CN212025478U - Multipurpose generator for disinfection and washing - Google Patents

Multipurpose generator for disinfection and washing Download PDF

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Publication number
CN212025478U
CN212025478U CN202020244548.1U CN202020244548U CN212025478U CN 212025478 U CN212025478 U CN 212025478U CN 202020244548 U CN202020244548 U CN 202020244548U CN 212025478 U CN212025478 U CN 212025478U
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chamber
washing
disinfection
membrane
main controller
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钟旭东
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Jiangsu Mingster Smart City Information Technology Co ltd
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Jiangsu Mingster Smart City Information Technology Co ltd
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Abstract

The utility model relates to a disinfection and washing multipurpose generator, clean water in the water purification groove can directly be drunk, separate anode chamber and cathode chamber in with the membrane electrolysis chamber through ion exchange membrane, and the salt solution takes place the electrolytic reaction in with the membrane electrolysis chamber, and the indoor sodium hydroxide of positive pole carries out and uses as the washing water after the pH adjusts, and sodium hypochlorite reacts with the catalyst and generates the hypochlorous acid, can make the sterile water use, and sodium hypochlorite can soak, wash food etc. after diluting with the clean water mixture. The utility model provides a disinfection and washing multipurpose generator, simple structure collects the disinfection, wash and drink in an organic whole, electrolysis food level electrolyte is obtained and is had no additive or phosphorus-containing detergent, disinfectant, can prepare low concentration or high concentration's washing water and sterilized water, green, the environmental protection, safety, high efficiency, reliable, can be used in the public health occasion that needs washing, disinfection, sterilization such as hotel, food and beverage, school's dining room and swimming pool, for antibacterial, prevent the sick worm, the contribution is made to epidemic prevention.

Description

Multipurpose generator for disinfection and washing
Technical Field
The utility model belongs to the technical field of disinfecting equipment, concretely relates to disinfection washing multipurpose generator.
Background
In the places such as the catering industry, the medical industry, hotels, school canteens, bathing pools and the like, disinfection and sterilization are carried out by regularly using disinfectant water and the like. At present, washing water, disinfection water and drinking water are required to be prepared respectively by three different devices, so that the requirements of washing, disinfection and drinking are met respectively, the cost is high, the occupied area is large, and the harm to human bodies is large due to the need of using additives and the like.
SUMMERY OF THE UTILITY MODEL
In order to solve the technical problems existing in the prior art, the utility model aims to provide a multipurpose generator for disinfection and washing.
In order to realize the above purpose, reach above-mentioned technological effect, the utility model discloses a technical scheme be:
a multipurpose generator for sanitizing and washing, comprising:
the water purifying tank is used for storing clean water and is communicated with the application point III;
an electrolytic chamber with membrane communicated with the water purifying tank, an ion exchange membrane arranged in the electrolytic chamber with membrane for separating the anode chamber and the cathode chamber from each other, a cathode arranged in the anode chamber, an anode arranged in the cathode chamber, and hydrogen and hydroxyl ions (OH) generated by water electrolysis in cathode reaction-) The salt solution is introduced into the cathode chamber and electrolyzed to obtain sodium ions (Na)+) Flows through the ion exchange membrane to the anode chamber where hydroxide ions and sodium ions (Na) pass through the ion exchange membrane+) Sodium hydroxide is generated by combination, and chlorine is generated after chloride ions are electrolyzed in a cathode chamber and an anode;
the sodium hydroxide storage tank is respectively communicated with the anode chamber and the acid storage tank, the sodium hydroxide in the anode chamber flows into the sodium hydroxide storage tank, the acid in the acid storage tank flows into the sodium hydroxide storage tank, the pH value is adjusted in the sodium hydroxide storage tank to be alkalescent, and then the mixture is sent to an application point I;
the sodium hypochlorite generating chamber is respectively communicated with the cathode chamber and the anode chamber, and chlorine in the cathode chamber and sodium hydroxide in the anode chamber react in the sodium hypochlorite generating chamber to generate alkaline sodium hypochlorite;
the hypochlorous acid generating chamber is communicated with the sodium hypochlorite generating chamber, and the sodium hypochlorite in the sodium hypochlorite generating chamber is sent to the hypochlorous acid generating chamber and reacts with the catalyst in the hypochlorous acid generating chamber to generate hypochlorous acid which is sent to an application point II;
the disinfectant storage chamber is respectively communicated with the sodium hypochlorite generation chamber and the water purification tank, and the sodium hypochlorite from the sodium hypochlorite generation chamber is mixed and diluted with the clean water from the water purification tank in the disinfectant storage chamber and is communicated with the application point IV;
the system detection controller module comprises a main controller, a pH sensor and an ORP detector, wherein pH sensor probes are respectively arranged in a sodium hydroxide storage tank, a hypochlorous acid generation chamber and a disinfectant storage chamber, the ORP detector probes are respectively arranged in the sodium hypochlorite generation chamber, the hypochlorous acid generation chamber and the disinfectant storage chamber, the pH sensor and the ORP detector are connected with the input end of the main controller, and the output end of the main controller is connected with the system fault alarm module;
and the remote monitoring module is in bidirectional connection and communication with the master controller.
Furthermore, the cathode and the anode respectively adopt titanium polar plates, and the thicknesses of the titanium polar plates are respectively 2-4 mm.
Furthermore, the sodium hydroxide storage tank is connected to a first application point through a first pipeline, a first electromagnetic valve connected with the main controller is arranged on the first pipeline, and the main controller controls the first electromagnetic valve to open and close.
Furthermore, the hypochlorous acid generation chamber is connected to a second application point through a second pipeline, a second electromagnetic valve connected with the main controller is arranged on the second pipeline, and the main controller controls the second electromagnetic valve to be opened and closed.
Furthermore, the water purifying tank is connected with a third application point through a third pipeline, a third electromagnetic valve connected with the main controller is arranged on the third pipeline, and the main controller controls the third electromagnetic valve to open and close.
Further, the catalyst is food-grade organic acid or inorganic acid.
Furthermore, the ion exchange membrane is arranged between the anode chamber and the cathode chamber in the electrolysis chamber with the membrane in a wave shape.
Furthermore, the system detection controller module further comprises a temperature sensor and a flow sensor which are connected with the main controller, the temperature sensor is arranged in the membrane electrolysis chamber, and the flow sensor is arranged at the first application point, the second application point, the third application point and the fourth application point.
Further, ion exchange membrane installs on the mounting bracket, and the mounting bracket is detachable to be installed between the anode chamber in the area membrane electrolysis room and the cathode chamber.
Further, the master controller is singlechip or PLC, and system fault alarm module is bee calling organ or voice broadcast ware, and remote monitoring module is the host computer, and remote monitoring module passes through wiFi, bluetooth, 4G or 5G and master controller both-way communication.
Compared with the prior art, the beneficial effects of the utility model are that:
the utility model discloses a multipurpose generator for disinfection and washing, which comprises a water purifying tank, a membrane-containing electrolytic chamber, a sodium hydroxide storage tank, an acid storage tank, a sodium hypochlorite generating chamber, a hypochlorous acid generating chamber, a disinfectant storage chamber, a system detection controller module, a system fault alarm module and a remote monitoring module, wherein the clean water in the water purifying tank can be directly drunk, an anode chamber and a cathode chamber in the membrane-containing electrolytic chamber are separated by a middle part through an ion exchange membrane, food-grade salt water generates electrolytic reaction in the membrane-containing electrolytic chamber, sodium hydroxide is generated in an anode chamber, chlorine is generated in a cathode chamber, the sodium hydroxide in the anode chamber flows into the sodium hydroxide storage tank, acid from the acid storage tank is added in the sodium hydroxide storage tank to adjust the pH value to alkalescence and then is sent to an application point I, the sodium hypochlorite is used as washing water, the sodium hypochlorite reacts with a catalyst to generate, the concentration of the sodium hypochlorite is reduced after the sodium hypochlorite and the clean water are mixed and diluted, and the sodium hypochlorite can be used for soaking, washing food and the like. The utility model provides a disinfection and washing multipurpose generator, moreover, the steam generator is simple in structure, collect the disinfection, wash and drink in an organic whole, a tractor serves several purposes, the water quality of food and beverage trade has been improved, only utilize electrolysis food level electrolyte can obtain safety, sanitation, do not have the detergent of any additive or phosphorus-containing formulation, disinfectant, improve the water quality, can also obtain the washing water and the disinfectant of low concentration or high concentration, do not have any industrial chemical, belong to new generation green product, safety, high efficiency, reliability, the hypochlorous acid water that generates can be used for washing vegetables and get rid of the pesticide, wash meat etc., can be used in the hotel, the food and beverage, needs washing such as school dining room and swimming pool, the disinfection, the public health occasion of sterilization, improve the health index in public health place, for bacteriostasis, the prevention of diseases and insects, improvement quality of service such as epidemic prevention makes contributions.
Drawings
Fig. 1 is a schematic structural view of the present invention;
fig. 2 is a schematic structural view of the mounting frame of the present invention;
wherein, 1-a water purifying tank; 2-electrolytic chamber with membrane; 3-ion exchange membrane; 4-anode chamber; 5-a cathode chamber; a 6-sodium hydroxide holding tank; a 7-acid storage tank; a 8-sodium hypochlorite generation chamber; 9-a hypochlorous acid generation chamber; 10-a sterile water storage chamber; 11-apply point one; 12-application Point two; 13-application point three; 14-application point four; 15-a mounting frame; 16-mounting holes.
Detailed Description
Embodiments of the present invention will be described in detail below with reference to the accompanying drawings, so that the advantages and features of the invention can be more easily understood by those skilled in the art, thereby making the scope of the invention more clearly defined.
As shown in fig. 1-2, a multipurpose generator for disinfection and washing, comprising:
the water purifying tank 1 is used for storing clean water and is communicated with an application point III 13;
the membrane-equipped electrolysis chamber 2 is communicated with the water purification tank 1, a flow limiting valve is arranged between the membrane-equipped electrolysis chamber 2 and the water purification tank 1, an ion exchange membrane 3 is arranged in the membrane-equipped electrolysis chamber 2, an anode chamber 4 and a cathode chamber 5 in the membrane-equipped electrolysis chamber 2 are separated from each other by the ion exchange membrane 3, a cathode is arranged in the anode chamber 4, an anode is arranged in the cathode chamber 5, and hydrogen and hydroxyl ions (OH) are generated by water electrolysis in cathode reaction-) The salt solution is poured into the cathode chamber 5, and electrolysis is performed to obtain sodium ions (Na)+) Flows to the anode chamber 4 through the ion exchange membrane, and in the anode chamber 4, hydroxide ions and sodium ions (Na) passing through the ion exchange membrane+) Sodium hydroxide is generated through combination, chlorine is generated after chloride ions are electrolyzed in the cathode chamber 5 and the anode, and preferably the ion exchange membrane 3 is a cation exchange membrane;
the saline solution is subjected to electrolytic reaction in the electrolytic chamber with membrane 2, sodium hydroxide is generated in the anode chamber 4, chlorine is generated in the cathode chamber 5, the saline solution can be prepared and poured into the electrolytic chamber with membrane 2, and the prior art is adopted;
the sodium hydroxide storage tank 6 is respectively communicated with the anode chamber 4 and the acid storage tank 7, the sodium hydroxide in the anode chamber 4 flows into the sodium hydroxide storage tank 6, the acid in the acid storage tank 7 flows into the sodium hydroxide storage tank 6, the pH value in the sodium hydroxide storage tank 6 is adjusted to be alkalescent (pH9-10), then the pH value is sent to an application point I11 for grease removal, oil stain removal and the like in places such as a kitchen, a toilet and the like, and hydrochloric acid, acetic acid and the like are stored in the acid storage tank 7;
a sodium hypochlorite generation chamber 8 which is communicated with the anode chamber 4 and the cathode chamber 5, and chlorine gas from the cathode chamber 5 and sodium hydroxide from the anode chamber 4 react in the sodium hypochlorite generation chamber 8 to generate alkaline sodium hypochlorite solution;
a hypochlorous acid generation chamber 9 which is communicated with the sodium hypochlorite generation chamber 8, wherein the sodium hypochlorite from the sodium hypochlorite generation chamber 8 reacts with a catalyst in the hypochlorous acid generation chamber 9 to generate neutral high-concentration hypochlorous acid disinfection and sterilization water, the effective chlorine content is 150ppm, the pH value is 5-7, and the water is sent to an application point II 12 for disinfection and washing;
a disinfectant storage chamber 10 communicated with the sodium hypochlorite generation chamber 8, wherein the sodium hypochlorite from the sodium hypochlorite generation chamber 8 and the clean water from the clean water tank 1 are mixed and diluted in the disinfectant storage chamber 10, and are sent to an application point IV 14, the sodium hypochlorite flowing out from the sodium hypochlorite generation chamber 8 is buffered and diluted by only using the clean water as a buffering agent without using a catalyst, so that a low-concentration sodium hypochlorite solution with the concentration of 60ppm and the pH value of 5.5-6.8 is obtained, and then the low-concentration sodium hypochlorite solution is sent to the application point IV 14 and is used for soaking, washing food or atomizing air, deodorizing, sterilizing and the like;
the system detection controller module comprises a master controller, a pH sensor, a temperature sensor, an ORP detector and a flow sensor, wherein the pH sensor, the temperature sensor, the ORP detector and the flow sensor are respectively connected with the input end of the master controller, pH sensor probes are respectively arranged in a sodium hydroxide storage tank 6, a hypochlorous acid generation chamber 9 and a sterilized water storage chamber 10, the pH sensor probes are respectively used for detecting the pH values of the solutions in the sodium hydroxide storage tank 6, the hypochlorous acid generation chamber 9 and the sterilized water storage chamber 10 and uploading the pH values to the master controller for processing, the temperature sensor is arranged in a film electrolysis chamber 2 and used for detecting the temperature in the film electrolysis chamber 2 and uploading the temperature to the master controller for processing, ORP detector probes are respectively arranged in a sodium hypochlorite generation chamber 8, the hypochlorous acid generation chamber 9 and the sterilized water storage chamber 10 and are respectively used for detecting the chlorine content in the sodium hypochlorite generation chamber 8, the hypochlorous acid generation chamber 9 and the sterilized water storage chamber 10, the four application points are respectively provided with a flow sensor and a water faucet and are respectively used for detecting the flow of the solution at each application point and uploading the flow to a main controller for processing, the output end of the main controller is connected with a system fault alarm module and drives the system fault alarm module to respond, and specifically, the system fault alarm module is a buzzer or a voice broadcast device and the like;
and the remote monitoring module is in bidirectional connection communication with the master controller through a communication module comprising WiFi, Bluetooth, 4G or 5G and the like, and is an upper computer.
The sodium hydroxide storage tank 6 is connected to a first application point 11 through a first pipeline, a first electromagnetic valve connected with a main controller is arranged on the first pipeline, the main controller controls the first electromagnetic valve to open and close, and sodium hydroxide in the sodium hydroxide storage tank 6 is added with acid to adjust the pH value to 9-10 and then is sent to the first application point 11.
The hypochlorous acid generation chamber 9 is connected to the second application point 12 through a second pipeline, a second electromagnetic valve connected with the main controller is arranged on the second pipeline, the main controller controls the opening and closing of the second electromagnetic valve, the sodium hypochlorite in the sodium hypochlorite generation chamber 8 reacts with the catalyst to generate hypochlorous acid with the concentration of 120 plus one ion of 150ppm and the pH value of 5-7, and the hypochlorous acid is sent to the second application point 12.
The water purifying tank 1 is connected with an application point III 13 through a third pipeline, a third electromagnetic valve connected with the main controller is arranged on the third pipeline, and the main controller controls the third electromagnetic valve to open and close.
The sterilized water storage chamber 10 is communicated with an application point IV 14 through a fourth pipeline, a fourth electromagnetic valve connected with the main controller is arranged on the fourth pipeline, and the main controller controls the opening and closing of the fourth electromagnetic valve.
The catalyst is food-grade organic acid or inorganic acid.
Ion exchange membrane 3 is between anode chamber 4 and the cathode chamber 5 of wave row cloth in area membrane electrolysis chamber 2, for firm ion exchange membrane 3, ion exchange membrane 3 installs earlier on mounting bracket 15, rethread mounting bracket 15 is detachable installs between anode chamber 4 and the cathode chamber 5 in area membrane electrolysis chamber 2, mounting bracket 15 imbeds to the relative both sides wall of area membrane electrolysis chamber 2, mounting bracket 15 is square frame, set up the relative just position one-to-one mounting hole 16 of a plurality of face on two relative frames about mounting bracket 15, the size of mounting hole 16, shape etc. are supporting with ion exchange membrane 3, ion exchange membrane 3 inserts earlier in the relative mounting hole 16 of position one-to-one, rethread mounting bracket 15 installs in the middle of anode chamber 4 and the cathode chamber 5 in area membrane electrolysis chamber 2, mounting hole 16 can set one.
The utility model discloses a water purification tank 1, area membrane electrolysis chamber 2, ion exchange membrane 3, anode chamber 4, cathode chamber 5, sodium hydroxide holding tank 6, acid holding tank 7, sodium hypochlorite generate room 8, hypochlorous acid generates room 9, disinfectant locker room 10 and adopts the pipeline intercommunication respectively, sets up restriction valve or triangle valve etc. on the pipeline, adjustable outflow or inflow speed, flow etc. can adopt current product, and each part position is undefined, can carry out nimble selection according to the actual demand, and the practicality is high.
The utility model discloses a built-in storage module of master controller, predetermine the temperature threshold value in it, the pH threshold value, the flow threshold value, predetermine the threshold value scope such as chlorine content threshold value, the master controller receives the pH sensor, a weighing sensor and a temperature sensor, the real-time data that ORP detector and flow sensor uploaded respectively is compared with predetermineeing the threshold value, if be not conform to and predetermine the threshold value, then master controller actuating system trouble alarm module sound production is reported to the police, remind the user current situation, make the response, if add many sour regulation pH valve, or add catalyst and improve chlorine content more, reduce flow etc., perhaps finish the electrolytic reaction, reduce the temperature in the area membrane electrolysis room 2.
The utility model discloses the part of not specifically describing adopts prior art, each module that does not describe in detail adopt current product can, do not do here and describe repeatedly.
The above only is the embodiment of the present invention, not limiting the patent scope of the present invention, all the equivalent structures or equivalent processes that are used in the specification and the attached drawings or directly or indirectly applied to other related technical fields are included in the patent protection scope of the present invention.

Claims (8)

1. A multipurpose generator for sanitizing and washing, comprising:
a water purifying tank for storing clean water therein;
the membrane-equipped electrolytic chamber is communicated with the water purifying tank, an ion exchange membrane is arranged in the membrane-equipped electrolytic chamber, an anode chamber and a cathode chamber in the membrane-equipped electrolytic chamber are separated from each other through the ion exchange membrane, a cathode is arranged in the anode chamber, and an anode is arranged in the cathode chamber;
a sodium hydroxide storage tank which is respectively communicated with the anode chamber and the acid storage tank;
a sodium hypochlorite generating chamber which is respectively communicated with the cathode chamber and the anode chamber;
the hypochlorous acid generating chamber is communicated with the sodium hypochlorite generating chamber;
a sterilized water storage chamber which is communicated with the sodium hypochlorite generating chamber and the water purifying tank;
the system detection controller module comprises a main controller, a pH sensor and an ORP detector, wherein the pH sensor is respectively arranged in a sodium hydroxide storage tank, a hypochlorous acid generation chamber and a disinfectant storage chamber, the ORP detector is respectively arranged in the sodium hypochlorite generation chamber, the hypochlorous acid generation chamber and the disinfectant storage chamber, the pH sensor and the ORP detector are connected with the input end of the main controller, and the output end of the main controller is connected with the system fault alarm module;
and the remote monitoring module is in bidirectional connection and communication with the master controller.
2. The multipurpose generator for disinfection and washing of claim 1, wherein the sodium hydroxide storage tank is connected to the first application point through a first pipeline, a first electromagnetic valve connected with the main controller is arranged on the first pipeline, and the main controller controls the opening and closing of the first electromagnetic valve.
3. The multipurpose generator for disinfection and washing of claim 1, wherein the hypochlorous acid generation chamber is connected to a second application point through a second pipeline, a second electromagnetic valve connected with the main controller is arranged on the second pipeline, and the main controller controls the second electromagnetic valve to be opened and closed.
4. The multipurpose generator for disinfection and washing of claim 1, wherein the purified water tank is connected to the third point of application through a third pipeline, a third electromagnetic valve connected to the main controller is arranged on the third pipeline, and the main controller controls the opening and closing of the third electromagnetic valve.
5. The multipurpose generator for disinfection and washing of claim 1 wherein said ion exchange membranes are arranged in a wave configuration intermediate said anode and cathode compartments of said membrane-containing electrolysis chamber.
6. The multipurpose generator for disinfection and washing of claim 1, wherein the system detection controller module further comprises a temperature sensor and a flow sensor connected to the main controller, the temperature sensor is disposed in the membrane electrolysis chamber, and the flow sensor is disposed at the first application point, the second application point, the third application point and the fourth application point.
7. A multipurpose generator for disinfection and washing as claimed in claim 1 wherein said ion exchange membrane is mounted on a mounting frame which is removably mounted between said anode and cathode compartments within said membrane-containing electrolysis chamber.
8. The multipurpose generator for disinfection and washing of claim 1, wherein the master controller is a single chip microcomputer or a PLC, the system failure alarm module is a buzzer or a voice broadcaster, the remote monitoring module is an upper computer, and the remote monitoring module is in two-way communication with the master controller through WiFi, Bluetooth, 4G or 5G.
CN202020244548.1U 2020-03-03 2020-03-03 Multipurpose generator for disinfection and washing Active CN212025478U (en)

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112603928A (en) * 2020-12-15 2021-04-06 上海安法生物科技有限公司 Disinfectant and detergent co-production method and disinfectant
CN114956397A (en) * 2021-07-06 2022-08-30 上海欣亚日化科技有限公司 Preparation system for water for washing equipment and application of preparation system
CN116883194A (en) * 2023-02-18 2023-10-13 北京茂生生物科技研究院(有限合伙) Modularized production water agent comprehensive guarantee system for water treatment equipment

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN112603928A (en) * 2020-12-15 2021-04-06 上海安法生物科技有限公司 Disinfectant and detergent co-production method and disinfectant
CN114956397A (en) * 2021-07-06 2022-08-30 上海欣亚日化科技有限公司 Preparation system for water for washing equipment and application of preparation system
CN116883194A (en) * 2023-02-18 2023-10-13 北京茂生生物科技研究院(有限合伙) Modularized production water agent comprehensive guarantee system for water treatment equipment
CN116883194B (en) * 2023-02-18 2024-03-19 北京茂生生物科技研究院(有限合伙) Modularized production water agent comprehensive guarantee system for water treatment equipment

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