Method for intelligentize controlling oxygenize electric potential water generator

A technology for oxidizing potential water and oxidizing potential, which is applied in the field of measurement and can solve the problem that the control factor cannot be automatically adjusted.

Inactive Publication Date: 2010-12-29
BEIJING GRET RESOURCES ENVIRONMENTAL PROTECTION TECH
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  • Summary
  • Abstract
  • Description
  • Claims
  • Application Information

AI Technical Summary

Problems solved by technology

So far, there is no fast, effective, and low-cost method for simultaneously monitoring the three effluent indicators of the oxidation potential water generator in real time, nor can it automatically adjust each control factor according to the fluctuation of the effluent indicators

Method used

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  • Method for intelligentize controlling oxygenize electric potential water generator
  • Method for intelligentize controlling oxygenize electric potential water generator
  • Method for intelligentize controlling oxygenize electric potential water generator

Examples

Experimental program
Comparison scheme
Effect test

Embodiment approach

[0082] First manually adjust the flow rate of the oxidation potential water generator, the concentration of NaCl and the amount of NaCl added, the electrolysis voltage and the electrolysis current, measure the pH value and ORP value of the acid water with a pH meter and an ORP tester, and then use a comprehensive titration The available chlorine concentration of acid water is measured by the method, and the effluent index data of acid water are obtained as follows:

[0083] ORP: 1169;

[0084] pH: 2.32;

[0085] CL: 46;

[0086] Acid water flow: 1.5 liters / min;

[0087] Total water flow: 3.1 liters / min;

[0088] Electrolysis current: 21.4A;

[0089] Electrolysis voltage: 9.2 volts;

[0090] Salt water concentration conversion value: 1.1;

[0091] Store the above-mentioned ORP, pH, CL, electrolysis current, and electrolysis voltage as reference values ​​in the machine, and then restart the machine. The ORP, current, and total flow of acid water detected by the sensor are ...

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Abstract

The invention discloses a method for controlling an electrolyzed oxidizing water generator by establishing a mathematical model. The data relationship between the pH, the effective chlorine, the frequency of a pulse salt pump, the electrolytic voltage, the electrolytic current, the water feeding quantity, the ORP and the temperature is obtained through plenty of experiments; a fuzzy inference rule between the pH, the effective chlorine and other factors is established by analyzing, dividing and fitting the data; the frequency of a pulse salt pump, the electrolytic voltage and the electrolyticcurrent are adjusted by a controller according to the difference between the ORP, the pH and the effective chlorine and the reference values thereof so as to ensure the stability of the water outlet index.

Description

technical field [0001] The invention relates to a method for intelligently controlling an oxidation potential water generator, belonging to the technical field of measurement. Background technique [0002] The main technical principle of the intelligent oxidation potential water generator is as follows: After softening the ordinary tap water, add low-concentration NaCl solution, perform electrolysis in the electrolytic cell with ion exchange diaphragm, and generate acid oxidation potential water on the anode side. It is used for disinfection and sterilization in various fields, and the cathode side generates alkaline oxidation potential water for cleaning and washing. [0003] The effluent evaluation indicators of the oxidation potential water generator mainly include three data: ORP, pH and available chlorine concentration. The disinfection and sterilization effect of oxidation potential water is closely related to the relationship between these three indicators. [0004]...

Claims

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Application Information

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Patent Type & Authority Patents(China)
IPC IPC(8): G05B19/048C02F1/00
Inventor 孔祥兵张敦杰
Owner BEIJING GRET RESOURCES ENVIRONMENTAL PROTECTION TECH
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