Drainage liquid pouring treatment device
The automated measurement and data transmission functions of the drainage fluid pouring and processing device have solved the problem of tedious manual measurement of drainage fluid volume by nursing staff, and achieved efficient and accurate management of drainage fluid volume.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Applications(China)
- Current Assignee / Owner
- LIANYUNGANG FIRST PEOPLES HOSPITAL
- Filing Date
- 2024-03-11
- Publication Date
- 2026-05-01
AI Technical Summary
In existing technologies, nursing staff need to manually measure and record the volume of drainage fluid when handling it, which is cumbersome, prone to human error, and inefficient.
A drainage fluid pouring and processing device was designed, which includes a measuring cylinder, a liquid level sensor, a PLC controller and a PLC gateway. It automatically measures the drainage fluid volume and transmits the data to the cloud, reducing manual operation and recording errors.
It enables automated measurement and recording of drainage volume, reducing the workload of nursing staff, improving measurement efficiency, and avoiding human error.
Smart Images

Figure CN121944262A_ABST
Abstract
Description
Technical Field
[0001] This invention belongs to the field of medical device technology, and in particular relates to a drainage fluid pouring and processing device. Background Technology
[0002] Drainage fluid refers to pus, blood, or other bodily fluids that accumulate in the body cavities or interstitial spaces. During surgery, drainage tubes are inserted into the body to drain the drainage fluid to the outside, preventing infection and promoting wound healing.
[0003] External drainage tubes are connected to drainage bags to collect drainage fluid. The color, characteristics, and amount of drainage fluid discharged from the body are of great reference value for judging the patient's condition. Therefore, when handling the drainage fluid in the drainage bag, nursing staff often need to pour the drainage fluid in the drainage bag into a measuring container such as a measuring cup or measuring cylinder, observe and record the color, characteristics, and amount of drainage fluid, and report the patient's drainage fluid status to the doctor in a timely manner.
[0004] One method involves nurses measuring the amount of drainage fluid from a patient using a measuring container. They then need to record the measurement in a notebook and manually enter the data into the computer system. This process is cumbersome, inefficient, and prone to human error. Summary of the Invention
[0005] In view of the shortcomings of the prior art, the technical problem to be solved by the present invention is to provide a drainage fluid pouring and processing device that can automatically measure the amount of drainage fluid and transmit the measurement value to a computer system, thereby reducing the workload of nursing staff, improving the measurement efficiency of drainage fluid volume, and avoiding human error in recording.
[0006] This invention is achieved through the following technical solution:
[0007] A drainage fluid pouring and processing device includes a measuring cylinder and a detachable measuring cylinder top cover installed on the top of the measuring cylinder for sealing. The measuring cylinder top cover is provided with a measuring cylinder inlet connector and a measuring cylinder vent connector. When pouring and processing the drainage fluid in a patient's drainage bag, the measuring cylinder inlet connector is connected to the drainage bag outlet through a disposable guide tube. After opening the valve at the drainage bag outlet, the drainage fluid in the drainage bag flows into the measuring cylinder through the guide tube and the measuring cylinder inlet connector. The measuring cylinder vent connector is used for venting.
[0008] It also includes a liquid level sensor, which is installed on the top cover of the measuring cylinder to measure the liquid level inside the measuring cylinder; specifically, the liquid level sensor is a non-contact liquid level sensor.
[0009] It also includes a PLC controller and a PLC gateway. The liquid level sensor is electrically connected to the PLC controller, and the PLC controller is electrically connected to the PLC gateway. The liquid level sensor transmits measurement data to the PLC controller. The PLC controller receives the measurement data transmitted by the liquid level sensor and transmits the measurement data to the PLC gateway. The PLC gateway transmits the measurement data to the cloud via a mobile network.
[0010] Furthermore, it also includes a vehicle body and a storage tank; the measuring cylinder, PLC controller, PLC gateway and the storage tank are all installed on the vehicle body. The storage tank is used to collect the drainage fluid after measurement by the measuring cylinder. The vehicle body makes it easy to push and move the processing device to the ward to pour and process the drainage fluid for patients. The storage tank can store the drainage fluid of multiple patients in the ward, which makes it convenient for nursing staff to process the drainage fluid of patients in the ward at one time, thus improving the efficiency of drainage fluid collection and processing.
[0011] Furthermore, it also includes a frame, which is mounted on the vehicle body. The measuring cylinder, PLC controller, and PLC gateway are all mounted on the frame, with the measuring cylinder located above the storage tank. The bottom of the measuring cylinder is equipped with a measuring cylinder drain connector for discharging the drainage fluid inside the measuring cylinder. The top of the storage tank inlet connector is equipped with a storage tank inlet connector and a storage tank vent connector. The measuring cylinder drain connector and the storage tank inlet connector are connected by a pipe, and a valve is installed on the measuring cylinder drain connector. After the drainage fluid in the patient's drainage bag is released into the measuring cylinder and the volume is measured using a liquid level sensor, the valve on the measuring cylinder drain connector is opened to discharge the drainage fluid in the measuring cylinder into the storage tank for collection. This allows for the collection and measurement of drainage fluid from another patient using the measuring cylinder. The storage tank vent connector is used for venting.
[0012] Furthermore, the top of the frame is equipped with hooks for hanging drainage bags, with the hooks located above the measuring cylinder. When emptying the drainage fluid from the patient's drainage bag, the drainage bag is suspended on the hooks. The measuring cylinder inlet connector is connected to the drainage bag outlet via a disposable guide tube. After opening the valve at the drainage bag outlet, the drainage fluid in the drainage bag automatically flows into the measuring cylinder through the guide tube and the measuring cylinder inlet connector under the action of gravity and pressure difference, eliminating the need for nursing staff to operate and reducing their workload.
[0013] Furthermore, it also includes a battery installed on the vehicle body. The liquid level sensor, PLC controller, and PLC gateway are all electrically connected to the battery, which powers the liquid level sensor, PLC controller, and PLC gateway. The battery can be charged via an external charging cable.
[0014] Furthermore, it also includes a touch panel, which is electrically connected to the PLC controller; the touch panel allows editing of patient information (such as name or number) to ensure that the liquid level sensor measurement data corresponds to the patient information, thus avoiding data confusion, and sending control commands to the PLC controller to start and stop the liquid level sensor.
[0015] Furthermore, it also includes an activated carbon filter installed on the frame. The venting connectors of the measuring cylinder and the liquid storage tank are connected to the air inlet connector of the activated carbon filter through pipes. When the measuring cylinder and the liquid storage tank collect the drainage liquid, the gas inside is discharged into the activated carbon filter through the pipes. The activated carbon filter filters the exhaust gas before discharging it, which can reduce odor.
[0016] Furthermore, it also includes an alarm, which is electrically connected to the PLC controller. When the liquid level in the measuring cylinder stabilizes during the collection of drainage fluid, the alarm will sound. Specifically, the drainage fluid in the drainage bag automatically flows into the measuring cylinder through the guide tube, without the need for operation or monitoring by nursing staff. The liquid level sensor continuously monitors the liquid level in the measuring cylinder. Once the drainage fluid in the drainage bag has completely flowed into the measuring cylinder, and the liquid level sensor detects no change in the liquid level in the measuring cylinder, the PLC controller sends a signal to the alarm to sound an alarm, indicating to the nursing staff that all the drainage fluid in the drainage bag has flowed into the measuring cylinder, facilitating the next step of the operation and reducing the burden on nursing staff.
[0017] Furthermore, the top of the storage tank is provided with a drug filling port, and a detachable sealing cap is installed at the drug filling port; disinfectant tablets or disinfectant solution can be added into the storage tank through the drug filling port to disinfect the drainage fluid in the storage tank, so that the drainage fluid in the storage tank can be disinfected during the collection process in the ward, which can save disinfection waiting time.
[0018] Furthermore, the storage tank has a capacity of 5-15L, which can collect drainage fluid from multiple patients at once, improving the efficiency of treating drainage fluid from each patient in the ward; in addition, the storage tank can be detachably installed on the vehicle body, allowing for the replacement of storage tanks of different capacities, and also facilitating the removal of the storage tank to empty the collected drainage fluid.
[0019] Compared with the prior art, the present invention has the following beneficial effects:
[0020] This processing device collects drainage fluid from patients' drainage bags using a graduated cylinder in the ward. A liquid level sensor installed on the top cover of the graduated cylinder automatically measures the volume of drainage fluid inside. The liquid level sensor transmits the measurement data to a PLC controller. The PLC controller receives the measurement data transmitted by the liquid level sensor and transmits the measurement data to a PLC gateway. The PLC gateway transmits the measurement data to the cloud via a mobile network. Nurses and doctors can obtain the measured value of the patient's drainage fluid volume through the cloud using a computer or mobile phone. This reduces the workload of nurses in measurement and recording, saves nurses' time and manpower, improves the efficiency of drainage fluid volume measurement, and avoids human error in recording. Attached Figure Description
[0021] Figure 1 This is a schematic diagram of the main cross-sectional structure of the present invention.
[0022] Figure 2 for Figure 1 A magnified schematic diagram of the medium measuring cylinder.
[0023] Figure 3 This is a schematic diagram of the left-side structure of the present invention.
[0024] The components in the diagram are as follows: 1. Measuring cylinder; 2. Measuring cylinder top cover; 3. Measuring cylinder inlet connector; 4. Liquid level sensor; 5. Measuring cylinder vent connector; 6. Liquid guide pipe; 7. Hook; 8. Touch panel; 9. Alarm; 10. Cart handle; 11. PLC controller; 12. Battery; 13. Activated carbon filter; 13.1. Filter cylinder body; 13.2. Cylinder cover; 13.3. Activated carbon filter element; 14. Frame; 15. Car body; 16. Liquid storage tank; 17. Liquid storage tank vent connector; 18. Liquid storage tank inlet connector; 19. Liquid storage tank drain connector; 20. Liquid storage tank dosing port; 21. Measuring cylinder drain connector; 22. Air inlet connector; 23. PLC gateway. Detailed Implementation
[0025] A drainage fluid pouring and treatment device, such as Figures 1 to 3 As shown, it includes a vehicle body 15, a frame 14, a measuring cylinder 1, a measuring cylinder top cover 2, a liquid level sensor 4, a PLC controller 11, a PLC gateway 23, a liquid storage tank 16, a storage battery 12, a touch panel 8, and an alarm 9.
[0026] The frame 14 and the liquid storage tank 16 are both mounted on the vehicle body 15. The measuring cylinder 1, PLC controller 11, PLC gateway 23, battery 12, touch panel 8 and alarm 9 are all mounted on the frame 14. The measuring cylinder 1 is located above the liquid storage tank 16. The vehicle body 15 makes it easy to push the treatment device and move it to the ward to pour the drainage fluid for the patient.
[0027] The measuring cylinder top cover 2 is detachably installed on the top of the measuring cylinder 1 for sealing. The measuring cylinder top cover 2 is provided with a measuring cylinder inlet connector 3 and a measuring cylinder vent connector 5. When emptying the drainage fluid in the patient's drainage bag, the measuring cylinder inlet connector 3 is connected to the drainage bag outlet through a disposable guide tube 6. After opening the valve at the drainage bag outlet, the drainage fluid in the drainage bag flows into the measuring cylinder 1 through the guide tube 6 and the measuring cylinder inlet connector 3. The measuring cylinder vent connector 5 is used for venting.
[0028] The liquid level sensor 4 is installed on the top cover 2 of the measuring cylinder to measure the liquid level inside the measuring cylinder 1. Specifically, the liquid level sensor 4 is a non-contact liquid level sensor. Preferably, the liquid level sensor 4 is an ultrasonic liquid level sensor. In addition, it can also be a radar liquid level sensor. Of course, the liquid level sensor 4 can also be a contact liquid level sensor, but it is installed on the top cover 2 of the measuring cylinder and needs to extend into the inside of the measuring cylinder 1 to contact the draining liquid, which makes it easy to be contaminated and difficult to clean.
[0029] The bottom of the measuring cylinder 1 is equipped with a measuring cylinder drain connector 21 for discharging the drainage fluid inside the measuring cylinder 1. The top of the liquid tank inlet connector 18 is equipped with a liquid tank inlet connector 18 and a liquid tank vent connector 17. The measuring cylinder drain connector 21 and the liquid tank inlet connector 18 are connected by a pipe. A valve is installed on the measuring cylinder drain connector 21. The liquid tank 16 is used to collect the drainage fluid after the measuring cylinder 1 has been measured. After the drainage fluid in the patient's drainage bag is released into the measuring cylinder 1 and the volume is measured by the liquid level sensor 4, the valve on the measuring cylinder drain connector 21 is opened to discharge the drainage fluid in the measuring cylinder 1 into the liquid tank 16 for collection. This allows the measuring cylinder 1 to be used to collect and measure the drainage fluid of another patient. The liquid tank 16 can store the drainage fluid of multiple patients in the ward, making it convenient for nursing staff to process the drainage fluid of patients in the ward at one time, thus improving the efficiency of drainage fluid collection and processing. This device measures and collects drainage fluid in a closed state, which can reduce unpleasant odors.
[0030] The liquid level sensor 4, PLC controller 11, PLC gateway 23, touch panel 8 and alarm 9 are all electrically connected to the storage battery 12. The storage battery 12 is used to power the liquid level sensor 4, PLC controller 11, PLC gateway 23, touch panel 8 and alarm 9. The storage battery 12 can be charged by an external charging cable.
[0031] The touch panel 8, liquid level sensor 4, and alarm 9 are all electrically connected to the PLC controller 11, which in turn is electrically connected to the PLC gateway 23. The touch panel 8 allows editing of patient information (such as name or number) to ensure the liquid level sensor 4's measurement data corresponds to the patient information, preventing data confusion. It also allows sending control commands to the PLC controller 11 to start and stop the liquid level sensor 4. The liquid level sensor 4 measures the liquid level inside the measuring cylinder 1 and transmits the measurement data to the PLC controller 11. The PLC controller 11 receives the measurement data from the liquid level sensor 4 and transmits it to the PLC gateway 23. The PLC gateway 23 then transmits the measurement data to the cloud via a mobile network. When the liquid level in the measuring cylinder 1 stabilizes after collecting drainage fluid, the alarm 9 issues an alarm notification.
[0032] Specifically, the drainage fluid in the drainage bag automatically flows into the measuring cylinder 1 through the guide tube 6, without the need for operation or monitoring by nursing staff. The liquid level sensor 4 continuously monitors the liquid level in the measuring cylinder 1. Once the drainage fluid in the drainage bag has completely flowed into the measuring cylinder 1, and the liquid level sensor 4 detects no change in the liquid level in the measuring cylinder 1, the PLC controller 11 sends a signal to the alarm 9 to trigger an alarm, indicating to the nursing staff that the drainage fluid in the drainage bag has completely flowed into the measuring cylinder 1, facilitating the next step of the operation and reducing the burden on the nursing staff. The alarm 9 is a sounder and / or a light emitter.
[0033] Specifically, both the PLC controller 11 and the PLC gateway 23 are existing technologies, such as the MQTT protocol gateway, which uses 5G, 4G, WiFi or Ethernet to transmit measurement data to the cloud. Nurses and doctors can use computers or mobile phones to obtain the measurement values of the patient's drainage fluid volume through the cloud, which can reduce the workload of nurses in measurement and recording, improve the measurement efficiency of drainage fluid volume, and avoid human error in recording. The PLC controller 11 uses PLCs from Siemens, Mitsubishi, Omron, Schneider and other manufacturers.
[0034] Preferably, in this embodiment, such as Figure 1 and Figure 3 As shown, a trolley handle 10 is installed on the vehicle body 15. The trolley handle 10 is connected to the frame 14 by a connecting rod to improve the stability of the trolley handle 10. The trolley handle 10 makes it easier for caregivers to push the treatment device.
[0035] Preferably, in this embodiment, such as Figure 1 and Figure 3 As shown, the top of the frame 14 is equipped with a hook 7 for hanging the drainage bag, and the hook 7 is located above the measuring cylinder 1. When emptying the drainage fluid in the patient's drainage bag, the drainage bag is suspended on the hook 7. The measuring cylinder inlet connector 3 is connected to the drainage bag outlet through a disposable guide tube 6. After opening the valve at the drainage bag outlet, the drainage fluid in the drainage bag automatically flows into the measuring cylinder 1 through the guide tube 6 and the measuring cylinder inlet connector 3 under the action of gravity and pressure difference. No operation by nursing staff is required, which can reduce the burden on nursing staff.
[0036] Preferably, in this embodiment, such as Figure 1 and Figure 2As shown, the treatment device also includes an activated carbon filter 13 installed on the frame 14. The measuring cylinder exhaust connector 5 and the liquid storage tank exhaust connector 17 are connected to the air inlet connector 22 of the activated carbon filter 13 through pipes. When the measuring cylinder 1 and the liquid storage tank 16 collect the drainage liquid, the gas inside is discharged into the activated carbon filter 13 through the pipes. The activated carbon filter 13 filters the exhaust gas before discharging, which can reduce odor. This device measures and collects the drainage liquid in a closed state and exhausts the gas after filtration, which can reduce unpleasant odor. Specifically, the activated carbon filter 13 includes a filter cylinder 13.1. The filter cylinder 13.1 is equipped with a detachable activated carbon filter element 13.3. The top of the filter cylinder 13.1 is provided with a cylinder cover 13.2, and the cylinder cover 13.2 is provided with an exhaust hole.
[0037] Preferably, in this embodiment, such as Figure 1 and Figure 3 As shown, the top of the liquid storage tank 16 is provided with a liquid storage tank drug filling port 20, and a detachable sealing cap is installed at the liquid storage tank drug filling port 20; disinfectant tablets or disinfectant solution can be added into the liquid storage tank 16 through the liquid storage tank drug filling port 20 to disinfect the drainage fluid in the liquid storage tank 16, so that the drainage fluid in the liquid storage tank 16 can be disinfected during the collection process in the ward, which can save disinfection waiting time.
[0038] Preferably, in this embodiment, such as Figure 1 and Figure 3 As shown, the bottom of the storage tank 16 is provided with a storage tank drain connector 19 for discharging the drainage liquid in the storage tank 16, and a valve is installed on the storage tank drain connector 19; after the drainage liquid in the storage tank 16 is disinfected, the treatment device is moved to drain into the sewer, and the valve on the storage tank drain connector 19 is opened to discharge the disinfected drainage liquid in the storage tank 16 into the sewer.
[0039] Preferably, in this embodiment, the capacity of the storage tank 16 is 5-15L, which can collect drainage fluid from multiple patients at one time, thereby improving the processing efficiency of drainage fluid from each patient in the ward. In addition, the storage tank 16 can be detachably installed on the vehicle body 15, allowing for the replacement of storage tanks 16 with different capacities, and also facilitating the disassembly of the storage tank 16 to empty the drainage fluid collected inside.
[0040] The working principle and technical effects of this embodiment are as follows:
[0041] When using this treatment device to treat patient drainage fluid, the nursing staff pushes the device into the ward;
[0042] When first addressing the drainage fluid in a patient's drainage bag in the ward, the nursing staff uses a disposable tubing 6 to connect the measuring cylinder inlet connector 3 to the drainage bag outlet. The drainage bag is then suspended on a hook 7, ensuring its height is below the bed height. The nursing staff sets patient information via the touch panel 8 and controls the PLC controller 11 to activate the level sensor 4. After opening the valve at the drainage bag outlet, the drainage fluid automatically flows into the measuring cylinder 1 through the tubing 6 and measuring cylinder inlet connector 3 under gravity and pressure differential. This process requires no operation or monitoring from the nursing staff, reducing their workload. The measuring cylinder vent connector 5 is used for venting. The level sensor 4 continuously monitors the fluid level in the measuring cylinder 1 and transmits the data to the PLC controller 11. Once the drainage fluid in the drainage bag has completely flowed into the measuring cylinder 1... Afterwards, when the liquid level sensor 4 detects no change in the liquid level in the measuring cylinder 1, the PLC controller 11 sends a signal to the alarm 9 to trigger an alarm, indicating to the nursing staff that all the drainage fluid in the drainage bag has flowed into the measuring cylinder 1, facilitating the next step of the operation and reducing the burden on the nursing staff. The PLC controller 11 receives the measurement data transmitted by the liquid level sensor 4 and transmits the measurement data to the PLC gateway 23. The PLC gateway 23 transmits the measurement data to the cloud via a mobile network. Nurses and doctors can use computers or mobile phones to obtain the measurement value of the patient's drainage fluid volume through the cloud, which can reduce the workload of nurses in measurement and recording, save nurses' time and manpower, improve the measurement efficiency of drainage fluid volume, and avoid human error in recording.
[0043] After collecting and measuring the drainage fluid in the patient's drainage bag using graduated cylinder 1, the valve on the graduated cylinder drain connector 21 is opened to drain the drainage fluid in graduated cylinder 1 into the storage tank 16 for collection. This allows for the collection and measurement of drainage fluid from another patient using graduated cylinder 1. The storage tank 16 can store drainage fluid from multiple patients in the ward, facilitating one-time treatment of drainage fluid by nursing staff in the ward and improving the efficiency of drainage fluid collection and treatment. After the drainage fluid in graduated cylinder 1 is drained, the valve on the graduated cylinder drain connector 21 is closed, the disposable guide tube 6 is disassembled and discarded, and the treatment device is moved to the second patient in the ward. The nursing staff uses the disposable guide tube 6 to connect the graduated cylinder inlet connector 3 to the drainage bag outlet of the second patient. The above steps are repeated to collect and measure the drainage fluid from the second patient using graduated cylinder 1. The liquid level sensor 4 transmits the measurement data to the PLC controller 11. The PLC controller 11 receives the measurement data transmitted by the liquid level sensor 4 and transmits the measurement data to the PLC gateway 23. The PLC gateway 23 transmits the measurement data to the cloud via a mobile network.
[0044] Nurses can push the device into the ward to collect and process drainage fluid from each patient in an orderly manner. It can also automatically measure the volume of drainage fluid. The measurement data is transmitted to the cloud via a mobile network through the PLC gateway 23. Nurses and doctors can use computers or mobile phones to obtain the measurement values of the patient's drainage fluid volume through the cloud. This reduces the workload of nurses in measurement and recording, saves nurses' time and manpower, improves the efficiency of drainage fluid volume measurement, and avoids human error in recording.
Claims
1. A drainage fluid pouring and processing device, comprising a measuring cylinder (1) and a detachable measuring cylinder top cover (2) installed on the top of the measuring cylinder (1) for sealing, characterized in that: The measuring cylinder top cover (2) is provided with a measuring cylinder inlet connector (3) and a measuring cylinder vent connector (5); It also includes a liquid level sensor (4), which is installed on the top cover (2) of the measuring cylinder to measure the liquid level inside the measuring cylinder (1); It also includes a PLC controller (11) and a PLC gateway (23). The liquid level sensor (4) is electrically connected to the PLC controller (11), and the PLC controller (11) is electrically connected to the PLC gateway (23). The liquid level sensor (4) transmits measurement data to the PLC controller (11). The PLC controller (11) receives the measurement data transmitted by the liquid level sensor (4) and transmits the measurement data to the PLC gateway (23). The PLC gateway (23) transmits the measurement data to the cloud via a mobile network.
2. The drainage fluid pouring and treatment device according to claim 1, characterized in that: It also includes a vehicle body (15) and a liquid storage tank (16); the measuring cylinder (1), PLC controller (11), PLC gateway (23) and liquid storage tank (16) are all installed on the vehicle body (15), and the liquid storage tank (16) is used to collect the drainage liquid after the measuring cylinder (1) is measured.
3. The drainage fluid pouring and treatment device according to claim 2, characterized in that: It also includes a frame (14), which is installed on the vehicle body (15). The measuring cylinder (1), PLC controller (11) and PLC gateway (23) are all installed on the frame (14). The measuring cylinder (1) is located above the storage tank (16). The bottom of the measuring cylinder (1) is provided with a measuring cylinder drain connector (21) for discharging the drainage liquid inside the measuring cylinder (1). The top of the storage tank inlet connector (18) is provided with a storage tank inlet connector (18) and a storage tank vent connector (17). The measuring cylinder drain connector (21) and the storage tank inlet connector (18) are connected by a pipe. A valve is installed on the measuring cylinder drain connector (21).
4. The drainage fluid pouring and treatment device according to claim 3, characterized in that: The top of the frame (14) is equipped with a hook (7) for hooking the drainage bag, and the hook (7) is located above the measuring cylinder (1).
5. The drainage fluid pouring and treatment device according to claim 2, characterized in that: It also includes a battery (12) installed on the vehicle body (15), and the liquid level sensor (4), PLC controller (11) and PLC gateway (23) are all electrically connected to the battery (12).
6. The drainage fluid pouring and treatment device according to claim 5, characterized in that: It also includes a touch panel (8) which is electrically connected to the PLC controller (11).
7. The drainage fluid pouring and treatment device according to claim 3, characterized in that: It also includes an activated carbon filter (13) installed on the frame (14), and the measuring cylinder exhaust connector (5) and the liquid storage tank exhaust connector (17) are all connected to the air inlet connector (22) of the activated carbon filter (13) through pipes.
8. The drainage fluid pouring and treatment device according to claim 1, characterized in that: It also includes an alarm (9), which is electrically connected to the PLC controller (11). When the measuring cylinder (1) collects the drainage liquid, the alarm (9) will sound an alarm after the liquid level inside it stabilizes.
9. The drainage fluid pouring and treatment device according to claim 2, characterized in that: The top of the liquid storage tank (16) is provided with a liquid storage tank dosing port (20), and a detachable sealing cap is installed at the liquid storage tank dosing port (20).
10. The drainage fluid pouring and treatment device according to claim 9, characterized in that: The capacity of the liquid storage tank (16) is 5 to 15 L.