CN218710436U - Fermentation cylinder cooling water recycling system - Google Patents
Fermentation cylinder cooling water recycling system Download PDFInfo
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- CN218710436U CN218710436U CN202222639087.XU CN202222639087U CN218710436U CN 218710436 U CN218710436 U CN 218710436U CN 202222639087 U CN202222639087 U CN 202222639087U CN 218710436 U CN218710436 U CN 218710436U
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Abstract
The utility model discloses a fermentation tank cooling water recycling system, which comprises a high-density fermentation tank, a first storage tank, a second storage tank, a water pump, a liquid discharge pipe, a water outlet pipe, a water inlet pipe, a first-section liquid feeding pipe and a second-section liquid feeding pipe; the inlet of the water pump is communicated with a liquid discharge pipe between the check valve and the liquid discharge valve through an outlet valve, the outlet of the water pump is connected with the inlet of the water inlet pipe, the outlet of the water inlet pipe is connected with the liquid inlet of the second storage tank through a second storage tank valve, and the liquid inlet of the first storage tank is connected with the water inlet pipe between the second storage tank valve and the water pump through the first storage tank valve; the inlet of the water outlet pipe is connected with a water inlet pipe between the first storage tank valve and the water pump through a water outlet valve, and the outlet of the water outlet pipe is connected with a hose. The advantages are that: the system can recycle cooling water, is used as water for flushing the high-density fermentation tank, can also be used for activating and preparing bacterial liquid in the second storage tank or the first storage tank, and conveys the bacterial liquid to production so as to avoid waste.
Description
The technical field is as follows:
the utility model relates to a waste water recycling field, concretely relates to fermentation cylinder cooling water recycling system.
Background art:
the production process of the fermented feed is to mix and stir the raw materials and the bacterial liquid, then send the mixture to a fermentation chamber for fermentation, and finally package and store the mixture in storage. The bacterial liquid is obtained by two parts, wherein the first part needs to prepare high-density strains required by production, the process is realized by using a high-density fermentation tank, the density of the flora is improved, and then the strains can be stored or directly used, the second part prepares the prepared strains or the stored strains into the bacterial liquid through water, the strains are stored for a long time and inactivated, and the bacterial liquid is prepared at the temperature of about 30 ℃ and can also activate the strains.
The flora produces a large amount of heat because of respiration in the use process of the high-density fermentation tank, so cooling water is needed for cooling, and circulating water after heat exchange is directly abandoned, which causes waste.
The utility model has the following contents:
an object of the utility model is to provide a fermentation cylinder cooling water recycling system.
The utility model discloses implement by following technical scheme:
a cooling water recycling system of a fermentation tank comprises a high-density fermentation tank, a first storage tank, a second storage tank, a water pump, a liquid discharge pipe, a water outlet pipe, a water inlet pipe, a first-stage liquid delivery pipe and a second-stage liquid delivery pipe, wherein a cooling water outlet of the high-density fermentation tank is connected with an inlet of the liquid discharge pipe, the liquid discharge pipe is provided with a check valve and a liquid discharge valve, and the check valve is close to the high-density fermentation tank;
the water pump inlet is communicated with the liquid discharge pipe between the check valve and the liquid discharge valve through an outlet valve, the water pump outlet is connected with the water inlet pipe inlet, the water inlet pipe outlet is connected with the liquid inlet of the second storage tank through a second storage tank valve, and the liquid inlet of the first storage tank is connected with the water inlet pipe between the second storage tank valve and the water pump through a first storage tank valve;
the inlet of the water outlet pipe is connected with the water inlet pipe between the first storage tank valve and the water pump through a water outlet valve, and the outlet of the water outlet pipe is connected with a hose;
the inlet of the first liquid sending pipe is connected with the liquid outlet of the second storage tank through a second discharge valve, the liquid outlet of the first storage tank is communicated with the first liquid sending pipe through a first discharge valve, the outlet of the first liquid sending pipe is connected with the water pump inlet between the outlet valve and the water pump, and the inlet of the second liquid sending pipe is communicated with the water inlet pipe between the first storage tank valve and the second storage tank valve through a liquid sending valve.
Preferably, a motor is fixed at the center of the top of the first storage tank, a stirring rod is coaxially fixed on an output shaft of the motor, the stirring rod is arranged in the first storage tank, a feeding port is further formed in one side of the top of the first storage tank, a liquid inlet is formed in the side wall of the upper half portion of the first storage tank, and a liquid outlet is formed in the bottom of the first storage tank.
Preferably, the second tank and the first tank are identical in structure.
The utility model has the advantages that: the system can recycle cooling water, is used as water for flushing the high-density fermentation tank, can also be used for activating and preparing bacterial liquid in the second storage tank or the first storage tank, and conveys the bacterial liquid to production so as to avoid waste.
Description of the drawings:
in order to more clearly illustrate the embodiments of the present invention or the technical solutions in the prior art, the drawings used in the description of the embodiments or the prior art will be briefly described below, it is obvious that the drawings in the following description are only some embodiments of the present invention, and for those skilled in the art, other drawings can be obtained according to these drawings without creative efforts.
Fig. 1 is a schematic view of the overall structure of the present invention.
In the figure: the system comprises a high-density fermentation tank 1, a liquid discharge pipe 2, a check valve 3, a liquid discharge valve 4, a water pump 5, a water inlet pipe 6, a second tank valve 7, a second storage tank 8, a first storage tank 9, a first tank valve 10, a water outlet pipe 11, a water outlet valve 12, a hose 13, a first-section liquid feeding pipe 14, a second discharge valve 15, a first discharge valve 16, a second-section liquid feeding pipe 17, a motor 18, a stirring rod 19, a feeding port 20, a liquid inlet 21, a liquid outlet 22, a liquid feeding valve 23 and an outlet valve 24.
The specific implementation mode is as follows:
the technical solutions in the embodiments of the present invention will be described clearly and completely with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are only some embodiments of the present invention, not all embodiments. Based on the embodiments in the present invention, all other embodiments obtained by a person skilled in the art without creative efforts belong to the protection scope of the present invention.
As shown in fig. 1, a system for recycling cooling water of a fermentation tank comprises a high-density fermentation tank 1, a first storage tank 9, a second storage tank 8, a water pump 5, a liquid discharge pipe 2, a water outlet pipe 11, a water inlet pipe 6, a first liquid feeding pipe 14 and a second liquid feeding pipe 17, wherein a cooling water outlet of the high-density fermentation tank 1 is connected with an inlet of the liquid discharge pipe 2, the liquid discharge pipe 2 is provided with a check valve 3 and a liquid discharge valve 4, and the check valve 3 is close to the high-density fermentation tank 1;
an inlet of the water pump 5 is communicated with a liquid discharge pipe 2 between the check valve 3 and the liquid discharge valve 4 through an outlet valve 24, an outlet of the water pump 5 is connected with an inlet of a water inlet pipe 6, an outlet of the water inlet pipe 6 is connected with a liquid inlet 21 of a second storage tank 8 through a second storage tank valve 7, and a liquid inlet 21 of a first storage tank 9 is connected with a water inlet pipe 6 between the second storage tank valve 7 and the water pump 5 through a first storage tank valve 10;
the inlet of the water outlet pipe 11 is connected with the water inlet pipe 6 between the first tank valve 10 and the water pump 5 through the water outlet valve 12, and the outlet of the water outlet pipe 11 is connected with a hose 13;
the inlet of the first liquid sending pipe 14 is connected with the liquid outlet 22 of the second storage tank 8 through the second discharge valve 15, the liquid outlet 22 of the first storage tank 9 is communicated with the first liquid sending pipe 14 through the first discharge valve 16, the outlet of the first liquid sending pipe 14 is connected with the inlet of the water pump 5 between the outlet valve 24 and the water pump 5, and the inlet of the second liquid sending pipe 17 is communicated with the water inlet pipe 6 between the first storage tank valve 10 and the second storage tank valve 7 through the liquid sending valve 23.
A motor 18 is fixed at the center of the top of the first storage tank 9, a stirring rod 19 is coaxially fixed on an output shaft of the motor 18, the stirring rod 19 is arranged in the first storage tank 9, a feeding port 20 is further formed in one side of the top of the first storage tank 9, a liquid inlet 21 is formed in the side wall of the upper half portion of the first storage tank 9, and a liquid outlet 22 is formed in the bottom of the first storage tank 9.
The second reservoir 8 is identical in construction to the first reservoir 9.
The working principle is as follows:
1. discharging cooling water of the high-density fermentation tank: all valves are closed, the drain valve 4 is opened, the cooling water of the high-density fermentation tank 1 is drained to a sewage pipe through the drain pipe 2, and the outlet of the drain pipe 2 can be connected with the sewage pipe.
2. And (3) recovering cooling water: and closing all valves, opening the outlet valve 24, the second storage tank valve 7 or the first storage tank valve 10, pumping cooling water to the second storage tank 8 or the first storage tank 9 through the water inlet pipe 6 by the water pump 5 for storage, closing the first storage tank valve 10, enabling the cooling water to enter the second storage tank 8, closing the second storage tank valve 7 and enabling the cooling water to enter the first storage tank 9.
3. Recovering cooling water and flushing the high-density fermentation tank: all the valves are closed, the water outlet valve 12, the second discharge valve 15 or the first discharge valve 16 is opened, cooling water is pumped out from the second storage tank 8 or the first storage tank 9 through the water pump 5 and is sent to the hose 13 through the water outlet pipe 11, and the hose 13 is manually used for flushing from the inlet of the high-density fermentation tank 1 to the inside of the high-density fermentation tank 1.
4. Activating and preparing bacterial liquid: after cooling water is recovered, all valves are closed, strains can be put in through a feed port 20, a motor 18 drives a stirring rod 19 to stir so that water and the strains are mixed to form a bacterial liquid, a liquid feeding valve 23, a second discharge valve 15 or a first discharge valve 16 are opened, the bacterial liquid is in a first storage tank 9, the first discharge valve 16 is opened, the bacterial liquid is in a second storage tank 8, the second discharge valve 15 is opened, and the bacterial liquid is fed to a production process from a first-section liquid feeding pipe 14, a water inlet pipe 6 and a second-section liquid feeding pipe 17 through a water pump 5; the second storage tank 8 and the first storage tank 9 are used for standby, a certain temperature is met after cooling water is cooled and heat exchange, the water temperature is detected by a thermometer, the water temperature can be increased by placing an external electric heater through a feeding port 20, and the water temperature can be lowered by standing.
The system can recycle cooling water, is used as water for flushing the high-density fermentation tank 1, can also be used for activating and preparing bacteria liquid in the second storage tank 8 or the first storage tank 9, and conveys the bacteria liquid to production, thereby avoiding waste.
The above description is only for the preferred embodiment of the present invention, and should not be taken as limiting the invention, and any modifications, equivalent replacements, improvements, etc. made within the spirit and principle of the present invention should be included in the protection scope of the present invention.
Claims (3)
1. A fermentation tank cooling water recycling system is characterized by comprising a high-density fermentation tank, a first storage tank, a second storage tank, a water pump, a liquid discharge pipe, a water outlet pipe, a water inlet pipe, a first-section liquid delivery pipe and a second-section liquid delivery pipe, wherein a cooling water outlet of the high-density fermentation tank is connected with an inlet of the liquid discharge pipe, the liquid discharge pipe is provided with a check valve and a liquid discharge valve, and the check valve is close to the high-density fermentation tank;
the water pump inlet is communicated with the liquid discharge pipe between the check valve and the liquid discharge valve through an outlet valve, the water pump outlet is connected with the water inlet pipe inlet, the water inlet pipe outlet is connected with the liquid inlet of the second storage tank through a second storage tank valve, and the liquid inlet of the first storage tank is connected with the water inlet pipe between the second storage tank valve and the water pump through a first storage tank valve;
the inlet of the water outlet pipe is connected with the water inlet pipe between the first storage tank valve and the water pump through a water outlet valve, and the outlet of the water outlet pipe is connected with a hose;
the inlet of the first liquid sending pipe is connected with the liquid outlet of the second storage tank through a second discharge valve, the liquid outlet of the first storage tank is communicated with the first liquid sending pipe through a first discharge valve, the outlet of the first liquid sending pipe is connected with the water pump inlet between the outlet valve and the water pump, and the inlet of the second liquid sending pipe is communicated with the water inlet pipe between the first storage tank valve and the second storage tank valve through a liquid sending valve.
2. The system of claim 1, wherein the system comprises: the improved storage tank is characterized in that a motor is fixed at the center of the top of the first storage tank, a stirring rod is coaxially fixed on an output shaft of the motor and arranged in the first storage tank, a feeding port is further formed in one side of the top of the first storage tank, a liquid inlet is formed in the side wall of the upper half portion of the first storage tank, and a liquid outlet is formed in the bottom of the first storage tank.
3. The system for recycling cooling water of fermentation tanks of claim 2, wherein: the second storage tank and the first storage tank are identical in structure.
Priority Applications (1)
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CN202222639087.XU CN218710436U (en) | 2022-10-08 | 2022-10-08 | Fermentation cylinder cooling water recycling system |
Applications Claiming Priority (1)
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CN202222639087.XU CN218710436U (en) | 2022-10-08 | 2022-10-08 | Fermentation cylinder cooling water recycling system |
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CN218710436U true CN218710436U (en) | 2023-03-24 |
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CN202222639087.XU Active CN218710436U (en) | 2022-10-08 | 2022-10-08 | Fermentation cylinder cooling water recycling system |
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- 2022-10-08 CN CN202222639087.XU patent/CN218710436U/en active Active
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