CN213159533U - Carbon filter device for laver wastewater treatment - Google Patents
Carbon filter device for laver wastewater treatment Download PDFInfo
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- CN213159533U CN213159533U CN202021553086.8U CN202021553086U CN213159533U CN 213159533 U CN213159533 U CN 213159533U CN 202021553086 U CN202021553086 U CN 202021553086U CN 213159533 U CN213159533 U CN 213159533U
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- laver
- carbon
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Abstract
The utility model discloses a carbon filter device for laver wastewater treatment, which comprises an upper end socket, a tank body and a lower end socket which are connected in sequence from top to bottom; the upper end enclosure is connected with a water inlet pipe, the water inlet pipe extends into the upper end enclosure and is connected with a water distribution pipe, and the water distribution pipe is fixed in the upper end enclosure; the internal packing of jar is filled with the carbon-layer, be connected with the outlet pipe on the low head. The utility model discloses the purple laver bits can be intercepted automatically to the carbon canister, and business turn over treatment facility's quality of water does not have obvious impurity, but continuous self-cleaning filters, and filter medium automatic cycle, automatic blowback blows in recovery unit with the laver bits, and the maintenance cost is little, and control is simple, and it is little to take up an area of the space, and practical year can reach 10 years. The water distribution pipe is connected to the water inlet pipe, sewage can be uniformly sprayed into the tank to be filtered and deslagged, the water distribution pipe is arranged in the upper end enclosure, the filtering space of the tank is not occupied, the structural layout is compact, and the filtering effect is not influenced.
Description
Technical Field
The utility model belongs to laver sewage treatment field, concretely relates to carbon filter equipment for laver wastewater treatment.
Background
The production wastewater is mainly generated in the cleaning link. The cleaning step is divided into two steps, namely, vegetable preservation and cake making. In the process of vegetable preservation and cleaning, in order to avoid dead spots, seawater is adopted for cleaning, the generation amount of wastewater is 20m3/d, and the cake-making cleaning is carried out by tap water. A large amount of laver scraps are generated in the process, so that a water inlet pipe, a water outlet pipe and equipment are easily blocked when laver wastewater is treated. Through research and experiments on laver scraps, a water treatment sand filtering device special for the laver industry is developed.
The laver treatment needs to use the carbon filter tank to carry out water filtration treatment, and its main effect is to hold back macromolecular granule and colloid in the aquatic, makes water clarification, and the main problem that exists at present has the water distribution inequality, has and filters the dead angle, and the carbon filter tank can't exert whole effects.
Disclosure of Invention
The utility model provides a device is strained to carbon that is used for laver waste water treatment to present not enough.
In order to realize the purpose, the utility model discloses a technical scheme as follows:
a carbon filter device for laver wastewater treatment is characterized by comprising an upper end enclosure, a tank body and a lower end enclosure which are sequentially connected from top to bottom; the upper end enclosure is connected with a water inlet pipe, the water inlet pipe extends into the upper end enclosure and is connected with a water distribution pipe, and the water distribution pipe is fixed in the upper end enclosure; the internal packing of jar is filled with the carbon-layer, be connected with the outlet pipe on the low head.
Preferably, the water distributor is including being responsible for and branch pipe, be responsible for the level setting in the upper cover, advance water piping connection and be responsible for the middle part, branch connection is in the both sides of being responsible for the horizontal direction, the watering hole has been seted up on the branch pipe.
Preferably, each branch pipe is provided with two rows of the water spraying holes, and the two rows of the water spraying holes extend along the length direction of the branch pipe and are symmetrically arranged at the middle lower part of the cross section of the water pipe.
Preferably, the carbon layer has two layers, and a manhole is formed at a position corresponding to each carbon layer on the tank body.
Preferably, the water inlet pipe is led out from the upper end enclosure and then extends downwards along the side surface of the tank body; the water outlet pipe is led out from the lower end enclosure and then extends upwards along the side surface of the tank body; the inlet tube with the outlet pipe is located same one side of the jar body.
Preferably, the water inlet pipe is connected with two water inlet branch pipes; and the water outlet pipe is connected with two water outlet branch pipes.
Preferably, the water distribution pipe is connected with the upper end enclosure through connecting rods, and the number of the connecting rods is multiple.
The technical scheme can obtain the following beneficial effects:
(1) the utility model discloses the purple laver bits can be intercepted automatically to the carbon canister, and business turn over treatment facility's quality of water does not have obvious impurity, but continuous self-cleaning filters, and filter medium automatic cycle, automatic blowback blows in recovery unit with the laver bits, and the maintenance cost is little, and control is simple, and it is little to take up an area of the space, and practical year can reach 10 years. The water distribution pipe is connected to the water inlet pipe, sewage can be uniformly sprayed into the tank to be filtered and deslagged, the water distribution pipe is arranged in the upper end enclosure, the filtering space of the tank is not occupied, the structural layout is compact, and the filtering effect is not influenced.
(2) The water distributor is responsible for and advance water piping connection for introduce the water distributor with sewage, branch connection is responsible for on, is used for spilling sewage uniformly on the carbon-layer, is responsible for and also provides better support for the branch pipe, and whole structure erects on the carbon-layer, can spill sewage into the carbon-layer uniformly and filter.
(3) The water spraying holes on the branch pipes are arranged in two rows and symmetrically arranged at the middle lower part of the cross section of the water pipe, namely, the two sides of the lowest part of the branch pipes are respectively positioned, the water spraying holes are more, the water is sprayed to the two sides of the branch pipes, the dispersibility is good, and the water spraying is uniform.
(4) Set up two-layer carbon-layer, the filter effect is better, make full use of jar body space, every layer of carbon-layer has the manhole that corresponds, be convenient for installation and filler.
(5) The water inlet pipe and the water outlet pipe are arranged along the same side of the tank body, so that the integration level is high, and the maintenance and the transportation are convenient; meanwhile, pressure gauges are arranged on the water inlet pipe and the water outlet pipe, and reading is facilitated.
(6) The water inlet pipe and the water outlet pipe are provided with three-way joints, so that water can be fed in two ways, and water can be discharged from two ways, and more requirements are met.
(7) The main pipe and the upper end enclosure are connected through the connecting rod, the main pipe is good in strength, and the connection is firmer.
Drawings
Fig. 1 is a front view of the present invention.
Fig. 2 is a side view of the present invention.
Figure 3 is a schematic view of the water distributor of the present invention.
Figure 4 is a schematic view of the branch pipe of the water distributor of the present invention.
Figure 5 is a cross-sectional view of the novel distributor branch pipe.
In the figure:
1. the water inlet pipe, 2, upper cover, 3, jar body, 4, three way connection, 5, manometer, 6, manhole, 7, carbon layer, 81, be responsible for, 82, branch pipe, 821, watering hole, 83, connecting rod, 9, outlet pipe, 10, low head.
Detailed Description
The invention will be further explained with reference to the drawings:
as shown in fig. 1 and 2, the utility model discloses a carbon filter device for laver wastewater treatment, which comprises an upper end enclosure 2, a tank body 3 and a lower end enclosure 10 which are connected in sequence from top to bottom; the upper end enclosure 2 is connected with a water inlet pipe 1, the water inlet pipe 1 extends into the upper end enclosure 2 and is connected with a water distribution pipe, and the water distribution pipe is fixed in the upper end enclosure 2; the tank body 3 is filled with a carbon layer 7, and a water outlet pipe 9 is connected to the lower end enclosure 10.
Laver scraps and some impurities exist in laver sewage and need to be removed through carbon filtration. Laver waste water enters the carbon filter device through the water inlet pipe 1, the waste water firstly flows into the water distribution pipe, then is uniformly sprayed on the filter carbon layer 7 through the water distribution pipe, most impurities are removed from the sewage after layer-by-layer filtration, and finally the sewage falls into the lower end socket 10 and is discharged out of the carbon filter device through the water outlet pipe 9.
Referring to fig. 3-5, the water distribution pipe includes a main pipe 81 and branch pipes 82, the main pipe 81 is horizontally disposed in the upper head 2, the water inlet pipe 1 is connected to the middle of the main pipe 81, the branch pipes 82 are connected to both sides of the main pipe 81 in the horizontal direction, and the branch pipes 82 are provided with water spray holes 821.
The water distribution pipe is horizontally erected above the carbon layer 7, sewage firstly enters the main pipe 81 and then is sprayed out of the branch pipe 82, and the main pipe 81 plays a role in supporting the branch pipe 82, introducing the sewage and distributing the sewage into the branch pipe 82; the branch pipes 82 serve to uniformly spray the sewage distributed in the main pipe 81 into the tank 3.
The water distribution pipe is connected with the upper end enclosure 2 through a connecting rod 83, and the connecting rod 83 is provided with a plurality of pipes. The connecting rod 83 is directly connected to the main pipe 81, the main pipe 81 has high strength, and the connecting rod is located in the middle position, so that the stress effect is good.
Each branch pipe 82 is provided with two rows of water spray holes 821, and the two rows of water spray holes 821 are arranged along the length direction of the branch pipe 82 and symmetrically arranged at the middle lower part of the cross section of the branch pipe 82.
The number of the water spraying holes 821 on the branch pipe 82 is two, the number of the water spraying holes 821 is large, the water spraying faces to two sides, the dispersibility is good, the water distribution surface is large, and the water distribution is more uniform.
The carbon layer 7 has two layers, and a manhole 6 is arranged on the tank body corresponding to the position of each carbon layer 7. Two-layer carbon layer 7 filter effect is better, and every layer of carbon layer 7 all establishes corresponding manhole 6 moreover, makes things convenient for inspection and packs.
The water inlet pipe 1 is led out from the upper end enclosure 2 and then extends downwards along the side surface of the tank body 3; the water outlet pipe 9 is led out from the lower end enclosure 10 and then extends upwards along the side surface of the tank body 3; the water inlet pipe 1 and the water outlet pipe 9 are positioned on the same side of the tank body 3, the layout is reasonable, and a space is reserved on the tank body 3, so that other components can be conveniently installed.
The water inlet pipe 1 is connected with two water inlet branch pipes; the water outlet pipe 9 is connected with two water outlet branch pipes. Three-way connection 4 can be used, two ways of water inlet and two ways of water outlet.
The above description is the preferred embodiment of the present invention, and for those skilled in the art, modifications of the various equivalent forms of the present invention are within the scope of the appended claims of the present application without departing from the principle of the present invention.
Claims (7)
1. The utility model provides a carbon filter equipment for laver waste water treatment which characterized in that: the tank comprises an upper end enclosure, a tank body and a lower end enclosure which are connected in sequence from top to bottom; the upper end enclosure is connected with a water inlet pipe, the water inlet pipe extends into the upper end enclosure and is connected with a water distribution pipe, and the water distribution pipe is fixed in the upper end enclosure; the internal packing of jar is filled with the carbon-layer, be connected with the outlet pipe on the low head.
2. The carbon filter device for laver wastewater treatment according to claim 1, wherein: the water distributor is including being responsible for and branch pipe, be responsible for the level setting in the upper cover, advance water piping connection and be responsible for the middle part, branch connection is in the both sides of being responsible for the horizontal direction, the watering hole has been seted up on the branch pipe.
3. The carbon filter device for laver wastewater treatment as set forth in claim 2, wherein: each branch pipe is provided with two rows of water spraying holes, the two rows of water spraying holes extend along the length direction of the branch pipe and are symmetrically arranged at the middle lower part of the cross section of the water pipe.
4. The carbon filter device for laver wastewater treatment according to claim 1, wherein: the carbon layer has two layers, and a manhole is arranged at the position, corresponding to each layer of the carbon layer, on the tank body.
5. The carbon filter device for laver wastewater treatment according to claim 1, wherein: the water inlet pipe is led out from the upper end enclosure and then extends downwards along the side surface of the tank body; the water outlet pipe is led out from the lower end enclosure and then extends upwards along the side surface of the tank body; the inlet tube with the outlet pipe is located same one side of the jar body.
6. The carbon filter device for laver wastewater treatment as set forth in claim 5, wherein: the water inlet pipe is connected with two water inlet branch pipes; and the water outlet pipe is connected with two water outlet branch pipes.
7. The carbon filter device for laver wastewater treatment according to claim 1, wherein: the water distribution pipe is connected with the upper end enclosure through connecting rods, and the number of the connecting rods is multiple.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021553086.8U CN213159533U (en) | 2020-07-31 | 2020-07-31 | Carbon filter device for laver wastewater treatment |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021553086.8U CN213159533U (en) | 2020-07-31 | 2020-07-31 | Carbon filter device for laver wastewater treatment |
Publications (1)
Publication Number | Publication Date |
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CN213159533U true CN213159533U (en) | 2021-05-11 |
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Family Applications (1)
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CN202021553086.8U Active CN213159533U (en) | 2020-07-31 | 2020-07-31 | Carbon filter device for laver wastewater treatment |
Country Status (1)
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CN (1) | CN213159533U (en) |
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2020
- 2020-07-31 CN CN202021553086.8U patent/CN213159533U/en active Active
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