CN218951180U - Wastewater utilization circulating device for automatic cloth washer - Google Patents

Wastewater utilization circulating device for automatic cloth washer Download PDF

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Publication number
CN218951180U
CN218951180U CN202222449131.0U CN202222449131U CN218951180U CN 218951180 U CN218951180 U CN 218951180U CN 202222449131 U CN202222449131 U CN 202222449131U CN 218951180 U CN218951180 U CN 218951180U
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water
buffer cylinder
cloth washer
port
automatic cloth
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CN202222449131.0U
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陈荣亮
韦德嘉
区光和
李卓荣
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Lee Kum Kee Xin Hui Food Co ltd
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Lee Kum Kee Xin Hui Food Co ltd
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Abstract

The utility model discloses a wastewater utilization circulating device for an automatic cloth washer, which comprises a buffer cylinder and a centrifugal pump which are connected, wherein the buffer cylinder is provided with a first water inlet and a first water outlet, the first water inlet is externally connected to the water outlet of the cloth washer through a pipeline, the first water outlet is connected with the centrifugal pump through a pipeline, and the outlet of the centrifugal pump is externally connected to the water inlet of the cloth washer through a pipeline; in the buffer cylinder, an oil separation net is arranged below the first water inlet, and a filter is arranged at the first water outlet. The wastewater utilization circulating device for the automatic cloth washer can realize the secondary recycling of water washing and water distribution in the cloth washer, reduce the waste of water resources and is also beneficial to reducing the production cost. When the cloth washing machine is applied, the cloth washing machine is connected and installed through the pipeline, and the cloth washing machine is convenient to operate and flexible to use.

Description

Wastewater utilization circulating device for automatic cloth washer
Technical Field
The utility model relates to the technical field of soy sauce production, in particular to a wastewater utilization and circulation device for an automatic cloth washer.
Background
In the soy sauce production and processing process, the soy sauce squeezing process is an important step, and the current soy sauce production line has commonly realized automatic sauce distribution and automatic squeezing through the continuous upgrading and reconstruction of soy sauce squeezing equipment, and replaces a large amount of manual operations by the automatic production mode. In the current common soy sauce production line, each piece of pressed cloth for continuous sauce distribution and pressing is more than 1200 meters, and in order to ensure the cleaning quality and the cleaning efficiency, a continuous cloth washer is generally required to be used for cleaning the pressed cloth, and the continuous cloth cleaning process mainly comprises deslagging, soaking, primary flushing, secondary flushing, drying, cloth stacking and the like. The two cleaning procedures (namely primary flushing and secondary flushing) are directly used for flushing the pressed cloth, and the flushed water is directly discharged.
Disclosure of Invention
The utility model aims to overcome the defects of the prior art, and provides a wastewater utilization circulating device for an automatic cloth washer, which can realize the secondary recycling of water washing, reduce the waste of water resources and is beneficial to reducing the production cost.
The technical scheme of the utility model is as follows: the utility model provides a waste water utilization circulating device that automatic cloth washer was used, includes buffer jar and centrifugal pump that links, and buffer jar is equipped with first water inlet and first delivery port, and first water inlet passes through the external delivery port that connects the cloth washer of pipeline, and first delivery port passes through the pipeline and is connected with centrifugal pump, and the outlet of centrifugal pump passes through the external water inlet that connects the cloth washer of pipeline; in the buffer cylinder, an oil separation net is arranged below the first water inlet, and a filter is arranged at the first water outlet. The oil separation net filters the wastewater entering the buffer cylinder for the first time to remove most of grease contained in the wastewater; the buffer cylinder buffers the wastewater entering and exiting precipitation; the filter carries out secondary filtration on the wastewater to be pumped by the centrifugal pump, and further removes grease and particles contained in the wastewater.
The top of the buffer cylinder is provided with an observation port, and the observation port is provided with a cover capable of being opened and closed. In this structure, the lid adopts the hinge fixed hinge to be in buffer cylinder top, and the openable angle of lid is greater than 90, can be convenient for observe and handle jar interior special conditions after opening, including maintenance floater liquid level switch, clear up in the jar jam, clean buffer cylinder inner wall etc..
The side wall of the buffer cylinder is also provided with a water supplementing port, and a floating ball liquid level switch is arranged at the water supplementing port. If the liquid level in the buffer cylinder is too low, water can be supplemented through the water supplementing port, and an automatic water supplementing function can be realized through a floating ball liquid level switch at the water supplementing port.
The side wall of the buffer cylinder is also provided with an overflow port, and the height of the overflow port is higher than that of the water supplementing port. When the buffer cylinder is full of water to the overflow port, the water can be automatically discharged, so that the water is prevented from flowing out of the top of the buffer cylinder due to too full water; the overflow port is arranged at a position slightly higher than the water supplementing port, so that water is prevented from being supplemented while overflow is carried out, and water resources are wasted.
In the buffer cylinder, the oil screen is arranged below the first water inlet and the overflow port, and an included angle of 60 degrees is formed between the oil screen and the inner wall of the buffer cylinder to incline upwards. The structure can lead the secondary flushing water entering the buffer cylinder to filter most of grease through the oil separation net, and the grease can be smoothly discharged from the overflow port.
Along the setting direction of oil screen, the area of oil screen is less than the cross-section of buffer cylinder. According to the actual specification and the requirement of the buffer cylinder, the oil separation net is replaceable, the area of the oil separation net is adjustable, and the oil separation net is required to be covered below the first water inlet and the overflow port.
The oil separation net adopts a filter screen with the specification of 200 meshes.
The bottom of the buffer cylinder is also provided with a water outlet, and a water outlet valve is arranged at the water outlet. In general, the drain valve is a normally closed valve, and is normally opened when the buffer cylinder is overhauled, cleaned or sewage is required to be discharged from the buffer cylinder.
The bottom of the buffer cylinder is in an inverted conical shape, and a supporting frame is arranged on the periphery of the bottom of the buffer cylinder. The conical structure is convenient for precipitating residual particles and the like in water, and is also convenient for carrying out centralized pollution discharge cleaning on the buffer cylinder.
When the wastewater utilization and circulation device is used, the principle is as follows:
after the wastewater is connected to an automatic cloth washer through a pipeline by using a circulating device, secondary flushing water of the cloth washer is collected through a collecting tank of the wastewater and then conveyed through the pipeline, the wastewater enters a buffer cylinder through a first water inlet on the buffer cylinder, the wastewater is filtered for the first time through an oil separation net after entering the buffer cylinder, most of grease contained in the wastewater is removed, the isolated grease is discharged from an overflow port, water enters the middle lower part of the buffer cylinder, the buffer cylinder is buffered and precipitated, water at the lower part is pumped out by a centrifugal pump through a first water outlet, at the moment, a filter at the first water outlet carries out secondary filtration on the wastewater to be pumped out by the centrifugal pump, grease and particles contained in the wastewater are further removed, and the formed clean water is circulated and sent into the cloth washer for use, and is generally used as primary flushing water of the cloth washer. In addition, when the secondary flushing water received by the buffer cylinder is less than the primary flushing water required by the cloth washer, a floating ball liquid level switch can be automatically opened at a water supplementing port on the side wall of the buffer cylinder, and enough tap water is supplemented through an external water source; when the secondary flushing water received by the buffer cylinder is more than the primary flushing water of the cloth washer, the waste water received by the buffer cylinder can be automatically discharged out of the cylinder through the overflow port and is additionally collected for treatment, so that the recycled water (i.e. the collected waste water) in the buffer cylinder can be continuously and stably supplied to the cloth washer for use.
Compared with the prior art, the utility model has the following beneficial effects:
the wastewater utilization circulating device for the automatic cloth washer can realize the secondary recycling of water washing and water distribution in the cloth washer, reduce the waste of water resources and is also beneficial to reducing the production cost. When the cloth washing machine is applied, the cloth washing machine is connected and installed through the pipeline, and the cloth washing machine is convenient to operate and flexible to use. In the cloth washer, as the secondary flushing water is cleaner, after being collected, precipitated and filtered by the buffer tank, the secondary flushing water is recycled and sent into the cloth washer to be used for secondary utilization as the primary flushing water, and through experiments, the cleaning effect can be close to that of the conventional mode of directly adopting tap water to carry out primary flushing, but the consumption of tap water can be greatly saved, and the automatic production of soy sauce, energy conservation and environmental protection are provided with assistance, so that the resource waste can be reduced, and the benefit can be improved.
Drawings
Fig. 1 is a schematic diagram of a wastewater utilization circulation device for the automatic cloth washer.
In the above figures, the components shown by the reference numerals are as follows: 1 is a buffer cylinder, 2 is a centrifugal pump, 3 is a first water inlet, 4 is a first water outlet, 5 is a cloth washer, 6 is an oil separation net, 7 is a filter, 8 is an observation port, 9 is a cover, 10 is a water supplementing port, 11 is a floating ball liquid level switch, 12 is an overflow port, 13 is a water outlet, and 14 is a supporting frame.
Detailed Description
The present utility model will be described in further detail with reference to examples, but embodiments of the present utility model are not limited thereto.
Examples
The embodiment of the wastewater utilization and circulation device for the automatic cloth washer is shown in fig. 1, and comprises a buffer cylinder 1 and a centrifugal pump 2 which are connected, wherein the buffer cylinder is provided with a first water inlet 3 and a first water outlet 4, the first water inlet is externally connected to a water outlet of a cloth washer 5 through a pipeline, the first water outlet is connected with the centrifugal pump through a pipeline, and an outlet of the centrifugal pump is externally connected to a water inlet of the cloth washer through a pipeline; in the buffer cylinder, an oil separation net 6 is arranged below the first water inlet, and a filter 7 is arranged at the first water outlet. The oil separation net filters the wastewater entering the buffer cylinder for the first time to remove most of grease contained in the wastewater; the buffer cylinder buffers the wastewater entering and exiting precipitation; the filter carries out secondary filtration on the wastewater to be pumped by the centrifugal pump, and further removes grease and particles contained in the wastewater.
Further, the top of the buffer cylinder is provided with an observation port 8, and an openable cover 9 is arranged at the observation port. In this structure, the lid adopts the hinge fixed hinge to be in buffer cylinder top, and the openable angle of lid is greater than 90, can be convenient for observe and handle jar interior special conditions after opening, including maintenance floater liquid level switch, clear up in the jar jam, clean buffer cylinder inner wall etc..
The side wall of the buffer cylinder is also provided with a water supplementing port 10, and a floating ball liquid level switch 11 is arranged at the water supplementing port. If the liquid level in the buffer cylinder is too low, water can be supplemented through the water supplementing port, and an automatic water supplementing function can be realized through a floating ball liquid level switch at the water supplementing port.
The side wall of the buffer cylinder is also provided with an overflow port 12, and the height of the overflow port is higher than that of the water supplementing port. When the buffer cylinder is full of water to the overflow port, the water can be automatically discharged, so that the water is prevented from flowing out of the top of the buffer cylinder due to too full water; the overflow port is arranged at a position slightly higher than the water supplementing port, so that water is prevented from being supplemented while overflow is carried out, and water resources are wasted.
In the buffer cylinder, the oil separation net is arranged below the first water inlet and the overflow port, and an included angle of 60 degrees (an included angle a shown in fig. 1) is formed between the oil separation net and the inner wall of the buffer cylinder. The structure can lead the secondary flushing water entering the buffer cylinder to filter most of grease through the oil separation net, and the grease can be smoothly discharged from the overflow port. Along the setting direction of oil screen, the area of oil screen is less than the cross-section of buffer cylinder. According to the actual specification and the requirement of the buffer cylinder, the oil separation net is replaceable, the area of the oil separation net is adjustable, and the oil separation net is required to be covered below the first water inlet and the overflow port. In this embodiment, the oil screen is a 200 mesh screen.
The bottom of the buffer vessel is also provided with a drain opening 13, where a drain valve (not shown) is provided. In general, the drain valve is a normally closed valve, and is normally opened when the buffer cylinder is overhauled, cleaned or sewage is required to be discharged from the buffer cylinder.
The bottom of the buffer cylinder is in an inverted conical shape, and a supporting frame 14 is arranged on the periphery of the bottom of the buffer cylinder. The conical structure is convenient for precipitating residual particles and the like in water, and is also convenient for carrying out centralized pollution discharge cleaning on the buffer cylinder.
When the wastewater utilization and circulation device is used, the principle is as follows:
after the wastewater is connected to an automatic cloth washer through a pipeline by using a circulating device, secondary flushing water of the cloth washer is collected through a collecting tank of the wastewater and then conveyed through the pipeline, the wastewater enters a buffer cylinder through a first water inlet on the buffer cylinder, the wastewater is filtered for the first time through an oil separation net after entering the buffer cylinder, most of grease contained in the wastewater is removed, the isolated grease is discharged from an overflow port, water enters the middle lower part of the buffer cylinder, the buffer cylinder is buffered and precipitated, water at the lower part is pumped out by a centrifugal pump through a first water outlet, at the moment, a filter at the first water outlet carries out secondary filtration on the wastewater to be pumped out by the centrifugal pump, grease and particles contained in the wastewater are further removed, and the formed clean water is circulated and sent into the cloth washer for use, and is generally used as primary flushing water of the cloth washer. In addition, when the secondary flushing water received by the buffer cylinder is less than the primary flushing water required by the cloth washer, a floating ball liquid level switch can be automatically opened at a water supplementing port on the side wall of the buffer cylinder, and enough tap water is supplemented through an external water source; when the secondary flushing water received by the buffer cylinder is more than the primary flushing water of the cloth washer, the waste water received by the buffer cylinder can be automatically discharged out of the cylinder through the overflow port and is additionally collected for treatment, so that the recycled water (i.e. the collected waste water) in the buffer cylinder can be continuously and stably supplied to the cloth washer for use.
As described above, the present utility model can be better realized, and the above-described embodiments are only preferred embodiments of the present utility model, and are not intended to limit the scope of the present utility model; all equivalent changes and modifications are intended to be covered by the scope of the appended claims.

Claims (9)

1. The utility model provides a waste water utilization circulating device for automatic cloth washer, which is characterized in that the device comprises a buffer cylinder and a centrifugal pump which are connected, wherein the buffer cylinder is provided with a first water inlet and a first water outlet, the first water inlet is externally connected to the water outlet of the cloth washer through a pipeline, the first water outlet is connected with the centrifugal pump through a pipeline, and the outlet of the centrifugal pump is externally connected to the water inlet of the cloth washer through a pipeline; in the buffer cylinder, an oil separation net is arranged below the first water inlet, and a filter is arranged at the first water outlet.
2. The wastewater recycling apparatus for an automatic cloth washer according to claim 1, wherein the top of the buffer cylinder is provided with an observation port, and the observation port is provided with a cover capable of being opened and closed.
3. The wastewater recycling device for the automatic cloth washer according to claim 1, wherein a water supplementing port is further arranged on the side wall of the buffer cylinder, and a floating ball liquid level switch is arranged at the water supplementing port.
4. A wastewater recycling apparatus for an automatic cloth washer according to claim 3, wherein the side wall of the buffer cylinder is further provided with an overflow port, and the overflow port is provided at a height higher than the water replenishing port.
5. The wastewater recycling apparatus for automatic cloth washer according to claim 4, wherein the oil separation net is arranged below the first water inlet and the overflow port in the buffer cylinder, and an included angle of 60 degrees is formed between the oil separation net and the inner wall of the buffer cylinder.
6. The wastewater recycling apparatus for automatic cloth washer according to claim 5, wherein an area of the oil screen is smaller than a cross section of the buffer cylinder in a direction in which the oil screen is disposed.
7. The wastewater recycling apparatus for an automatic cloth washer according to claim 1, wherein the oil screen is a 200 mesh screen.
8. The wastewater recycling apparatus for an automatic cloth washer according to claim 1, wherein a drain port is further provided at the bottom of the buffer tank, and a drain valve is provided at the drain port.
9. The wastewater recycling apparatus for automatic cloth washer according to claim 8, wherein the bottom of the buffer cylinder is in an inverted cone shape, and a supporting frame is provided at the outer periphery of the bottom of the buffer cylinder.
CN202222449131.0U 2022-09-15 2022-09-15 Wastewater utilization circulating device for automatic cloth washer Active CN218951180U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202222449131.0U CN218951180U (en) 2022-09-15 2022-09-15 Wastewater utilization circulating device for automatic cloth washer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202222449131.0U CN218951180U (en) 2022-09-15 2022-09-15 Wastewater utilization circulating device for automatic cloth washer

Publications (1)

Publication Number Publication Date
CN218951180U true CN218951180U (en) 2023-05-02

Family

ID=86139183

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202222449131.0U Active CN218951180U (en) 2022-09-15 2022-09-15 Wastewater utilization circulating device for automatic cloth washer

Country Status (1)

Country Link
CN (1) CN218951180U (en)

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