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2022 | OriginalPaper | Buchkapitel

Energy Balance of the Chinese Aluminum Electrolysis Cell

verfasst von : Changlin Li, Junqing Wang, Yunfeng Zhou, Kaibin Chen, Xugui Zhang, Shilin Qiu, Bin Fang, Shaofeng Cao, Junwei Wang, Fangfang Zhang

Erschienen in: Light Metals 2022

Verlag: Springer International Publishing

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Abstract

Based on operation state analysis and energy balance testing of more than 300 aluminum electrolysis cells in the recent five years, the energy balance characteristics of cells in China was studied. It was shown that the operation state of the aluminum electrolysis cell determined the heat dissipation. A cell with a good operation state had low energy consumption, the total heat dissipation was relatively small, and energy utilization efficiency was high. For a cell with a good operation state, the regional heat dissipation distribution was good. The excess voltage needed due to the total heat dissipation of a good operating cell was below 1.72 V, and energy utilization efficiency reached above 50%. The regional heat dissipation distribution of a medium performing operation state cell was fairly good, the total heat dissipation voltage was between 1.72–1.82 V, and energy utilization efficiency was 49–50%. Cells with poor operation state generally had a large heat dissipation zone, and the total heat dissipation voltage reached above 1.82 V and energy utilization efficiency was below 49%. This research can provide reference values for energy consumption evaluation of aluminum electrolysis cells and further reduce energy consumption.

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Literatur
1.
Zurück zum Zitat Qiu ZX (2008) Aluminum production with prebaked electrolysis cell (3rd edition). Metallurgical industry press, Beijing. Qiu ZX (2008) Aluminum production with prebaked electrolysis cell (3rd edition). Metallurgical industry press, Beijing.
2.
Zurück zum Zitat Liu YX, Li J (2008) Modern aluminum electrolysis. Metallurgical industry press, Beijing. Liu YX, Li J (2008) Modern aluminum electrolysis. Metallurgical industry press, Beijing.
3.
Zurück zum Zitat Zhang YL, Wang JQ (2011) Study on the states and ability of heat emission of actual aluminium reduction pots in our country. Light metals (11):29–32. Zhang YL, Wang JQ (2011) Study on the states and ability of heat emission of actual aluminium reduction pots in our country. Light metals (11):29–32.
4.
Zurück zum Zitat Zhou YF, Wang JQ, Fang B, Li CL, Luo LF, Chang GQ (2019) Study on heat dissipation trend of prebaked aluminum reduction cell. Light metals (11):29–32. Zhou YF, Wang JQ, Fang B, Li CL, Luo LF, Chang GQ (2019) Study on heat dissipation trend of prebaked aluminum reduction cell. Light metals (11):29–32.
5.
Zurück zum Zitat Wang JQ, Zhang YL, Chen H (2007) Views on the heat lossing distributing of large-scale aluminum smelting cells in China. Light metals (12):22–24. Wang JQ, Zhang YL, Chen H (2007) Views on the heat lossing distributing of large-scale aluminum smelting cells in China. Light metals (12):22–24.
6.
Zurück zum Zitat Li CL, Wang JQ, Zhou YF, Chai DP, Shi ZR, Wang YF, Bao SZ (2020) The aluminium electrolysis cell heat balance challenge under low voltage. Light Metals, TMS, 413-418. Li CL, Wang JQ, Zhou YF, Chai DP, Shi ZR, Wang YF, Bao SZ (2020) The aluminium electrolysis cell heat balance challenge under low voltage. Light Metals, TMS, 413-418.
7.
Zurück zum Zitat Gong CL, Cai YX, Zeng CX, Liu SQ, Zhang FQ, Di GH, Ren J, Li XQ, Huang Y, Liu G (2005) Aluminium cell test for energy balance and its calculationmethod-four-point feed current and two-point feed current prebaked anode aluminium cell. YS/T 480–2005 Gong CL, Cai YX, Zeng CX, Liu SQ, Zhang FQ, Di GH, Ren J, Li XQ, Huang Y, Liu G (2005) Aluminium cell test for energy balance and its calculationmethod-four-point feed current and two-point feed current prebaked anode aluminium cell. YS/T 480–2005
8.
Zurück zum Zitat Liu YG, Yi XB, Zhang GM, Yang CH, Wang Y, Wang CP. (2005) Aluminium cell test for energy balance and its calculating method-five- point feed current and six-point feed current prebaked anode aluminium cell. YS/T 481–2005 Liu YG, Yi XB, Zhang GM, Yang CH, Wang Y, Wang CP. (2005) Aluminium cell test for energy balance and its calculating method-five- point feed current and six-point feed current prebaked anode aluminium cell. YS/T 481–2005
9.
Zurück zum Zitat Yang XH, Li X. (2014) Optimization of lining structure of 240 kA aluminium reduction cell. Nonferrous metals (Extractive metallurgy) (9):26-30. Yang XH, Li X. (2014) Optimization of lining structure of 240 kA aluminium reduction cell. Nonferrous metals (Extractive metallurgy) (9):26-30.
10.
Zurück zum Zitat Wang YF, Chai DP, Cao SF, Gao BT, Wang JQ, Zhou YF, Li CL (2020) Development of energy-saving technology based on steady flow and heat preservation and its application in a 400 kA electrolysis series. Nonferrous metals (Extractive metallurgy) (7):46-52. Wang YF, Chai DP, Cao SF, Gao BT, Wang JQ, Zhou YF, Li CL (2020) Development of energy-saving technology based on steady flow and heat preservation and its application in a 400 kA electrolysis series. Nonferrous metals (Extractive metallurgy) (7):46-52.
11.
Zurück zum Zitat Wang YF, Zhou YF, Li CL, Fang B, Wang JQ (2019) Analysis and research of the top heat dissipation of aluminum reduction pots. Light metals (4):20–25. Wang YF, Zhou YF, Li CL, Fang B, Wang JQ (2019) Analysis and research of the top heat dissipation of aluminum reduction pots. Light metals (4):20–25.
12.
Zurück zum Zitat Wang JW, Fang B, Zhou YF, Qiu SL, Wang JQ (2021) Study on energy saving of aluminum reduction by reducing horizontal current and decreasing dynamic fluctuation of molten aluminum. Nonferrous metals (Extractive metallurgy) (4):26-29. Wang JW, Fang B, Zhou YF, Qiu SL, Wang JQ (2021) Study on energy saving of aluminum reduction by reducing horizontal current and decreasing dynamic fluctuation of molten aluminum. Nonferrous metals (Extractive metallurgy) (4):26-29.
Metadaten
Titel
Energy Balance of the Chinese Aluminum Electrolysis Cell
verfasst von
Changlin Li
Junqing Wang
Yunfeng Zhou
Kaibin Chen
Xugui Zhang
Shilin Qiu
Bin Fang
Shaofeng Cao
Junwei Wang
Fangfang Zhang
Copyright-Jahr
2022
DOI
https://doi.org/10.1007/978-3-030-92529-1_58

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