CN210481531U - Water electrolysis chlorine generator for large swimming pool - Google Patents
Water electrolysis chlorine generator for large swimming pool Download PDFInfo
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- CN210481531U CN210481531U CN201920056113.1U CN201920056113U CN210481531U CN 210481531 U CN210481531 U CN 210481531U CN 201920056113 U CN201920056113 U CN 201920056113U CN 210481531 U CN210481531 U CN 210481531U
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Abstract
The utility model discloses a chlorine generator is made to large-scale swimming pool water electrolysis, including titanium anode plate, titanium negative plate, PVC electrode space bar, middle polar plate and titanium package copper terminal, titanium anode plate and titanium negative plate interval set up in PVC electrode baffle both sides, PVC electrode space bar interval sets up, middle polar plate interval sets up between PVC electrode space bar, between the titanium anode plate and between the titanium cathode plate respectively, titanium package copper terminal sets up respectively on the same tip diagonal angle of titanium anode plate and titanium negative plate. The titanium anode plate and the titanium cathode plate are arranged at intervals, and the PVC electrode spacing plate and the middle polar plate are additionally arranged between the titanium anode plate and the titanium cathode plate, so that the electrode group of the traditional chlorine generator is divided into the electrolytic modules, the efficiency of preparing chlorine by electrolysis is further improved, and the reverse electrode descaling after scaling of the titanium anode during electrolysis is facilitated.
Description
Technical Field
The utility model belongs to the technical field of system chlorine device, concretely relates to chlorine generator is made to large-scale swimming pool water electrolysis.
Background
The swimming pool has proper water temperature, and the water has sufficient organic matter source, and is the breeding and growing environment for pathogenic bacteria such as typhoid fever, dysentery, hepatitis, acute conjunctivitis, pustule disease, etc. In addition, there are many viruses present in addition to bacteria. For example, hepatitis virus and venereal disease virus can transmit diseases through water. Therefore, the necessity of swimming pool water disinfection is very important. All countries have strict regulations on the water quality standards of swimming pools, and China sets two technical rules of 'sanitary standards of swimming places' and 'water supply and drainage design standards of swimming pools'. The water used in the swimming pool is circulating water which is not equal to dead water, the water circulating system in the swimming pool needs to work uninterruptedly, and a monitoring system needs to detect in real time. According to the requirements of the sanitation standard of swimming places, the swimming pool is provided with facilities and equipment for circularly purifying and disinfecting pool water. The circulating water-purifying system is characterized by that the used water of swimming pool is pumped out from the pool according to the defined flow rate and flow speed, and passed through the processes of filtering and purifying to make the water be clarified, and passed through the process of disinfection and sterilization treatment, and after the water quality is met with related water quality standard, the water can be returned into the swimming pool for reuse.
The water treatment of the swimming pool is mainly purified by circulating filtration through special swimming water treatment equipment, and in addition, the water treatment of the swimming pool needs to be carried out through special equipment sterilization, electrolytic chlorine production and other treatments, and then the water treatment of the swimming pool is clean and sanitary through the action of a physical process. The two processes are carried out simultaneously, so that the water quality of the pool water can reach the national standard, and the water treatment process of the swimming pool is not available. The water quality treatment system of the swimming pool needs to follow the dynamic balance working principle to achieve thorough water quality purification in the circulating treatment process. Then, the existing device for producing chlorine by electrolysis has a complex structure and poor effect of producing chlorine by electrolysis.
SUMMERY OF THE UTILITY MODEL
The utility model provides a prior art not enough, provide a large-scale swimming pool water electrolysis system chlorine generator, carry out the compartment to the electrode group of traditional chlorine generator and divide electrolytic module, further improved the efficiency of electrolysis system chlorine, the descale of falling utmost point behind the favourable titanium positive pole scale deposit when the electrolysis moreover.
The utility model adopts the technical proposal that: the utility model provides a chlorine generator is made to large-scale swimming pool water electrolysis, includes titanium anode plate, titanium negative plate, PVC electrode space bar, middle polar plate and titanium package copper terminal, titanium anode plate and titanium negative plate interval set up in PVC electrode baffle both sides, PVC electrode space bar interval sets up, middle polar plate interval sets up between PVC electrode space bar, between the titanium anode plate and between the titanium negative plate respectively, titanium package copper terminal sets up respectively on the same tip diagonal angle of titanium anode plate and titanium negative plate.
Preferably, the titanium anode plate and the titanium cathode plate comprise titanium plate substrates, and the surfaces of the titanium plate substrates are coated with ruthenium-iridium-titanium coatings.
Preferably, the upper end parts of the titanium anode plate, the titanium cathode plate and the PVC inter-electrode separator are connected with the middle pole plate through connecting screws.
Preferably, the titanium anode plate, the titanium cathode plate, the PVC electrode spacing plate and the middle plate are connected through polytetrafluoroethylene connecting screws penetrating through the titanium anode plate, the titanium cathode plate, the PVC electrode spacing plate and the middle plate.
Preferably, the upper ends of the titanium anode plate and the titanium cathode plate are diagonally welded with a terminal column base, and the titanium-clad copper terminal is arranged in the terminal column base in a penetrating mode.
Preferably, the middle part of the upper end of the middle pole plate is provided with a connecting block integrally formed with the middle pole plate.
Compared with the prior art, the utility model discloses beneficial effect who has: the titanium anode plate and the titanium cathode plate are arranged at intervals, and the PVC electrode spacing plate and the middle polar plate are additionally arranged between the titanium anode plate and the titanium cathode plate, so that the electrode group of the traditional chlorine generator is divided into the electrolytic modules, the efficiency of preparing chlorine by electrolysis is further improved, and the reverse electrode descaling after scaling of the titanium anode during electrolysis is facilitated.
Drawings
FIG. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic view of the side-viewing mechanism of the present invention.
Detailed Description
The present invention will be described in detail with reference to the accompanying drawings and specific embodiments.
The utility model provides a large-scale swimming pool water electrolysis system chlorine generator, please refer to fig. 1 and fig. 2, including titanium anode plate 1, titanium negative plate 2, PVC inter-electrode baffle 3, middle polar plate 4 and titanium package copper terminal 5, in order to further improve the efficiency of electrolysis system chlorine, carry out interval to the electrode group of traditional chlorine generator and distinguish the electrolysis module, promptly titanium anode plate 1 sets up in 3 both sides of PVC inter-electrode baffle with 2 intervals of titanium negative plate, 3 intervals of PVC electrode baffle set up, middle polar plate 4 sets up respectively in 3 intervals of PVC inter-electrode baffle, 1 intervals of titanium anode plate and 2 intervals of titanium negative plate, titanium package copper terminal 5 sets up respectively on titanium anode plate 1 and titanium negative plate 2 same tip diagonal angle. And the integral structure of the chlorine generator is beneficial to the reverse electrode descaling of the titanium anode after scaling during electrolysis.
With continued reference to fig. 1, the titanium anode plate 1 and the titanium cathode plate 2 comprise a titanium plate substrate, and the surface of the titanium plate substrate is coated with ruthenium-iridium-titanium coating. The ruthenium-iridium-titanium coating aggravates the electrocatalytic oxidation process of the titanium anode plate 1 and the titanium cathode plate 2.
3 upper ends of baffle all are connected with middle polar plate 4 through connecting screw between titanium anode plate 1, titanium negative plate 2 and the PVC electrode, the hole that supplies connecting screw to pass is seted up to 3 upper ends of PVC electrode spacer, 4 upper ends middle parts of middle polar plate are equipped with connecting block 8 with 4 integrated into one piece of middle polar plate, set up the hole that corresponds with the pore space on the 3 baffle between the PVC electrode on the connecting block 8, the connecting screw both ends are passed through the nut and are fixed. The titanium anode plate 1, the titanium cathode plate 2, the PVC inter-electrode partition plate 3 and the middle polar plate 4 are connected through a polytetrafluoroethylene connecting screw rod 6 which is arranged in a penetrating mode, two ends of the polytetrafluoroethylene connecting screw rod 6 are fixed through nuts, and an insulating gasket is clamped between two ends of the polytetrafluoroethylene connecting screw rod 6 and the nuts. The titanium anode plate 1 and the titanium cathode plate 2 are welded with a terminal base 7 at the upper opposite angles, and the titanium copper-clad terminal 5 is arranged in the terminal base 7 in a penetrating mode.
When in use, the chlorine generator is actually an electrolytic device containing a titanium anode, the electrolytic device is arranged in a circulating system of swimming pool water, a certain amount of salt is added into the pool water, and the swimming pool water containing low-concentration salt can generate three substances in the swimming pool water when passing through the electrolytic tank: chlorine, sodium hydroxide and hydrogen, the method does not directly add chlorine disinfectant into the water of the swimming pool, but generates chlorine by electrolyzing saline water, the generated chlorine can cause the pH value of the water of the swimming pool to be reduced, but the generated sodium hydroxide can balance the reduction of the pH value, so the pH value of the water of the swimming pool is basically kept unchanged.
The above-mentioned embodiments are merely preferred embodiments of the present invention, and not intended to limit the scope of the present invention, so that all equivalent changes made by the contents of the claims of the present invention should be included in the scope of the claims of the present invention.
Claims (6)
1. Large-scale swimming pool water electrolysis system chlorine generator, its characterized in that includes titanium anode plate (1), titanium negative plate (2), PVC electrode space bar (3), middle polar plate (4) and titanium package copper terminal (5), titanium anode plate (1) and titanium negative plate (2) interval set up in PVC electrode space bar (3) both sides, PVC electrode space bar (3) interval sets up, middle polar plate (4) interval respectively sets up between PVC electrode space bar (3), between titanium anode plate (1) and between titanium negative plate (2), titanium package copper terminal (5) set up respectively on titanium anode plate (1) and titanium negative plate (2) with tip diagonal angle.
2. The large swimming pool water electrolysis chlorine generator according to claim 1, wherein the titanium anode plate (1) and the titanium cathode plate (2) comprise a titanium plate substrate, and the surface of the titanium plate substrate is coated with ruthenium iridium titanium coating.
3. The large swimming pool water electrolysis chlorine generator as claimed in claim 2, wherein the upper ends of the titanium anode plate (1), the titanium cathode plate (2) and the PVC electrode spacing plate (3) are connected with the middle pole plate (4) through connecting screws.
4. The large swimming pool water electrolysis chlorine generator as claimed in claim 3, wherein the titanium anode plate (1), the titanium cathode plate (2), the PVC electrode spacer plate (3) and the middle pole plate (4) are connected by a polytetrafluoroethylene connecting screw (6) passing through them.
5. The large swimming pool water electrolysis chlorine production generator according to claim 4, wherein the upper ends of the titanium anode plate (1) and the titanium cathode plate (2) are welded with a terminal base (7) diagonally, and the titanium-clad copper terminal (5) is arranged in the terminal base (7) in a penetrating way.
6. The large swimming pool water electrolysis chlorine generator as claimed in claim 5, wherein the middle of the upper end of the middle pole plate (4) is provided with a connecting block (8) integrally formed with the middle pole plate (4).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201920056113.1U CN210481531U (en) | 2019-01-14 | 2019-01-14 | Water electrolysis chlorine generator for large swimming pool |
Applications Claiming Priority (1)
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CN201920056113.1U CN210481531U (en) | 2019-01-14 | 2019-01-14 | Water electrolysis chlorine generator for large swimming pool |
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CN210481531U true CN210481531U (en) | 2020-05-08 |
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CN201920056113.1U Active CN210481531U (en) | 2019-01-14 | 2019-01-14 | Water electrolysis chlorine generator for large swimming pool |
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2019
- 2019-01-14 CN CN201920056113.1U patent/CN210481531U/en active Active
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