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2020 | OriginalPaper | Buchkapitel

Demo Retrofit Study of a Chinese Inspired Cell Technology

verfasst von : Marc Dupuis, Valdis Bojarevics

Erschienen in: Light Metals 2020

Verlag: Springer International Publishing

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Abstract

For many years, the authors have been demonstrating their cell modeling tools and cell retrofit skills using those modeling tools to present demonstration cell retrofit studies. One recent series of cell retrofit studies leads to the presentation of a cell design predicted to be able to operate at 10 kWh/kg of Al. The authors now embark on a new demonstration retrofit study this time using a Chinese cell technology inspired base case as a starting point. There are plenty of public domain information on Chinese cell technology: potshell, busbar and lining design, so that Chinese cell technology inspired base case cell design is quite similar to existing Chinese cell technologies. This first retrofit study aims at demonstrating the huge potential of productivity increase that those existing Chinese cell technologies represent without compromising the power efficiency.

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Literatur
1.
Zurück zum Zitat M. Dupuis, “Thermo-Electric Design of a 400 kA Cell using Mathematical Models: A Tutorial”, TMS Light Metals, 2000, 297–302. M. Dupuis, “Thermo-Electric Design of a 400 kA Cell using Mathematical Models: A Tutorial”, TMS Light Metals, 2000, 297–302.
2.
Zurück zum Zitat M. Dupuis, “Thermo-Electric Design of a 500 kA Cell”, ALUMINIUM 79(7/8), 2003, 629–631. M. Dupuis, “Thermo-Electric Design of a 500 kA Cell”, ALUMINIUM 79(7/8), 2003, 629–631.
3.
Zurück zum Zitat M. Dupuis, V. Bojarevics and J. Freibergs, “Demonstration Thermo-Electric and MHD Mathematical Models of a 500 kA Al Electrolysis cell”, Proceedings of the 42nd Conference on Light Metals, CIM, 2003, 3–20. M. Dupuis, V. Bojarevics and J. Freibergs, “Demonstration Thermo-Electric and MHD Mathematical Models of a 500 kA Al Electrolysis cell”, Proceedings of the 42nd Conference on Light Metals, CIM, 2003, 3–20.
4.
Zurück zum Zitat M. Dupuis, V. Bojarevics and J. Freibergs, “Demonstration Thermo-Electric and MHD Mathematical Models of a 500 kA Al Electrolysis cell: Part 2”, TMS Light Metals, 2004, 453–459. M. Dupuis, V. Bojarevics and J. Freibergs, “Demonstration Thermo-Electric and MHD Mathematical Models of a 500 kA Al Electrolysis cell: Part 2”, TMS Light Metals, 2004, 453–459.
5.
Zurück zum Zitat M. Dupuis, “Thermo-Electric Design of a 740 kA Cell, Is There a Size Limit”, ALUMINIUM 81(4), 2005, 324–327. M. Dupuis, “Thermo-Electric Design of a 740 kA Cell, Is There a Size Limit”, ALUMINIUM 81(4), 2005, 324–327.
6.
Zurück zum Zitat M. Dupuis, V. Bojarevics and D. Richard, “MHD and pot mechanical design of a 740 kA cell” ALUMINIUM 82(5), 2006, 442–446. M. Dupuis, V. Bojarevics and D. Richard, “MHD and pot mechanical design of a 740 kA cell” ALUMINIUM 82(5), 2006, 442–446.
7.
Zurück zum Zitat M. Dupuis and V. Bojarevics, “Retrofit of a 500 kA Cell Design into a 600 kA Cell Design”, ALUMINIUM 87(1/2), 2011, 52–55. M. Dupuis and V. Bojarevics, “Retrofit of a 500 kA Cell Design into a 600 kA Cell Design”, ALUMINIUM 87(1/2), 2011, 52–55.
8.
Zurück zum Zitat M. Dupuis, “A new aluminium electrolysis cell busbar network concept”, Proceedings of 33rd International ICSOBA Conference, Dubai, UAE, 29 November—1 December 2015, Paper AL21, Travaux No. 44, 699–708. M. Dupuis, “A new aluminium electrolysis cell busbar network concept”, Proceedings of 33rd International ICSOBA Conference, Dubai, UAE, 29 November—1 December 2015, Paper AL21, Travaux No. 44, 699–708.
9.
Zurück zum Zitat M. Dupuis, “New Busbar Network Concepts Taking Advantage of Copper Collector Bars to Reduce Busbar Weight and Increase Cell Power Efficiency”, Proceedings of 34th International ICSOBA Conference, Travaux No. 45, Quebec, Canada, 3—6 October 2016, Paper AL39. M. Dupuis, “New Busbar Network Concepts Taking Advantage of Copper Collector Bars to Reduce Busbar Weight and Increase Cell Power Efficiency”, Proceedings of 34th International ICSOBA Conference, Travaux No. 45, Quebec, Canada, 3—6 October 2016, Paper AL39.
10.
Zurück zum Zitat M. Dupuis, “Low Energy Consumption Cell Designs Involving Copper Inserts and an Innovative Busbar Network Layout”, TMS Light Metals, 2017, 693–703. M. Dupuis, “Low Energy Consumption Cell Designs Involving Copper Inserts and an Innovative Busbar Network Layout”, TMS Light Metals, 2017, 693–703.
11.
Zurück zum Zitat M. Dupuis and B. Welch, “Designing cells for the future—Wider and/or even higher amperage?”, ALUMINIUM 93(1/2), 2017, 45–49. M. Dupuis and B. Welch, “Designing cells for the future—Wider and/or even higher amperage?”, ALUMINIUM 93(1/2), 2017, 45–49.
12.
Zurück zum Zitat M. Dupuis, “Very Low Energy Consumption Cell Design: The Cell Heat Balance Challenge”, TMS Light Metals, 2018, 689–697. M. Dupuis, “Very Low Energy Consumption Cell Design: The Cell Heat Balance Challenge”, TMS Light Metals, 2018, 689–697.
13.
Zurück zum Zitat M. Dupuis, “Breaking the 11 kWh/kg Al barrier”, ALUMINIUM 94(1/2), 2018, 30–34. M. Dupuis, “Breaking the 11 kWh/kg Al barrier”, ALUMINIUM 94(1/2), 2018, 30–34.
14.
Zurück zum Zitat M. Dupuis, “How to Limit the Heat Loss of Anode Studs and Cathode Collector Bars in Order to Reduce Cell Energy Consumption”, TMS Light Metals, 2019, 521–531. M. Dupuis, “How to Limit the Heat Loss of Anode Studs and Cathode Collector Bars in Order to Reduce Cell Energy Consumption”, TMS Light Metals, 2019, 521–531.
15.
Zurück zum Zitat M. Dupuis, “First Attempt to Break the 10 kWh/kg barrier using an wide cell design”, ALUMINIUM 95(1/2), 2019, 24–29. M. Dupuis, “First Attempt to Break the 10 kWh/kg barrier using an wide cell design”, ALUMINIUM 95(1/2), 2019, 24–29.
16.
Zurück zum Zitat M. Dupuis, “Second attempt to break the 10 kWh/kg aluminium barrier using a wide cell design”, Proceedings of 37th International ICSOBA Conference, Travaux No. 48, Krasnoyarsk, Russia, 16—20 September 2019. M. Dupuis, “Second attempt to break the 10 kWh/kg aluminium barrier using a wide cell design”, Proceedings of 37th International ICSOBA Conference, Travaux No. 48, Krasnoyarsk, Russia, 16—20 September 2019.
17.
Zurück zum Zitat V.A. Kryukovski, G.A. Sirasutdinov, J. Klein, G. Peychal-Heiling, “International cooperation and high-performance reduction in Siberia”. JOM 46(2), 1994, 23–25. V.A. Kryukovski, G.A. Sirasutdinov, J. Klein, G. Peychal-Heiling, “International cooperation and high-performance reduction in Siberia”. JOM 46(2), 1994, 23–25.
18.
Zurück zum Zitat D. Lu and al., “400 kA high energy efficiency reduction pot”, US patent no 2011/0067000 A1, 2011. D. Lu and al., “400 kA high energy efficiency reduction pot”, US patent no 2011/0067000 A1, 2011.
19.
Zurück zum Zitat H. Zhang and al., “Evolution of the Busbar Structure in Large-Scale Aluminum Reduction Cells”. JOM 69(2), 2017, 307–314. H. Zhang and al., “Evolution of the Busbar Structure in Large-Scale Aluminum Reduction Cells”. JOM 69(2), 2017, 307–314.
20.
Zurück zum Zitat J. Zhu and al., “The advancement of new generation SY350 pot”, TMS Light Metals, 2009, 377–379. J. Zhu and al., “The advancement of new generation SY350 pot”, TMS Light Metals, 2009, 377–379.
21.
Zurück zum Zitat F. Yan, M. Dupuis, J. Zhou and S. Ruan, “In depth analysis of energy-saving and current efficiency improvement of aluminum reduction cells”, TMS Light Metals, 2013, 537–542. F. Yan, M. Dupuis, J. Zhou and S. Ruan, “In depth analysis of energy-saving and current efficiency improvement of aluminum reduction cells”, TMS Light Metals, 2013, 537–542.
22.
Zurück zum Zitat D. Lu and al., “Development of NEUI500kA Family High Energy Efficiency Aluminum Reduction Pot (‘HEEP’) Technology”, TMS Light Metals, 2011, 455–460. D. Lu and al., “Development of NEUI500kA Family High Energy Efficiency Aluminum Reduction Pot (‘HEEP’) Technology”, TMS Light Metals, 2011, 455–460.
23.
Zurück zum Zitat J. Zhou and M. Dupuis, “In-Depth Analysis of Lining Designs for Several 420 kA Electrolytic Cells”, TMS Light Metals, 2015, 685–690. J. Zhou and M. Dupuis, “In-Depth Analysis of Lining Designs for Several 420 kA Electrolytic Cells”, TMS Light Metals, 2015, 685–690.
25.
Zurück zum Zitat R. von Kaenel and al., “The Use of Copper in Cathodes of Aluminium Reduction Cells”, Proceedings of 35th International ICSOBA Conference, Travaux No. 46, Hamburg, Germany, 2—5 October 2017, Paper AL11. R. von Kaenel and al., “The Use of Copper in Cathodes of Aluminium Reduction Cells”, Proceedings of 35th International ICSOBA Conference, Travaux No. 46, Hamburg, Germany, 2—5 October 2017, Paper AL11.
26.
Zurück zum Zitat M. Dupuis and H. Côté, “Dyna/Marc 15.0 User’s Guide”, GeniSim, 2019. M. Dupuis and H. Côté, “Dyna/Marc 15.0 User’s Guide”, GeniSim, 2019.
29.
Zurück zum Zitat P.A. Solli, T. Haarberg, T. Eggen, E. Skybakmoen and A. Sterten, “A Laboratory Study of Current Efficiency in Cryolitic Melts”, TMS Light Metals, 1994, 195–203. P.A. Solli, T. Haarberg, T. Eggen, E. Skybakmoen and A. Sterten, “A Laboratory Study of Current Efficiency in Cryolitic Melts”, TMS Light Metals, 1994, 195–203.
30.
Zurück zum Zitat A. F. Schneider and al., “A Thermal-Mechanical Approach for the Design of Busbars Details”, TMS Light Metals, 2013, 829–835. A. F. Schneider and al., “A Thermal-Mechanical Approach for the Design of Busbars Details”, TMS Light Metals, 2013, 829–835.
31.
Zurück zum Zitat B. Allano, B. Molinier and G. Jaouen, “Online Support for Amperage Creeping and Technology Brick Implementation”, Proceedings of 35th International ICSOBA Conference, Travaux No. 46, Hamburg, Germany, 2—5 October 2017, Paper AL08. B. Allano, B. Molinier and G. Jaouen, “Online Support for Amperage Creeping and Technology Brick Implementation”, Proceedings of 35th International ICSOBA Conference, Travaux No. 46, Hamburg, Germany, 2—5 October 2017, Paper AL08.
Metadaten
Titel
Demo Retrofit Study of a Chinese Inspired Cell Technology
verfasst von
Marc Dupuis
Valdis Bojarevics
Copyright-Jahr
2020
DOI
https://doi.org/10.1007/978-3-030-36408-3_70

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