Insoluble anode nickel electrodeposition yield control method, device and equipment and storage medium

By dividing the influencing factors of insoluble anode nickel electrochemical output into quantitative and unquantitative factors, optimizing the value and generating control instructions, the problem of insufficient control of insoluble anode nickel electrochemical output is solved, the balance of output and quality is achieved, and the enterprise efficiency is improved.

CN120366858APending Publication Date: 2025-07-25CHINA CITY ENVIRONMENT PROTECTION ENGINEERING LIMITED COMPANY +1
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Patent Information

Application Number
CN202510394712.4
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-31
Publication Date
2025-07-25

AI Technical Summary

Technical Problem

The failure to effectively control the production of insoluble anode nickel electroplastics in the prior art, resulting in high production costs and low corporate returns.

Method used

The influencing factors of insoluble anode nickel electrochemical yield are divided into the first type of factors that can be quantitatively calculated and the second type of factors that cannot be quantitatively calculated. By determining the qualitative relationship between the second type of factors and the mass of cathode nickel, optimizing the value, and combining the quantitative relationship between the first type of factors and the yield, a control instruction for the electrochemical process is generated.

Benefits of technology

Accurate control of the electrodischarge output of insoluble anode nickel is achieved, ensuring the demand output while improving the quality of cathode nickel and improving corporate efficiency.

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Abstract

The invention provides an insoluble anode nickel electrodeposition yield control method and device, equipment and a storage medium. The method comprises the steps that influence factors of the insoluble anode nickel electrodeposition yield are divided into a first type of influence factors with the influence on the yield capable of being quantitatively calculated and a second type of influence factors with the influence on the yield incapable of being quantitatively calculated; determining a qualitative relationship between a second type of influence factors and the cathode nickel quality, and determining an optimization value of the second type of influence factors based on the qualitative relationship; determining a quantitative relationship between the first type of influence factors and the yield, obtaining a required yield, and determining a target value of the first type of influence factors based on the required yield and the quantitative relationship; and generating a control instruction for indicating the electrodeposition process of insoluble anode nickel electrodeposition based on the optimized value and the target value. According to the method, the target value of the first type of influence factors and the optimized value of the second type of influence factors are determined, so that the quality of the cathode nickel is ensured while the required yield is ensured.
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