CN205809629U - The monitoring system that a kind of ammonium chloride waste-water processes - Google Patents
The monitoring system that a kind of ammonium chloride waste-water processes Download PDFInfo
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- CN205809629U CN205809629U CN201620690682.8U CN201620690682U CN205809629U CN 205809629 U CN205809629 U CN 205809629U CN 201620690682 U CN201620690682 U CN 201620690682U CN 205809629 U CN205809629 U CN 205809629U
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- ammonium chloride
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Abstract
This utility model discloses the monitoring system that a kind of ammonium chloride waste-water processes, include controller, Level Detection module, valve control module, medicine add module, human-computer interaction module, time block, alarm module and power module, and described Level Detection module, valve control module, medicine add module, human-computer interaction module, time block, the FPDP of alarm module are connected with the I/O port of controller respectively;Described controller, Level Detection module, valve control module, medicine add the supply port of module, human-computer interaction module, memory module, time block and alarm module and are all connected with the outfan of power module;The monitoring system that this ammonium chloride waste-water processes is capable of remotely monitoring and being automatically adjusted of waste water treatment process parameter, solves chemical fertilizer industry ammonium chloride waste-water and processes automaticity and inefficient, ammonia nitrogen discharge does not meets national standard problem.
Description
Technical field
This utility model belongs to field of industrial waste water treatment, is specifically related to the monitoring system that a kind of ammonium chloride waste-water processes.
Background technology
China is the potassium carbonate chemical fertilizer production state of Fia, main uses batch (-type) ion-exchange process to produce,
Produce substantial amounts of ammonium chloride waste-water.Ammonium chloride waste-water is discharged into river basin, can accelerate the eutrophication of water body, causes water body to lack
Oxygen, Fish mortality;Ammonia nitrogen in waste water changes into nitrate nitrogen and nitrite nitrogen under microbial action, has after entering human body
Toxic action;The chloramines that ammonia nitrogen and chlorine reaction generate can reduce the disinfection effect of disinfectant solution, the dirt that the amount containing ammonia nitrogen is higher
During water factory's disinfection of effluent, increase the consumption of disinfectant solution.
The ammonium chloride waste-water processing method that chemical fertilizer production enterprise commonly uses has blow-off method, chemical precipitation method, membrane separation technique etc..
But owing to sewage treatment equipment automaticity is relatively low, the highest to the control accuracy of technological parameter in processing procedure, treatment effeciency
Low, ammonia-nitrogen content does not meets discharging standards.
Utility model content
This utility model is for prior art problem, it is provided that a kind of long-range prison being capable of waste water treatment process parameter
Control and being automatically adjusted, solves chemical fertilizer industry ammonium chloride waste-water and processes automaticity and the discharge of inefficient, ammonia nitrogen does not meets state
The monitoring system that the ammonium chloride waste-water of family's typical problem processes.
Technology and method in order to solve the employing of the present utility model of above-mentioned problem are as follows:
A kind of ammonium chloride waste-water process monitoring system, include controller, Level Detection module, valve control module,
Medicine adds module, human-computer interaction module, time block, alarm module and power module, described Level Detection module, valve control
Molding block, medicine add module, human-computer interaction module, time block, alarm module FPDP respectively with the I/O of controller
Port connects;Described controller, Level Detection module, valve control module, medicine add module, human-computer interaction module, storage
The supply port of module, time block and alarm module is all connected with the outfan of power module.
As preferably, also include acid-base value adjustment module and lower water temperature module, described acid-base value adjustment module and water temperature
The FPDP of adjustment module is connected with the I/O port of controller, described acid-base value adjustment module and the confession of lower water temperature module
Electricity port is connected with the outfan of power module.
As preferably, described controller is 16 MSP430F149 single-chip microcomputers.
As preferably, described lower water temperature module is PT1000 temperature sensor.
As preferably, described Level Detection module is LVU104 ultrasonic liquid level sensor.
As preferably, described human-computer interaction module is TPC7062TX touch screen.
As preferably, described time block is SD3088 clock chip.
The beneficial effects of the utility model are: 1) human-computer interaction module uses touch screen, facilitates processing parameter setting, inquiry
And storage, simplified system connects up;2) acid-base value adjustment module, the pH value of lower water temperature module Real-time Collection waste water, temperature are concurrent
Giving controller, controller sends instruction and controls acidity-basicity regulator liquid feed valve, heater so that sewage treatment equipment is operated in
In the waste water acid-base value set and temperature range, improve the efficiency that waste water processes;3) valve control module, medicine add mould
Block, time block, under the coordination of controller controls, are automatically performed waste water treatment process, improve automatization's journey that waste water processes
Degree.
Accompanying drawing explanation
Fig. 1 is theory diagram of the present utility model.
Detailed description of the invention
With accompanying drawing, this utility model is described in further detail below in conjunction with embodiment, but they are not to this reality
With the restriction of new technique scheme, any conversion made based on this utility model training centre, all fall within guarantor of the present utility model
Protect scope.
Embodiment one:
Refering to shown in Fig. 1, the monitoring system that a kind of ammonium chloride waste-water processes, including: controller, Level Detection module, valve
Door control module, medicine add module, human-computer interaction module, time block, alarm module and power module;Wherein: liquid level is examined
Survey module, valve control module, medicine add the FPDP difference of module, human-computer interaction module, time block, alarm module
It is connected with the I/O port of controller;Controller can use 16 MSP430F149 chip microcontroller;Human-computer interaction module is
TPC7062TX touch screen, is used for starting, halt system runs and sets, inquiry and storage technology parameter.
Operator start the operation of monitoring system by human-computer interaction module, and controller sends to valve control module and opens
The instruction of dynamic liquid feed valve, valve control module unlatching liquid feed valve, ammonium chloride waste-water flows into reaction tank, and Level Detection module detects
When liquid level reaches the upper limit water level set, sending the signal arriving upper limit to controller, controller receives Level Detection
The signal of module, sends the instruction closing liquid feed valve to valve control module, and valve control module closes liquid feed valve.
Controller adds module to medicine and sends and add the instruction of precipitant, and medicine adds module and first opens and turn off precipitation
Agent liquid feed valve, adds the precipitant setting dosage in reaction tank.Time block according to set response time countdown to zero
Time, the signal being disposed is sent to controller, controller receives the signal of time block, sends startup to valve control module
The instruction of liquid valve, valve control module is opened liquid valve, treated discharge of wastewater is gone out reaction tank, Level Detection module
Detecting when liquid level is reduced to the lower limit water level set, send the signal arriving lower limit to controller, controller receives
The signal of Level Detection module, sends first closedown liquid valve to valve control module and is then turned on the instruction of liquid feed valve, Valve controlling
Module is first closed liquid valve and is then turned on liquid feed valve, improves the automaticity that waste water processes.
Power module is rectified by civil power, isolation copped wave, blood pressure lowering, again rectifying and voltage-stabilizing are transformed to unidirectional current, to controller and
Each functional module is powered, so that system reliably working;Controller, Level Detection module, valve control module, medicine add mould
Block, human-computer interaction module, memory module, time block, the supply port of alarm module are connected with power module outlet.
On-the-spot arbitrary module breaks down when causing technological parameter to exceed set point, and controller sends report to alarm module
Alert instruction, alarm module sends sound and light alarm signal, and prompting operator investigate fault in time.
Embodiment two:
On the basis of embodiment one, also include acid-base value adjustment module, lower water temperature module.Acid-base value adjustment module,
The FPDP of lower water temperature module is connected with the I/O port of controller, acid-base value adjustment module, the power supply of lower water temperature module
Port is connected with the outfan of power module.In acid-base value adjustment module Real-time Collection reaction tank, the pH value Data Concurrent of waste water send
To controller, after the data received are compared with setting value by controller, send to acid-base value adjustment module and start or stop pH value
The instruction of regulator liquid feed valve, to regulate the pH value of waste water in set point;In lower water temperature module Real-time Collection reaction tank
The temperature data of waste water is also sent to controller, and controller sends the instruction starting or stoping heater to lower water temperature module,
So that wastewater temperature is in set point, improve the efficiency that ammonium chloride waste-water processes.
The beneficial effects of the utility model are: 1) human-computer interaction module uses touch screen, facilitates processing parameter setting, inquiry
And storage, simplified system connects up;2) acid-base value adjustment module, the pH value of lower water temperature module Real-time Collection waste water, temperature are concurrent
Giving controller, controller sends instruction and controls acidity-basicity regulator liquid feed valve, heater so that sewage treatment equipment is operated in
In the waste water acid-base value set and temperature range, improve the efficiency that waste water processes;3) valve control module, medicine add mould
Block, time block, under the coordination of controller controls, are automatically performed waste water treatment process, improve automatization's journey that waste water processes
Degree.
The above, detailed description of the invention the most of the present utility model, but protection domain of the present utility model does not limit to
In this, any change expected without creative work or replacement, all should contain within protection domain of the present utility model,
Therefore, protection domain of the present utility model should be as the criterion with the protection domain that claims are limited.
Claims (7)
1. the monitoring system that an ammonium chloride waste-water processes, it is characterised in that: include controller, Level Detection module, valve
Control module, medicine add module, human-computer interaction module, time block, alarm module and power module, described Level Detection mould
Block, valve control module, medicine add module, human-computer interaction module, time block, alarm module FPDP respectively with control
The I/O port of device processed connects;Described controller, Level Detection module, valve control module, medicine add module, man-machine interaction
The supply port of module, memory module, time block and alarm module is all connected with the outfan of power module.
The monitoring system that a kind of ammonium chloride waste-water the most according to claim 1 processes, it is characterised in that also include acid-base value
Adjustment module and lower water temperature module, the FPDP of described acid-base value adjustment module and lower water temperature module and the I/ of controller
O port connects, and described acid-base value adjustment module and the supply port of lower water temperature module are connected with the outfan of power module.
The monitoring system that a kind of ammonium chloride waste-water the most according to claim 1 and 2 processes, it is characterised in that described control
Device is 16 MSP430F149 single-chip microcomputers.
The monitoring system that a kind of ammonium chloride waste-water the most according to claim 2 processes, it is characterised in that described lower water temperature
Module is PT1000 temperature sensor.
The monitoring system that a kind of ammonium chloride waste-water the most according to claim 1 processes, it is characterised in that described Level Detection
Module is LVU104 ultrasonic liquid level sensor.
The monitoring system that a kind of ammonium chloride waste-water the most according to claim 1 processes, it is characterised in that described man-machine interaction
Module is TPC7062TX touch screen.
The monitoring system that a kind of ammonium chloride waste-water the most according to claim 1 processes, it is characterised in that described time block
For SD3088 clock chip.
Priority Applications (1)
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CN201620690682.8U CN205809629U (en) | 2016-06-30 | 2016-06-30 | The monitoring system that a kind of ammonium chloride waste-water processes |
Applications Claiming Priority (1)
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CN201620690682.8U CN205809629U (en) | 2016-06-30 | 2016-06-30 | The monitoring system that a kind of ammonium chloride waste-water processes |
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CN205809629U true CN205809629U (en) | 2016-12-14 |
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Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111167808A (en) * | 2020-01-13 | 2020-05-19 | 无锡虎虎机电科技有限公司 | Semiconductor processing procedure pipeline belt cleaning device |
CN114455686A (en) * | 2021-12-30 | 2022-05-10 | 宏雷机械设备(南通)有限公司 | Ammonia nitrogen recovery equipment based on gas stratification and use method thereof |
CN117964019A (en) * | 2024-03-22 | 2024-05-03 | 山东金蔡伦纸业有限公司 | Papermaking wastewater treatment monitoring method and system |
-
2016
- 2016-06-30 CN CN201620690682.8U patent/CN205809629U/en not_active Expired - Fee Related
Cited By (3)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
CN111167808A (en) * | 2020-01-13 | 2020-05-19 | 无锡虎虎机电科技有限公司 | Semiconductor processing procedure pipeline belt cleaning device |
CN114455686A (en) * | 2021-12-30 | 2022-05-10 | 宏雷机械设备(南通)有限公司 | Ammonia nitrogen recovery equipment based on gas stratification and use method thereof |
CN117964019A (en) * | 2024-03-22 | 2024-05-03 | 山东金蔡伦纸业有限公司 | Papermaking wastewater treatment monitoring method and system |
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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: 20161214 Termination date: 20200630 |
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CF01 | Termination of patent right due to non-payment of annual fee |