Real-time early warning system based on sewage treatment sewage pool

By designing a real-time early warning system based on sewage treatment sewage tanks, the problem that the existing system cannot accurately reflect the real-time concentration and monitoring limitations of pollutant substances is solved, and real-time monitoring and stability of the sewage treatment process are achieved.

CN120126291AInactive Publication Date: 2025-06-10启东星辉环保科技有限公司
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Patent Information

Application Number
CN202510283315.X
Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
Filing Date
2025-03-11
Publication Date
2025-06-10
Estimated Expiration
Not applicable · inactive patent

AI Technical Summary

Technical Problem

The existing sewage treatment sewage pool detection, early warning and monitoring system cannot accurately reflect the real-time concentration of all pollutants, and there are problems of monitoring limitations, accuracy and reliability.

Method used

A real-time early warning system based on sewage treatment sewage tanks is designed, including real-time monitoring module, data analysis module, early warning module and control module. Data is collected through network connection sensors, and the data analysis module is used to calculate processing efficiency and water quality indicators. The early warning module triggers red and yellow warning lights based on the excessive data, and transmits the excessive data to the control module to increase the treatment agent.

Benefits of technology

Real-time monitoring of the sewage treatment process is achieved, timely discover changes in treatment efficiency and water quality indicators, ensuring that the sewage treatment effect is stable and meets the standards, and improving the reliability and stability of the system.

✦ Generated by Eureka AI based on patent content.

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Patent Text Reader

Abstract

The invention relates to the technical field of environmental engineering and information, and discloses a real-time early warning system based on a sewage treatment pool, which comprises a real-time monitoring module, a data analysis module, an early warning module and a control module, the real-time monitoring module is used for calculating pretreatment sewage pool inlet data Yz, pretreatment sewage pool outlet data rl, treatment sewage pool inlet data Kj and treatment sewage pool outlet data ip through a data set acquired by the real-time monitoring module, and carrying out graded early warning on the calculated standard exceeding data; water quality conditions of an inlet and an outlet of the pretreatment sewage pool and water quality conditions of an inlet and an outlet of the treatment sewage pool can be monitored in real time, the severity degree of problems is prompted through early warning of lamplight with different colors, an operator can make a decision rapidly according to the early warning level and take corresponding measures, and therefore the stability and the treatment effect of the whole sewage treatment process are guaranteed. The environmental pollution risk is reduced.
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Description

Technical Field

[0001] The present invention relates to the fields of environmental engineering and information technology, and particularly to a real-time warning system based on a sewage treatment sewage tank. Background Art

[0002] Sewage is the discharged water that has been polluted to a certain extent during the processes of daily life and production activities. According to different sources and compositions, sewage can be mainly divided into three categories: domestic sewage, industrial wastewater, and initial rainwater.

[0003] The sewage treatment sewage tank is a crucial environmental protection process, involving multiple steps such as physical, chemical, and biological treatment of the sewage tank, aiming to reduce the pollutant content in the sewage and make it harmless or meet specific water quality standards for reuse. In this process, the role of the detection and warning monitoring system is particularly important. It can not only improve the efficiency of disease prevention and control, but also optimize the sewage treatment sewage tank process to ensure water quality safety. This system is of great significance for public health and environmental protection.

[0004] However, there are some defects in the existing detection and warning monitoring systems. First, due to the complex biochemical reactions involved in the sewage treatment sewage tank, the existing monitoring systems may not be able to accurately reflect the real-time concentrations of all pollutants, which may affect the accuracy and reliability of the warning system. Second, although a sewage treatment sewage tank plant can treat a large amount of wastewater, the existing monitoring systems may have limitations in monitoring scale and coverage, making it difficult to achieve comprehensive monitoring. Finally, with the diversification and complexity of environmental pollutants, the existing technologies may be difficult to update and upgrade in a timely manner to meet new monitoring requirements. Summary of the Invention

[0005] (1) Technical Problems to be Solved

[0006] In view of the deficiencies of the existing technologies, the present invention provides a real-time warning system based on a sewage treatment sewage tank, which has the advantages of comprehensively monitoring sewage and accurately reflecting the real-time concentrations of all pollutants, and solves the problems of limitations, low accuracy, and low reliability of the monitoring system.

[0007] (2) Technical Solutions

[0008] To achieve the above object, the present invention provides the following technical solutions: including a real-time monitoring module, a data analysis module, a warning module, and a control module;

[0009] The real-time monitoring module includes a pre-treatment sewage tank inlet unit, a pre-treatment sewage tank outlet unit, a treatment sewage tank inlet unit, and a treatment sewage tank outlet unit;

[0010] The inlet unit of the pre-treatment sewage tank collects the pre-treatment sewage tank inlet data set through a network-connected sensor, numbers it, and connects it to the data analysis module. The outlet unit of the pre-treatment sewage tank collects the pre-treatment sewage tank outlet data set through a network-connected sensor, numbers it, and connects it to the data analysis module;

[0011] The inlet unit of the treated sewage tank collects the treated sewage tank inlet data set through a network-connected sensor, numbers it, and connects it to the data analysis module. The outlet unit of the treated sewage tank collects the treated sewage tank outlet data set through a network-connected sensor, numbers it, and connects it to the analysis module. The real-time monitoring module is connected to the data analysis module through a network;

[0012] The data analysis module includes an on-line analysis unit for the pre-treatment sewage tank and an on-line analysis unit for the treated sewage tank;

[0013] The on-line analysis unit of the pre-treatment sewage tank calculates the pre-treatment sewage tank inlet data Yz according to the pre-treatment sewage tank inlet data set, and the on-line analysis unit of the pre-treatment sewage tank calculates the pre-treatment sewage tank outlet data rl according to the pre-treatment sewage tank outlet data set;

[0014] The on-line analysis unit of the treated sewage tank calculates the treated sewage tank inlet data Kj according to the treated sewage tank inlet data set, and the on-line analysis unit of the treated sewage tank calculates the treated sewage tank outlet data ip according to the treated sewage tank outlet data set. The data analysis module is connected to the early warning module through a network;

[0015] After the early warning module obtains the pre-treatment sewage tank inlet data Yz, the pre-treatment sewage tank outlet data rl, the treated sewage tank inlet data Kj, and the treated sewage tank outlet data ip, it compares them with the qualified data. After comparison, if the pre-treatment sewage tank inlet data Yz, the pre-treatment sewage tank outlet data rl, the treated sewage tank inlet data Kj, and the treated sewage tank outlet data ip exceed the standard, the red and yellow warning lights will be immediately triggered in the exceeded area, and the exceeded data will be transmitted to the control module through a network;

[0016] The control module obtains the exceeded standard information from the early warning module, and refers to the lowest value of the qualified data and the lowest value of the historical data to increase the treatment agent in the exceeded area.

[0017] Preferably, the inlet unit of the pre-treatment sewage tank numbers the detection items required in the pre-treatment sewage tank inlet sewage according to the characteristics of the pre-treatment inlet data set, and the detection item set number is Z 1 、Z 2 、Z 3 、…Z n ,and calculates the pre-treatment sewage tank inlet data Yz through the pre-treatment inlet data set. The formula is:

[0018]

[0019] In the formula, Yz represents the inlet data of the pre-treatment sewage tank, and Z 1 , Z 2 , Z 3 , …Z n represents the sewage detection items at the inlet of the pre-treatment sewage tank, (Z*a + b) represents the result of the sewage detection items at the inlet of the pre-treatment sewage tank for Z, a represents the slope of (Z*a + b), b represents the constant of (Z*a + b), and e 1 , e 2 , e 3 , …e n represents the weight of Z 1 , Z 2 , Z 3 , …Z n in , and k 1 is the interference rate of the pH, temperature, oxidant, and catalyst concentration in the pre-treatment inlet sewage on it, and i is a fixed constant value.

[0020] Preferably, the pre-treatment sewage tank outlet unit numbers the required detection items in the pre-treatment sewage tank outlet sewage according to the characteristics of the pre-treatment outlet data set, and the detection item set number is r 1 , r 2 , r 3 , …r m , and calculates the pre-treatment sewage tank outlet data rl through the pre-treatment outlet data set. The formula is:

[0021]

[0022] In the formula, rl represents the pre-treatment sewage tank outlet data, and r 1 , r 2 , r 3 , …r m represents the detection items of the pre-treatment sewage tank outlet sewage, (r*c + d) represents the result of the r detection items in the pre-treatment sewage tank outlet sewage, c represents the slope of (r*c + d), d represents the constant of (r*c + d), and f 1 , f 2 , f 3 , …f m represents the weight of r 1 , r 2 , r 3 , …r m in , and k 2 is the interference rate of the pH, temperature, oxidant, and catalyst concentration in the pre-treatment sewage tank outlet sewage on it, and i is a fixed constant value.

[0023] Preferably, the inlet unit of the sewage treatment tank numbers the required test items in the sewage entering the sewage treatment tank according to the characteristics of the inlet data set for treatment, and the number set of the test items is J 1 、J 2 、J 3 、…J s ,and calculates the inlet data Kj of the sewage treatment tank through the inlet data set for treatment. The formula is:

[0024]

[0025] In the formula, Kj represents the inlet data of the sewage treatment tank, J 1 、J 2 、J 3 、…J s represents the test items in the sewage entering the sewage treatment tank, (J*g + y) represents the test item result of J in the sewage entering the sewage treatment tank, G represents the slope of (J*g + y), y represents the constant of (J*g + y), t 1 、t 2 、t 3 、…t s represents the weight of J 1 、J 2 、J 3 、…J s in , k 3 is the interference rate of the pH, temperature, oxidant and catalyst concentration in the sewage entering the sewage treatment tank on it, and i is a fixed constant value.

[0026] Preferably, the outlet unit of the sewage treatment tank numbers the required test items in the sewage leaving the sewage treatment tank according to the characteristics of the outlet data set for treatment, and the number set of the test items is p 1 、p 2 、p 3 、…p h ,and calculates the outlet data ip of the sewage treatment tank through the pre-treated inlet data set. The formula is:

[0027]

[0028] In the formula, ip represents the outlet data of the sewage treatment tank, p 1 、p 2 、p 3 、…p h represents the test items of the sewage leaving the sewage treatment tank, (p*x + z) represents the test item result of p in the sewage leaving the sewage treatment tank, x represents the slope of (p*x + z), z represents the constant of (p*x + z), v 1 、v 2 、v3 ,..., v h represents p 1 , p 2 , p 3 ,..., p h in the weight occupied, k 4 is the interference rate of the pH, temperature, oxidant, and catalyst concentration in the sewage at the outlet of the sewage treatment tank on it, and i is a fixed constant value.

[0029] Preferably, the treatment efficiency Yzrl of the pretreatment sewage tank is calculated from the inlet data Yz of the pretreatment sewage tank and the outlet data rl of the pretreatment sewage tank, and its calculation formula is:

[0030]

[0031] In the formula, Yzrl represents the treatment efficiency of the pretreatment sewage tank, rl represents the outlet data of the pretreatment sewage tank, and Yz represents the inlet data of the pretreatment sewage tank.

[0032] Preferably, the treatment efficiency Kjip of the treatment sewage tank is calculated from the inlet data Kj of the treatment sewage tank and the outlet data ip of the treatment sewage tank, and its calculation formula is:

[0033]

[0034] In the formula, Kjip represents the treatment efficiency of the treatment sewage tank, ip represents the outlet data of the treatment sewage tank, and Kj represents the inlet data of the treatment sewage tank.

[0035] Preferably, the treatment efficiency Yzrl of the pretreatment sewage tank and the treatment efficiency Kjip of the treatment sewage tank are calculated in the data analysis module and transmitted to the early warning module through the network.

[0036] Preferably, when the treatment efficiency 60% < Yzrl < 85% of the pretreatment sewage tank, the early warning module triggers the yellow light for the treatment efficiency of the pretreatment sewage tank; when the treatment efficiency Yzrl < 60% of the pretreatment sewage tank, the early warning module triggers the red light for the treatment efficiency of the pretreatment sewage tank; when the treatment efficiency 88% < Kjip < 95% of the treatment sewage tank, the early warning module triggers the yellow light for the treatment efficiency of the treatment sewage tank; when the treatment efficiency Kjip < 88% of the treatment sewage tank, the early warning module triggers the red light for the treatment efficiency of the treatment sewage tank.

[0037] Preferably, when the inlet data Yz of the pretreatment sewage tank, the outlet data rl of the pretreatment sewage tank, the inlet data Kj of the treatment sewage tank, and the outlet data ip of the treatment sewage tank exceed the standard, the early warning module correspondingly lights up the yellow light at the inlet of the pretreatment sewage tank, the red light at the outlet of the pretreatment sewage tank, the red light at the inlet of the treatment sewage tank, and the red light at the outlet of the treatment sewage tank.

[0038] Compared with the prior art, the present invention provides a real-time warning system based on a sewage treatment sewage pond, which has the following beneficial effects:

[0039] 1. By setting different levels of warning thresholds for the treatment efficiency Yzrl of the pretreatment sewage pond and the treatment efficiency Kjip of the treatment sewage pond, the present invention can monitor the sewage treatment process in real time, timely detect changes in the treatment efficiency, and take corresponding measures to ensure that the sewage treatment effect meets the standards stably. This way of gradually warning helps to improve the reliability and stability of the sewage treatment work.

[0040] 2. By classifying and warning the excessive data of the inlet data Yz of the pretreatment sewage pond, the outlet data rl of the pretreatment sewage pond, the inlet data Kj of the treatment sewage pond, and the outlet data ip of the treatment sewage pond, the present invention can monitor in real time whether the water quality at the inlets and outlets of the pretreatment sewage pond and the treatment sewage pond exceeds the standard. Through the warning of lights of different colors to indicate the severity of the exceeding standard, the operation personnel can quickly make decisions and take corresponding measures according to the warning level, so that the sewage index is qualified before being discharged to the next stage, thereby ensuring the stability of the entire sewage treatment process and the treatment effect, reducing the risk of environmental pollution, and achieving the beneficial effect of comprehensively monitoring the sewage and accurately reflecting the real-time concentration of all pollutants. BRIEF DESCRIPTION OF THE DRAWINGS

[0041] Figure 1 It is a schematic structural diagram of the present invention; DETAILED DESCRIPTION OF THE INVENTION

[0042] The technical solutions in the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention. Obviously, the described embodiments are only a part of the embodiments of the present invention, rather than all of the embodiments. All other embodiments obtained by those of ordinary skill in the art based on the embodiments of the present invention without creative efforts shall fall within the protection scope of the present invention.

[0043] Please refer to Figure 1 , including a real-time monitoring module, a data analysis module, a warning module, and a control module;

[0044] The real-time monitoring module includes a pretreatment sewage pond inlet unit, a pretreatment sewage pond outlet unit, a treatment sewage pond inlet unit, and a treatment sewage pond outlet unit;

[0045] The pretreatment sewage pond inlet unit collects the pretreatment sewage pond inlet data set through a network-connected sensor, numbers it, and is connected to the data analysis module. The pretreatment sewage pond outlet unit collects the pretreatment sewage pond outlet data set through a network-connected sensor, numbers it, and is connected to the data analysis module;

[0046] The inlet unit of the sewage treatment tank collects the inlet data set of the sewage treatment tank through network-connected sensors, numbers it, and connects it to the data analysis module. The outlet unit of the sewage treatment tank collects the outlet data set of the sewage treatment tank through network-connected sensors, numbers it, and connects it to the analysis module. The real-time monitoring module is connected to the data analysis module through the network;

[0047] The data analysis module includes an on-line analysis unit for the pretreatment sewage tank and an on-line analysis unit for the sewage treatment tank;

[0048] The on-line analysis unit for the pretreatment sewage tank calculates the inlet data Yz of the pretreatment sewage tank according to the inlet data set of the pretreatment sewage tank, and the on-line analysis unit for the pretreatment sewage tank calculates the outlet data rl of the pretreatment sewage tank according to the outlet data set of the pretreatment sewage tank;

[0049] The on-line analysis unit for the sewage treatment tank calculates the inlet data Kj of the sewage treatment tank according to the inlet data set of the sewage treatment tank, and the on-line analysis unit for the sewage treatment tank calculates the outlet data ip of the sewage treatment tank according to the outlet data set of the sewage treatment tank. The data analysis module is connected to the warning module through the network;

[0050] After the warning module obtains the inlet data Yz of the pretreatment sewage tank, the outlet data rl of the pretreatment sewage tank, the inlet data Kj of the sewage treatment tank, and the outlet data ip of the sewage treatment tank, it compares them with the qualified data. After comparison, if the inlet data Yz of the pretreatment sewage tank, the outlet data rl of the pretreatment sewage tank, the inlet data Kj of the sewage treatment tank, and the outlet data ip of the sewage treatment tank exceed the standard, the red and yellow warning lights will be immediately triggered in the exceeding-standard area, and the exceeding-standard data will be transmitted to the control module through the network. The warning level of the red warning light is higher than that of the yellow warning light. The staff can judge the exceeding-standard position by the position where the warning light lights up, and know the range of the exceeding-standard data from the red and yellow colors;

[0051] The control module obtains the exceeding-standard information from the warning module, refers to the lowest value of the qualified data and the lowest value of the historical data, and adds treatment agents in the exceeding-standard area. Adding treatment agents can reduce the inlet data Yz of the pretreatment sewage tank, the outlet data rl of the pretreatment sewage tank, the inlet data Kj of the sewage treatment tank, and the outlet data ip of the sewage treatment tank.

[0052] The inlet unit of the pretreatment sewage tank numbers the detection items required in the inlet sewage of the pretreatment sewage tank according to the characteristics of the pretreatment inlet data set. The detection item set is numbered as Z 1 、Z 2 、Z 3 、…Z n ,and calculates the inlet data Yz of the pretreatment sewage tank through the pretreatment inlet data set. The formula is:

[0053]

[0054] In the formula, Yz represents the data at the inlet of the pre-treatment sewage tank, and Z 1 , Z 2 , Z 3 , …Z n represents the sewage detection items at the inlet of the pre-treatment sewage tank, (Z*a + b) represents the result of the sewage detection items at the inlet of the pre-treatment sewage tank for Z, a represents the slope in (Z*a + b), b represents the constant in (Z*a + b), e 1 , e 2 , e 3 , …e n represents the weight of Z 1 , Z 2 , Z 3 , …Z n in , and k 1 is the interference rate of the pH, temperature, oxidant, and catalyst concentration in the inlet sewage of the pre-treatment on it. i is a fixed constant value. When the data at the inlet of the pre-treatment sewage tank is qualified, the sewage is normally discharged into the pre-treatment sewage tank.

[0055] The outlet unit of the pre-treatment sewage tank numbers the required detection items in the sewage at the outlet of the pre-treatment sewage tank according to the characteristics of the pre-treatment outlet data set. The detection item set number is r 1 , r 2 , r 3 , …r m , and calculates the data rl at the outlet of the pre-treatment sewage tank through the pre-treatment outlet data set. The formula is:

[0056]

[0057] In the formula, rl represents the data at the outlet of the pre-treatment sewage tank, and r 1 , r 2 , r 3 , …r m represents the detection items of the sewage at the outlet of the pre-treatment sewage tank, (r*c + d) represents the result of the sewage detection items at the outlet of the pre-treatment sewage tank for r, c represents the slope in (r*c + d), d represents the constant in (r*c + d), f 1 , f 2 , f 3 , …f m represents the weight of r 1 , r 2 , r 3 , …r m in , and k 2To preprocess the interference rate of pH, temperature, oxidant, and catalyst concentration in the sewage at the outlet of the sewage pretreatment tank. Let i be a fixed constant value. When the data at the outlet of the sewage pretreatment tank is qualified, it is normally discharged to the inlet pipe of the sewage treatment tank.

[0058] The inlet unit of the sewage treatment tank numbers the required test items in the sewage at the inlet of the sewage treatment tank according to the characteristics of the inlet data set for treatment, and the number of the test item set is J 1 、J 2 、J 3 、…J s ,and calculates the inlet data Kj of the sewage treatment tank through the inlet data set for treatment. The formula is:

[0059]

[0060] In the formula, Kj represents the inlet data of the sewage treatment tank, J 1 、J 2 、J 3 、…J s represents the test items in the sewage at the inlet of the sewage treatment tank, (J*g + y) represents the test item result of J in the sewage at the inlet of the sewage treatment tank, g represents the slope of (J*g + y), y represents the constant of (J*g + y), t 1 、t 2 、t 3 、…t s represents the weight of J 1 、J 2 、J 3 、…J s in , k 3 is the interference rate of pH, temperature, oxidant, and catalyst concentration in the sewage at the inlet of the sewage treatment tank on it. Let i be a fixed constant value. When the inlet data of the sewage treatment tank is qualified, it is normally discharged into the sewage treatment tank.

[0061] The outlet unit of the sewage treatment tank numbers the required test items in the sewage at the outlet of the sewage treatment tank according to the characteristics of the outlet data set for treatment, and the number of the test item set is p 1 、p 2 、p 3 、…p h ,and calculates the outlet data ip of the sewage treatment tank through the inlet data set for pretreatment. The formula is:

[0062]

[0063] In the formula, ip represents the outlet data of the sewage treatment tank, p 1 、p 2 、p 3 、…p hRepresents the detection items of the sewage at the outlet of the sewage treatment tank. (p*x + z) represents the result of the detection items of p for the sewage at the outlet of the sewage treatment tank, x represents the slope of (p*x + z), z represents the constant of (p*x + z), v 1 、v 2 、v 3 、…v h Represents p 1 、p 2 、p 3 、…p h In The weight occupied by, k 4 K is the interference rate of the pH, temperature, oxidant, and catalyst concentration in the sewage at the outlet of the sewage treatment tank on it. i is a fixed constant value. When the data at the outlet of the sewage treatment tank is qualified, the sewage is discharged.

[0064] The inlet data Yz of the pretreatment sewage tank and the outlet data rl of the pretreatment sewage tank are used to calculate the treatment efficiency Yzrl of the pretreatment sewage tank. The calculation formula is:

[0065]

[0066] In the formula, Yzrl represents the treatment efficiency of the pretreatment sewage tank, rl represents the outlet data of the pretreatment sewage tank, and Yz represents the inlet data of the pretreatment sewage tank. When the treatment efficiency of the pretreatment sewage tank does not meet the standard, the sewage cannot be discharged into the sewage treatment tank. When the treatment efficiency meets the standard, the sewage is normally discharged into the sewage treatment tank.

[0067] The inlet data Kj of the sewage treatment tank and the outlet data ip of the sewage treatment tank are used to calculate the treatment efficiency Kjip of the sewage treatment tank. The calculation formula is:

[0068]

[0069] In the formula, Kjip represents the treatment efficiency of the sewage treatment tank, ip represents the outlet data of the sewage treatment tank, and Kj represents the inlet data of the sewage treatment tank. When the treatment efficiency of the sewage treatment tank meets the standard, the sewage is normally discharged.

[0070] The treatment efficiency Yzrl of the pretreatment sewage tank and the treatment efficiency Kjip of the sewage treatment tank are calculated in the data analysis module and transmitted to the early warning module through the network.

[0071] When the treatment efficiency of the pre-treatment sewage tank is 60% < Yzrl < 85%, the warning module triggers the yellow light for the treatment efficiency of the pre-treatment sewage tank; by setting a threshold range for the medium and high-level treatment efficiency, it is possible to promptly detect a decrease in the treatment efficiency of the pre-treatment sewage tank, reminding relevant personnel to conduct inspections and repairs. The yellow light warning can take measures such as increasing treatment chemicals before the problem becomes serious, avoiding a further decline in the treatment efficiency. When the treatment efficiency of the pre-treatment sewage tank Yzrl < 60%, the warning module triggers the red light for the treatment efficiency of the pre-treatment sewage tank. When the treatment efficiency is lower than 60%, it indicates that the treatment capacity of the pre-treatment sewage tank is seriously insufficient. At this time, triggering the red light warning can more significantly prompt relevant personnel to take emergency measures to ensure the normal progress of the sewage treatment work; when the treatment efficiency of the sewage treatment tank 88% < Kjip < 95%, the warning module triggers the yellow light for the treatment efficiency of the sewage treatment tank; for the sewage treatment tank, when setting a threshold range for the medium and high-grade treatment efficiency, the yellow light warning helps to remind relevant personnel to pay attention to the change in the treatment efficiency and promptly adjust the process parameters to maintain the stability of the treatment effect. When the treatment efficiency of the sewage treatment tank Kjip < 88%, the warning module triggers the red light for the treatment efficiency of the sewage treatment tank, indicating that the treatment effect of the sewage treatment tank does not meet the standards. At this time, triggering the red light warning can quickly attract the attention of relevant personnel and take measures to solve the problem to ensure the quality of sewage treatment.

[0072] When the inlet data Yz of the pre-treatment sewage tank, the outlet data rl of the pre-treatment sewage tank, the inlet data Kj of the sewage treatment tank, and the outlet data ip of the sewage treatment tank exceed the standard, the warning module correspondingly lights up the yellow light at the inlet of the pre-treatment sewage tank, the red light at the outlet of the pre-treatment sewage tank, the red light at the inlet of the sewage treatment tank, and the red light at the outlet of the sewage treatment tank. The exceeding of the outlet data is the last warning, indicating that the treatment effect of the sewage treatment tank does not meet the standards and can affect the final discharge water quality. Therefore, this is a warning for the last line of defense and immediate measures need to be taken, such as readjusting the treatment parameters, conducting in-depth treatment, or temporarily stopping the discharge to ensure environmental safety and compliance.

[0073] Although the embodiments of the present invention have been shown and described, for those of ordinary skill in the art, it can be understood that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present invention. The scope of the present invention is defined by the appended claims and their equivalents.

Claims

1. A real-time early warning system based on a sewage treatment cesspool, characterized in that: It includes real-time monitoring module, data analysis module, early warning module and control module; The real-time monitoring module includes a pre-treatment sewage pool inlet unit, a pre-treatment sewage pool outlet unit, a treatment sewage pool inlet unit and a treatment sewage pool outlet unit; The pre-treatment sewage pool inlet unit collects the pre-treatment sewage pool inlet data set through a network connection sensor, and numbers it and connects it with the data analysis module; the pre-treatment sewage pool outlet unit collects the pre-treatment sewage pool outlet data set through a network connection sensor, and numbers it and connects it with the data analysis module; The sewage treatment pool inlet unit collects and processes the sewage treatment pool inlet data set through a network connection sensor, and numbers and connects it with a data analysis module; the sewage treatment pool outlet unit collects and processes the sewage treatment pool outlet data set through a network connection sensor, and numbers and connects it with an analysis module; the real-time monitoring module connects to the data analysis module through a network; The data analysis module includes an online analysis unit for a pre-treatment sewage pool and an online analysis unit for a treatment sewage pool; The pre-treatment sewage pool online analysis unit calculates the pre-treatment sewage pool import data Yz according to the pre-treatment sewage pool import data set, and the pre-treatment sewage pool online analysis unit calculates the pre-treatment sewage pool export data rl according to the pre-treatment sewage pool export data set; The sewage pool online analysis unit calculates the sewage pool import data Kj according to the sewage pool import data set, and the sewage pool online analysis unit calculates the sewage pool export data ip according to the sewage pool export data set, and the data analysis module is connected to the early warning module through the network; After obtaining the pre-treatment sewage pool inlet data Yz, the pre-treatment sewage pool outlet data rl, the treatment sewage pool inlet data Kj and the treatment sewage pool outlet data ip, the early warning module compares them with the qualified data. After comparison, if the pre-treatment sewage pool inlet data Yz, the pre-treatment sewage pool outlet data rl, the treatment sewage pool inlet data Kj and the treatment sewage pool outlet data ip exceed the standard, the exceeding area immediately triggers the red and yellow warning lights, and transmits the exceeding data to the control module through the network; The control module obtains the exceeding standard information from the early warning module, refers to the lowest value of qualified data and the lowest value of historical data, and increases the treatment agent in the exceeding standard area.

2. A real-time early warning system based on a sewage treatment pool according to claim 1, characterized in that: The pre-treatment sewage pool inlet unit numbers the required detection items in the pre-treatment sewage pool inlet sewage according to the characteristics of the pre-treatment inlet data set, and the detection item set is numbered as Z1, Z2, Z3, ... Z n , and calculate the pre-treated sewage tank import data Yz through the pre-treated import data set, and the formula is: In the formula, Yz represents the inlet data of the pre-treatment sewage pool, Z1, Z2, Z3, ... Z n represents the test item of sewage inlet of pre-treatment sewage pool, (Z*a+b) represents the test item result of Z at the test item of sewage inlet of pre-treatment sewage pool, a represents the slope of (Z*a+b), b represents the constant of (Z*a+b), e1, e2, e3, ...e n represents Z1, Z2, Z3, ... Z n exist k1 is the interference rate of the pH, temperature, oxidant and catalyst concentrations in the pretreated inlet sewage, and i is a fixed constant value.

3. A real-time early warning system based on a sewage treatment pool according to claim 1, characterized in that: The pre-treatment sewage pool outlet unit numbers the required detection items in the pre-treatment sewage pool outlet sewage according to the pre-treatment outlet data set characteristics, and the detection item set is numbered r1, r2, r3, ... r m , and calculate the pretreatment sewage pool outlet data rl through the pretreatment outlet data set, the formula is: In the formula, rl represents the outlet data of the pre-treatment sewage pool, r1, r2, r3, ...r m represents the test items of the sewage at the outlet of the pre-treatment sewage pool, (r*c+d) represents the test items of the sewage at the outlet of the pre-treatment sewage pool, c represents the slope at (r*c+d), d represents the constant of (r*c+d), f1, f2, f3, ...f m represents r1, r2, r3, ... r m exist k2 is the interference rate of the pH, temperature, oxidant and catalyst concentrations in the sewage outlet of the pretreatment sewage pool, and i is a fixed constant value.

4. A real-time early warning system based on a sewage treatment tank according to claim 1, characterized in that: The sewage treatment pool inlet unit numbers the required detection items in the sewage treatment pool inlet according to the characteristics of the treatment import data set, and the detection item set is numbered as J1, J2, J3, ... J s And by processing the import data set, the sewage pool import data Kj is calculated, and the formula is: In the formula, Kj represents the inlet data of the sewage treatment pool, J1, J2, J3, ...J s represents the test items in the sewage treatment tank inlet, (J*g+y) represents the test items of J in the sewage treatment tank inlet, g represents the slope of (J*g+y), y represents the constant of (J*g+y), t1, t2, t3, ...t s Indicates J1, J2, J3, ... J s exist k3 is the interference rate of the pH, temperature, oxidant and catalyst concentrations in the sewage treatment pool inlet, and i is a fixed constant value.

5. A real-time early warning system based on a sewage treatment pool according to claim 1, characterized in that: The sewage treatment pool outlet unit numbers the required detection items in the sewage treatment pool outlet according to the characteristics of the treatment outlet data set, and the detection item set is numbered as p1, p2, p3, ... p h And calculate the sewage pool outlet data ip by preprocessing the import data set, and the formula is: In the formula, ip represents the outlet data of the sewage treatment pool, p1, p2, p3, ... p h represents the test items of sewage treatment pool outlet, (p*x+z) represents the test items of sewage treatment pool outlet, x represents the slope of (p*x+z), z represents the constant of (p*x+z), v1, v2, v3, ...v h represents p1, p2, p3, ... p h exist k4 is the interference rate of the pH, temperature, oxidant and catalyst concentrations in the sewage treatment pool outlet, and i is a fixed constant value.

6. A real-time early warning system based on a sewage treatment pool according to claim 3, characterized in that: The pre-treatment sewage pool inlet data Yz and the pre-treatment sewage pool outlet data rl are used to calculate the treatment efficiency Yzrl of the pre-treatment sewage pool, and the calculation formula is: In the formula, Yzrl represents the treatment efficiency of the pretreatment sewage pool, rl represents the outlet data of the pretreatment sewage pool, and Yz represents the inlet data of the pretreatment sewage pool.

7. A real-time early warning system based on a sewage treatment pool according to claim 5, characterized in that: The treatment efficiency Kjip of the sewage treatment pool is calculated by using the inlet data Kj of the sewage treatment pool and the outlet data ip of the sewage treatment pool. The calculation formula is: In the formula, Kjip represents the treatment efficiency of the sewage treatment pool, ip represents the outlet data of the sewage treatment pool, and Kj represents the inlet data of the sewage treatment pool.

8. A real-time early warning system based on a sewage treatment pool according to claim 7, characterized in that: The treatment efficiency Yzrl of the pre-treatment sewage pool and the treatment efficiency Kjip of the treatment sewage pool are calculated in the data analysis module and transmitted to the early warning module through the network.

9. A real-time early warning system based on a sewage treatment pool according to claim 8, characterized in that: When the treatment efficiency of the pre-treatment sewage tank is 60% < Yzrl < 85%, the warning module triggers the yellow light for the treatment efficiency of the pre-treatment sewage tank; when the treatment efficiency of the pre-treatment sewage tank Yzrl < 60%, the warning module triggers the red light for the treatment efficiency of the pre-treatment sewage tank; when the treatment efficiency of the treatment sewage tank is 88% < Kjip < 95%, the warning module triggers the yellow light for the treatment efficiency of the treatment sewage tank; when the treatment efficiency of the treatment sewage tank Kjip < 88%, the warning module triggers the red light for the treatment efficiency of the treatment sewage tank.

10. A real-time early warning system based on a sewage treatment pool according to claim 9, characterized in that: When the import data Yz of the pre-treatment sewage tank, the export data rl of the pre-treatment sewage tank, the import data Kj of the treatment sewage tank, and the export data ip of the treatment sewage tank exceed the standard, the warning module correspondingly lights up the yellow light at the inlet of the pre-treatment sewage tank, the red light at the outlet of the pre-treatment sewage tank, the red light at the inlet of the treatment sewage tank, and the red light at the outlet of the treatment sewage tank.