CN215253252U - Air-flushing waterless odorless urinal - Google Patents
Air-flushing waterless odorless urinal Download PDFInfo
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- CN215253252U CN215253252U CN202121220807.8U CN202121220807U CN215253252U CN 215253252 U CN215253252 U CN 215253252U CN 202121220807 U CN202121220807 U CN 202121220807U CN 215253252 U CN215253252 U CN 215253252U
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A40/00—Adaptation technologies in agriculture, forestry, livestock or agroalimentary production
- Y02A40/10—Adaptation technologies in agriculture, forestry, livestock or agroalimentary production in agriculture
- Y02A40/20—Fertilizers of biological origin, e.g. guano or fertilizers made from animal corpses
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- Y—GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
- Y02—TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
- Y02A—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
- Y02A50/00—TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
- Y02A50/30—Against vector-borne diseases, e.g. mosquito-borne, fly-borne, tick-borne or waterborne diseases whose impact is exacerbated by climate change
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Abstract
The utility model relates to an anhydrous odorless urinal of air blast, include: the device comprises a urinal body, an air blast system, a sewage pipeline device, a tail gas treatment system, a urine primary biological treatment system and a urine secondary treatment system; the urinal body is respectively connected with the air flushing system and the sewage pipeline device, and the air flushing system can perform air flushing and disinfection after the urinal body is used; the sewage pipeline device is also respectively connected with the urine primary biological treatment system and the tail gas treatment system, and urine and tail gas in the urinal body can be respectively discharged into the urine primary biological treatment system and the tail gas treatment system through the sewage pipeline device; the urine primary biological treatment system is also connected with the urine secondary treatment system, and the urine can enter the urine secondary treatment system for further treatment after being treated by the urine primary biological treatment system. The utility model provides a urinal can reduce urinal's water consumption, solves urinal stink problem, makes the urine of collecting and obtaining obtain rational utilization.
Description
Technical Field
The utility model belongs to the technical field of the lavatory utensil, especially, relate to an anhydrous odorless urinal of air blast.
Background
The urinal is a special urinal for men, is used for draining urine discharged in the toilet, is generally designed in a flushing mode, and is mainly used in public toilets. The flushing urinal has high use frequency, and when in use, the flushing mode is utilized to clean the urinal. The one-time flushing quantity of the urinal can reach 5L, the cleaning water consumption is large, and the water resource waste is caused. The unusual waterless urinal in the market often just has got rid of the water inlet, and the urinal does not get clean and wash, and urine spot remains, and the time is especially summer, easily introduces the fly worm, and the smell is bad, often brings a sour odor.
SUMMERY OF THE UTILITY MODEL
Technical problem to be solved
To the technical problem that exists now, the utility model provides an anhydrous odorless urinal of air blast.
(II) technical scheme
In order to achieve the above object, the utility model discloses a main technical scheme include:
an air-flush waterless odorless urinal, comprising: the device comprises a urinal body, an air blast system, a sewage pipeline device, a tail gas treatment system, a urine primary biological treatment system and a urine secondary treatment system;
the urinal body is respectively connected with the air flushing system and the sewage pipeline device, and the air flushing system can perform air flushing and disinfection after the urinal body is used;
the sewage pipeline device is also respectively connected with the urine primary biological treatment system and the tail gas treatment system, and urine and tail gas in the urinal body can be respectively discharged into the urine primary biological treatment system and the tail gas treatment system through the sewage pipeline device;
the urine primary biological treatment system is further connected with the urine secondary treatment system, and urine can enter the urine secondary treatment system after being treated by the urine primary biological treatment system for further treatment so as to obtain the organic liquid fertilizer.
Preferably, a vertically arranged urine collecting groove is arranged on the urinal body;
a urine outlet is formed in the bottom of the urine collecting groove;
the urine outlet is connected with the sewage pipeline device;
air injection disinfection holes are fixed at the top and the inner parts of the left side and the right side of the urine collection groove;
the air injection disinfection holes are distributed along the inner side groove wall of the urine collection groove and are used for flushing along the direction of the inner wall of the urine collection groove facing the urine discharge port;
the air injection disinfection hole is connected with the air blast system.
Preferably, the air blast system comprises: the device comprises a sensor, an air injection pipeline, a three-position three-way normally-closed double-electric-control electromagnetic valve, a time control switch, a disinfection tank and an air compression device;
the sensor is arranged in a toilet wall above the urinal and faces a toilet bowl, or is arranged on the front of the urinal body and faces the toilet bowl;
the sensor is also connected with the three-position three-way normally-closed double-electric control electromagnetic valve;
the time control switch is also in control connection with the three-position three-way normally-closed dual-electric control electromagnetic valve;
one end of the air injection pipeline is connected with the air injection disinfection hole, and the other end of the air injection pipeline is connected with the three-position three-way normally-closed dual-electric control electromagnetic valve;
the three-position three-way normally-closed double-electric-control electromagnetic valve is also respectively connected with the disinfection tank and the air compression device through pipelines;
the disinfection tank and the air compression device are connected with each other through a pipeline.
Preferably, the exhaust gas treatment system comprises: the device comprises an exhaust pipeline, an exhaust device, a tail gas treatment device and a hood;
the exhaust pipeline is provided with an exhaust device, one end of the exhaust pipeline is connected with the sewage pipeline device, and the other end of the exhaust pipeline is connected with the tail gas treatment device;
the tail gas treatment device is connected with the blast cap.
Preferably, the urine primary bio-processing system comprises a urine processing container means;
a primary treatment space, a secondary treatment space and a tertiary treatment space are arranged in the urine treatment container device;
wherein the primary treatment space contains elastic three-dimensional biological filler, biological bacteria and a first heating rod;
biological bacteria and a second heating rod are paved at the bottom of the secondary treatment space;
and a buoyancy type liquid level sensor and a urine pumping pipeline are arranged in the three-stage treatment space.
Preferably, the primary treatment space and the secondary treatment space are separated by a first partition plate;
the upper end of the first clapboard is provided with an air hole, and the lower end of the first clapboard is provided with a urine outflow gap;
the secondary treatment space and the tertiary treatment space are separated by a second partition plate;
the upper end of the second clapboard is provided with a urine outflow gap.
Preferably, the urine primary biological treatment system further comprises a water suction pump;
the water suction pump is connected with the urine suction pipeline and used for pumping the urine in the three-stage treatment space into the urine secondary treatment system;
the buoyancy type liquid level sensor is connected with the water suction pump.
Preferably, the urine processing container device is provided with an inspection well and a urine pumping port;
the urine pumping pipeline extends to the outside of the urine processing container device through the urine pumping port to realize connection with the water pump;
set up on the urine extraction pipeline the suction pump, and one end is connected urine secondary processing system, the other end is deep the bottom in tertiary treatment space is convenient for extract the bottom urine.
Preferably, the urine secondary treatment system comprises: one or more processing units;
the processing unit includes: a treatment tank and a treatment water pump;
the water suction pump is connected with the urine suction pipeline and used for pumping urine in the three-stage treatment space into the treatment tank;
the treatment water pump can pump the organic liquid fertilizer in the treatment tank into the organic liquid fertilizer collecting device or the treatment tank of the next treatment unit by means of a connecting pipeline.
Preferably, the urine collecting groove cornice is provided with a liquid splashing prevention arc flange for preventing urine from splashing outwards.
(III) advantageous effects
The utility model has the advantages that: the utility model provides a pair of anhydrous odorless urinal of air blast has following beneficial effect:
reduce the water consumption of urinal, solve the urinal stink problem, make the urine of collecting the acquisition obtain rational utilization.
Drawings
Fig. 1 is a schematic structural view of an air-flushing waterless and odorless urinal provided by the present invention;
fig. 2 is a schematic view of the working process of the air-flushing waterless and odorless urinal.
[ description of reference ]
1: a urinal body; 101: a urine collection tank; 102: a urine outlet; 103: the liquid splashing prevention arc flange; 104: air-jetting sterilizing holes;
2: an air blast system; 201: an air injection pipeline; 202: a three-position three-way normally closed double-electric control electromagnetic valve; 203: a time control switch; 204: an air compression device; 205: a sterilizing tank; 206: a sensor;
3: a waste pipe arrangement;
4: a tail gas treatment system; 401: an exhaust duct; 402: an exhaust device; 403: a tail gas treatment device; 404: a hood;
5: a urine primary biological treatment system; 501: a primary processing space; 502: a secondary processing space; 503: a three-stage treatment space; 504: a heating rod; 505: a first separator; 506: a second separator; 507: an inspection well; 508: elastic three-dimensional biological filler; 509: biological bacteria; 510: a buoyancy-type liquid level sensor; 511: a urine drainage tube; 512: a water pump;
6: a urine secondary treatment system; 601: a treatment tank; 602: connecting a pipeline; 603: treating the water pump;
7: organic liquid fertile collection device.
Detailed Description
For a better understanding of the present invention, reference will now be made in detail to the present invention, examples of which are illustrated in the accompanying drawings.
As shown in fig. 1 and 2: the embodiment discloses an anhydrous odorless urinal of air blast, include: the device comprises a urinal body 1, an air flushing system 2, a sewage pipeline device 3, a tail gas treatment system 4, a urine primary biological treatment system 5 and a urine secondary treatment system 6; the urinal body 1 is respectively connected with the air flushing system 2 and the sewage pipeline device 3, and the air flushing system 2 can perform air flushing and disinfection after the urinal body 1 is used; the sewage pipeline device 3 is also respectively connected with the urine primary biological treatment system 5 and the tail gas treatment system 4, and urine and tail gas in the urinal body 1 can be respectively discharged into the urine primary biological treatment system 5 and the tail gas treatment system 4 through the sewage pipeline device 3; urine primary biological treatment system 5 still with urine secondary treatment system 6 is connected, and the urine can be in the process the urine enters after primary biological treatment system 5 handles in the urine secondary treatment system 6 further processing for obtain organic liquid fertilizer.
The anhydrous odorless urinal of air purge that provides in this embodiment reduces the water consumption of urinal, solves urinal stink problem, makes the urine of collecting the acquisition obtain rational utilization.
In this embodiment, a vertically arranged urine collecting groove 101 is arranged on the urinal body 1; the bottom of the urine collection groove 101 is provided with a urine outlet 102; the urine outlet 102 is connected with the sewage pipeline device 3; air-spraying disinfection holes 104 are fixed at the top and the inner parts of the left side and the right side of the urine collection groove 101; the air-spraying disinfection holes 104 are distributed along the inner wall of the urine collection tank 101 and are used for flushing along the inner wall of the urine collection tank 101 in the direction facing the urine outlet 102; the air blast disinfection hole 104 is connected with the air blast system 2.
The air impingement system 2 described in this embodiment includes: a sensor 206, an air injection pipeline 201, a three-position three-way normally-closed double-electric-control solenoid valve 202, a time control switch 203, a disinfection tank 205 and an air compression device 204.
In detail, the sensor 206 is disposed in a toilet wall above the urinal and faces a toilet bowl, or is disposed in the front of the urinal body 1 and faces a toilet bowl; the sensor 206 is also connected with a three-position three-way normally-closed dual-electric control solenoid valve control 202; the time control switch 203 is also connected with the three-position three-way normally-closed dual-electric control electromagnetic valve control 202; one end of the air injection pipeline 201 is connected with the air injection disinfection hole 104, and the other end of the air injection pipeline is connected with the three-position three-way normally-closed dual-electric control electromagnetic valve 202; the three-position three-way normally-closed dual-electric-control electromagnetic valve 202 is also respectively connected with the disinfection tank 205 and the air compression device 204 through pipelines; the sterilization tank 205 and the air compressor 204 are connected to each other by a pipe.
In actual use, sensor 206 can sense whether someone uses the urinal, can remind the work of three-position tee bend normal close dual electric control solenoid valve 202 in time to open the washing work after someone uses the undersize urinal, ensures the sanitation and hygiene of urinal.
In actual use, the time control switch 203 can control the three-position three-way normally closed dual-electric control solenoid valve 202 to work in time to start washing and disinfecting work, so that the disinfection and sanitation of the urinal are guaranteed.
The exhaust gas treatment system 4 described in this embodiment includes: an exhaust pipe 401, an exhaust device 402, an exhaust gas treatment device 403, and a hood 404.
Specifically, an exhaust device 402 is arranged on the exhaust pipeline 401, and one end of the exhaust pipeline is connected with the sewage pipeline device 3, and the other end of the exhaust pipeline is connected with the tail gas treatment device 403; the exhaust gas treatment device 403 is connected to the hood 404. The tail gas generated by the urine is treated and finally discharged by the hood 404.
The urine disposable bio-processing system 5 described in this embodiment includes a urine disposal container means; a primary treatment space 501, a secondary treatment space 502 and a tertiary treatment space 503 are arranged in the urine treatment container device.
Wherein, the primary processing space 501 contains elastic three-dimensional biological filler 508, biological bacteria 509 and a first heating rod 504; biological bacteria 509 and a second heating rod 504 are paved at the bottom of the secondary treatment space 502; a buoyancy type liquid level sensor 510 and a urine pumping pipeline 511 are arranged in the third-stage treatment space 503.
It should be noted that: the primary processing space 501 and the secondary processing space 502 are separated by a first partition 505.
The upper end of the first clapboard 505 is provided with a vent hole, and the lower end is provided with a urine outflow gap; the secondary processing space 502 is separated from the tertiary processing space 503 by a second partition 506; the upper end of the second baffle 506 is provided with a urine outflow gap.
The urine primary biological treatment system 5 in this embodiment further includes a water pump 512; the water pump 512 is connected to the urine extraction pipe 511, and is configured to pump the urine in the tertiary treatment space 503 into the urine secondary treatment system 6; the buoyancy type liquid level sensor 510 is connected with the water pump 512.
The urine processing container device in the embodiment is provided with an inspection well 507 and a urine drawing port; the urine extraction pipe 511 is extended to the outside of the urine processing container device through the urine extraction port to realize connection with the water pump 512.
Set up on the urine extraction pipeline 511 suction pump 512, and one end is connected urine secondary processing system 6, the other end is deep tertiary processing space 503's bottom is convenient for extract the bottom urine.
The urine secondary treatment system 6 described in this embodiment includes: one or more processing units; the processing unit includes: a treatment tank 601 and a treatment water pump 603; the water pump 512 is connected to the urine extraction pipe 511, and is used for pumping the urine in the third-stage treatment space 503 into the treatment tank 601.
The treatment water pump 603 can pump the organic liquid fertilizer in the treatment tank 601 to the organic liquid fertilizer collection device 7 or the treatment tank 601 of the next treatment unit by means of the connecting pipe 602. The organic liquid fertilizer collected here can be used in fields such as farmlands or orchards.
In this embodiment, the cornice of the urine collection groove 101 is provided with the splash-proof liquid arc flange 103 to prevent urine from splashing outwards.
In the design of the urinal body 1 in this embodiment, it is preferable to dispose the disinfection tank 205, the air compression device 204, the three-position three-way normally-closed dual-electric-control solenoid valve 202 and the time-control switch 203 in the toilet wall; or an installation cavity is arranged at the rear part of the urinal body 1, and the air injection pipeline 201, the three-position three-way normally-closed dual-electric control solenoid valve 202 and the time control switch 203 are fixedly arranged in the installation cavity.
In this embodiment, all the water pumps 512 and the processing water pump 603 are connected to the pipeline by flanges, and the other pipelines are connected to the pipeline by joints.
The interfaces of all the pipelines in the embodiment adopt sealing measures to prevent urine leakage and gas leakage.
The daily working hours of the exhaust device 402 and the exhaust gas treatment device 403 in this embodiment should be adjusted according to the usage habits of the user, such as: in public washrooms in scenic spots, the daily working time can be set to be 06: 00-24: 00, the working frequency is 55 minutes per hour, and the urinal is ensured to be odorless.
In this embodiment, the exhaust gas treatment device 403 is preferably a plasma exhaust gas treatment device, and may also be a photo-oxidation activated carbon integrated exhaust gas treatment device.
The hood 404 in this embodiment is provided with a check valve to prevent gas from flowing backwards.
The elastic three-dimensional biological filler 508 in the primary treatment space 501 of the urine primary biological treatment system 5 in this embodiment is used for the implantation of biological bacteria 509, and the biological bacteria 509 can be uniformly implanted on each filament, so as to maintain good activity and space variability, and can obtain larger and larger specific surface area in the continuous reproduction process for good metabolism. Biological bacteria 509 in the secondary processing space 502 in the urine primary biological processing system 5 are laid at the bottom, and urine passing through the primary processing space 501 necessarily passes through the biological bacteria 509 in the secondary processing space 502, so that the residual organic matters in the urine passing through the primary processing space 501 are decomposed. The heating rod 504 in the urine primary biological treatment system 5 is used for meeting the temperature requirement for living and breeding of the biological bacteria 509, and when the temperature is too low, the heating rod 504 is started to meet the temperature requirement for living and breeding of the biological bacteria 509.
In this embodiment, the urine extraction level value set by the buoyancy type liquid level sensor 510 should be 1/2 or more of the height of the liquid level in the barrel, and the urine extraction is stopped when the urine extraction level value is lower than 5-50 cm of the height of the liquid level in the barrel, so as to ensure that the urine secondary treatment system 6 can fully treat a certain amount of urine.
In this embodiment, biological bacteria are placed in the treatment tank 601 of the urine secondary treatment system 6 for treating the urine passing through the urine primary biological treatment system 5.
The processing cycle of the urine secondary treatment system 6 in this embodiment is usually 1-30 days, and when the cycle is reached, the urine can be extracted to the organic liquid fertilizer collecting device 7 by professional as liquid fertilizer, and is used to fields such as farmlands or orchards.
In this embodiment, the plurality of air injection disinfection holes 104 may be provided to ensure that the injection range can cover the urine collection tank 101 as much as possible, or cover the part of the urine collection tank 101 mainly adhered with urine.
In this embodiment, the sensor 206 is preferably an infrared sensor, and may also be a laser sensor, a face recognition sensor, an iris sensor, a microwave sensor, a thermal switch, or the like.
In this embodiment 1 the preferred nanometer ceramic surface of selecting for use of urinal body makes its enamel surface form careful nanometer interface structure, reduces ceramic surface water absorption degree to make the difficult detention of urine better, clear away the peculiar smell. Other materials such as stainless steel, glass fiber reinforced plastic, engineering plastics, carbon fiber, composite materials, acrylic, and the like may also be used.
This example takes the scenic spot public health room waterless urinal as an example:
when a user uses the toilet, the sensor 206 senses that the human body leaves for 1-5 seconds, the three-position three-way normally-closed dual-electric-control electromagnetic valve 202 is opened, the pipeline connected with the air compression device 204 is opened, air is sprayed out from the air spraying disinfection hole 104 along the pipeline, and urine remained on the urine collection groove 101 is washed along the urine collection groove 101. Urine enters the sewage pipeline device 3 from a urine discharge port and flows to the urine primary biological treatment system 5, and the capacity of the urine primary biological treatment system 5 is set to be 4m3And an exhaust pipeline 401 connected with the sewage discharge pipeline is connected with an exhaust device 401 in a one-day working time range of 06: 00-24: 00, working continuously at the working frequency of 55 minutes per hour, pumping off odor emitted by urine in the urine collecting box and the sewage pipeline, and discharging the gas after the gas is treated by the tail gas treatment device 403. The height of the 4m3 urine primary biological treatment system 5 is set to 2000mm, when the buoyancy type liquid level sensor 510 senses that the height of urine reaches 1500mm, the water pump 512 is automatically started, the water pump 512 pumps the urine into the urine secondary treatment system 6, and the capacity of the urine secondary treatment system 6 is set to 8m3After the buoyancy type liquid level sensor 510 senses that the height of urine is reduced to 200mm, the water pump 512 is automatically turned off. Set up urine secondary treatment system 6 and need 7 days times to handle, 7 days later, use organic liquid fertile collection device 7 by professionalCollect liquid fertilizer, use to places such as farmland or orchard.
The time control switch 203 can control the time point to be set between 24:00 and 06:00, for example, set between 01: 00, a time control switch 203 opens a three-position three-way normally-closed dual-electric control electromagnetic valve 202, a pipeline connected with a disinfection tank 205 is opened, air along the pipeline carries disinfection liquid to be sprayed out from an air spraying disinfection hole 104, and the disinfection urine collection tank 101 is washed and disinfected along the urine collection tank 101.
The technical principles of the present invention have been described above with reference to specific embodiments, which are intended to explain the principles of the present invention and should not be interpreted as limiting the scope of the present invention in any way. Based on the explanations herein, those skilled in the art will be able to conceive of other embodiments of the present invention without any inventive effort, which would fall within the scope of the present invention.
Claims (10)
1. An air-flushing waterless odorless urinal which is characterized in that,
the method comprises the following steps: the device comprises a urinal body, an air blast system, a sewage pipeline device, a tail gas treatment system, a urine primary biological treatment system and a urine secondary treatment system;
the urinal body is respectively connected with the air flushing system and the sewage pipeline device, and the air flushing system can perform air flushing and disinfection after the urinal body is used;
the sewage pipeline device is also respectively connected with the urine primary biological treatment system and the tail gas treatment system, and urine and tail gas in the urinal body can be respectively discharged into the urine primary biological treatment system and the tail gas treatment system through the sewage pipeline device;
the urine primary biological treatment system is further connected with the urine secondary treatment system, and urine can enter the urine secondary treatment system after being treated by the urine primary biological treatment system for further treatment so as to obtain the organic liquid fertilizer.
2. The air-blast waterless and odorless urinal according to claim 1,
the urinal body is provided with a vertically arranged urine collecting groove;
a urine outlet is formed in the bottom of the urine collecting groove;
the urine outlet is connected with the sewage pipeline device;
air injection disinfection holes are fixed at the top and the inner parts of the left side and the right side of the urine collection groove;
the air injection disinfection holes are distributed along the inner side groove wall of the urine collection groove and are used for flushing along the direction of the inner wall of the urine collection groove facing the urine discharge port;
the air injection disinfection hole is connected with the air blast system.
3. The air-blast waterless and odorless urinal of claim 2,
the air blast system comprises: the device comprises a sensor, an air injection pipeline, a three-position three-way normally-closed double-electric-control electromagnetic valve, a time control switch, a disinfection tank and an air compression device;
the sensor is arranged in a toilet wall above the urinal and faces a toilet bowl, or is arranged on the front of the urinal body and faces the toilet bowl;
the sensor is also in control connection with the three-position three-way normally-closed dual-electric control electromagnetic valve;
the time control switch is also in control connection with the three-position three-way normally-closed dual-electric control electromagnetic valve;
one end of the air injection pipeline is connected with the air injection disinfection hole, and the other end of the air injection pipeline is connected with the three-position three-way normally-closed dual-electric control electromagnetic valve;
the three-position three-way normally-closed double-electric-control electromagnetic valve is also respectively connected with the disinfection tank and the air compression device through pipelines;
the disinfection tank and the air compression device are connected with each other through a pipeline.
4. The air-blast waterless and odorless urinal according to claim 1,
the exhaust gas treatment system comprises: the device comprises an exhaust pipeline, an exhaust device, a tail gas treatment device and a hood;
the exhaust pipeline is provided with an exhaust device, one end of the exhaust pipeline is connected with the sewage pipeline device, and the other end of the exhaust pipeline is connected with the tail gas treatment device;
the tail gas treatment device is connected with the blast cap.
5. The air-blast waterless and odorless urinal of claim 2,
the urine primary biological treatment system comprises a urine treatment container device;
a primary treatment space, a secondary treatment space and a tertiary treatment space are arranged in the urine treatment container device;
wherein the primary treatment space contains elastic three-dimensional biological filler, biological bacteria and a first heating rod;
biological bacteria and a second heating rod are paved at the bottom of the secondary treatment space;
and a buoyancy type liquid level sensor and a urine pumping pipeline are arranged in the three-stage treatment space.
6. The air-blast waterless and odorless urinal of claim 5,
the primary treatment space and the secondary treatment space are separated by a first partition plate;
the upper end of the first clapboard is provided with an air hole, and the lower end of the first clapboard is provided with a urine outflow gap;
the secondary treatment space and the tertiary treatment space are separated by a second partition plate;
the upper end of the second clapboard is provided with a urine outflow gap.
7. The air-blast waterless and odorless urinal of claim 5,
the urine primary biological treatment system also comprises a water suction pump;
the water suction pump is connected with the urine suction pipeline and used for pumping the urine in the three-stage treatment space into the urine secondary treatment system;
the buoyancy type liquid level sensor is connected with the water suction pump.
8. The air-blast waterless and odorless urinal of claim 7,
the urine processing container device is provided with an inspection well and a urine pumping port;
the urine pumping pipeline extends to the outside of the urine processing container device through the urine pumping port to realize connection with the water pump;
set up on the urine extraction pipeline the suction pump, and one end is connected urine secondary processing system, the other end is deep the bottom in tertiary treatment space is convenient for extract the bottom urine.
9. The air-blast waterless and odorless urinal of claim 5,
the urine secondary treatment system comprises: one or more processing units;
the processing unit includes: a treatment tank and a treatment water pump;
the water suction pump is connected with the urine suction pipeline and used for pumping urine in the three-stage treatment space into the treatment tank;
the treatment water pump can pump the organic liquid fertilizer in the treatment tank into the organic liquid fertilizer collecting device or the treatment tank of the next treatment unit by means of a connecting pipeline.
10. The air-blast waterless and odorless urinal of claim 2 wherein the urine collection trough cornice is provided with a splash guard to prevent urine from splashing outward.
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Address after: No.2666, 4th Konggang Road, Southwest Airport Economic Development Zone, Shuangliu District, Chengdu, Sichuan Province, 610000 Patentee after: Sichuan Yijian Technology Co.,Ltd. Address before: No.2666, 4th Konggang Road, Southwest Airport Economic Development Zone, Shuangliu District, Chengdu, Sichuan Province, 610000 Patentee before: Sichuan Jike convenient Technology Co.,Ltd. |