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This post was last edited by sunjl1981 on 2013-1-6 23:46. The catholyte flow rate is determined by 0.3 * the number of electrolysis cells! What does 0.3 refer to? , , -
It’s just a coefficient; the flow rate per unit slot is 0.3 m3/h
Circulation volume per cell slot: 0.3 m3/h
Reply to 3# yue*ngchen81: May I ask? Could it be considered the minimum flow rate for the electrolyte in the cell cathode?
Reply to 4# apple100200: I’ve checked relevant information and consulted people from Beihua Machinery, but none of them could provide a relatively definite range value! Under normal conditions, both circulation and normal operation occur at this flow rate; even when it is necessary to increase or decrease the flow rate for certain reasons (such as adjusting the alkali concentration), the amount of change is minimal and does not affect the circulation in the cathode chamber nor the amount of gas released. Personal opinion! Brothers, please give some advice!
It should be empirical data derived from the optimal alkali concentration at the cell inlet.
It seems that your algorithm isn’t accurate; the results it produces differ from those we get when running the tests. What kind of algorithm is this? Shouldn’t different slots use different algorithms?
Reply to 8# ftcai: This is a battery with a capacity of 2.7 square! Of course, different slots have different algorithms!