An automatic sorting device and management system for organic matter tracing

The automatic sequencer device realizes accurate transmission of functional pools and environmental parameter monitoring, which solves the problems of insufficient manual operation error and real-time monitoring in the prior art, improves the accuracy and reliability of organic matter tracking, and is suitable for large-scale production.

CN113237519BActive Publication Date: 2025-07-25ZHEJIANG AISUOTUO TECH CO LTD
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Patent Information

Application Number
CN202110645349.0
Authority / Receiving Office
CN · China
Patent Type
Patents(China)
Current Assignee / Owner
Filing Date
2021-06-10
Publication Date
2025-07-25
Estimated Expiration
2041-06-10

AI Technical Summary

Technical Problem

The existing organic tracer device relies on manual operation, is prone to errors, and cannot monitor the system status in real time, affecting the accuracy of the tracer results.

Method used

An automatic sequencer is designed, including a pool sending component, identification component, detection component and controller, which can automatically identify the feature information of the function pool, realize the precise transmission of the function pool and environmental parameter monitoring, and alarm or adjust environmental parameters when the parameters do not meet the standards.

Benefits of technology

Reduce manual operation errors, improve the accuracy and reliability of trace results, suitable for large-scale production and reduce costs.

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Abstract

The present application discloses an automatic sorting device and a management system for organic matter tracing. The management system of the automatic sorting device includes a collection unit, a processing unit, and a control unit. The collection unit is configured to collect the characteristic information of each functional pool. The processing unit is communicatively connected to the collection unit to determine whether the characteristic information matches the attribute of the corresponding loading station. When the characteristic information matches the attribute of the corresponding loading station, a control signal is formed. The control unit is configured to execute the control signal to control the corresponding pool feeding component to transfer the functional pool to the loading station that matches its characteristic information.
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Description

Technical Field

[0001] The present invention relates to a device, and in particular to an automatic sequencing device and a management system for organic matter tracing. Background Art

[0002] Organic pollutants in soil, such as agricultural environmental chemicals, may affect the purification function of the soil, and even cause pollution of groundwater, the atmosphere and the food chain, posing a threat to human health and environmental quality. Comprehensively understanding the laws of adsorption and desorption, migration and leaching, degradation and transformation of agricultural and environmental chemicals in environmental media, as well as their accumulation, residue and metabolism in organisms, is the basis for correctly understanding the pollution evolution trend of agricultural and environmental chemicals and scientifically evaluating their ecological environment risks, and is of great significance for evaluating soil environmental quality and carrying out pollution prevention and control. Research experience at home and abroad shows that by means of radioactive isotope tracing technology, the operation, fate and occurrence form of target compounds in complex systems can be accurately traced from the molecular level. And when identifying the structure of trace metabolites / degradation products, by combining radioactive isotope tracing technology with chromatographic analysis technology, the target substance (radioactive chromatographic peak) and impurities (non-radioactive chromatographic peaks) can be effectively identified and separated. In this way, on the one hand, the impurity interference in subsequent mass spectrometry analysis is greatly reduced, and on the other hand, various trace degradation products are not easily lost, making the identification work more scientific and reliable.

[0003] The patent with the publication number CN104502366 A discloses a chemical substance degradation tracing device and a tracing method in a soil or sediment system. The device includes a carbon dioxide filtration pool, a moisture maintenance pool, a degradation occurrence pool, an alkaline volatilization absorption pool, a volatile organic compound absorption pool, and a carbon dioxide absorption pool that are connected in sequence. By absorbing the substances formed after degradation from the degradation occurrence pool by the alkaline volatilization absorption pool, the volatile organic compound absorption pool, and the carbon dioxide absorption pool respectively, and then analyzing the substances absorbed by the alkaline volatilization absorption pool, the volatile organic compound absorption pool, and the carbon dioxide absorption pool, the flow direction of some organic substances can be traced.

[0004] Although this kind of tracing device and method can trace the flow direction of the final organic matter, the whole process depends on manual operation. In other words, the placement and interconnection of the carbon dioxide filtration pool, the moisture maintenance pool, the degradation occurrence pool, the alkaline volatilization absorption pool, the volatile organic compound absorption pool, and the carbon dioxide absorption pool all rely on the operator. And once the operation of the operator is incorrect, it is bound to lead to the failure of tracing.

[0005] In addition, during the tracing process, the state of the whole system cannot be monitored in real time, and thus the cultivation state of each system during the whole test process cannot be restored and used to judge and reduce the influence degree of the test process on the result, which in turn affects the accuracy of the final tracing result. Summary of the Invention

[0006] One advantage of the present invention is to provide an automatic sorting device and a management system for organic matter tracing, wherein the automatic sorting device for organic matter tracing can automatically clarify the positions corresponding to each functional pool, thereby preventing errors caused by manual operations.

[0007] Another advantage of the present invention is to provide an automatic sorting device and a management system for organic matter tracing, wherein the automatic sorting device for organic matter tracing can automatically interconnect each functional pool, and after the interconnection, can automatically detect the environmental parameters in each functional pool for the user to check.

[0008] Another advantage of the present invention is to provide an automatic sorting device and a management system for organic matter tracing, wherein the automatic sorting device for organic matter tracing can monitor the environmental parameters in the functional pool for degradation, and when the environmental parameters do not meet the standards, can form corresponding alarm signals.

[0009] Another advantage of the present invention is to provide an automatic sorting device and a management system for organic matter tracing, wherein the automatic sorting device for organic matter tracing is configured to automatically adjust the environmental parameters in the functional pool for degradation, so that the functional pool for degradation can simulate different environments to achieve the tracing of organic matter in soils of different environments.

[0010] Another advantage of the present invention is to provide an automatic sorting device and a management system for organic matter tracing, wherein the automatic sorting device for organic matter tracing has a low manufacturing cost and is suitable for large-scale production and manufacturing.

[0011] To achieve at least one of the above advantages of the present invention, the present invention provides an automatic sorting device for organic matter tracing, which includes:

[0012] At least one feeding pool assembly;

[0013] A device main body, wherein the device main body includes a static platform and a moving platform, wherein the static platform forms a plurality of loading stations for loading functional pools, wherein each of the loading stations corresponds to one of the feeding pool assemblies, and the moving platform is configured to transfer the loaded functional pool to between one of the feeding pool assemblies and one of the loading stations;

[0014] At least one identification component for confirming the characteristic information of each function pool carried on the moving platform, wherein the pool feeding component is communicatively connected to the identification component, and the pool feeding component is arranged to be able to feed the function pool located on the moving platform to the loading station on the static platform. When the characteristic information of the function pool determined by the identification component matches the characteristic information of one of the loading stations, the pool feeding component is driven to feed the function pool located on the moving platform to the loading station on the static platform.

[0015] According to an embodiment of the present invention, a groove is formed on the static platform in the direction of the pool feeding component feeding the function pool, wherein one end of the groove communicates with the moving platform, and the other end of the groove communicates with the loading station.

[0016] According to an embodiment of the present invention, the cross-sectional dimension of the groove in the lateral direction gradually decreases from the end communicating with the moving platform to the end communicating with the loading station.

[0017] According to an embodiment of the present invention, the automatic sorting device further includes a connecting member, the connecting member includes a connecting unit, at least one sealing docking member and a driving unit. The connecting unit, the sealing docking member and the driving unit are respectively arranged on the static platform, and the sealing docking member is arranged to maintain a predetermined height from the loading station. The connecting unit forms a connecting channel, a plurality of connecting ports arranged at intervals and a branch channel between each connecting port and the connecting channel. Each branch channel is arranged to connect one connecting port to the connecting channel. The connecting unit is drivably connected to the driving unit so that, under the drive of the driving unit, the connecting ports on each connecting unit are respectively sealed and docked with the function pool on one of the loading stations.

[0018] According to an embodiment of the present invention, the connecting member includes at least one valve body, and at least one of the valve bodies is arranged in the branch channel.

[0019] According to an embodiment of the present invention, the driving unit and the valve body are controllably connected to the controller.

[0020] According to an embodiment of the present invention, the automatic sorting device further includes a detection component, a controller and a display. The detection component is arranged to be able to detect the environmental characteristics in the detection system formed by a plurality of the function pools. The detection component is communicatively connected to the controller. The controller is communicatively connected to the display. The controller is arranged to be able to obtain the data detected by the detection component, and the display is arranged to be able to display the corresponding detected data.

[0021] According to an embodiment of the present invention, the detection component includes at least one of a redox potential sensor, a carbon dioxide sensor, an oxygen content sensor, a nitrogen detector, a methane detector, an organic matter detector, a temperature sensor, a humidity sensor, a flow sensor, a pH sensor, a dissolved oxygen sensor, or a water volume sensor.

[0022] According to an embodiment of the present invention, the driving structure of the moving platform and the pool feeding component are controllably connected to the controller, and the identification component is communicably connected to the controller, so that when the identification component identifies that the characteristic information of the current functional pool matches the attribute of the corresponding loading station, the controller can control the pause of the moving platform and correspondingly control the pool feeding component to transfer the corresponding functional pool to the corresponding loading station at the same time.

[0023] According to an embodiment of the present invention, the automatic sorting device further includes a detection component, a communication element, and a warning device. The detection component is configured to detect the environmental characteristics in the detection system formed by a plurality of the functional pools. The detection component is communicably connected to the warning device, and the warning device is configured to automatically alarm when the corresponding detection data is not within the set threshold range.

[0024] According to another aspect of the present invention, the present invention also provides a management system for an automatic sorting device, and the management system includes:

[0025] An acquisition unit, wherein the acquisition unit is configured to acquire the characteristic information of each functional pool;

[0026] A processing unit, the processing unit is communicatively connected to the acquisition unit to determine whether the characteristic information matches the attribute of the corresponding loading station, and when the characteristic information matches the attribute of the corresponding loading station, a control signal is formed;

[0027] A control unit, wherein the control unit is configured to execute the control signal and control the corresponding pool feeding component to transfer the functional pool to the loading station that matches its characteristic information.

[0028] According to an embodiment of the present invention, the acquisition unit is configured to acquire the environmental characteristics in the degradation pool, and the processing unit forms a corresponding warning signal according to the set threshold. When the data corresponding to the environmental characteristics does not match the threshold, the control unit executes the warning signal. Description of the Drawings

[0029] Figure 1 A perspective view of the automatic sorting device for organic matter tracing according to the present invention is shown.

[0030] Figure 2Shows a partial structural decomposition schematic diagram of the automatic sequencing device for organic matter tracing according to the present invention.

[0031] Figure 3 Shows a perspective view of the connection unit of the automatic sequencing device for organic matter tracing according to the present invention.

[0032] Figure 4 Shows a schematic diagram of another direction of the connection unit of the automatic sequencing device for organic matter tracing according to the present invention.

[0033] Figure 5 Shows a structural block diagram of a part of the structure in at least one embodiment of the connection unit of the automatic sequencing device for organic matter tracing according to the present invention.

[0034] Figure 6 Shows a structural block diagram of a part of the structure in at least one embodiment of the automatic sequencing device for organic matter tracing according to the present invention.

[0035] Figure 7 Shows a structural block diagram of the management system of the automatic sequencing device according to the present invention. Detailed implementation manners

[0036] The following description is used to disclose the present invention so that those skilled in the art can implement the present invention. The preferred embodiments in the following description are only examples, and those skilled in the art can think of other obvious variations. The basic principles defined in the following description of the present invention can be applied to other implementation schemes, variant schemes, improvement schemes, equivalent schemes, and other technical schemes without departing from the spirit and scope of the present invention.

[0037] Those skilled in the art should understand that in the disclosure of the present invention, the orientation or positional relationships indicated by the terms "longitudinal", "lateral", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", etc. are based on the orientation or positional relationships shown in the drawings. These are only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation. Therefore, the above terms should not be construed as limitations on the present invention.

[0038] It can be understood that the term "one" should be understood as "at least one" or "one or more". That is, in one embodiment, the number of an element can be one, while in other embodiments, the number of this element can be multiple. The term "one" should not be construed as a limitation on the quantity.

[0039] Reference Figures 1 to 7, an automatic sequencing device for organic matter tracing according to a preferred embodiment of the present invention will be elaborated in detail below. The automatic sequencing device for organic matter tracing, wherein the automatic sequencing device is configured to automatically transfer a plurality of environmental function pools 900 to corresponding positions so as to automatically form a detection system.

[0040] Those skilled in the art can understand that the environmental function pool 900 is implemented as a container containing specific substances and having certain functions. For example, in one embodiment, the automatic sequencing device can be used to automatically transfer at least one of a carbon dioxide filtration pool, a moisture maintenance pool, a decomposition occurrence pool, an alkaline volatile absorption pool, a volatile organic compound absorption pool, or a carbon dioxide absorption pool to a corresponding position to form a detection system for detecting organic matter in soil.

[0041] Specifically, the automatic sequencing device includes a device main body 10, at least one identification component 20, and at least one pool transfer component 30. The device main body 10 includes a static platform 11 and a moving platform 12. The static platform 11 forms at least one loading station 1101 for loading the function pool 900.

[0042] Preferably, the moving platform 12 is implemented as a conveyor belt member, and the conveyor belt in the conveyor belt member is arranged in a straight line. In another embodiment, the conveyor belt of the conveyor belt member is arranged in a loop. To enable those skilled in the art to understand the present invention, the present invention is described only by taking the conveyor belt arranged in a straight line as an example, and those skilled in the art can understand that this is not a limitation of the present invention.

[0043] Preferably, the present invention is described by taking the automatic sequencing device for transferring 4 function pools 900 as an example, wherein the 4 function pools 900 are respectively implemented as selected from: a carbon dioxide filtration pool, a moisture maintenance pool, a decomposition occurrence pool, an alkaline volatile absorption pool, a volatile organic compound absorption pool, and a carbon dioxide absorption pool. After the carbon dioxide filtration pool, the moisture maintenance pool, the decomposition occurrence pool, the alkaline volatile absorption pool, the volatile organic compound absorption pool, and the carbon dioxide absorption pool are transferred to corresponding loading stations, through the automatic sequencing device, the carbon dioxide filtration pool, the moisture maintenance pool, the decomposition occurrence pool, the alkaline volatile absorption pool, the volatile organic compound absorption pool, and the carbon dioxide absorption pool can be interconnected. Correspondingly, at this time, the automatic sequencing device includes 4 of the pool transfer components 30.

[0044] Each of the function pools 900 can be carried on the moving platform 12. When the moving platform 12 is driven to move, each of the function pools 900 carried on the moving platform 12 can be transported to an alignment position collinear with a pushing end 301 formed by one of the loading stations 1101 and the pool feeding assembly 30. When each of the function pools 900 carried on the moving platform 12 is transported to the alignment position by the moving platform 12 and the characteristic information formed by the current function pool 900 matches the attribute of the corresponding loading station 1101, the pushing end 301 of the pool feeding assembly 30 will be driven to push the function pool 900 to the corresponding loading station 1101.

[0045] The identification assembly 20 is communicably connected to the control part of the moving platform 12. The identification assembly 20 is configured to identify whether the characteristic information formed by the current function pool 900 matches the attribute of the corresponding loading station 1101.

[0046] After the pool feeding assembly 30 obtains the information that the characteristic information formed by the current function pool 900 matches the attribute of the corresponding loading station 1101, it automatically pushes the function pool 900, so that the function pool 900 is automatically transported to the corresponding position.

[0047] It can be understood that the identification assembly 20 is implemented as a radio frequency identifier. Each of the function pools 900 is respectively provided with a corresponding radio frequency tag for identifying the characteristic information formed by each of the function pools 900. Correspondingly, the attribute of each loading station 1101 is predefined to be associated with the characteristic information formed by one of the function pools 900.

[0048] Preferably, a groove 1102 is formed in the static platform 11 in the moving direction of the pushing end 301 of the pool feeding assembly 30. One end of the groove 1102 communicates with the moving platform 12, so that when the function pool 900 is transported to the alignment position by the moving platform 12, it enters the groove 1102 under the push of the pool feeding assembly 30. The other end of the groove 1102 communicates with the loading station 1101, so that after the pool feeding assembly 30 further pushes the function pool 900, the function pool 900 is pushed to the loading station 1101.

[0049] Preferably, the cross-sectional dimension of the trough body 1102 in the transverse direction gradually decreases from the end connected to the moving platform 12 to the end connected to the loading station 1101. In this way, during the process of pushing the functional pool 900 towards the loading station 1101, the side walls forming the trough body 1102 can guide the movement of the functional pool 900, so that the functional pool 900 can finally be transported to the loading station 1101 under the push of the pool feeding assembly 30.

[0050] It can be understood that since the attributes corresponding to each loading station 1101 can be associated with the functional pool 900, when the functional pool 900 is placed on the moving platform, each type of functional pool 900 can be transported to the corresponding loading station 1101 by means of the identification component 20, the moving platform 12 and the pool feeding assembly 30, thus facilitating the subsequent assembly into a detection system for detecting organic matter in soil.

[0051] Preferably, the matrix decomposition pool is prefabricated on the static platform 11.

[0052] Furthermore, the automatic sorting device further includes a connecting member 40. The connecting member 40 includes a connecting unit 41, at least one sealing docking member and a driving unit 43.

[0053] The connecting unit 41, the sealing docking member and the driving unit 43 are respectively arranged on the static platform 11, and the sealing docking member is arranged to maintain a predetermined height from the loading station 1101. The connecting unit 41 forms a connecting channel 4101, a plurality of connecting ports 4102 and a branch channel 4103 between each connecting port 4102 and the connecting channel 4101. Each branch channel 4103 is arranged to connect one connecting port 4102 to the connecting channel 4101.

[0054] The connecting unit 41 is drivably connected to the driving unit 43, so that when the connecting unit 41 is driven by the driving unit 43 to move, the connecting unit 41 can move downward to seal the connection between the connecting port 4102 and the corresponding functional pool 900. That is to say, when a predetermined number of functional pools 900 are loaded on the loading stations 1101, the corresponding functional pools 900 can be made to communicate with each other through the connecting channel 4101 by driving the connecting unit 41 to press down.

[0055] Preferably, the connecting member 40 further includes at least one valve body 44, and at least one of the valve bodies 44 is disposed in the branch channel 4103. By controlling the opening and closing of the valve body 44, a plurality of the function pools 900 located at the loading station 1101 can be formed into different interconnection combinations according to different user requirements.

[0056] In addition, the automatic sorting device further includes a detection component 50, a controller 60, and a display 70. The detection component 50 is configured to detect environmental characteristics in the detection system formed by the plurality of function pools 900. The environmental characteristics include, but are not limited to, temperature, humidity, air flow rate, pH value, dissolved oxygen content, and water volume in the detection system. That is to say, the detection component 50 can be configured to include one or more of a redox potential sensor, a carbon dioxide sensor, an oxygen content sensor, a nitrogen detector, a methane detector, an organic matter detector, a temperature sensor, a humidity sensor, a flow sensor, a pH sensor, a dissolved oxygen sensor, or a water volume sensor.

[0057] It is worth mentioning that the driving structure of the moving platform 12 and the pool feeding component 30 are controllably connected to the controller 60. In addition, the identification component 20 is communicably connected to the controller 60, so that when the identification component 20 identifies that the current function pool 900 matches the corresponding loading station 1101, the controller 60 can control the driving structure of the moving platform 12 to pause and simultaneously control the pushing end 301 of the pool feeding component 30. In this way, it can effectively prevent the function pool 900 from tipping over due to forces in other directions when the pushing end 301 pushes the function pool 900.

[0058] Even more worth mentioning is that the driving unit 43 and the valve body 44 are controllably connected to the controller 60. It can be understood that since the valve body 44 is controllably connected to the controller 60, the opening and closing of each valve body 44 can be controlled by the controller 60, so that different branch channels 4103 can be connected to the connecting channel 4101, thereby forming different communication paths.

[0059] The detection component 50 is communicatively connected to the controller 60, and the controller 60 is communicatively connected to the display 70. The controller 60 is configured to acquire the data detected by the detection component 50. The display 70 is configured to display the corresponding detected data. Preferably, the controller 60 is further capable of determining whether the data corresponding to the environmental feature measured by the detection component 50 is within a threshold range. When the data corresponding to the environmental feature is not within the threshold range, a corresponding warning signal is formed on the display 70. Alternatively, the display 70 can be replaced by a warning device, such as a sound generator, a light generator, etc., so that when the data corresponding to the environmental feature is not within the threshold range, the warning device can directly form a corresponding warning signal.

[0060] In this way, the user can timely adjust the environmental feature according to the feedback formed by the display 70 or the warning device. It can be understood that for different detection systems, the thresholds corresponding to environmental features such as temperature, humidity, etc. are different. By setting the threshold, the automatic sequencing device can be adapted to provide environmental monitoring for different detection systems.

[0061] In another embodiment of the present invention, the controller 60 is replaced by a communication element. In one embodiment, the communication element can be implemented as any communication module capable of realizing communication, such as a Wifi module, a Lifi module, a Bluetooth module, a 2G / 3G / 4G / 4G module, an NB-iot module, a Lora module, etc., or a communication module group composed of the above communication modules.

[0062] The communication element is configured to be communicatively connected to a communication terminal, so that the drive structure of the moving platform 12, the battery feeding assembly 30, the drive unit 43, and the valve body 44 can be controlled by interacting with the communication terminal.

[0063] In a preferred embodiment, the static platform of the automatic sequencing device further forms an empty loading station 1101. When the characteristic information corresponding to the function pool 900 placed on the moving platform 12 cannot be recognized or there is no corresponding matching loading station 1101 with corresponding attributes, the battery feeding assembly 30 corresponding to the empty loading station 1101 can be controlled to push the function pool 900 to the empty loading station 1101 on the static platform 11.

[0064] It can be understood that the battery feeding assembly 30 and the drive unit 43 can be implemented as a push rod motor, a servo motor, etc.

[0065] Preferably, the automatic sequencing device further includes at least one adjustment component 80. The communication units 41 of the communication member 40 respectively form an adjustment channel correspondingly, wherein the adjustment channel is arranged to be separated by the communication channel 4101 and the branch channel 4103, and when the corresponding branch channel 4103 on the communication unit 41 is communicated with the corresponding function pool 900, the corresponding adjustment channel can be communicated with the function pool 900 through the adjustment channel. The adjustment component 80 is controllably connected to the controller 60 to adjust the environment in the corresponding function pool 900 through the adjustment component 80.

[0066] For example, in one embodiment, the adjustment component 80 is set as an air pump to adjust the air flow rate in the corresponding function pool 900. The adjustment component 80 can also be set as one selected from a gas supply instrument (supplying oxygen, nitrogen, carbon dioxide, etc.), a water replenishing device, etc., to adjust the environment in the function pool 900 according to needs.

[0067] Reference Figure 6 , according to another aspect of the present invention, the present invention further provides a management system for an automatic sequencing device, wherein the management system for the automatic sequencing device includes a collection unit 100, a processing unit 200, and a control unit 300.

[0068] The collection unit 100 is arranged to collect the characteristic information of each function pool 900 identified by the identification component 20. The processing unit 200 is communicatively connected to the collection unit 100 to judge whether the characteristic information matches the attribute of the corresponding bearing station 1101. When the characteristic information matches the attribute of the corresponding bearing station 1101, a control signal is formed. The control unit 300 is arranged to be able to execute the control signal to control the corresponding pool sending component 30 to push the function pool 900 to work that matches its characteristic information.

[0069] Furthermore, the collection unit 100 is also arranged to determine whether all the bearing stations 1101 corresponding to the detection system for detecting organic matter in soil are loaded with the function pools 900 in response to the operation of the user. It can be understood that the collection unit 100 can determine whether all the bearing stations 1101 corresponding to the detection system for detecting organic matter in soil are loaded with the function pools 900 by collecting the signals of the sensors arranged on the bearing stations 1101.

[0070] In addition, the processing unit 200 is arranged to further process the data collected by the collection unit 100, and then determine a capping signal and a communication signal.

[0071] The control unit 300 executes the capping signal to control the driving unit 43 to press down the communicating unit 41, so that the communicating port 4102 of the communicating unit 41 is hermetically docked to the functional pool 900. The control unit 300 executes the communicating signal to control some of the valve bodies 44 to close and some of the valve bodies 44 to open, so as to form a detection system for detecting organic substances in soil as required by the user.

[0072] Preferably, the acquisition unit 100 of the management system of the automatic sequencing device is further configured to be able to acquire the environmental characteristics in the degradation pool, where the environmental characteristics include but are not limited to temperature, humidity, air flow rate, pH value, dissolved oxygen content, and water volume in the detection system. The processing unit 200 forms a corresponding warning signal according to the set threshold. When the data corresponding to the environmental characteristics does not match the threshold, the control unit 300 executes the warning signal, so that the user can be reminded in time.

[0073] Those skilled in the art should understand that the embodiments of the present invention described above and shown in the drawings are only examples and do not limit the present invention. The advantages of the present invention have been fully and effectively realized. The functions and structural principles of the present invention have been shown and described in the embodiments, and the embodiments of the present invention can be deformed or modified in any way without departing from the principle.

Claims

1. An automatic sequencing device for organic matter tracing, characterized in that, It includes: At least one pool feeding component, wherein the pool feeding component is implemented to include a push rod motor; A device main body, wherein the device main body includes a static platform and a moving platform, wherein the static platform forms a plurality of loading stations for loading 4 functional pools, wherein each of the loading stations corresponds to one of the pool feeding components respectively, and wherein the moving platform is arranged to be able to transfer the loaded functional pool to between one of the pool feeding components and one of the loading stations; At least one identification component for confirming the characteristic information of each functional pool carried on the moving platform, wherein the pool feeding component is communicably connected to the identification component, and wherein the pool feeding component is arranged to be able to send the functional pool located on the moving platform to the loading station of the static platform, and wherein when the characteristic information of the functional pool determined by the identification component matches the characteristic information of one of the loading stations, the pool feeding component is driven to send the functional pool located on the moving platform to the loading station of the static platform; The 4 functional pools are respectively implemented to be selected from: a carbon dioxide filtration pool, a moisture maintenance pool, a decomposition generation pool, an alkaline volatile absorption pool, a volatile organic compound absorption pool, and a carbon dioxide absorption pool; The automatic sorting device further includes a communication component, the communication component includes a communication unit, at least one sealing docking member, and a driving unit, the communication unit, the sealing docking member, and the driving unit are respectively arranged on the static platform, and the sealing docking member is arranged to maintain a predetermined height from the loading station, the communication unit forms a communication channel, a plurality of spaced communication ports, and a branch channel between each communication port and the communication channel, each branch channel is arranged to connect one communication port to the communication channel, and the communication unit is drivably connected to the driving unit to, under the drive of the driving unit, the communication ports on each communication unit are respectively and sealingly docked with the functional pools on one of the loading stations.

2. The automatic sequencing device for organic matter tracing according to claim 1, wherein The static platform forms a groove body in the direction of the pool feeding component transferring the functional pool, wherein one end of the groove body communicates with the moving platform, and the other end of the groove body communicates with the loading station.

3. The automatic sequencing device for organic matter tracing according to claim 2, characterized in that, The cross-sectional dimension of the groove body in the transverse direction gradually decreases from the end communicating with the moving platform to the end communicating with the loading station.

4. The automatic sequencing device for organic matter tracing according to claim 1, wherein The communication component includes at least one valve body, and at least one of the valve bodies is arranged in the branch channel.

5. The automatic sequencing device for organic tracer according to claim 4, characterized in that The automatic sorting device further includes a detection component, a controller, and a display, the detection component is arranged to be able to detect the environmental characteristics in the detection system formed by the plurality of functional pools, the detection component is communicably connected to the controller, the controller is communicatively connected to the display, the controller is arranged to be able to obtain the data detected by the detection component, and the display is arranged to be able to display the corresponding detected data.

6. The automatic sorting device for organic matter tracing according to claim 5, wherein The driving unit and the valve body are controllably connected to the controller.

7. The automatic sequencing device for organic matter tracing according to claim 6, wherein The detection component includes at least one of an oxidation-reduction potential sensor, a carbon dioxide sensor, an oxygen content sensor, a nitrogen detector, a methane detector, an organic matter detector, a temperature sensor, a humidity sensor, a flow sensor, a pH sensor, a dissolved oxygen sensor, or a water volume sensor.

8. A management system for the automatic sorting device for organic matter tracing according to any one of claims 1-7, characterized in that, The management system includes: An identification component for identifying the characteristic information of each functional pool, where each functional pool is respectively implemented as selected from: a carbon dioxide filtration pool, a water maintenance pool, a degradation occurrence pool, an alkaline volatile absorption pool, a volatile organic matter absorption pool, and a carbon dioxide absorption pool; An acquisition unit, where the acquisition unit is arranged to acquire the characteristic information of each functional pool; A processing unit, which is communicatively connected to the acquisition unit to determine whether the characteristic information matches the attribute of the corresponding bearing station. When the characteristic information matches the attribute of the corresponding bearing station, a control signal is formed; A control unit, where the control unit is arranged to be able to execute the control signal to control the corresponding pool delivery component to deliver the functional pool to the bearing station that matches its characteristic information, where the pool delivery component is implemented to include a push rod motor.

9. The management system of the automatic sequencing device according to claim 8, characterized in that, The acquisition unit is arranged to acquire the environmental characteristics in the degradation pool, and the processing unit forms a corresponding warning signal according to the set threshold. When the data corresponding to the environmental characteristics does not match the threshold, the control unit executes the warning signal.

Citation Information

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