CN209740850U - Waste water recycling pond - Google Patents

Waste water recycling pond Download PDF

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Publication number
CN209740850U
CN209740850U CN201920354931.XU CN201920354931U CN209740850U CN 209740850 U CN209740850 U CN 209740850U CN 201920354931 U CN201920354931 U CN 201920354931U CN 209740850 U CN209740850 U CN 209740850U
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China
Prior art keywords
tank
filter tank
water
filter
activated carbon
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Active
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CN201920354931.XU
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Chinese (zh)
Inventor
陈培珍
葛尧东
吕渊
王新霞
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Xinchang Hengda Construction Co Ltd
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Xinchang Hengda Construction Co Ltd
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Abstract

The utility model provides a waste water recycle pond, a serial communication port, including primary filter tank, intermediate filter tank and water catch bowl, and adjacent in proper order from high to low range, primary filter tank is equipped with filter equipment with the same wall inner chamber of intermediate filter tank, filter equipment is vertical in primary filter tank and intermediate filter tank junction up end, filter equipment includes fixed frame, the carriage, handle and non-woven fabrics, primary filter tank is equipped with the activated carbon board with the same wall inboard of intermediate filter tank, filter equipment is ninety degree angle installation with the activated carbon board, filter equipment length and the unanimous table of activated carbon board length. The active carbon face is equipped with the round hole, and intermediate filter tank opposite side wall inner chamber is equipped with the boiling stone board perpendicularly, the utility model discloses rational in infrastructure, it is effectual through setting up elementary filter tank, intermediate filter tank and the tertiary pond waste water purification in water catch bowl, water purification efficiency is fast, makes waste water, waste water reuse, promotes economic benefits.

Description

Waste water recycling pond
Technical Field
The utility model relates to a waste water treatment retrieves the field, in particular to waste water recycle pond.
Background
In the engineering of cleaning construction site trucks, because the truck is bulky, the water consumption that so needs is also big, uses a large amount of water resources can cause high economic cost, also can cause a large amount of waste water simultaneously, and the main suspended solid is fixed particle in the waste water also, causes the water pipe to block up and pollutes the water easily, destroys ecological environment.
According to chinese patent No. CN206395972U, a waste water recycling system for fluorite powder sedimentation tank is disclosed, which comprises a primary sedimentation tank, an overflow port is provided at the bottom of the right wall of the primary sedimentation tank, a primary filter screen is provided on the right side of the inner cavity of the primary sedimentation tank, and the top right side of the primary filter screen is arranged at the top of the overflow port.
However, in the above solution, the wastewater needs to be transferred manually or mechanically, and a large amount of electricity needs to be supplied for pumping and draining, so that the filter plate cannot be replaced and cleaned, and the longer the filter plate is used, the poorer the purification effect is.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing a waste water recycle pond, it is good to have waste water purifying effect, and water purification efficiency is fast, makes waste water, waste water reuse, promotes economic benefits's advantage.
The above technical purpose of the present invention can be achieved by the following technical solutions: the utility model provides a waste water recovery utilizes pond, includes elementary filtering ponds, intermediate level filtering ponds and water catch bowl, and in proper order adjacent from highly arranging to the low from the height, elementary filtering ponds are equipped with filter equipment with the same wall inner chamber of intermediate level filtering ponds, filter equipment is vertical in elementary filtering ponds and intermediate level filtering ponds junction up end, filter equipment includes fixed frame, carriage, handle and non-woven fabrics, elementary filtering ponds are equipped with the activated carbon board with the same wall inboard of intermediate level filtering ponds, filter equipment is ninety degree angle installation with the activated carbon board, filter equipment length and the unanimous table of activated carbon board length. The active carbon face is equipped with the round hole, the wall inner chamber of the other side of middle-level filtering ponds is equipped with the boiling stone board perpendicularly.
Adopt above-mentioned technical scheme, through setting up three not co-altitude cell body, when liquid level height and middle level filtering ponds highly uniform in the primary filter tank, water can be automatic keeps apart the purification to the impurity of waste water from primary filter tank flow direction middle level filtering ponds, conveniently change inside non-woven fabrics through setting up the carriage that can take out, improve the live time of non-woven fabrics, promote economic benefits, utilize the inside non-woven fabrics of filter equipment to keep apart the purification to the impurity in the waste water, utilize the same principle, water in the middle level filtering ponds can automatic flow direction catch basin, utilize the activated carbon board to keep apart the purification to the tiny granule in the waste water, guarantee simultaneously that the waste water that has handled from filter equipment can both flow through the activated carbon board, utilize boiling stone board to adsorb the heavy metal in the waste water and keep apart, through tertiary purification treatment, improve waste water purification.
Preferably, the bottom of the primary filter tank is provided with a waste collection tank, the waste collection tank is rectangular and is provided with a groove inside, two sliding rails are arranged below the waste collection tank, and the waste collection tank is connected with the sliding rails in a sliding mode.
Adopt above-mentioned technical scheme, can collect more wastes material through the collecting box recess, a large amount of wastes material can lead to waste collection box weight increase to be difficult to the transport, increases the slip track, makes things convenient for the workman to shift the clearance wastes material, saves time and laborsaving again.
preferably, the fixed frame is rectangular, the sliding frame is rectangular, a rectangular through hole is formed in the sliding frame, and the non-woven fabric is located in the rectangular through hole.
Adopt above-mentioned technical scheme, can place the non-woven fabrics in inside through the carriage that adopts the cavity design, the non-woven fabrics can play the secondary and filter, can filter small granule impurity.
Preferably, solar electric plates are arranged above the three tank bodies and are arranged from high to low in the installation sequence of the primary filter tank, the intermediate filter tank and the water collecting tank.
By adopting the technical scheme, the vacant space above the pool body is effectively utilized, the solar electric board is installed in an inclined mode, the area of the solar electric board for absorbing sunlight is increased, the absorption rate of the solar panel is improved, and the solar energy pool is energy-saving and environment-friendly.
Preferably, the primary filter tank is far away from the top end of the wall surface of the middle filter tank and is provided with a water suction pump, a water inlet of the water suction pump is connected with a sewage pipe, a sewage filter plate is arranged inside the sewage pipe, and the sewage pipe is provided with a sewage valve.
Adopt above-mentioned technical scheme, can filter the large granule waste material in the sewage pipe through being equipped with the sewage filter disc, thereby prevent that waste material from getting into the suction pump inside and causing the harm to it and influence work, improve the job stabilization nature of suction pump.
Preferably, the upper parts of two sides of the waste collection box are respectively provided with a precipitation inclined plate with the same width as the waste collection box, the cross section of the precipitation inclined plate is in a right-angled triangle shape, and the right-angled edge of the precipitation inclined plate is tightly attached to the inner wall of the primary filtering tank.
adopt above-mentioned technical scheme, the guarantee through the waste material that deposits inclined plate sediment can be smooth fall into waste collection box in, improve the collection rate of waste material, prevent simultaneously that waste material can not fall in primary filter tank interior wall bottom both sides limit corner.
Preferably, the wall surface outside the primary filter tank is provided with a storage battery, and the storage battery is electrically connected with the solar panel.
By adopting the technical scheme, the electric energy converted by the solar panel can be stored through the storage battery, so that part of electric energy is improved for the water suction pump, the purification cost is reduced, and the economic benefit is improved.
Preferably, the bottom of the wall surface of the water collecting tank far away from the middle-stage filter tank is provided with a drainage pump, the drainage pipe is connected with a drainage outlet of the drainage pump, and the drainage pipe is provided with a drainage valve.
Adopt above-mentioned technical scheme, can clap out the water of the lower liquid level of catch basin through the drain pipe for the water after the output purifies improves work efficiency, and the size of displacement can be controlled to the drainage valve, makes things convenient for workman's control water yield to discharge.
drawings
FIG. 1 is a schematic structural diagram of an embodiment;
FIG. 2 is a sectional view showing a wastewater recycling pond according to an embodiment;
FIG. 3 is a schematic structural diagram illustrating a filtering device and an activated carbon plate according to an embodiment;
FIG. 4 is a schematic diagram illustrating an internal structure of a sewage pipe according to an embodiment;
reference numerals: 1. a primary filtration tank; 2. a waste collection bin; 3. a sliding track; 4. a sedimentation sloping plate; 5. a sewage pipe; 501. a sewage filter disc; 502. a sewage valve; 6. a water pump; 7. a storage battery; 8. a solar panel; 9. fixing the cylinder; 10. a filtration device; 1001. a fixed frame; 1002. a carriage; 1003. a handle; 1004. non-woven fabrics; 11. a middle-stage filter tank; 12. an activated carbon plate; 13. a water collecting tank; 14. a zeolite plate; 15. draining pump; 16. a drain pipe; 17. a drain valve.
Detailed Description
The following is only the preferred embodiment of the present invention, the protection scope is not limited to this embodiment, and all technical solutions belonging to the idea of the present invention should belong to the protection scope of the present invention. It should also be noted that, for those skilled in the art, various modifications and decorations can be made without departing from the principle of the present invention, and such modifications and decorations should also be regarded as the protection scope of the present invention.
As shown in fig. 1, 2 and 3, a wastewater recycling tank comprises a primary filtering tank 1, a middle-stage filtering tank 11 and a water collecting tank 13, which are arranged from high to low in sequence, wherein a filtering device 10 is arranged in the same wall inner cavity of the primary filtering tank 1 and the middle-stage filtering tank 11, the filtering device 10 is vertical to the upper end surface of the joint of the primary filtering tank 1 and the middle-stage filtering tank 11, the filtering device 10 comprises a fixed frame 1001, a sliding frame 1002, a handle 1003 and non-woven fabrics 1004, an activated carbon plate 12 is arranged on the same wall inner side of the primary filtering tank 1 and the middle-stage filtering tank 11, the filtering device 10 and the activated carbon plate 12 are arranged in a ninety-degree angle manner, a round hole is arranged on the surface of the length of the filtering device 10 consistent with the length of the activated carbon plate 12, a boiling stone plate 14 is vertically arranged in the inner cavity of the other side wall of the middle-stage filtering tank 11, and when the liquid level in the primary filtering tank, water can be automatic from the 1 flow direction intermediate level filtering ponds 11 of elementary filtering ponds, conveniently change inside non-woven fabrics 1004 through setting up carriage 1002 that can take out, improve non-woven fabrics 1004's live time, promote economic benefits, utilize the inside non-woven fabrics 1004 of filter equipment 10 to keep apart the purification to the impurity in the waste water, utilize the same principle, water in the intermediate level filtering ponds 11 can automatic flow direction catch basin 13, utilize activated carbon plate 12 to keep apart the purification to the tiny particle in the waste water, guarantee simultaneously that the waste water of following filter equipment 10 processing can both flow through activated carbon plate 12, utilize boiling stone plate 14 to adsorb the heavy metal in the waste water and keep apart, through tertiary purification treatment, improve waste water purification rate, optimize the water resource.
As shown in fig. 1 and 4, the primary filter tank 1 is far away from the top end of the wall surface of the intermediate filter tank 11, the water inlet of the water pump 6 is connected with the sewage pipe 5, the sewage filter 501 is arranged inside the sewage pipe 5, the sewage pipe 5 is provided with the sewage valve 502, large-particle waste in the sewage pipe 5 can be filtered by the sewage filter 501, the waste is prevented from entering the water pump 6 and causing damage to the waste, so that the work is influenced, and the work stability of the water pump 6 is improved.
As shown in fig. 1 and 2, the storage battery 7 is arranged on the outer side wall of the primary filter tank 1, the storage battery 7 is electrically connected with the solar panel 8, and the storage battery 7 can store electric energy converted by the solar panel 8, so that a part of electric energy is increased for the water suction pump 6, the purification cost is reduced, and the economic benefit is increased.
As shown in fig. 1 and 2, the bottom of the primary filter tank 1 is provided with a waste collection tank 2, the waste collection tank 2 is rectangular and is provided with a groove, two sliding rails 3 are arranged below the waste collection tank 2, the waste collection tank 2 is connected with the sliding rails 3 in a sliding manner, more waste can be collected through the collection tank groove, a large amount of waste can cause the weight of the waste collection tank 2 to be increased and is difficult to carry, the sliding rails 3 are increased, workers can transfer and clean the waste conveniently, and time and labor are saved.
As shown in fig. 2, the upper parts of the two sides of the waste collection tank 2 are both provided with the precipitation sloping plates 4 with the same width, the cross sections of the precipitation sloping plates 4 are in right-angled triangles, the right-angled edges of the precipitation sloping plates 4 cling to the inner wall of the primary filter tank 1, the waste precipitated by the precipitation sloping plates 4 can smoothly fall into the waste collection tank 2, the collection rate of the waste is improved, and meanwhile, the waste is prevented from falling into corners of the two sides of the bottom of the inner wall of the primary filter tank 1.
As shown in fig. 1 and 3, the fixing frame 1001 is rectangular, the sliding frame 1002 is rectangular, a rectangular through hole is formed in the sliding frame 1002, the non-woven fabric 1003 is located in the rectangular through hole, the non-woven fabric 1003 can be placed inside by the aid of the hollow sliding frame 1002, the non-woven fabric 1003 can perform secondary filtration, and small-particle impurities can be filtered.
As shown in fig. 1, all be equipped with solar energy electroplax 8 above three cell bodies, solar energy electroplax 8 sets up from high to low with the installation order of primary filtering ponds 1, middle-level filtering ponds 11, catch basin 13, through effectively utilizing cell body top vacant space to solar energy electroplax 8 is installed to the slope mode, and the area of sunshine is absorbed to increase solar energy electroplax 8, improves the solar panel absorption rate, and is energy-concerving and environment-protective.
As shown in fig. 1, a drainage pump 15 is arranged at the bottom of the wall surface on one side of the water collecting tank 13 far away from the middle-stage filtering tank 11, a drainage pipe 16 is connected with a drainage port of the drainage pump 15, a drainage valve 17 is arranged on the drainage pipe 16, water with a lower liquid level in the water collecting tank 13 can be beaten out through the drainage pipe 16, purified water is output, work efficiency is improved, the drainage valve 17 can control the size of the drainage amount, and the water is conveniently drained by workers.
A specific working principle; firstly, opening the sewage valve 502, then opening the water pump 6, primarily filtering the wastewater through the sewage filter 501 to mainly filter some large-particle wastes, then feeding the wastewater into the primary filter tank 1, when the water level in the primary filter tank 1 is as high as the wall surface of the intermediate filter tank 11, the wastewater automatically flows to the intermediate filter tank 11 and flows through the filter device 10, the non-woven fabric 1004 in the filter device 10 is subjected to secondary filtration to mainly filter small particle impurities, then the wastewater flows through the activated carbon plate 12 to perform third filtration to mainly filter fine particles, then the wastewater flows through the activated carbon plate 12 to perform fourth filtration to mainly filter heavy metals, and finally the wastewater flows through the drain pipe 16 through the drain pump 15 to discharge purified water, when the waste collection box 2 collects a certain amount of waste, the waste collection box 2 can be taken out through the slide rail 3 for waste disposal.

Claims (8)

1. The utility model provides a waste water recycle pond, its characterized in that includes elementary filtering ponds (1), intermediate level filtering ponds (11) and water catch bowl (13), and in proper order adjacent from arranging according to the height from high to low, the same wall inner chamber of elementary filtering ponds (1) and intermediate level filtering ponds (11) is equipped with filter equipment (10), filter equipment (10) are vertical in elementary filtering ponds (1) and intermediate level filtering ponds (11) junction up end, filter equipment (10) include fixed frame (1001), carriage (1002), handle (1003) and non-woven fabrics (1004), elementary filtering ponds (1) are equipped with activated carbon plate (12) with the same wall inboard of intermediate level filtering ponds (11), filter equipment (10) are ninety degree angle installation with activated carbon plate (12), filter equipment (10) length and activated carbon plate (12) length unanimous table, the activated carbon plate (12) is provided with a round hole, and the inner cavity of the wall surface at the other side of the middle-stage filter tank (11) is vertically provided with a boiling stone plate (14).
2. A wastewater recycling pond according to claim 1, characterized in that the bottom of the primary filtering pond (1) is provided with a waste collection tank (2), the waste collection tank (2) is rectangular and has a groove, two sliding rails (3) are arranged below the waste collection tank (2), and the waste collection tank (2) is connected with the sliding rails (3) in a sliding way.
3. A waste water recycling pond according to claim 2, characterized in that said fixed frame (1001) is rectangular, said carriage (1002) has a rectangular through hole formed therein, and said non-woven fabric (1004) is located in said elongated through hole.
4. A wastewater recycling tank according to claim 3, characterized in that solar electric panels (8) are arranged above all the three tanks, and the solar electric panels (8) are arranged from high to low in the order of the primary filtering tank (1), the intermediate filtering tank (11) and the collecting tank (13).
5. The wastewater recycling pool according to claim 4, wherein the primary filtering pool (1) is provided with a water pump (6) at the top of the wall surface far away from the intermediate filtering pool (11), the water inlet of the water pump (6) is connected with a sewage pipe (5), a sewage filter (501) is arranged in the sewage pipe (5), and the sewage pipe (5) is provided with a sewage valve (502).
6. The wastewater recycling pool according to claim 5, wherein the two sides of the waste collection tank (2) are respectively provided with a precipitation inclined plate (4) with the same width as the waste collection tank, the cross section of the precipitation inclined plate (4) is in a right triangle shape, and the right angle side of the precipitation inclined plate is tightly attached to the inner wall of the primary filter tank (1).
7. A wastewater recycling tank according to claim 6, characterized in that the outer side wall of said primary filtering tank (1) is provided with a storage battery (7), and said storage battery (7) is electrically connected with a solar panel (8).
8. The wastewater recycling pool according to claim 7, wherein the bottom of the wall surface of the water collecting pool (13) far away from the intermediate filtering pool (11) is provided with a drainage pump (15), the drainage pipe (16) is connected with the drainage port of the drainage pump (15), and the drainage pipe (16) is provided with a drainage valve (17).
CN201920354931.XU 2019-03-20 2019-03-20 Waste water recycling pond Active CN209740850U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201920354931.XU CN209740850U (en) 2019-03-20 2019-03-20 Waste water recycling pond

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201920354931.XU CN209740850U (en) 2019-03-20 2019-03-20 Waste water recycling pond

Publications (1)

Publication Number Publication Date
CN209740850U true CN209740850U (en) 2019-12-06

Family

ID=68717585

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201920354931.XU Active CN209740850U (en) 2019-03-20 2019-03-20 Waste water recycling pond

Country Status (1)

Country Link
CN (1) CN209740850U (en)

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