铝电解槽散热调整措施综述
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广西华磊新材料有限公司, 广西 平果 531400

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卢锐(1974—),男,广西荔浦人,本科,工程师,主要从事铝及铝合金熔铸生产、产品质量管理等工作。

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TF821

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Summary of Heat Dissipation Adjustment Measures for Aluminum Electrolytic Cell
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    摘要:

    铝电解过程遵循电压和能量双平衡原则,其中能量平衡是制约电解槽节能的重要因素。本文基于传热学原理分析了影响电解槽散热的因素,并综述目前行业内采用的调节环境温度、槽温、槽体导热性能、散热面积、烟气流量等措施。本文指出调整电解槽铝水平、烟气流量、覆盖料覆盖制度是常用的调整电解槽散热的措施,简单有效,成本较低;调整电解槽阴极内衬结构对电解槽能量平衡影响最大,效果明显,技术要求最高,成本最高。具体措施需要根据企业自身情况而定。

    Abstract:

    The process of aluminum electrolysis follows the principle of double balance of voltage and energy, and energy balance is an important factor restricting the energy saving of electrolytic cell. In this paper, the factors affecting the heat dissipation of electrolytic cell were analyzed based on the principle of heat transfer, and the measures adopted in the industry were summarized, such as adjusting the ambient temperature, cell temperature, thermal conductivity of the cell, the whole heat dissipation area, flue gas flow rate and so on. This paper points out that adjusting the aluminum level of the electrolytic cell, the flue gas flow rate and the covering material coverage system are commonly used measures to adjust the heat dissipation of the electrolytic cell, which are simple and effective, and the cost is low. Adjusting the cathode lining structure of the electrolytic cell has the greatest influence on the energy balance of the electrolytic cell, and the effect is obvious, but the technical requirements and the cost are the highest. Specific measures need to be based on their own situation.

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卢锐.铝电解槽散热调整措施综述[J].绿色矿冶,2023,39(3):36-39.

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  • 收稿日期:2023-03-02
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  • 在线发布日期: 2025-11-18
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