Leveling and blending system and method for positive and negative electrolytes of all-vanadium redox flow battery
A technology of all-vanadium redox flow battery and negative electrolyte, applied in fuel cells, electrolyte flow processing, fuel cell additives, etc., can solve the problems of overall system efficiency and capacity decline, inconspicuous adjustment of concentration, leakage, etc. Achieve capacity recovery, reduce self-discharge capacity loss, and avoid long-term contact
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Embodiment 1
[0034] like figure 1 As shown, this embodiment provides a leveling and blending system for the positive and negative electrode electrolytes of the all-vanadium redox flow battery, including the positive electrode liquid storage tank 2, the negative electrode liquid storage tank 3 and the stack 1, and the positive electrode liquid storage tank 2 passes through The first pipeline 4 is connected to the stack 1 and transports the positive electrolyte to the stack 1, and the negative liquid storage tank 3 is connected to the stack 1 through the second pipeline 5 and transports the negative electrolyte to the stack 1; the stack 1 passes through the fifth The pipeline 6 and the sixth pipeline 7 are respectively connected with the positive electrode liquid storage tank 2 and the negative electrode liquid storage tank 3 to realize the circulation delivery of the positive electrode electrolyte and the negative electrode electrolyte; the positive electrode liquid storage tank 2 passes thr...
Embodiment 2
[0050] like figure 1 As shown, this embodiment provides a leveling and blending system for the positive and negative electrode electrolytes of the all-vanadium redox flow battery, including the positive electrode liquid storage tank 2, the negative electrode liquid storage tank 3 and the stack 1, and the positive electrode liquid storage tank 2 passes through The first pipeline 4 is connected to the stack 1 and transports the positive electrolyte to the stack 1, and the negative liquid storage tank 3 is connected to the stack 1 through the second pipeline 5 and transports the negative electrolyte to the stack 1; the stack 1 passes through the fifth The pipeline 6 and the sixth pipeline 7 are respectively connected with the positive electrode liquid storage tank 2 and the negative electrode liquid storage tank 3 to realize the circulation delivery of the positive electrode electrolyte and the negative electrode electrolyte; the positive electrode liquid storage tank 2 passes thr...
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