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Recycling of the Flue Gas from Aluminium Electrolysis Cells

机译:从铝电解细胞中回收烟道气

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Recycling of the flue gas from aluminium reduction cells is a possible method for increasing the CO_2 concentration, thereby enabling CO_2 capture. The present paper represents a preliminary study concerning some of the consequences in the electrolysis cells. The energy balance in a hypothetic 400 kA cell was estimated, and it turned out that the heat flow into the superstructure could be kept constant by decreasing the thickness of the anode cover material even with a very hot gas. Recycling gives a higher amount of collectible heat from the cells, mainly because of higher temperature in the gas entering the cell. It will be advantageous to apply catalytic burning of CO to CO_2, which represents considerable extra heat. Increased sulfuric acid dewpoint may represent a challenge. It is also necessary to address the amount of hydrogen fluoride that re-evolves from the secondary alumina at high superstructure temperature.
机译:从铝还原细胞中回收烟道气是增加CO_2浓度的可能方法,从而能够捕获CO_2。本文代表了关于电解细胞中一些后果的初步研究。估计假设400ka电池中的能量平衡,证明,即使用非常热的气体,也可以通过降低阳极覆盖材料的厚度来保持恒定的上层结构。再循环来自细胞的可收集热量,主要是因为进入细胞的气体中的温度较高。将CO-2施加催化燃烧将是有利的,这代表相当大的额外热量。增加的硫酸露点可能代表挑战。还需要在高上部结构温度下解决从二级氧化铝再演变的氟化氢的量。

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