Detection device for biological fermentation

By introducing structures such as a tail gas collection pump, a tail gas analyzer, and a drying component into the bio-fermentation device, the problems of unstable installation and humidity effects within the fermenter were solved, achieving device stability and data accuracy, and improving the monitoring effect of the bio-fermentation process.

CN223723134UActive Publication Date: 2025-12-26SHENGZHOU JIUFUKANG IND CO LTD
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Patent Information

Application Number
CN202520274606.8
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-20
Publication Date
2025-12-26
Estimated Expiration
2035-02-20

AI Technical Summary

Technical Problem

Existing bio-fermentation detection devices are unstable when installed inside fermentation tanks, are easily affected by gravity, and high humidity affects gas composition analysis, leading to device damage and inaccurate data.

Method used

A detection device was designed, comprising an exhaust gas collection pump, an exhaust gas analyzer, a gas sensor, a drying component, and a regulating component. The device is secured within the fermenter through threaded connections and a shock-absorbing structure. The drying component absorbs moisture, improving data accuracy and safety.

Benefits of technology

This method enables stable installation of the detection device inside the fermenter, preventing impacts and improving the accuracy of gas analysis and the safety of the device, thus ensuring the reliability and functionality of the data.

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Abstract

The utility model provides a detection device for biological fermentation, which comprises a tail gas storage pump, the top of the tail gas storage pump is fixedly connected with a tail gas analyzer, the top of the tail gas analyzer is fixedly connected with a data panel, the top of the tail gas analyzer is provided with an adjusting button, and the data panel is fixedly connected with the tail gas analyzer. A gas sensor is arranged at the bottom of the tail gas storage pump and electrically connected with the tail gas analyzer, an adjusting assembly is arranged at the bottom of the gas sensor, and a gas suction pipe is fixedly connected to the bottom of the adjusting assembly; the device is connected with the whole device from the interior of the fermentation tank through the adjusting assembly by means of the structure of the adjusting assembly, meanwhile, the safety of the device is further improved by means of the structure of the adjusting assembly which cannot be collided after installation is completed, and a gas suction pipe can help to fix the whole drying assembly into the fermentation tank. The drying assembly can absorb moisture at the exhaust position of the fermentation tank through the structure of the drying assembly, and influence of excessive moisture on tail gas analysis is prevented.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to technical field, concretely relates to a kind of detection device for biological fermentation. BACKGROUND

[0002] Biological fermentation is a kind of technology using microorganism to carry out metabolic activity under specific conditions to produce useful metabolites.This technology is widely used in food, beverage, chemical industry, pharmaceutical industry and other fields, and has important economic and social value, biological fermentation mainly refers to the modern engineering technology, on the basis of strain development, by controlling factors including temperature, pH value, oxygen content, nutrient composition, which can affect microbial metabolic process, finally produce the required product technology, biological fermentation technology is widely used in food industry, pharmaceutical industry, agriculture, light industry and environmental protection and other fields.For example, in food industry, fermentation technology is used to produce beer, fruit wine, vinegar and other traditional fermentation products, and food additives and single-cell protein.

[0003] The detection device for biological fermentation is an indispensable tool in modern fermentation industry, which monitors the key parameters in the fermentation process in real time to ensure the efficiency of the fermentation process and the product quality, and indirectly reflects the metabolic state and growth of microorganisms by analyzing the composition of the exhaust gas in the fermentation process, while the conventional biological fermentation detection device is installed inside the fermentation tank on one side and outside on the other side, which cannot guarantee the stability of installation, and the gravity will affect the whole device after installation, which will cause damage to the device after long-term use, and the high humidity environment will affect the analysis of gas composition, therefore, we propose a detection device for biological fermentation. UTILITY MODEL CONTENT

[0004] The utility model aims at solving the deficiency of prior art, and provides a detection device for biological fermentation, to solve the problems proposed in the above background.

[0005] To achieve the above object, the utility model provides the following technical scheme:

[0006] A detection device for biological fermentation, comprising: a tail gas storage pump, the top of the tail gas storage pump is fixedly connected with a tail gas analyzer, the top of the tail gas analyzer is fixedly connected with a data panel, the top of the tail gas analyzer is provided with an adjusting button, the bottom of the tail gas storage pump is provided with a gas sensor, the gas sensor is electrically connected with the tail gas analyzer, the bottom of the gas sensor is provided with an adjusting assembly, the bottom of the adjusting assembly is fixedly connected with a gas suction tube, the surface of the gas suction tube is provided with a drying assembly, and the bottom of the gas suction tube is fixedly connected with a humidity sensor.

[0007] Preferably, the adjustment assembly includes an internal air tube, a threaded connecting post, a top air tube, a limiting base plate, a connecting top plate, and a shock-absorbing spring. The internal air tube is located at the top of the gas suction tube, the threaded connecting post is fixedly connected to the top of the internal air tube, and the top air tube is threaded to the surface of the threaded connecting post, with the top air tube matching the surface of the threaded connecting post.

[0008] Preferably, the limiting base plate is fixedly connected to the surface of the top air tube, the connecting top plate is fixedly connected to the top of the top air tube, and a plurality of the shock-absorbing springs are fixedly connected between the connecting top plate and the limiting base plate.

[0009] Preferably, the drying assembly includes a rubber collar, connecting tubes, a desiccant box, and a volatile filter. The rubber collar is sleeved on the surface of the gas suction tube, and multiple connecting tubes are fixedly connected to both sides of the rubber collar. Each desiccant box is fixedly connected to one end of the connecting tube.

[0010] Preferably, the volatile filter is fixedly connected to the surface of the desiccant box, and the size of the volatile filter matches the inner wall of the desiccant box.

[0011] Preferably, movable pull rings are fixedly connected to both sides of the surface of the exhaust gas collection pump, and the inner wall of the movable pull rings is provided with anti-slip sleeves.

[0012] Preferably, test paper boxes are fixedly connected to both sides of the gas sensor, and acid-base test paper is provided on the inner wall of the test paper box.

[0013] Compared with the prior art, the beneficial effects of this utility model are:

[0014] 1. By adjusting the components, the device can be connected from inside the fermenter using its own structure. At the same time, the device will not be damaged after installation, thus improving its safety. The gas suction tube can help fix the drying component inside the fermenter. The drying component can absorb moisture from the exhaust of the fermenter using its own structure, preventing excessive moisture from affecting the exhaust gas analysis.

[0015] 2、By adjusting the structure of the assembly and the structure of the drying assembly help to the overall stability and drying of the device, the use of the device in the gas pipe and the top of the threaded column is arranged in the inside of the fermentation tank, and the threaded column is arranged at the top of the exhaust port of the fermentation tank, at this time the top gas pipe is connected to the threaded column, in this way the device can be fixed in the inside of the fermentation tank, and the limiting bottom plate and the connecting top plate can be linked with each other, after the top gas pipe is installed, the top gas pipe is limited in the cover at the top of the fermentation tank, the device is not dropped into the fermentation tank, which further improves the safety of the device, and the shock absorbing spring can also relieve the vibration in time when falling accidentally, which further improves the safety of the device. BRIEF DESCRIPTION OF DRAWINGS

[0016] The accompanying drawings are included to provide a further understanding of the present application, and constitute a part of the specification, illustrate the present application and are used to explain the present application, and do not constitute a limitation on the present application.

[0017] In the drawings:

[0018] Figure 1 is the overall structure of the present application schematic diagram;

[0019] Figure 2 is the overall structure of the present application back schematic diagram;

[0020] Figure 3 is the schematic diagram of the adjusting assembly in the structure of the present application;

[0021] Figure 4 is the schematic diagram of the drying assembly in the structure of the present application;

[0022] Figure 5 is the back schematic diagram of the drying assembly in the structure of the present application.

[0023] In the drawings: 1, tail gas storage pump; 2, tail gas analyzer; 3, data panel; 4, adjusting button; 5, moving pull ring; 6, gas sensor; 7, test paper box; 8, acid-base test paper; 9, adjusting assembly; 901, device in gas pipe; 902, threaded connecting column; 903, top gas pipe; 904, limiting bottom plate; 905, connecting top plate; 906, shock absorbing spring; 10, gas suction pipe; 11, drying assembly; 1101, rubber sleeve ring; 1102, connecting pipe; 1103, drying agent box; 1104, volatile filter screen; 12, humidity sensor. DETAILED DESCRIPTION

[0024] The technical solutions in the embodiments of the present application will be clearly and completely described with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative efforts fall within the scope of the present application.

[0025] Embodiment

[0026] Please refer to Figures 1-5 The technical solutions provided by the embodiment are as follows:

[0027] A detection device for biological fermentation, comprising: a tail gas storage pump 1, a tail gas analyzer 2 is fixedly connected to the top of the tail gas storage pump 1, a data panel 3 is fixedly connected to the top of the tail gas analyzer 2, an adjusting button 4 is arranged on the top of the tail gas analyzer 2, a gas sensor 6 is arranged on the bottom of the tail gas storage pump 1, the gas sensor 6 is electrically connected with the tail gas analyzer 2, an adjusting assembly 9 is arranged on the bottom of the gas sensor 6, a gas suction pipe 10 is fixedly connected to the bottom of the adjusting assembly 9, a drying assembly 11 is sleeved on the surface of the gas suction pipe 10, and a humidity sensor 12 is fixedly connected to the bottom of the gas suction pipe 10.

[0028] In the embodiment, the tail gas storage pump 1 can absorb the gas discharged from the exhaust hole of the fermentation tank, and is interconnected with the gas sensor 6 to transmit the tail gas to the inside of the tail gas analyzer 2, so as to analyze the discharged gas and detect the fermentation condition in the inside of the fermentation tank. The data is displayed in the data panel 3, so that the user can detect at any time. Meanwhile, the adjusting button 4 can help the user to adjust the opening and closing of the whole device, so as to further improve the functionality of the device. The adjusting assembly 9 can be installed in the inside of the fermentation tank to collect the gas by using the structure thereof. Meanwhile, the gas suction pipe 10 can help to fix the drying assembly 11. The humidity sensor 12 can transmit the humidity data, so that the user can further understand and calculate the data in the inside of the fermentation tank, and the accuracy of the data of the whole device is improved.

[0029] The adjusting assembly 9 comprises an inner device air pipe 901, a threaded connecting column 902, a top air pipe 903, a limiting bottom plate 904, a connecting top plate 905 and a shock absorbing spring 906. The inner device air pipe 901 is arranged on the top of the gas suction pipe 10. The threaded connecting column 902 is fixedly connected to the top of the inner device air pipe 901. The top air pipe 903 is threadedly connected to the surface of the threaded connecting column 902. The top air pipe 903 is matched with the surface of the threaded connecting column 902.

[0030] In this embodiment, the adjusting assembly 9 can be arranged inside the fermentation tank by using the device internal air pipe 901, the threaded connecting column 902 and the top air pipe 903 are arranged outside the fermentation tank cover, at this time, the adjusting assembly 9 can be directly and stably installed in the fermentation tank by screwing the threaded connecting column 902 with the top air pipe 903, thereby further improving the stability of the device.

[0031] The limiting bottom plate 904 is fixedly connected to the surface of the top air pipe 903, the connecting top plate 905 is fixedly connected to the top of the top air pipe 903, and a plurality of shock-absorbing springs 906 are fixedly connected between the connecting top plate 905 and the limiting bottom plate 904.

[0032] In this embodiment, the limiting bottom plate 904 can be matched with the connecting top plate 905 to limit the fermentation tank cover after the top air pipe 903 is installed, so as to prevent the device from falling into the fermentation tank, and the limiting bottom plate 904 and the connecting top plate 905 can be buffered by the shock-absorbing springs 906 when falling directly by mistake, thereby further improving the safety of the device.

[0033] The drying assembly 11 comprises a rubber collar 1101, a connecting pipe 1102, a drying agent box 1103 and a volatile filter screen 1104, the rubber collar 1101 is sleeved on the surface of the gas suction pipe 10, a plurality of connecting pipes 1102 are fixedly connected to the two sides of the rubber collar 1101, and the drying agent boxes 1103 are fixedly connected to one end of the connecting pipes 1102.

[0034] In this embodiment, the drying assembly 11 is fixed on the surface of the gas suction pipe 10 by the rubber collar 1101, and the connecting pipes 1102 can help to fix the drying agent boxes 1103 on the two sides of the gas suction pipe 10, so as to dry the gas on the two sides of the gas suction pipe 10, thereby further improving the accuracy of the exhaust gas data.

[0035] The volatile filter screen 1104 is fixedly connected to the surface of the drying agent box 1103, and the size of the volatile filter screen 1104 is matched with the inner wall of the drying agent box 1103.

[0036] In this embodiment, the volatile filter screen 1104 can help to prevent the drying agent from falling out while absorbing the moisture around, thereby improving the functionality and safety of the drying assembly 11 as a whole.

[0037] The surface of the tail gas storage pump 1 is fixedly connected with a moving pull ring 5 on both sides, and the inner wall of the moving pull ring 5 is provided with an anti-skid sleeve.

[0038] In this embodiment, the mobile pull ring 5 can help the user to move the device when needed to provide a force point, and the anti-skid sleeve can prevent the hand from slipping during the movement, thereby further improving the functionality and safety of the device.

[0039] The gas sensor 6 is fixedly connected with test paper boxes 7 on both sides, and the inner wall of the test paper box 7 is provided with acid-base test paper 8.

[0040] In this embodiment, the test paper box 7 and the acid-base test paper 8 can help to detect the acidity and alkalinity inside the fermentation tank, thereby improving the detection range of the device as a whole and further improving the data accuracy of the device as a whole.

[0041] Working principle: the user can directly absorb the gas discharged from the inside of the fermentation tank through the tail gas storage pump 1, and simultaneously link the gas sensor 6, help the tail gas analyzer 2 to analyze the composition of the gas discharged from the inside of the fermentation tank, the composition will be displayed in the data panel 3, convenient for the user to observe the accurate data, thereby completing the detection effect of the device as a whole, and the adjusting button 4 can help the user to turn on and off the device as a whole, thereby improving the functionality of the device as a whole, the test paper box 7 and the acid-base test paper 8 can help to detect the acidity and alkalinity inside the fermentation tank, thereby improving the detection range of the device as a whole, and the adjusting assembly 9 helps the device to connect the device as a whole from the inside of the fermentation tank by using its own structure, and will not be bumped after installation by using its own structure, thereby further improving the safety of the device, the gas suction pipe 10 can help to fix the drying assembly 11 in the fermentation tank, and the drying assembly 11 can absorb moisture at the exhaust of the fermentation tank by using its own structure, prevent too much water from affecting the tail gas analysis, and the humidity sensor 12 can help the user to understand the current environmental humidity, thereby further improving the functionality of the device.

[0042] Although the embodiments of the present application have been shown and described, it can be understood by those skilled in the art that various changes, modifications, replacements and variations can be made to these embodiments without departing from the principles and spirits of the present application, and the scope of the present application is defined by the appended claims and their equivalents.

Claims

1. A probe device for biofermentation, characterized in that: Including the tail gas storage pump (1), the top of tail gas analysis instrument (2) is fixedly connected to the top of tail gas analysis instrument (2), and the top of data panel (3) is fixedly connected to the top of tail gas analysis instrument (2), the top of tail gas analysis instrument (2) is provided with adjusting button (4), the bottom of tail gas storage pump (1) is provided with gas sensor (6), the gas sensor (6) is electrically connected with the tail gas analysis instrument (2), the bottom of gas sensor (6) is provided with adjusting assembly (9), the bottom of adjusting assembly (9) is fixedly connected with gas suction tube (10), the surface of gas suction tube (10) is provided with drying assembly (11), and the bottom of gas suction tube (10) is fixedly connected with humidity sensor (12).

2. A probe device for biofermentation as claimed in claim 1, wherein: The adjusting assembly (9) includes device inner air pipe (901), threaded connecting column (902), top air pipe (903), limiting bottom plate (904), connecting top plate (905) and shock absorbing spring (906), the device inner air pipe (901) is arranged at the top of the gas suction tube (10), the threaded connecting column (902) is fixedly connected to the top of the device inner air pipe (901), the top air pipe (903) is threadedly connected to the surface of the threaded connecting column (902), and the top air pipe (903) is matched with the surface of the threaded connecting column (902).

3. A probe device for biofermentation as claimed in claim 2, wherein: The limiting bottom plate (904) is fixedly connected to the surface of the top air pipe (903), the connecting top plate (905) is fixedly connected to the top of the top air pipe (903), and a plurality of shock absorbing springs (906) are fixedly connected between the connecting top plate (905) and the limiting bottom plate (904).

4. The probe apparatus for biofermentation of claim 1, wherein: The drying assembly (11) includes rubber sleeve ring (1101), connecting pipe (1102), desiccant box (1103) and volatile filter screen (1104), the rubber sleeve ring (1101) is arranged on the surface of the gas suction tube (10), a plurality of connecting pipes (1102) are fixedly connected to the two sides of the rubber sleeve ring (1101), and the desiccant box (1103) is fixedly connected to one end of the connecting pipe (1102).

5. A probe device for biofermentation as claimed in claim 4, wherein: The volatile filter screen (1104) is fixedly connected to the surface of the desiccant box (1103), and the size of the volatile filter screen (1104) is matched with the inner wall of the desiccant box (1103).

6. The probe apparatus for biofermentation of claim 1, wherein: The surface of the tail gas storage pump (1) is fixedly connected with a movable pull ring (5), and the inner wall of the movable pull ring (5) is provided with an antiskid sleeve.

7. The probe apparatus for biofermentation of claim 1, wherein: The two sides of the gas sensor (6) are fixedly connected with test paper box (7), and the inner wall of the test paper box (7) is provided with acid-base test paper (8).