Method, apparatus, server and storage medium for deodorizing fecal pool discharge
By using ozone agents to disinfect septic tank waste, the problems of odor and bacterial growth in traditional septic tank treatments are solved, achieving highly efficient odor removal and disinfection, and reducing the risk of organic pollution and bacterial transmission.
Patent Information
- Application Number
- CN202411927827.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-25
- Publication Date
- 2025-11-21
- Estimated Expiration
- 2044-12-25
AI Technical Summary
Traditional septic tank treatment methods cannot effectively remove odors and germs, leading to a decline in environmental quality and the risk of disease transmission.
An ozone generator is used to prepare ozone preparations for deodorizing and disinfecting septic tank waste. The disinfection process is optimized by combining pretreatment and real-time environmental parameter monitoring.
It effectively decomposes organic matter, kills germs, reduces odors and germ growth, improves treatment efficiency, avoids secondary pollution, and improves environmental quality.
Smart Images

Figure CN119841480B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of excrement treatment, and more particularly to a method, equipment, server, and storage medium for deodorizing and disinfecting septic tank excrement. Background Technology
[0002] The treatment of rural septic tanks has long faced a series of challenges, mainly including strong odor, bacterial growth, and organic pollution.
[0003] Traditional septic tank treatment methods, such as natural fermentation and simple sedimentation, often fail to effectively remove odors and pathogens, while also causing significant organic pollution. This not only leads to a decline in rural environmental quality but can also spread diseases through various routes, such as water or air. Therefore, traditional septic tank treatment methods pose a potential threat to the health of rural residents. A new technological solution is needed to address these problems. Summary of the Invention
[0004] The main objective of this invention is to address the risks of organic pollution and pathogen transmission associated with traditional technical solutions, thereby improving environmental quality.
[0005] The first aspect of the present invention provides a method for deodorizing and disinfecting septic tank waste, the method comprising:
[0006] When excrement is detected in the septic tank, a pretreatment operation is performed to obtain wastewater to be treated, and the environmental parameters of the septic tank are detected.
[0007] The ozone generator is used to prepare ozone preparations based on the environmental parameters.
[0008] The ozone agent is used to perform odor removal and disinfection on the wastewater to be treated, resulting in odor removal and disinfection byproducts.
[0009] Optionally, in a first implementation of the first aspect of the present invention, after the step of performing a deodorization and disinfection operation on the wastewater to be treated according to the ozone agent to obtain a deodorization and disinfection byproduct, the method further includes:
[0010] Test whether the odor-eliminating and disinfection byproducts meet emission standards;
[0011] If the odor-neutralizing and disinfection byproducts meet the emission standards, the odor-neutralizing and disinfection byproducts shall be directly discharged.
[0012] Optionally, in a second implementation of the first aspect of the present invention, the step of performing a pretreatment operation to obtain wastewater to be treated when excrement is detected in the septic tank includes:
[0013] When excrement is detected in the septic tank, a large-particle filtration process is performed to obtain wastewater;
[0014] The pH value of the wastewater is adjusted to a preset pH value to obtain the wastewater to be treated.
[0015] Optionally, in a third implementation of the first aspect of the present invention, the step of performing a deodorization and disinfection operation on the wastewater to be treated according to the ozone agent to obtain a deodorization and disinfection byproduct includes:
[0016] The ozone agent is sprayed onto the wastewater to be treated by calling the spray module, so as to perform the odor removal and disinfection operation on the wastewater to be treated, and obtain the odor removal and disinfection byproduct.
[0017] Optionally, in a fourth implementation of the first aspect of the present invention, the step of calling the ozone generator to prepare an ozone agent according to the environmental parameters includes:
[0018] Detect whether there are any remaining historical ozone agents;
[0019] If the historical ozone agent exists, an ozone generator is invoked to prepare the ozone agent based on the historical ozone agent and the environmental parameters.
[0020] Optionally, in a fifth implementation of the first aspect of the present invention, the step of, if the historical ozone agent exists, calling an ozone generator to prepare the ozone agent based on the historical ozone agent and the environmental parameters includes:
[0021] If the historical ozone agent exists, test the formulation parameters of the historical ozone agent;
[0022] The ozone generator is invoked to prepare the ozone formulation according to the formulation parameters and the environmental parameters.
[0023] Optionally, in a sixth implementation of the first aspect of the present invention, the ozone agent includes ozone water or ozone gas.
[0024] A second aspect of the present invention provides a deodorizing and disinfecting device for septic tank excrement, comprising a memory and a processor, wherein the processor is configured to execute program instructions stored in the memory to cause the deodorizing and disinfecting device for septic tank excrement to perform the aforementioned deodorizing and disinfecting method for septic tank excrement.
[0025] A third aspect of the present invention provides a server, characterized in that it includes a memory and a processor, the processor being configured to execute program instructions stored in the memory to cause the server to perform the above-described method for deodorizing and disinfecting septic tank excrement.
[0026] A fourth aspect of the present invention provides a computer-readable storage medium storing instructions that, when executed on a computer, cause the computer to perform the above-described method for deodorizing and disinfecting septic tank waste.
[0027] In this embodiment of the invention, when excrement is detected in the septic tank, a pretreatment operation is performed to obtain wastewater to be treated, and the environmental parameters of the septic tank are detected. An ozone generator is invoked to prepare an ozone agent based on the environmental parameters. The wastewater to be treated is then subjected to a deodorization and disinfection operation based on the ozone agent, yielding a deodorization and disinfection byproduct. By using an ozone generator to prepare the ozone agent and utilizing the strong oxidizing properties of ozone to deodorize and disinfect the excrement in the septic tank, organic matter can be effectively decomposed, bacteria and viruses killed, odor and bacterial growth significantly reduced, and treatment efficiency improved. Detecting septic tank environmental parameters and preparing ozone agents based on these parameters allows for automatic adjustment of treatment parameters based on real-time data. Compared with traditional septic tank treatment methods, no chemical agents need to be added, avoiding secondary pollution. This reduces the risk of organic matter pollution and bacterial transmission, thus improving environmental quality. Attached Figure Description
[0028] Figure 1 This is a schematic diagram of an embodiment of the deodorization and disinfection method for septic tank excrement in this invention;
[0029] Figure 2 This is a schematic diagram of a specific embodiment of the deodorization and disinfection method for septic tank excrement in this invention, following step 103.
[0030] Figure 3 This is a schematic diagram of a specific embodiment of step 102 of the method for deodorizing and disinfecting septic tank excrement in this invention.
[0031] Figure 4 This is a schematic diagram of one embodiment of the deodorization and disinfection device for septic tank excrement in this invention.
[0032] Figure 5 This is a schematic diagram of one embodiment of the server in this invention. Detailed Implementation
[0033] This invention provides a method, equipment, server, and storage medium for odor removal and disinfection of septic tank waste.
[0034] The embodiments of the present invention will now be described in more detail with reference to the accompanying drawings. While some embodiments of the present invention are shown in the drawings, it should be understood that the present invention can be implemented in various forms and should not be construed as limited to the embodiments set forth herein. Rather, these embodiments are provided to provide a more thorough and complete understanding of the present disclosure. It should be understood that the accompanying drawings and embodiments are for illustrative purposes only and are not intended to limit the scope of protection of the present invention.
[0035] In the description of the embodiments disclosed in this invention, the term "comprising" and similar terms should be understood as open-ended inclusion, i.e., "including but not limited to". The term "based on" should be understood as "at least partially based on". The term "one embodiment" or "the embodiment" should be understood as "at least one embodiment". The terms "first", "second", etc., may refer to different or the same objects. Other explicit and implicit definitions may also be included below.
[0036] For ease of understanding, the specific process of the embodiments of the present invention is described below. Please refer to [link / reference]. Figure 1 One embodiment of the deodorization and disinfection method for septic tank excrement in this invention includes:
[0037] 101. When excrement is detected in the septic tank, perform pretreatment to obtain the wastewater to be treated, and detect the environmental parameters of the septic tank;
[0038] Specifically, the deodorization and disinfection equipment for septic tank excrement may include a septic tank pretreatment unit, an ozone generator, an ozone water preparation device, a circulating spray system, a waste gas and wastewater treatment device, and an intelligent control system.
[0039] Septic tank pretreatment unit: performs preliminary treatment on the sewage entering the septic tank, such as filtering large particulate impurities and adjusting the pH value.
[0040] Ozone generator: Utilizes electrolysis technology to produce high-concentration ozone water and ozone gas. The core equipment for ozone production is the BDD electrode used for water electrolysis.
[0041] Ozone water preparation device (may be integrated with or separate from the ozone generator): If the ozone generator does not directly produce ozone water, a separate device is needed to dissolve ozone gas in water to prepare ozone water. This may include equipment such as a gas-liquid mixer and an ozone water storage tank.
[0042] Circulating spray system: This system delivers prepared ozone water / gas through pipelines to a spray device located above or inside the septic tank. It includes pipes, pumps, and spray devices (such as nozzles and spray heads).
[0043] Waste gas and wastewater treatment equipment: This equipment collects and treats the waste gas and wastewater that may be generated during the preparation and spraying of ozone water. It may include waste gas collection devices and wastewater treatment devices (such as sedimentation tanks, filters, bioreactors, etc.).
[0044] Intelligent control system: This system provides intelligent control over the entire system, including starting and stopping the ozone generator, adjusting the ozone water concentration, and setting the operating parameters of the spray system. It includes sensors (such as pH sensors, temperature sensors, and liquid level sensors), controllers (such as PLCs and DCSs), human-machine interfaces (such as touchscreens and displays), and communication modules (such as Ethernet and wireless communication).
[0045] Install level or weight sensors at key locations within the septic tank. The sensors monitor changes in the level or weight of excrement within the tank in real time. When the sensors detect that the excrement level has reached a preset threshold, a pretreatment process is triggered.
[0046] Optionally, when excrement is detected in the septic tank, a large-particle filtration operation is performed to obtain wastewater; the pH value of the wastewater is then adjusted to a preset pH value to obtain wastewater to be treated. Specifically, the pretreatment operation includes large-particle filtration and pH adjustment. For example, filtration equipment such as bar screens or sieves is activated. When excrement passes through the filtration equipment, large-particle impurities are trapped, and wastewater passes through. Impurities on the filtration equipment are checked and cleaned regularly. A pH sensor is installed in the wastewater pipeline. Based on the pH sensor reading, the pH value of the wastewater is adjusted using acid or alkali solutions. A preset pH range is set, and the amount of acid or alkali solution added is automatically adjusted to maintain the wastewater pH value within the preset range. The large-particle filtration operation effectively removes solid impurities and suspended solids from the septic tank, reducing the burden on subsequent treatment steps and improving overall treatment efficiency. Adjusting the wastewater pH value to the preset range optimizes the ozone disinfection effect. Ozone's disinfection capacity varies at different pH values; by adjusting the pH value, the disinfection effect of ozone can be maximized, thereby more effectively removing harmful substances from the wastewater.
[0047] Temperature sensors, dissolved oxygen sensors, and oxidation-reduction potential sensors are installed in or near the septic tank. These sensors monitor environmental parameters such as temperature, dissolved oxygen content, and oxidation-reduction potential in real time. The monitored environmental parameters are stored in a data logging system for subsequent analysis and use.
[0048] 102. Using an ozone generator, prepare ozone formulations based on environmental parameters;
[0049] Specifically, the detected environmental parameter data is acquired. This environmental parameter data is then input into the ozone generator's control system.
[0050] The ozone generator automatically adjusts electrolysis conditions based on input environmental parameters. It uses BDD electrodes to electrolyze water, producing ozone water or ozone gas. The control system monitors parameters such as current, voltage, and electrolysis time in real time during the ozone generation process to ensure stability and efficiency.
[0051] The prepared ozone agent is transported through pipelines to a dedicated storage container.
[0052] Storage containers should have good sealing and insulation properties to prevent ozone leakage and failure.
[0053] Regularly check the quality and quantity of ozone preparations in the storage containers to ensure they meet subsequent usage requirements.
[0054] 103. Based on the ozone agent, the wastewater to be treated is subjected to deodorization and disinfection operations to obtain deodorization and disinfection byproducts.
[0055] Specifically, based on the ozone agent, the wastewater to be treated undergoes a deodorization and disinfection process, yielding deodorization and disinfection byproducts. The ozone agent in the storage container can be transported to a spray system above the septic tank via pipelines and pumps.
[0056] Monitor the ozone agent's delivery flow rate and pressure in real time to ensure stable delivery to the spraying device. Start the spraying device to evenly spray the ozone agent into the wastewater to be treated. The spraying device should have good atomization and uniformity to ensure sufficient contact between the ozone and the wastewater.
[0057] Optionally, the spray module can be activated to spray ozone reagent onto the wastewater to be treated, performing an odor removal and disinfection operation to obtain odor removal and disinfection byproducts. Specifically, the spray frequency and spray volume of the spray device can be adjusted according to actual needs. A reaction time can be set to allow the ozone to fully react with the pollutants in the wastewater. The reaction time is monitored in real time, and the spraying operation automatically stops after the preset time is reached. After the reaction, the odor removal and disinfection byproducts, i.e., the treated wastewater, are obtained.
[0058] Optionally, the treated wastewater can be monitored for quality, such as by testing its odor, turbidity, and total bacterial count. Based on the monitoring results, the parameters for ozone preparation and spraying operations can be adjusted to improve the treatment effect.
[0059] Optionally, ozone agents may include ozonated water or ozone gas. Specifically, ozone agents may include ozonated water and / or ozone gas.
[0060] In this embodiment of the invention, when excrement is detected in the septic tank, a pretreatment operation is performed to obtain wastewater to be treated, and the environmental parameters of the septic tank are detected. An ozone generator is invoked to prepare an ozone agent based on the environmental parameters. Based on the ozone agent, a deodorization and disinfection operation is performed on the wastewater to be treated, yielding deodorization and disinfection byproducts. By using an ozone generator to prepare the ozone agent and utilizing the strong oxidizing properties of ozone to deodorize and disinfect the excrement in the septic tank, organic matter can be effectively decomposed, bacteria and viruses killed, odor and bacterial growth significantly reduced, and treatment efficiency improved. Detecting septic tank environmental parameters and preparing ozone agents based on these parameters allows for automatic adjustment of treatment parameters based on real-time data. Compared with traditional septic tank treatment methods, no chemical agents need to be added, avoiding secondary pollution. This reduces the risk of organic matter pollution and bacterial transmission, improving environmental quality.
[0061] Traditional septic tank waste treatment methods often lack rigorous pre-discharge testing procedures. This can result in treated byproducts still containing high concentrations of pollutants, which, if directly discharged into the environment, can pollute water bodies, soil, and air. To address these technical problems, this invention proposes an alternative embodiment.
[0062] Reference Figure 2 , Figure 2 This is a schematic diagram of a specific embodiment of the deodorization and disinfection method for septic tank excrement in this invention, following step 103. The following specific implementation methods are also included after step 103:
[0063] 201. Test whether the by-products of odor removal and disinfection meet the emission standards;
[0064] Specifically, sensors or analyzers are used to sample and detect the deodorization and disinfection byproducts (which may be water or gas) after treatment.
[0065] For water quality testing, water quality sensors (such as pH sensors, dissolved oxygen sensors, heavy metal detection sensors, etc.) can be used to monitor various parameters in the water.
[0066] For gas detection, gas sensors (such as ozone sensors, ammonia sensors, hydrogen sulfide sensors, etc.) can be used to monitor the concentration of harmful components in the gas.
[0067] 202. If the odor removal and disinfection byproducts meet the emission standards, direct discharge of the odor removal and disinfection byproducts shall be carried out.
[0068] Specifically, based on the test results, it is determined whether the odor-removing and disinfection byproducts meet the emission standards. The code calls the aforementioned detection function and uses the return value for judgment. If the odor-removing and disinfection byproducts meet the emission standards, the discharge valve is opened to directly release the treated byproducts into the environment.
[0069] In steps 1011-1012, by introducing a pre-emission detection step, the emitted byproducts can be made to meet environmental protection standards, reducing pollution and damage to the environment.
[0070] Traditional methods for deodorizing and disinfecting septic tank waste often fail to utilize residual ozone agents. This can lead to a waste of significant raw materials and energy in preparing new ozone agents, while also increasing equipment operating and maintenance costs. To address these technical problems, this invention proposes an alternative embodiment.
[0071] Reference Figure 3 , Figure 3 This is a schematic diagram of a specific embodiment of step 102 of the septic tank excrement deodorization and disinfection method in this invention. Step 102 further includes the following specific implementation methods:
[0072] 1021. Detect whether there are any remaining historical ozone agents;
[0073] Specifically, upon receiving an instruction to prepare an ozone agent, the first step is to check for any remaining historical ozone agents. This can be achieved by detecting parameters such as the liquid level, mass, or concentration of the container storing the ozone agent.
[0074] Based on the test results, determine if there is a sufficient amount of historical ozone concentrate available for use. If the remaining amount is sufficient, proceed to the next step; if the remaining amount is insufficient or there is no remaining amount, choose to directly prepare new ozone concentrate, or issue an alarm and wait for user intervention.
[0075] 1021. If historical ozone formulations exist, use an ozone generator to prepare ozone formulations based on historical ozone formulations and environmental parameters.
[0076] Specifically, if there is any remaining historical ozone preparation, the operating parameters of the ozone generator are adjusted according to the current environmental parameters (such as temperature, humidity, and pollutant concentration in wastewater) and the remaining amount of historical ozone preparation to produce ozone preparation that meets the requirements.
[0077] The ozone generator begins operation based on adjusted parameters to produce ozone formulations. During this process, parameters such as the concentration and flow rate of the ozone formulation are monitored to ensure that the produced ozone formulation meets requirements.
[0078] The prepared ozone agent can be stored for later use, or immediately transported to the spray module for deodorization and disinfection.
[0079] In steps 1011-1012, by utilizing remaining historical ozone agents, the raw material and energy consumption required for the preparation of new ozone agents is reduced, thereby conserving resources. This reduces the frequency and quantity of new ozone agent preparation, lowering equipment operating and maintenance costs. It also reduces waste generation and mitigates negative environmental impacts.
[0080] Traditional methods for deodorizing and disinfecting septic tank waste require the preparation of new ozone agents each time, without fully utilizing existing ozone agents, potentially leading to resource waste. If the ozone agent preparation parameters are not optimized for current environmental conditions, the disinfection effect may be poor, failing to achieve the desired deodorizing and disinfection results. To address these technical problems, this invention proposes an alternative embodiment.
[0081] Step 1022 also includes the following specific implementation methods:
[0082] 10221. If historical ozone agents exist, test the formulation parameters of the historical ozone agents;
[0083] Specifically, when the septic tank waste detection system triggers the odor-eliminating and disinfection process, it first checks for any remaining historical ozone agents. This can be achieved by monitoring the liquid level, pressure, or other relevant parameters of the ozone agent storage tank.
[0084] If a historical ozone formulation exists, its formulation parameters, such as ozone concentration, pH value, and temperature, should be further tested.
[0085] 10221. Using an ozone generator, prepare ozone formulations according to formulation parameters and environmental parameters.
[0086] Specifically, based on the detected parameters of historical ozone formulations and the current environmental parameters of the septic tank (such as temperature, humidity, and pollutant concentration), a new ozone formulation is prepared using an ozone generator. The input parameters of the ozone generator, such as oxygen flow rate, voltage, and current, can be adjusted to ensure that the prepared ozone formulation meets disinfection requirements.
[0087] In steps 1011-1012, by utilizing remaining historical ozone agents, the raw material and energy consumption required for the preparation of new ozone agents is reduced, thus improving resource utilization. By detecting the formulation parameters of historical ozone agents and adjusting them according to current environmental parameters, ozone agents that better meet disinfection requirements can be prepared, thereby optimizing the disinfection effect. Since the frequency and quantity of new ozone agent preparation are reduced, equipment and raw material maintenance costs, as well as operating costs, can be lowered.
[0088] Reference Figure 4This disclosure provides a septic tank waste deodorization and disinfection device 400, including a septic tank waste deodorization and disinfection device body and a septic tank waste deodorization and disinfection apparatus 405. The septic tank waste deodorization and disinfection apparatus 405 includes a processor 404 and a memory 401 storing program instructions. Optionally, the apparatus may further include a communication interface 402 and a bus 403. The processor 404, communication interface 402, and memory 401 can communicate with each other via the bus 403. The communication interface 402 can be used for information transmission. The processor 404 can call the program instructions in the memory 401 to execute the septic tank waste deodorization and disinfection method of the above embodiment. Furthermore, the logical instructions in the memory 401 can be implemented as software functional units and, when sold or used as independent products, can be stored in a computer-readable storage medium. The memory 401, as a computer-readable storage medium, can be used to store software programs, computer-executable programs, such as the program instructions / modules corresponding to the methods in the embodiments of this disclosure. The processor 404 executes functional applications and data processing by running program instructions / modules stored in the memory 401, thereby implementing the deodorization and disinfection method for septic tank excrement in the above embodiments. The memory 401 may include a program storage area and a data storage area. The program storage area may store the operating system and at least one application program required for a function; the data storage area may store data created based on the use of the terminal device, etc. Furthermore, the memory 401 may include high-speed random access memory and may also include non-volatile memory.
[0089] Reference Figure 5 This disclosure provides a server 500, including a processor 504 and a memory 501 storing program instructions. Optionally, the server may further include a communication interface 502 and a bus 503. The processor 504, communication interface 502, and memory 501 can communicate with each other via the bus 503. The communication interface 502 can be used for information transmission. The processor 504 can call the program instructions in the memory 501 to execute the odor removal and disinfection method for septic tank excrement described in the above embodiment.
[0090] Furthermore, the logical instructions in the aforementioned memory 501 can be implemented as software functional units and, when sold or used as independent products, can be stored in a computer-readable storage medium. As a computer-readable storage medium, memory 501 can be used to store software programs and computer-executable programs, such as the program instructions / modules corresponding to the methods in the embodiments of this disclosure. Processor 504 executes functional applications and data processing by running the program instructions / modules stored in memory 501, thereby implementing the odor removal and disinfection method for septic tank excrement in the above embodiments. Memory 501 may include a program storage area and a data storage area, wherein the program storage area may store the operating system and at least one application program required for a function; the data storage area may store data created based on the use of the terminal device, etc. Furthermore, memory 501 may include high-speed random access memory and may also include non-volatile memory.
[0091] The technical solutions of this disclosure can be embodied in the form of a software product. This computer software product is stored in a storage medium and includes one or more instructions to cause a computer device (which may be a personal computer, server, or network device, etc.) to execute all or part of the steps of the method described in this disclosure. The aforementioned storage medium can be a non-transitory storage medium, including: a USB flash drive, a portable hard drive, a read-only memory (ROM), a random access memory (RAM), a magnetic disk, or an optical disk, and other media capable of storing program code; it can also be a transient storage medium.
[0092] The foregoing description and accompanying drawings fully illustrate embodiments of this disclosure to enable those skilled in the art to practice them. Other embodiments may include structural, logical, electrical, procedural, and other changes. The embodiments represent only possible variations. Individual components and functions are optional unless explicitly required, and the order of operation may vary. Parts and features of some embodiments may be included in or replace parts and features of other embodiments. Moreover, the terminology used in this application is for describing embodiments only and is not intended to limit the claims. As used in the description of embodiments and claims, the singular forms “a,” “an,” and “the” are intended to equally include the plural forms unless the context clearly indicates otherwise. Similarly, the term “and / or” as used in this application means including one or more of the associated listed items and all possible combinations thereof. Additionally, when used in this application, the term "comprise" and its variations "comprises" and / or "comprising" refer to the presence of stated features, integrals, steps, operations, elements, and / or components, but do not exclude the presence or addition of one or more other features, integrals, steps, operations, elements, components, and / or groups thereof. Without further limitations, an element defined by the phrase "comprises a..." does not exclude the presence of other identical elements in the process, method, or apparatus that includes said element. In this document, each embodiment may focus on the differences from other embodiments, and similar or identical parts between embodiments can be referred to mutually. For methods, products, etc., disclosed in the embodiments, if they correspond to the method section disclosed in the embodiments, the relevant parts can be referred to the description of the method section.
[0093] Those skilled in the art will recognize that the units and algorithm steps of the various examples described in conjunction with the embodiments disclosed herein can be implemented in electronic hardware, or a combination of computer software and electronic hardware. Whether these functions are implemented in hardware or software depends on the specific application and design constraints of the technical solution. Those skilled in the art can use different methods to implement the described functions for each specific application, but such implementation should not be considered beyond the scope of the embodiments of this disclosure. Those skilled in the art will clearly understand that, for the sake of convenience and brevity, the specific working processes of the systems, devices, and units described above can be referred to the corresponding processes in the foregoing method embodiments, and will not be repeated here.
[0094] The methods and products (including but not limited to devices and equipment) disclosed in the embodiments herein can be implemented in other ways. For example, the device embodiments described above are merely illustrative. For instance, the division of units may be merely a logical functional division, and in actual implementation, there may be other division methods. For example, multiple units or components may be combined or integrated into another system, or some features may be ignored or not executed. In addition, the coupling or direct coupling or communication connection between the shown or discussed units may be through some interfaces, and the indirect coupling or communication connection between devices or units may be electrical, mechanical, or other forms. The units described as separate components may or may not be physically separate. The components shown as units may or may not be physical units, that is, they may be located in one place or distributed across multiple network units. Some or all of the units may be selected to implement this embodiment according to actual needs. Furthermore, the functional units in the embodiments of this disclosure may be integrated into one processing unit, or each unit may exist physically separately, or two or more units may be integrated into one unit.
[0095] The flowcharts and block diagrams in the accompanying drawings illustrate the architecture, functionality, and operation of possible implementations of systems, methods, and computer program products according to embodiments of this disclosure. In this regard, each block in a flowchart or block diagram may represent a module, segment, or portion of code containing one or more executable instructions for implementing a specified logical function. In some alternative implementations, the functions marked in the blocks may occur in a different order than that shown in the drawings. For example, two consecutive blocks may actually be executed substantially in parallel, and they may sometimes be executed in reverse order, depending on the functions involved. In the descriptions corresponding to the flowcharts and block diagrams in the accompanying drawings, the operations or steps corresponding to different blocks may also occur in a different order than disclosed in the description, and sometimes there is no specific order between different operations or steps. For example, two consecutive operations or steps may actually be executed substantially in parallel, and they may sometimes be executed in reverse order, depending on the functions involved. Each block in a block diagram and / or flowchart, and combinations of blocks in a block diagram and / or flowchart, can be implemented using a dedicated hardware-based system that performs the specified function or action, or using a combination of dedicated hardware and computer instructions.
Claims
1. A method for deodorizing and disinfecting septic tank waste, characterized in that, The method for deodorizing and disinfecting septic tank waste includes: When excrement is detected in the septic tank, a pretreatment operation is performed to obtain wastewater to be treated, and the environmental parameters of the septic tank are detected. The process involves using an ozone generator to prepare an ozone formulation based on the environmental parameters, including detecting whether there are any remaining historical ozone formulations; if such historical ozone formulations exist, detecting the formulation parameters of those historical ozone formulations; and using an ozone generator to prepare the ozone formulation based on the formulation parameters and the environmental parameters. The ozone agent is used to perform odor removal and disinfection on the wastewater to be treated, resulting in odor removal and disinfection byproducts.
2. The method for deodorizing and disinfecting septic tank waste according to claim 1, characterized in that, After the step of performing odor-removing disinfection on the wastewater to be treated according to the ozone agent to obtain odor-removing disinfection byproducts, the method further includes: Test whether the odor-eliminating and disinfection byproducts meet emission standards; If the odor-neutralizing and disinfection byproducts meet the emission standards, the odor-neutralizing and disinfection byproducts shall be directly discharged.
3. The method for deodorizing and disinfecting septic tank waste according to claim 1, characterized in that, The step of performing pretreatment to obtain wastewater to be treated when excrement is detected in the septic tank includes: When excrement is detected in the septic tank, a large-particle filtration process is performed to obtain wastewater; The pH value of the wastewater is adjusted to a preset pH value to obtain the wastewater to be treated.
4. The method for deodorizing and disinfecting septic tank waste according to claim 1, characterized in that, The step of performing odor-removing disinfection on the wastewater to be treated according to the ozone agent to obtain odor-removing disinfection byproducts includes: The ozone agent is sprayed onto the wastewater to be treated by calling the spray module, so as to perform the odor removal and disinfection operation on the wastewater to be treated, and obtain the odor removal and disinfection byproduct.
5. The method for deodorizing and disinfecting septic tank excrement according to any one of claims 1-4, characterized in that, The ozone preparation includes ozone water or ozone gas.
6. A deodorizing and disinfecting device for septic tank waste, characterized in that, The device includes a memory and a processor, the processor being configured to execute program instructions stored in the memory to implement the deodorization and disinfection method for septic tank excrement as described in any one of claims 1 to 5.
7. A server, characterized in that, The device includes a memory and a processor, the processor being configured to execute program instructions stored in the memory to implement the deodorization and disinfection method for septic tank excrement as described in any one of claims 1 to 5.
8. A computer-readable storage medium storing a computer program thereon, characterized in that, When the computer program is executed by the processor, it implements the deodorization and disinfection method for septic tank excrement as described in any one of claims 1-5.
Citation Information
Patent Citations
Deodorization device and silver salt photographic processing device
JP2008216585A
Ozone disinfecting, decontaminating and deodorizing of animal manure
US6056885A