铝电解车间环境的综合治理方法
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作者单位:

宁夏大学 机械工程学院, 宁夏 银川 750021

作者简介:

王麒瑜(1989—),男,宁夏银川人,工学博士,硕士生导师。

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中图分类号:

TF808;TF821

基金项目:

宁夏回族自治区自然科学基金(2024AAC03040)


Environmental Treatment Methods for Aluminum Electrolysis Workshops
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School of Mechanical Engineering,Ningxia University,Yinchuan 750021 ,China

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    摘要:

    电解铝生产过程会排放有害气体和粉尘,污染环境、危害健康。在国家环保政策推动下,电解槽减污降碳改造成为研究重点。本文梳理了铝电解槽在密封优化、槽内烟气收集、槽间排烟控制以及残极烟气收集四个关键领域的现状与问题,并总结了改造优化方案。在密封性改进方面,加强阳极导杆和槽罩板密封可提升集气效率;槽内烟气收集优化方面,在线改造或停槽改造均能改善集气效果,在线改造优势明显;槽间排烟控制通过采用孔板或变径管替代阀门,提高了排烟均匀性和效率;残极烟气收集采用多种方式,其中残极冷却系统表现突出。这些技术改进和工艺优化对改善车间环境、降低氟化物排放、提高能源利用效率以及实现铝电解行业绿色可持续发展意义重大。

    Abstract:

    The production process of aluminum electrolysis emits harmful gases and dust, which pollutes the environment and endangers human health. Driven by national environmental protection policies, the transformation of aluminum electrolysis cells for pollution reduction and carbon emission reduction has become a research focus. The article reviews the current situations and problems in four key areas of aluminum electrolysis cells: sealing optimization, in-cell flue gas collection, inter-cell exhaust control, and residual electrode flue gas collection, and summarizes the transformation and optimization plans.In terms of sealing improvement, strengthening the sealing of anode guide rods and cell cover plates can enhance the gas collection efficiency. Regarding the optimization of in-cell flue gas collection, both online transformation and transformation during cell shutdown can improve the gas collection effect, and the online transformation has obvious advantages. In inter-cell exhaust control, by replacing valves with orifice plates or reducing pipes, the exhaust uniformity and efficiency are improved. For residual electrode flue gas collection, multiple methods are adopted, among which the residual electrode cooling system performs remarkably.These technological improvements and process optimizations are of great significance for improving the workshop environment, reducing fluoride emissions, enhancing energy utilization efficiency, and achieving the green and sustainable development of the aluminum electrolysis industry.

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王麒瑜,王泽江.铝电解车间环境的综合治理方法[J].绿色矿冶,2025,41(2):53-62.

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  • 收稿日期:2024-11-20
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  • 在线发布日期: 2025-11-14
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