonitor http://www.adminmonitor.com/ca/cpuc/workshop/20190403/ (2019).