CN213326848U - Tubular plate-type ceramic membrane central water purifier - Google Patents
Tubular plate-type ceramic membrane central water purifier Download PDFInfo
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- CN213326848U CN213326848U CN202021134160.2U CN202021134160U CN213326848U CN 213326848 U CN213326848 U CN 213326848U CN 202021134160 U CN202021134160 U CN 202021134160U CN 213326848 U CN213326848 U CN 213326848U
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Abstract
The utility model discloses a tubular plate-type ceramic membrane central water purifier belongs to water purifier technical field. It includes ceramic membrane group, equipment shell, total water purification export, total water inlet, total drain, pressure sensor, overhead tank, the solenoid valve of intaking, overhead tank solenoid valve, backwash solenoid valve, play water solenoid valve, blowdown solenoid valve, outlet pipe, backwash pipe, overhead tank inlet tube, power, controller, equipment shell outside is equipped with total water purification export, total sewage import, total drain in proper order, is equipped with the ceramic membrane group of a plurality of series connections in the equipment shell, the overhead tank is connected to the water purification delivery port of ceramic membrane group through outlet pipe, backwash pipe, overhead tank inlet tube respectively. Through setting up overhead tank, pressure sensor, backwash solenoid valve and backwash pipe, can carry out periodic backwash to the ceramic membrane group, avoid dull and stereotyped ceramic membrane to use for a long time and cause the jam.
Description
Technical Field
The utility model relates to a tubular plate-type ceramic membrane central water purifier belongs to water purifier technical field.
Background
The current central water purifier in the existing market mostly uses organic membrane as the main, and organic membrane can not the backwash, and after the water yield of handling promptly reached certain degree, when membrane flux was unable to be resumeed, need replace new membrane, and the water purifier of using inorganic membrane does not have the backwash device, and long-term the use can cause inside filter core to block up, and the membrane shell generally is opaque, can not observe inside filter core situation.
Disclosure of Invention
The utility model discloses the technical problem that will solve lies in: the utility model provides a tubular plate-type ceramic membrane central water purifier, it has solved the problem that the purification membrane of central water purifier among the prior art can not the backwash, and the membrane shell is generally opaque moreover, can not observe inside filter core situation.
The utility model discloses the technical problem that will solve takes following technical scheme to realize:
the utility model provides a tubulose plate-type ceramic membrane central water purifier, it includes the ceramic membrane group, the ceramic membrane group comprises organic glass membrane shell, flange, water collection cavity, water inlet, water purification delivery port, drain and dull and stereotyped ceramic membrane component, the water collection cavity is connected respectively through flange at organic glass membrane shell both ends, and organic glass membrane shell is inside to be equipped with dull and stereotyped ceramic membrane component, water purification delivery port, drain are established respectively in two water collection cavity outsides, the water inlet is established in the organic glass membrane shell outside, and it still includes equipment shell, total water purification export, total water inlet, total drain, pressure sensor, overhead tank, the solenoid valve of intaking, overhead tank solenoid valve, backwash solenoid valve, play water solenoid valve, blowdown solenoid valve, outlet pipe, backwash pipe, overhead tank inlet tube, power, controller, equipment shell outside is equipped with total water purification export in proper order, The device comprises a main water inlet, a main sewage draining outlet, a plurality of ceramic membrane groups connected in series, a purified water outlet, a water inlet and a sewage draining outlet of each ceramic membrane group are respectively connected to the main purified water outlet, the main water inlet and the main sewage draining outlet through pipelines, and pressure tanks are respectively connected to the purified water outlets of the ceramic membrane groups through water outlet pipes, backwashing pipes and pressure tank water inlet pipes;
the pressure sensor is arranged on the pressure tank;
the water inlet electromagnetic valve is arranged on a pipeline between the water inlet of the ceramic membrane group and the main water inlet;
the water outlet electromagnetic valve is arranged on a pipeline between the purified water outlet and the main purified water outlet of the ceramic membrane group, and the water outlet end of the water outlet pipe is connected to the pipeline in front of the water outlet electromagnetic valve;
the pressure tank water inlet electromagnetic valve is arranged on a pressure tank water inlet pipe between the pressure tank and the clean water outlet of the ceramic membrane group;
the backwashing electromagnetic valve is arranged on a backwashing pipe which connects the pressure tank with the purified water outlet of the ceramic membrane module;
the sewage discharge electromagnetic valve is arranged on a pipeline connecting the sewage discharge port with the main sewage discharge port;
the controller is respectively and electrically connected with the pressure sensor, the water inlet electromagnetic valve, the pressure tank water inlet electromagnetic valve, the backwashing electromagnetic valve, the water outlet electromagnetic valve, the sewage discharge electromagnetic valve and the power supply.
As a preferred example, the controller adopts a single chip microcomputer.
As a preferable example, the purified water outlet, the water inlet, the sewage draining outlet, the main purified water outlet, the main water inlet and the main sewage draining outlet are respectively provided with a commanding interface.
As a preferred example, the equipment shell is provided with a viewing port, and the viewing port is made of transparent organic glass materials.
The utility model has the advantages that:
(1) by arranging the pressure tank, the pressure sensor, the backwashing electromagnetic valve and the backwashing pipe, the ceramic membrane group can be periodically backwashed, so that the blockage caused by long-term use of the flat ceramic membrane is avoided;
(2) through set up transparent glass viewing aperture above equipment casing, can observe the filtration situation of dull and stereotyped ceramic membrane element inside the ceramic membrane group.
Drawings
FIG. 1 is a schematic view of the structure of the ceramic membrane module of the present invention
FIG. 2 is a perspective schematic view of the present invention;
FIG. 3 is a schematic structural view of the working principle of the present invention;
fig. 4 is a schematic view of the structure of the present invention.
In the figure: the device comprises a ceramic membrane group 100, an organic glass membrane shell 1, a connecting flange 2, a water collecting cavity 3, a water inlet 4, a purified water outlet 5, a sewage discharge outlet 6, a flat ceramic membrane element 7, a device shell 8, a total purified water outlet 9, a total water inlet 10, a total sewage discharge outlet 11, a pressure sensor 12, a pressure tank 13, a water inlet electromagnetic valve 14, a pressure tank water inlet electromagnetic valve 15, a backwashing electromagnetic valve 16, a water outlet electromagnetic valve 17, a sewage discharge electromagnetic valve 18, a water outlet pipe 19, a backwashing pipe 20, a pressure tank water inlet pipe 21 and an observation port 22.
Detailed Description
In order to right the utility model discloses a technological means, creation characteristic, achievement purpose and efficiency are easily understood and are known, combine specific figure in the following, further explain the utility model discloses, mark arrow point shows business turn over water direction in the figure that shows.
As shown in figures 1-4, a tubular plate-type ceramic membrane central water purifier comprises a ceramic membrane group 100, wherein the ceramic membrane group 100 comprises an organic glass membrane shell 1, a connecting flange 2, a water collection cavity 3, a water inlet 4, a purified water outlet 5, a sewage outlet 6 and a flat ceramic membrane element 7, two ends of the organic glass membrane shell 1 are respectively connected with the water collection cavity 3 through the connecting flange 2, the flat ceramic membrane element 7 is arranged in the organic glass membrane shell 1, the purified water outlet 5 and the sewage outlet 6 are respectively arranged at the outer sides of the two water collection cavities 3, the water inlet 4 is arranged at the outer side of the organic glass membrane shell 1, the water purifier further comprises an equipment shell 8, a main purified water outlet 9, a main water inlet 10, a main sewage outlet 11, a pressure sensor 12, a pressure tank 13, a water inlet electromagnetic valve 14, a pressure tank water inlet electromagnetic valve 15, a backwashing electromagnetic valve 16, a water outlet electromagnetic, The device comprises a backwashing pipe 20, a pressure tank water inlet pipe 21, a power supply and a controller, wherein a main purified water outlet 9, a main water inlet 10 and a main sewage draining outlet 11 are sequentially arranged outside a device shell 8, a plurality of ceramic membrane groups 100 are arranged in the device shell 8 in series, a purified water outlet 5, a water inlet 4 and a sewage draining outlet 6 of each ceramic membrane group 100 are respectively connected to the main purified water outlet 5, the main water inlet 4 and the main sewage draining outlet 6 through pipelines, and a pressure tank 13 is respectively connected to the purified water outlet 5 of each ceramic membrane group 100 through a water outlet pipe 19, a backwashing pipe 20 and a pressure tank water inlet pipe 21;
the pressure sensor 12 is arranged on the pressure tank 13;
the water inlet electromagnetic valve 14 is arranged on a pipeline between the water inlet 4 and the main water inlet 10 of the ceramic membrane group 100;
the water outlet electromagnetic valve 17 is arranged on a pipeline between the purified water outlet 5 and the main purified water outlet 9 of the ceramic membrane group 100, and the water outlet end of the water outlet pipe 19 is connected on the pipeline in front of the water outlet electromagnetic valve 17;
the pressure tank water inlet electromagnetic valve 15 is arranged on a pressure tank water inlet pipe 21 between the pressure tank 13 and the clean water outlet 5 of the ceramic membrane module 100;
the backwashing electromagnetic valve 16 is arranged on a backwashing pipe 20 which connects the pressure tank 13 and the clean water outlet 5 of the ceramic membrane module 100;
the drain electromagnetic valve 18 is arranged on a pipeline connecting the drain outlet 6 with the main drain outlet 11;
the controller is respectively electrically connected with the pressure sensor 12, the water inlet electromagnetic valve 14, the pressure tank water inlet electromagnetic valve 15, the backwashing electromagnetic valve 16, the water outlet electromagnetic valve 17, the sewage discharge electromagnetic valve 18 and the power supply.
The controller adopts a singlechip.
The purified water outlet 5, the water inlet 4, the sewage draining outlet 6, the main purified water outlet 9, the main water inlet 10 and the main sewage draining outlet 11 are all provided with ordering interfaces.
The device shell 8 is provided with a viewing port 22, and the viewing port 22 is made of transparent organic glass.
The working principle is as follows:
the process of purifying water by the ceramic membrane module 100: a tap water pipe is connected with a main water inlet, the main water inlet 10 is connected with a water inlet 5 through a pipeline, tap water is purified through a membrane of a flat ceramic membrane element 7 arranged in the organic glass membrane shell 1, purified water is output through a purified water outlet 5, and sewage formed after purification is discharged from a sewage discharge outlet 6 to finish a purification process;
when a user uses water, the water inlet electromagnetic valve 14 and the water outlet electromagnetic valve 17 are normally opened, tap water is purified by the ceramic membrane group 100 and then is output by the water outlet pipe 19 and the total purified water outlet 9 for direct use, when the ceramic membrane group 100 needs backwashing, the backwashing electromagnetic valve 16 and the sewage discharge electromagnetic valve 18 are normally opened, other electromagnetic valves are closed, the pressure tank 13 carries out backwashing operation on the diaphragm of the flat ceramic element 7 under the self pressure, purified water is reversely conveyed from the pressure tank 13 to the purified water outlet 5 through the backwashing pipe 20 to flush the flat ceramic element 7, the backwashing time is determined according to the membrane pollution degree, sewage generated after backwashing is discharged from the total sewage outlet 11, the opening and closing of all the electromagnetic valves are controlled by the controller, and the controller adopts a single chip microcomputer;
when the pressure sensor 12 detects that the water pressure in the pressure tank 13 is insufficient and water needs to be supplemented, the pressure sensor 12 transmits signals to the single chip microcomputer, the single chip microcomputer controls the water inlet electromagnetic valve 14, the pressure tank water inlet electromagnetic valve 15 and the water outlet electromagnetic valve 17 to be opened, purified water is conveyed into the pressure tank 13 from the pressure tank water inlet pipe 21 to supplement water, when the pressure of the pressure tank 13 reaches a set value, the pressure sensor 12 outputs signals to the single chip microcomputer, and the single chip microcomputer controls the pressure tank water inlet electromagnetic valve 15 to be closed, so that a water supplementing flow is completed.
The foregoing illustrates and describes the principles, general features, and advantages of the present invention. It will be understood by those skilled in the art that the present invention is not limited to the above-described embodiments, and that various changes and modifications may be made without departing from the spirit and scope of the invention, and such changes and modifications are intended to be included within the scope of the invention as claimed. The scope of the invention is defined by the appended claims and equivalents thereof.
Claims (4)
1. The utility model provides a tubulose plate-type ceramic membrane central authorities water purifier, it includes ceramic membrane group, ceramic membrane group comprises organic glass membrane shell, flange, collection water cavity, water inlet, water purification delivery port, drain and dull and stereotyped ceramic film element, the collection water cavity is connected respectively through flange at organic glass membrane shell both ends, and organic glass membrane shell is inside to be equipped with dull and stereotyped ceramic film element, water purification delivery port, drain are established respectively in two collection water cavity outsides, the water inlet is established in the organic glass membrane shell outside, its characterized in that: the device comprises a device shell, a main purified water outlet, a main water inlet, a main sewage outlet, a pressure sensor, a pressure tank, a water inlet electromagnetic valve, a pressure tank water inlet electromagnetic valve, a backwashing electromagnetic valve, a water outlet electromagnetic valve, a sewage discharge electromagnetic valve, a water outlet pipe, a backwashing pipe, a pressure tank water inlet pipe, a power supply and a controller, wherein the main purified water outlet, the main sewage inlet and the main sewage outlet are sequentially arranged outside the device shell;
the pressure sensor is arranged on the pressure tank;
the water inlet electromagnetic valve is arranged on a pipeline between the water inlet of the ceramic membrane group and the main water inlet;
the water outlet electromagnetic valve is arranged on a pipeline between the purified water outlet and the main purified water outlet of the ceramic membrane group, and the water outlet end of the water outlet pipe is connected to the pipeline in front of the water outlet electromagnetic valve;
the pressure tank water inlet electromagnetic valve is arranged on a pressure tank water inlet pipe between the pressure tank and the clean water outlet of the ceramic membrane group;
the backwashing electromagnetic valve is arranged on a backwashing pipe which connects the pressure tank with the purified water outlet of the ceramic membrane module;
the sewage discharge electromagnetic valve is arranged on a pipeline connecting the sewage discharge port with the main sewage discharge port;
the controller is respectively and electrically connected with the pressure sensor, the water inlet electromagnetic valve, the pressure tank water inlet electromagnetic valve, the backwashing electromagnetic valve, the water outlet electromagnetic valve, the sewage discharge electromagnetic valve and the power supply.
2. The central water purifier of a tubular plate-type ceramic membrane according to claim 1, wherein the controller is a single-chip microcomputer.
3. The central water purifier with tubular plate-type ceramic membranes according to claim 1, wherein the purified water outlet, the water inlet, the drain outlet, the total purified water outlet, the total water inlet and the total drain outlet are made of union joints.
4. The central water purifier of a tubular plate-type ceramic membrane according to claim 1, wherein the equipment housing is provided with a viewing port, and the viewing port is made of transparent organic glass.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN202021134160.2U CN213326848U (en) | 2020-06-17 | 2020-06-17 | Tubular plate-type ceramic membrane central water purifier |
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CN202021134160.2U CN213326848U (en) | 2020-06-17 | 2020-06-17 | Tubular plate-type ceramic membrane central water purifier |
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CN213326848U true CN213326848U (en) | 2021-06-01 |
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CN202021134160.2U Active CN213326848U (en) | 2020-06-17 | 2020-06-17 | Tubular plate-type ceramic membrane central water purifier |
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2020
- 2020-06-17 CN CN202021134160.2U patent/CN213326848U/en active Active
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Address after: Room 605, building 62, 988 Pingliang Road, Yangpu District, Shanghai 200082 Patentee after: Zhongguang future technology development (Shanghai) Co.,Ltd. Address before: Room 605, building 62, 988 Pingliang Road, Yangpu District, Shanghai 200082 Patentee before: SHANGHAI QINGLIN ENVIRONMENTAL PROTECTION TECHNOLOGY CO.,LTD. |
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