Future Portable Li-Ion Cells’ Recycling Challenges in Poland
Abstract
:1. Introduction
2. Market for Portable Batteries and Accumulators in the European Union (EU) and Poland
3. Li-Ion Battery and Accumulator Stream in Poland
4. Recycling of Used Li-Ion Batteries and Accumulators in Poland
5. Conclusions
Author Contributions
Funding
Conflicts of Interest
References
- Liu, C.; Lin, J.; Cao, H.; Zhang, Y.; Sun, Z. Recycling of spent lithium-ion batteries in view of lithium recovery: A critical review. J. Clean. Prod. 2019, 228, 801–813. [Google Scholar] [CrossRef]
- Zubi, G.; Dufo-López, R.; Carvalho, M.; Pasaoglu, G. The lithium-ion battery: State of the art and future perspectives. Renew. Sustain. Energy Rev. 2018, 89, 292–308. [Google Scholar] [CrossRef]
- Huang, B.; Pan, Z.; Su, X.; An, L. Recycling of lithium-ion batteries: Recent advances and perspectives. J. Power Sources 2018, 399, 274–286. [Google Scholar] [CrossRef]
- He, L.-P.; Sun, S.-Y.; Song, X.-F.; Yu, J.-G. Leaching process for recovering valuable metals from the LiNi1/3Co1/3Mn1/3O2 cathode of lithium-ion batteries. Waste Manag. 2017, 64, 171–181. [Google Scholar] [CrossRef] [PubMed]
- Huang, Y.; Han, G.; Liu, J.; Chai, W.; Wang, W.; Yang, S.; Su, S. A stepwise recovery of metals from hybrid cathodes of spent Li-ion batteries with leaching-flotation-precipitation process. J. Power Sources 2016, 325, 555–564. [Google Scholar] [CrossRef]
- Peng, C.; Hamuyuni, J.; Wilson, B.P.; Lundström, M. reductive leaching of cobalt and lithium from industrially crushed waste Li-ion batteries in sulfuric acid system. Waste Manag. 2018, 76, 582–590. [Google Scholar] [CrossRef]
- Metalary. Available online: https://www.metalary.com/ (accessed on 25 October 2019).
- Lv, W.; Wang, Z.; Cao, H.; Sun, Y.; Zhang, Y.; Sun, Z. A critical review and analysis on the recycling of spent lithium-ion batteries. ACS Sustain. Chem. Eng. 2018, 6, 1504–1521. [Google Scholar] [CrossRef]
- Swain, B. Recovery and recycling of lithium: A review. Sep. Purif. Technol. 2017, 172, 388–403. [Google Scholar] [CrossRef]
- Langkau, S.; Espinoza, L.A.T. Technological change and metal demand over time: What can we learn from the past? Sustain. Mater. Technol. 2018, 16, 54–59. [Google Scholar] [CrossRef]
- Li, L.; Biana, Y.; Zhanga, X.; Xuea, Q.; Fana, E.; Wua, F.; Chen, R. Economical recycling process for spent lithium-ion batteries and macro- and micro-scale mechanistic study. J. Power Sources 2018, 377, 70–79. [Google Scholar] [CrossRef]
- Porvali, A.; Aaltonen, M.; Ojanen, S.; Velazquez-Martinez, O.; Eronen, E.; Liu, F.; Wilson, B.P.; Serna-Guerrero, R.; Lundström, M. Mechanical and hydrometallurgical processes in HCl media for the recycling of valuable metals from Li-ion battery waste. Resour. Conserv. Recycl. 2019, 142, 257–266. [Google Scholar] [CrossRef]
- Dhiman, S.; Gupta, B. Partition studies on cobalt and recycling of valuable metals from waste Li-ion batteries via solvent extraction and chemical precipitation. J. Clean. Prod. 2019, 225, 820–832. [Google Scholar] [CrossRef]
- Ordoñez, J.; Gago, E.J.; Girard, A. Processes and technologies for the recycling and recovery of spent lithium-ion batteries. Renew. Sustain. Energy Rev. 2016, 60, 195–205. [Google Scholar] [CrossRef]
- Eurostat. Available online: http://appsso.eurostat.ec.europa.eu/nui/submitViewTableAction.do/ (accessed on 4 November 2018).
- Accurec Recycling GmbH. Available online: https://accurec.de/battery-market (accessed on 16 November 2018).
- Greenfish. Available online: https://www.greenfish.eu/lithium-ion-batteries-delivering-transition-solutions-to-different-sectors/ (accessed on 4 November 2018).
- Waste Management World. Available online: https://waste-management-world.com/a/in-depth-recycling-to-supply-9-of-global-lithium-demand-by/ (accessed on 4 November 2018).
- Journal of Laws of the Republic of Poland: Dziennik Ustaw Rzeczypospolitej Polskiej: Ustawa z dnia 24 kwietnia 2009 r. o bateriach i akumulatorach, Dz.U. 2009 nr 89 poz. 666 z późn. zm. Available online: http://prawo.sejm.gov.pl/isap.nsf/download.xsp/WDU20090790666/U/D20090666Lj.pdf (accessed on 11 December 2019). (In Polish)
- Chief Inspectorate of Environmental Protection (CIPE). Raport O Funkcjonowaniu Gospodarki Bateriami I Akumulatorami I Zużytymi Akumulatorami Za Rok 2010. Available online: http://www.gios.gov.pl/images/dokumenty/raporty/raport_luty2012.pdf (accessed on 11 December 2019). (In Polish)
- Chief Inspectorate of Environmental Protection (CIPE). Raport O Funkcjonowaniu Gospodarki Bateriami I Akumulatorami I Zużytymi Akumulatorami Za Rok 2011. Available online: http://www.gios.gov.pl/images/dokumenty/raporty/raport_baterie_2011.pdf (accessed on 11 December 2019). (In Polish)
- Chief Inspectorate of Environmental Protection (CIPE). Raport O Funkcjonowaniu Gospodarki Bateriami I Akumulatorami I Zużytymi Akumulatorami Za Rok 2012. Available online: http://www.gios.gov.pl/images/dokumenty/raporty/Raport_2012.pdf (accessed on 11 December 2019). (In Polish)
- Chief Inspectorate of Environmental Protection (CIPE). Raport O Funkcjonowaniu Gospodarki Bateriami I Akumulatorami I Zużytymi Akumulatorami Za Rok 2013. Available online: http://www.gios.gov.pl/images/dokumenty/raporty/Raport_2013_20140708.pdf (accessed on 11 December 2019). (In Polish)
- Chief Inspectorate of Environmental Protection (CIPE). Raport O Funkcjonowaniu Gospodarki Bateriami I Akumulatorami I Zużytymi Akumulatorami Za Rok 2014. Available online: http://www.gios.gov.pl/images/dokumenty/raporty/raport2014.pdf (accessed on 11 December 2019). (In Polish)
- Chief Inspectorate of Environmental Protection (CIPE). Raport O Funkcjonowaniu Gospodarki Bateriami I Akumulatorami I Zużytymi Akumulatorami Za Rok 2015. Available online: http://www.gios.gov.pl/images/dokumenty/raporty/raport_baterie_2015.pdf (accessed on 11 December 2019). (In Polish)
- Chief Inspectorate of Environmental Protection (CIPE). Raport O Funkcjonowaniu Gospodarki Bateriami I Akumulatorami I Zużytymi Akumulatorami Za Rok 2016. Available online: http://www.gios.gov.pl/images/dokumenty/raporty/Raport_bateryjny_2016.pdf (accessed on 11 December 2019). (In Polish)
- Chief Inspectorate of Environmental Protection (CIPE). Raport O Funkcjonowaniu Gospodarki Bateriami I Akumulatorami I Zużytymi Akumulatorami Za Rok 2017. Available online: http://www.gios.gov.pl/images/dokumenty/raporty/Raport_bateryjny_2017.pdf (accessed on 11 December 2019). (In Polish)
- European Council. European Directive on Batteries and Accumulators 2006/66/EC. Available online: https://eur-lex.europa.eu/legal-content/EN/ALL/?uri=CELEX%3A32006L0066 (accessed on 11 December 2019).
- Statista. Available online: https://www.statista.com/statistics/272595/global-shipments-forecast-for-tablets-laptops-and-desktop-pcs/ (accessed on 31 October 2018).
- Journal of Laws of the Republic of Poland: Rozporządzenie Ministra Środowiska z dnia 3 grudnia 2009 r. w sprawie rocznych poziomów zbierania zużytych baterii przenośnych i zużytych akumulatorów przenośnych, Dz.U. 2009 nr 215 poz. 1671. Available online: http://prawo.sejm.gov.pl/isap.nsf/download.xsp/WDU20092151671/O/D20091671.pdf (accessed on 11 December 2019). (In Polish)
- Sobianowska-Turek, A. Hydrometallurgical recovery of metals: Ce, La, Co, Fe, Mn, Ni and Zn from the stream of used Ni-MH cells. Waste Manag. 2018, 77, 213–219. [Google Scholar] [CrossRef]
- Rogulski, Z.; Czerwiński, A. Market of portable batteries and accumulators. Przem. Chem. 2014, 93, 709–712. (In Polish) [Google Scholar] [CrossRef]
- Rogulski, Z.; Dłubak, J. Batteries and accumulators in Europe. Przem. Chem. 2014, 93, 704–708. (In Polish) [Google Scholar] [CrossRef]
- Velázquez-Martínez, O.; Valio, J.; Santasalo-Aarnio, A.; Reuter, M.; Serna-Guerrero, R. A critical review of lithium-ion battery recycling processes from a circular economy perspective. Batteries 2019, 5, 68. [Google Scholar] [CrossRef] [Green Version]
- Petranikova, M.; Ebin, B.; Mikhailova, S.; Steenari, B.-M.; Ekberg, C. Investigation of the effects of thermal treatment on the leachability of Zn and Mn from discarded alkaline and ZnC batteries. J. Clean. Prod. 2018, 170, 1195–1205. [Google Scholar] [CrossRef]
- Winiarska, K.; Klimkiewicz, R.; Tylus, W.; Sobianowska-Turek, A.; Winiarski, J.; Szczygieł, B.; Szczygieł, I. Study of the catalytic activity and surface properties of manganese-zinc ferrite prepared from used batteries. J. Chem. 2019. [Google Scholar] [CrossRef]
- Szczygieł, I.; Winiarska, K.; Sobianowska-Turek, A. The study of thermal, microstructural and magnetic properties of manganese-zinc ferrite prepared by co-precipitation method using different precipitants. J. Anal. Calorim. 2018, 134, 51–57. [Google Scholar] [CrossRef] [Green Version]
- Meshrama, P.; Mishra, A.; Sahub, R. Environmental impact of spent lithium ion batteries and green recycling perspectives by organic acids—A review. Chemosphere 2020, 242, 125291. [Google Scholar] [CrossRef]
- BatEko. Available online: http://www.bateko.com.pl/ (accessed on 3 December 2019).
- Grupa Eneris. Available online: http://www.eneris.pl/ (accessed on 3 December 2019).
- MB Recycling. Available online: https://mbrecycling.pl/ (accessed on 3 December 2019).
- Biosystem S.A. Available online: http://www.biosystem.pl/ (accessed on 3 December 2019).
- MarCo Ltd Sp. z o.o. Available online: http://marcoltd.pl/ (accessed on 3 December 2019).
- EKO HARPOONRecykling Sp. z o.o. Available online: http://www.ekoharpoon-recykling.pl/ (accessed on 3 December 2019).
- Baterpol S.A. Available online: http://www.baterpol.pl/ (accessed on 3 December 2019).
- Orzeł Biały S.A. Available online: http://www.orzel-bialy.com.pl/pl/ (accessed on 3 December 2019).
- ZM Silesia S.A. Available online: http://hutaolawa.pl/ (accessed on 3 December 2019).
- Sobianowska-Turek, A.; Szczepaniak, W.; Maciejewski, P.; Gawlik-Kobylińska, M. Recovery of zinc and manganese, and other metals (Fe, Cu, Ni, Co, Cd, Cr, Na, K) from Zn-MnO2 and Zn-C waste batteries: Hydroxyl and carbonate co-precipitation from solution after reducing acidic leaching with use of oxalic acid. J. Power Sources 2016, 325, 220–228. [Google Scholar] [CrossRef]
- Institute of Non-Ferrous Metals (IMN). Method of Recycling Used Batteries, Particularly Carbon-Zinc Batteries. PL Patent 198,317 B1, 23 April 2002. [Google Scholar]
- KGHM Metraco S.A. Method for Disposal of Waste Zn-C and Zn-Mn Batteries Remaining after Separation of Ferromagnetic Fraction. PL Patent 220,853 B1, 25 August 2011. [Google Scholar]
- Metalary. Available online: http://www.metalary.com/scrap-metal-prices/ (accessed on 5 December 2019).
- University of Warsaw. Available online: http://www.uott.uw.edu.pl/rdls-pge-s-a-dotacja-opracowanie-technologii-recyklingu-baterii-litowo-jonowych/ (accessed on 5 December 2019).
- Business Insider Polska. Available online: https://businessinsider.com.pl/technologie/nowe-technologie/recykling-starych-baterii-szansa-na-nowy-przemysl-dla-polski/244r9tq (accessed on 5 December 2019).
- Stena Recycling. Available online: https://www.stenarecycling.pl/zrownowazony-recykling/innowacje-w-recyklingu/badania-nad-akumulatorami-litowo-jonowymi/ (accessed on 5 December 2019).
Year | 2010 | 2011 | 2012 | 2013 | 2014 | 2015 | 2016 | 2017 |
---|---|---|---|---|---|---|---|---|
Zn-Mn, Zn-C, Zn-O2 | 5976.3 | 5451.3 | 5715.3 | 6515.3 | 7371.5 | 7343.4 | 7540.4 | 8259.9 |
Ni-Cd | 662.9 | 660.1 | 489.4 | 449.4 | 606.2 | 375.2 | 390.5 | 212.6 |
Pb | 348.9 | 369.5 | 296.3 | 413.6 | 409.7 | 416.5 | 281.7 | 413.4 |
Button-type batteries and accumulators without Hg | 179.3 | 153.3 | 113.9 | 143.6 | 141.8 | 186.9 | 232.0 | 279.6 |
Button-type batteries and accumulators from Hg | 2.4 | 3.6 | 5.6 | 22.5 | 8.27 | 7.8 | 16.3 | 8.4 |
Other batteries and accumulators | 2696.5 | 3133.4 | 3978.6 | 3719.4 | 3261.3 | 3875.5 | 4124.3 | 4096.0 |
Name of Technology | Recycling Method | Type of Remanufactured Battery | Recovered Metals and Compounds |
---|---|---|---|
BatEko | Mechanical processing | Zn–C Zn–Mn Zn–Air |
|
Grupa Eneris | Mechanical processing | Zn–C Zn–Mn Zn–Air |
|
MB Recycling Sp. z o. o. | Mechanical processing | Zn–C Zn–Mn Zn–Air |
|
Biosystem S. A. | Mechanical processing | Zn–C Zn–Mn Zn–Air Ni–Cd |
|
MarCo Ltd. Sp. z o. o. | Mechanical processing | Ni–Cd |
|
Eco Harpoon Recycling Sp. z o.o. | Mechanical processing | Zn–C Zn–Mn Zn–Air |
|
Ni–Cd Batteries containing mercury |
| ||
Baterpol S.A. | Pyrometallurgical | Pb–acid |
|
Orzeł Biały S.A. | Pyrometallurgical | Pb–acid |
|
ZM Silesia S.A. | Pyrometallurgical | Ni–Cd |
|
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Sobianowska-Turek, A.; Urbańska, W. Future Portable Li-Ion Cells’ Recycling Challenges in Poland. Batteries 2019, 5, 75. https://doi.org/10.3390/batteries5040075
Sobianowska-Turek A, Urbańska W. Future Portable Li-Ion Cells’ Recycling Challenges in Poland. Batteries. 2019; 5(4):75. https://doi.org/10.3390/batteries5040075
Chicago/Turabian StyleSobianowska-Turek, Agnieszka, and Weronika Urbańska. 2019. "Future Portable Li-Ion Cells’ Recycling Challenges in Poland" Batteries 5, no. 4: 75. https://doi.org/10.3390/batteries5040075
APA StyleSobianowska-Turek, A., & Urbańska, W. (2019). Future Portable Li-Ion Cells’ Recycling Challenges in Poland. Batteries, 5(4), 75. https://doi.org/10.3390/batteries5040075