CN203716234U - Wastewater recycling system - Google Patents
Wastewater recycling system Download PDFInfo
- Publication number
- CN203716234U CN203716234U CN201420095632.6U CN201420095632U CN203716234U CN 203716234 U CN203716234 U CN 203716234U CN 201420095632 U CN201420095632 U CN 201420095632U CN 203716234 U CN203716234 U CN 203716234U
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- Prior art keywords
- water
- electromagnetic valve
- wastewater
- collecting box
- sewage collecting
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- Sanitary Device For Flush Toilet (AREA)
- Water Treatment By Electricity Or Magnetism (AREA)
Abstract
The utility model relates to a wastewater recycling system belonging to the technical field of water supplying and draining technology. With the adoption of the wastewater recycling system, washing wastewater subjected to filtering, disinfection and odor removal is immediately stored in a wastewater collecting tank which is arranged below the ground of a toilet of a higher floor; if the wastewater collecting tank contains water, the water in the wastewater collecting tank of the higher floor flows into a water tank of a toilet of a next floor so as to wash a closestool; if the wastewater collecting tank does not contain water, a water supply pipeline is still used for supplying water; if the wastewater collecting tank is full of water, the wastewater is still drained to a sewer, and meanwhile, water level sensors arranged in the wastewater collecting tank and the water tank are connected with a single chip microcomputer IC (Integrated Circuit) by virtue of photoelectric couplers, so that interference and error actions of an electromagnetic valve are avoided and the purposes of ensuring the sanitation of the toilets and reasonably recovering and recycling the washing wastewater can be achieved.
Description
Technical field
The utility model relates to a kind of wastewater recycling system, belongs to feedwater, water discharge technology field.
Background technology
China is the country that freshwater resources lack, per capita the not enough world of water resource per capita water resource 1/4th.In living water use, people often directly enter sewage conduct by water for bathing and face washing water, but water for bathing and face washing water are also cleaner, and all right secondary utilizes.In recent years, around water reuse people, carry out a lot of trials, obtained certain effect.As Domestic waste recovery device of the prior art, comprise storage tank, pipeline and be arranged on strainer and the control valve on pipeline, storage tank is arranged on high order end, bottom connecting tee pipe, a branch road is connected with water supply line, another branch road is connected on water pump by electromagnetic valve, the water inlet end of water pump is connected in the effluent storage container with strainer, effluent storage container is connected with waste water source by drainage tube, above waste water reservoir vessel, be connected with froth breaking pipe, at drainage tube, by threeway, be connected draining valve and gutter with effluent storage container, described strainer is to be plugged on rear enclosed in waste water reservoir vessel by screen pack.Waste water is drained into after the storage tank with screen pack, by water pumping system, again the waste water after filtering is introduced to water tank for toilet, realize the secondary utilization of flushing closet using waste water.The recycle device of this form of structure has simply, adopts electric water pump water lift, and effect is better.But utilize the electric water pump electric consumption that draws water.
Summary of the invention
The purpose of this utility model is exactly the defect existing for prior art, and the wastewater recycling system of the timely the automatic recovery of a kind of energy, automatic-discharging daily life sewage is provided, and it can effectively utilize lavatory waste water upstairs to save the energy.
For realizing described goal of the invention, the utility model provides a kind of wastewater recycling system, it comprises: a kind of wastewater recycling system, it comprises: sewage collecting box 5, water tank 6, the first electromagnetic valve 1, the second electromagnetic valve 11, the 3rd electromagnetic valve 9, the 4th electromagnetic valve 12, tee piece A, tee piece B and Duo Gen water pipe, wherein, sewage collecting box 5 is arranged on below higher floor accomodation ground, water tank is arranged on next more than floor accomodation ground, higher floor lavatory waste water flows into by first branch road of tee piece A, second branch road by tee piece A flow into sewage collecting box 5 through the first electromagnetic valve 1, the lavatory waste water of higher floor also flows into sewer pipe by the 3rd branch road of tee piece A through the second electromagnetic valve 11, the first branch road of water tank 6 top connecting tee pipe B, second branch road of tee piece B is connected with water supply line through the 3rd electromagnetic valve 9, and the 3rd branch road of tee piece B is connected to the delivery port of sewage collecting box 5 by the 3rd electromagnetic valve 9.
Preferably, wastewater recycling system also comprises strainer 2, chlorination equipment 3 and except smelling device 4, and first electromagnetic valve 1 inflow filter 2 of waste water through opening filter, through chlorination equipment 3 sterilizations with flow into sewage collecting box except smelling device 4 except after smelling again.
Preferably, wastewater recycling system also comprises the first level sensor 10, the second level sensor 8 and controller, wherein, the first level sensor 10 is vertically arranged in sewage collecting box 5, the second level sensor 8 is vertically arranged in water tank, the signal controlling first, second, third that controller transmits according to the first level sensor 10 and the second level sensor 8 and the duty of the 4th electromagnetic valve.
The utility model wastewater recycling system, directly to lavatory waste water upstairs filter, sterilize, except smelling, then immediately lay in sewage collecting box 5, utilize water in sewage collecting box 5 to flow in the water tank of washroom downstairs, so that flush toilet, has saved the energy.
Accompanying drawing explanation
Fig. 1 is the structural representation of the wastewater recycling system that provides of the utility model;
Fig. 2 is the circuit diagram of the controller in wastewater recycling system of the present utility model.
The specific embodiment
Below in conjunction with accompanying drawing, describe the utility model in detail.
Fig. 1 is the structural representation that the utility model provides cycling utilization of wastewater.As shown in Figure 1, described waste water utilization system comprises: strainer 2, chlorination equipment 3, except smelling device 4, sewage collecting box 5, water tank 6, electromagnetic valve 1, electromagnetic valve 9, electromagnetic valve 11, level sensor 10, level sensor 8, controller 7, tee piece A, tee piece B and Duo Gen water pipe, wherein, sewage collecting box 5 arranges below abovestairs accomodation ground, water tank is arranged on downstairs more than accomodation ground, lavatory waste water upstairs flows into by first branch road of tee piece A, second branch road by tee piece A flow into strainer 2 filtrations through electromagnetic valve 1, through chlorination equipment 3, sterilize and except smelling, flow into sewage collecting box 5 except smelling device 4 successively again, lavatory waste water also flows into sewer pipe by the 3rd branch road of tee piece A through electromagnetic valve 11, the first branch road of water tank 6 top connecting tee pipe B, second branch road of tee piece B is connected with water supply line through electromagnetic valve 9, and the 3rd branch road of tee piece B is connected to sewage collecting box 5 by electromagnetic valve 12, level sensor 10 is vertically arranged in sewage collecting box 5, level sensor 8 is vertically arranged in water tank 6.
Fig. 2 is the circuit diagram of the controller in cycling utilization of wastewater of the present utility model.As shown in Figure 2, described controller comprises: single-chip microcomputer IC, photoelectrical coupler PE1, photoelectrical coupler PE2, photoelectrical coupler PE3, photoelectrical coupler PE4, the first drive circuit, the second drive circuit, the 3rd drive circuit and the 4th drive circuit, wherein, the first drive circuit is organized the first drive circuit by resistance R 1, transistor T R1, relay J 1 and diode D1 and is comprised of resistance R 1, transistor T R1, relay J 1 and diode D1; The 3rd drive circuit is comprised of resistance R 3, transistor T R3, relay J 3 and diode D3; The 4th drive circuit is comprised of resistance R 4, transistor T R4, relay J 4 and diode D4.
When sewage collecting box 5 is anhydrous, level sensor 10 upper, lower contact all disconnects, photoelectrical coupler PE1 and photoelectrical coupler PE2 are all to single-chip microcomputer IC input high potential signal, when sewage collecting box 5 has water but does not expire, the lower contact of level sensor 10 is closed, upper contact still disconnects, photoelectrical coupler PE1 is to single-chip microcomputer IC input high potential signal, photoelectrical coupler PE2 inputs a low-potential signal to single-chip microcomputer IC, when sewage collecting box 5 water are full, level sensor 10 upper, lower contact is all closed, photoelectrical coupler PE1 and photoelectrical coupler PE2 all input a low-potential signal to single-chip microcomputer IC,
When water tank 6 is anhydrous, the upper and lower contact of level sensor 8 all disconnects, photoelectrical coupler PE3 and photoelectrical coupler PE4 are all to single-chip microcomputer IC input high potential signal, when water tank 6 has water but does not expire, the lower contact of level sensor 8 is closed, upper contact still disconnects, photoelectrical coupler PE3 is to single-chip microcomputer IC input high potential signal, photoelectrical coupler PE4 is to single-chip microcomputer IC input low-potential signal, when water tank 5 water are full, the upper and lower contact of level sensor 8 is all closed, and photoelectrical coupler PE3 and photoelectrical coupler PE4 all input low-potential signal to single-chip microcomputer IC.
In sewage collecting box 5, have water, and water tank 6 water are when discontented, single-chip microcomputer IC makes the base stage of transistor T R1 be placed in high potential, transistor T R1 conducting, and the relay J 1 of connect with its colelctor electrode is switched on, the constant open contact adhesive of relay J 1, electromagnetic valve 12 is opened; Meanwhile, single-chip microcomputer IC makes the base stage of transistor T R2 be placed in electronegative potential, transistor T R2 cut-off, relay J 2 power-off of connecting with the colelctor electrode of transistor T R2, the constant open contact of relay J 2 disconnects, and electromagnetic valve 9 cuts out, water supply line stops feed tank 6 and supplies water, sewage collecting box 5 feed tank water-fillings.
In sewage collecting box 5, have water, and water tank 6 water are when full, single-chip microcomputer IC makes the base stage of transistor T R1 be placed in electronegative potential, transistor T R1 cut-off, and relay J 1 power-off of connect with the colelctor electrode of transistor T R1, the constant open contact disconnection of relay J 1, electromagnetic valve 12 cuts out; Meanwhile, single-chip microcomputer IC makes the base stage of transistor T R2 be placed in electronegative potential, transistor T R2 cut-off, and relay J 2 power-off of connecting with the colelctor electrode of transistor T R2, the constant open contact of relay J 2 disconnects, and electromagnetic valve 9 cuts out, and water supply line stops feed tank 6 and supplies water;
Interior anhydrous when sewage collecting box 5, when water tank 6 water are discontented with, single-chip microcomputer IC makes the base stage of transistor T R1 be placed in electronegative potential, transistor T R1 cut-off, and relay J 1 power-off of connecting with the colelctor electrode of transistor T R1, the constant open contact of relay J 1 disconnects, and electromagnetic valve 12 cuts out; Meanwhile, single-chip microcomputer IC makes the base stage of transistor T R2 be placed in high potential, transistor T R2 conducting, and relay J 2 energisings of connecting with the colelctor electrode of transistor T R2, the constant open contact adhesive of relay J 2, electromagnetic valve 9 opens wide, and water supply line feed tank 6 supplies water.Meanwhile, single-chip microcomputer IC makes the base stage of transistor T R3 be placed in high potential, transistor T R3 conducting, and relay J 3 energisings of connecting with the colelctor electrode of transistor T R3, the constant open contact of relay J 3 is closed, and electromagnetic valve 1 opens wide, and upstairs waste water flow into sewage collecting box 5.
Interior anhydrous when sewage collecting box 5, when water tank 6 water are full, single-chip microcomputer IC makes the base stage of transistor T R1 be placed in electronegative potential, transistor T R1 cut-off, and relay J 1 power-off of connecting with the colelctor electrode of transistor T R1, the constant open contact of relay J 1 disconnects, and electromagnetic valve 12 cuts out; Meanwhile, single-chip microcomputer IC makes the base stage of transistor T R2 be placed in electronegative potential, transistor T R2 cut-off, and relay J 2 power-off of connecting with the colelctor electrode of transistor T R2, the constant open contact of relay J 2 disconnects, and electromagnetic valve 9 cuts out, and water supply line stops feed tank 6 and supplies water.
When sewage collecting box 5 water are discontented, single-chip microcomputer IC makes the base stage of transistor T R3 be placed in high potential, transistor T R3 conducting, and relay J 3 energisings of connecting with its colelctor electrode, the constant open contact adhesive of relay J 3, electromagnetic valve 1 opens wide; Meanwhile, single-chip microcomputer IC makes the base stage of transistor T R4 be placed in electronegative potential, transistor T R4 cut-off, relay J 4 power-off of connecting with transistor T R4 colelctor electrode, the constant open contact of relay J 4 disconnects, and electromagnetic valve 11 cuts out, and lavatory waste water flows into sewage collecting box 5 by unlimited electromagnetic valve 1.
When sewage collecting box 5 water are full, single-chip microcomputer IC makes the base stage of transistor T R3 be placed in electronegative potential, transistor T R3 cut-off, relay J 3 power-off of connecting with transistor T R3 colelctor electrode, the constant open contact of relay J 3 disconnects, and electromagnetic valve 1 cuts out, and stops lavatory waste water and flows into sewage collecting box 5; Meanwhile, single-chip microcomputer IC makes the base stage of transistor T R4 be placed in high potential, transistor T R4 conducting, relay J 4 energisings of connecting with transistor T R4 colelctor electrode, the constant open contact adhesive of relay J 4, electromagnetic valve 11 opens wide, and lavatory Wastewater by Electric magnet valve 11 opens wide and flows into sewer pipe.
In addition, in order to prevent disturbing altogether, can also be respectively between single-chip microcomputer IC and transistor T R1, TR2, TR3, TR4, be connected an isolator, as photoelectrical coupler.
Below by reference to the accompanying drawings, describe the present invention in detail, but manual is only for explaining claims.But protection domain of the present utility model is not limited to manual.In the technical scope that any those skilled in the art of being familiar with disclose at the utility model, the variation that can expect easily or replacement, within all should being encompassed in protection domain of the present utility model.Therefore, protection domain of the present utility model should be as the criterion with the protection domain of claims.
Claims (3)
1. a wastewater recycling system, it comprises: sewage collecting box (5), water tank (6), the first electromagnetic valve (1), the second electromagnetic valve (211), the 3rd electromagnetic valve (9), the 4th electromagnetic valve (12), tee piece A, tee piece B and Duo Gen water pipe, wherein, sewage collecting box (5) is arranged on below higher floor accomodation ground, water tank is arranged on next more than floor accomodation ground, higher floor lavatory waste water flows into by first branch road of tee piece A, second branch road by tee piece A flow into sewage collecting box (5) through the first electromagnetic valve (1), the lavatory waste water of higher floor also flows into sewer pipe by the 3rd branch road of tee piece A through the second electromagnetic valve (11), first branch road of water tank (6) top connecting tee pipe B, second branch road of tee piece B is connected with water supply line through the 3rd electromagnetic valve (9), and the 3rd branch road of tee piece B is connected to the delivery port of sewage collecting box (5) by the 3rd electromagnetic valve (9).
2. wastewater recycling system according to claim 1, it is characterized in that, also comprise strainer (2), chlorination equipment (3) and remove and smell device (4), first electromagnetic valve (1) inflow filter (2) of waste water through opening filters, through chlorination equipment (3) sterilization with except smelling device (4), except after smelling, flow into sewage collecting box again.
3. wastewater recycling system according to claim 2, it is characterized in that, also comprise the first level sensor (10), the second level sensor (8) and controller, wherein, the first level sensor (10) is vertically arranged in sewage collecting box (5), the second level sensor (8) is vertically arranged in water tank (6), the signal controlling first, second, third that controller transmits according to the first level sensor (10) and the second level sensor (8) and the duty of the 4th electromagnetic valve.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
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CN201420095632.6U CN203716234U (en) | 2014-03-03 | 2014-03-03 | Wastewater recycling system |
Applications Claiming Priority (1)
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CN201420095632.6U CN203716234U (en) | 2014-03-03 | 2014-03-03 | Wastewater recycling system |
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CN203716234U true CN203716234U (en) | 2014-07-16 |
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CN201420095632.6U Expired - Fee Related CN203716234U (en) | 2014-03-03 | 2014-03-03 | Wastewater recycling system |
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Cited By (6)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104988968A (en) * | 2015-05-14 | 2015-10-21 | 浙江工业职业技术学院 | Domestic wastewater filter and filtering method thereof |
CN105350602A (en) * | 2015-11-30 | 2016-02-24 | 牛占华 | Domestic wastewater regeneration treatment system |
CN106049650A (en) * | 2016-07-29 | 2016-10-26 | 江苏融汇环境工程有限公司 | Whole flow distributing well |
CN108149737A (en) * | 2017-09-30 | 2018-06-12 | 武汉泰可电气股份有限公司 | A kind of intelligent public lavatory water circulation system based on pressure-type liquid level converter and embedded control system |
CN110307380A (en) * | 2019-07-16 | 2019-10-08 | 艾思瑞流体控制有限公司 | A method of extending regulating valve service life in water supply recycling |
CN110499803A (en) * | 2019-08-28 | 2019-11-26 | 郭杏珍 | A kind of apartment waste water circulation recycling device |
-
2014
- 2014-03-03 CN CN201420095632.6U patent/CN203716234U/en not_active Expired - Fee Related
Cited By (7)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN104988968A (en) * | 2015-05-14 | 2015-10-21 | 浙江工业职业技术学院 | Domestic wastewater filter and filtering method thereof |
CN105350602A (en) * | 2015-11-30 | 2016-02-24 | 牛占华 | Domestic wastewater regeneration treatment system |
CN105350602B (en) * | 2015-11-30 | 2018-01-09 | 广州绿竹环保科技有限公司 | Sanitary wastewater regeneration treatment system |
CN106049650A (en) * | 2016-07-29 | 2016-10-26 | 江苏融汇环境工程有限公司 | Whole flow distributing well |
CN108149737A (en) * | 2017-09-30 | 2018-06-12 | 武汉泰可电气股份有限公司 | A kind of intelligent public lavatory water circulation system based on pressure-type liquid level converter and embedded control system |
CN110307380A (en) * | 2019-07-16 | 2019-10-08 | 艾思瑞流体控制有限公司 | A method of extending regulating valve service life in water supply recycling |
CN110499803A (en) * | 2019-08-28 | 2019-11-26 | 郭杏珍 | A kind of apartment waste water circulation recycling device |
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Legal Events
Date | Code | Title | Description |
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C14 | Grant of patent or utility model | ||
GR01 | Patent grant | ||
CF01 | Termination of patent right due to non-payment of annual fee |
Granted publication date: 20140716 Termination date: 20150303 |
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EXPY | Termination of patent right or utility model |