CN204824286U - H2O schizolysis automatic control system - Google Patents
H2O schizolysis automatic control system Download PDFInfo
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- CN204824286U CN204824286U CN201520188466.9U CN201520188466U CN204824286U CN 204824286 U CN204824286 U CN 204824286U CN 201520188466 U CN201520188466 U CN 201520188466U CN 204824286 U CN204824286 U CN 204824286U
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- water
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- storage box
- raw water
- pump
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Abstract
The utility model discloses a H2O schizolysis automatic control system, including former water tank, acid -base water storage box, electrolysis trough, water pump, all be provided with liquid level meter on former water tank and the acid -base water storage box, all be connected with PLC control system on the above -mentioned liquid level meter, above -mentioned PLC control system simultaneously still with first raw water delivery pump and second raw water delivery pump connection control to the water level of water storage box is adjusted through the control pump. The utility model discloses a characteristics lie in: convenient operation, work efficiency is high, and resources are saved has effectively prevented the emergence that the salt volume is unstable, go out relevant phenomenons such as water is inhomogeneous, electrolysis unstability.
Description
Technical field
The utility model relates to H
2o cracker field, a kind of H that can realize the unmanned manipulation of whole electrolytic process of specific design
2o cracking automatic control system.
Background technology
Two metals or carbon-point (i.e. electrode) are placed in the material (ionogen) that will decompose, then connect with the mains, make electric current pass through liquid by the principle of electrolysis exactly.The positively charged ion of compound moves on to electronegative electrode (negative electrode), and negatively charged ion moves on to the electrode (anode) of positively charged, and compound is divided into two poles.Water (H
2o) brine electrolysis is generated by direct current electrolysis.Electric current is by water (H
2o) time, hydrogen is formed at negative electrode, and oxygen is then at anodic formation.Positively charged ion to movable cathode, mineral calcium soluble in water, magnesium, potassium, sodium.Positively charged ion, just being formed at negative electrode, is exactly the alkaline water that we drink; And electronegative ion, generate at anode.Large-scale electrolysis wetting system common on the market today, salt adding amount, aquifer yield, pressure adjustment etc. are all manually regulate, and cause salt amount shakiness, water outlet is uneven, electrolysis is unstable, increase in covert to production cost.
Summary of the invention
The technical problems to be solved in the utility model is to provide a kind of H that can realize the unmanned manipulation of whole electrolytic process
2o cracking automatic control system.
To achieve these goals, technical solution of the present utility model is: a kind of H
2o cracking automatic control system, comprise raw water box, soda acid water storage box, electrolyzer, water pump, described raw water box and soda acid water storage box are provided with tank gage, above-mentioned tank gage is connected with PLC control system, with the first raw water pump and the second raw water pump connection control while of above-mentioned PLC control system, and regulate the water level of water storage box by controlling water pump.
Accompanying drawing explanation
Fig. 1 is structural representation of the present utility model.
Fig. 2 is PLC control system functional block diagram of the present utility model.
Embodiment
The utility model is a kind of H
2o cracking automatic control system, comprise raw water box, soda acid water storage box, electrolyzer, water pump, described raw water box and soda acid water storage box are provided with tank gage, above-mentioned tank gage is all connected with PLC control system, above-mentioned PLC control system simultaneously also with the first raw water pump and the second raw water pump connection control, and regulate the water level of water storage box by controlling water pump.
In using, by raw water to raw water box, when water level arrives B, the first raw water pump quits work.Former water in raw water box is delivered in saturated salt water pot, is being delivered in electrolyzer by brine tank.Enter sour water tank by sour water after electrolytic tank electrolysis, buck enters alkali water tank.When the water level of alkali (acid) water pot reaches H and J, the second raw water pump quits work; When the water level of alkali (acid) water pot drops to K and I, the second raw water pump is started working.If raw water box water level drops to the first raw water pump during A liquid level and brings into operation in operation.In enforcement, when one of them water level of soda acid water tank is lower, signal will feed back to PLC control system, then service pump is started, by service pump, the water of raw water box is delivered to electrolyzer and carry out electrolysis, when raw water box water level is lower, Controlling System will open inlet valve automatically to raw water box supply, need by controlling salt solution the monitoring of salt amount and the monitoring of discharge, thus to obtain different soda acid water indexs according to client.Feature of the present utility model is: easy to operate, and working efficiency is high, economizes on resources, and effectively prevent the generation of the correlated phenomena such as salt amount is unstable, water outlet is uneven, electrolysis is unstable.
Claims (1)
1. a H
2o cracking automatic control system, comprise raw water box, soda acid water storage box, electrolyzer, water pump, it is characterized in that: described raw water box and soda acid water storage box are provided with tank gage, above-mentioned tank gage is connected with PLC control system, with the first raw water pump and the second raw water pump connection control while of above-mentioned PLC control system, and regulate the water level of water storage box by controlling water pump.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201520188466.9U CN204824286U (en) | 2015-04-01 | 2015-04-01 | H2O schizolysis automatic control system |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201520188466.9U CN204824286U (en) | 2015-04-01 | 2015-04-01 | H2O schizolysis automatic control system |
Publications (1)
Publication Number | Publication Date |
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CN204824286U true CN204824286U (en) | 2015-12-02 |
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ID=54681908
Family Applications (1)
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CN201520188466.9U Active CN204824286U (en) | 2015-04-01 | 2015-04-01 | H2O schizolysis automatic control system |
Country Status (1)
Country | Link |
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CN (1) | CN204824286U (en) |
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2015
- 2015-04-01 CN CN201520188466.9U patent/CN204824286U/en active Active
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