CN216837422U - Garbage transfer station leachate wastewater treatment integrated equipment - Google Patents

Garbage transfer station leachate wastewater treatment integrated equipment Download PDF

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CN216837422U
CN216837422U CN202123136829.9U CN202123136829U CN216837422U CN 216837422 U CN216837422 U CN 216837422U CN 202123136829 U CN202123136829 U CN 202123136829U CN 216837422 U CN216837422 U CN 216837422U
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pipe
water
frame
inlet pipe
fixedly communicated
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CN202123136829.9U
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胡峰
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HEFEI LONRY ENVIRONMENT TECHNOLOGY CO LTD
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HEFEI LONRY ENVIRONMENT TECHNOLOGY CO LTD
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Abstract

The utility model discloses a rubbish transfer station filtration liquid waste water treatment integration is equipped relates to filtration liquid processing apparatus technical field. The utility model discloses a deposit water frame, drainage frame and water proof frame, deposit water frame cover and establish outside the drainage frame, the drainage frame cover is established outside the water proof frame, and water proof frame internal rotation is provided with advance pencil, inlet tube and the blow off pipe that establish of overlapping in proper order, advances the fixed intercommunication in pencil upper end and has the medicine subassembly that spouts of setting in depositing water frame, and the fixed intercommunication in inlet tube upper end has the play water component of setting in depositing water frame, and blow off pipe upper end one side is rotated the intercommunication and is had the roll collecting vessel of setting on depositing water frame. The utility model discloses an it is integrated as a whole with the flocculation treatment device of filtration liquid to set up to the prototype, the at utmost has reduced area, and will intake, advance medicine, flocculation, blowdown and the process of going out water go on at the same time, improve work efficiency, through setting up the effectual use cost that has reduced of circulation air entrainment subassembly.

Description

Garbage transfer station leachate wastewater treatment integrated equipment
Technical Field
The utility model relates to a filtration liquid processing apparatus technical field, concretely relates to rubbish transfer station filtration liquid waste water treatment integration is equipped.
Background
The landfill leachate is a kind of refractory wastewater with high organic matter and high ammonia nitrogen concentration. The garbage transfer station leachate is a mixture of leachate generated in the garbage compression process, domestic sewage, kitchen sewage, in-station ground washing water and other various kinds of wastewater, and has high COD (chemical oxygen demand), BOD (biological oxygen demand), ammonia nitrogen concentration and high treatment difficulty.
Leachate is inside to contain a large amount of water debris that melt when handling, need carry out flocculation treatment and just can separate it, but current leachate treatment plant can not be effective quick separate out with it, need carry out the operation of many procedures multistep, current treatment plant is split type usually moreover, not only area big cost is high and the liquid circulation distance is long, has reduced the efficiency of processing and produces a large amount of residuals at the circulation in-process easily, and long-time accumulation influences the treatment effect easily, consequently the utility model provides a rubbish transfer station leachate waste water treatment integration is equipped.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a: mostly split type for solving current filtration liquid processing apparatus, area is big with high costs, and the liquid circulation distance is long moreover, can reduce the efficiency of processing and produce a large amount of residues in the circulation in-process easily, long-time accumulation influences the problem of treatment effect easily, the utility model provides a rubbish transfer station filtration liquid waste water treatment integration is equipped.
The utility model discloses a realize above-mentioned purpose and specifically adopt following technical scheme:
an integrated device for treating percolate and wastewater of a garbage transfer station comprises a water storage frame, a water filtering frame and a water-proof frame, the water storage frame is sleeved outside the water filtering frame, the water filtering frame is sleeved outside the water-proof frame, the water-proof frame is internally and rotatably provided with a medicine inlet pipe, a water inlet pipe and a sewage discharge pipe which are sleeved in sequence, the upper end of the medicine inlet pipe is fixedly communicated with a medicine spraying assembly arranged in the water storage frame, the upper end of the water inlet pipe is fixedly communicated with a water outlet assembly arranged in the water storage frame, one side of the upper end of the sewage draining pipe is rotationally communicated with a rolling collecting cylinder arranged on the water storage frame, a driving component for driving the medicine feeding pipe, the water inlet pipe and the sewage draining pipe to integrally rotate is arranged in the water isolating frame, the device is characterized in that a feeding assembly is fixedly communicated with one side of the lower end of the water inlet pipe, a circulating air-entrapping assembly communicated with the bottom of the water filtering frame is fixedly communicated with one side of the lower end of the medicine inlet pipe, and a water outlet pipe is fixedly communicated with the other side of the bottom of the water filtering frame.
Further, the blow off pipe includes that fixed connection is in the blow off pipe one of water proof frame bottom, blow off pipe one upper end is connected with changes pipe fitting one, change pipe fitting one upper end and rotate and be connected with the blow off pipe two that is located the water proof frame, the inlet tube includes the inlet tube one of fixed connection bottom in blow off pipe one, inlet tube one upper end is connected with changes pipe fitting two, change pipe fitting two upper ends and rotate and be connected with the inlet tube two that is located the water proof frame, advance the pencil and include that fixed the medicine that advances that runs through inlet tube one and blow off pipe one in the bottom manages one, it is connected with changes pipe fitting three to advance the pencil one upper end, change three upper ends of pipe fitting and rotate and be connected with the medicine that advances pipe two that is located the water proof frame.
Furthermore, the upper ends of the two pesticide inlet pipes fixedly penetrate through the upper ends of the two water inlet pipes, the pesticide spraying assembly comprises a connecting pipe which is fixedly communicated with the upper ends of the two pesticide inlet pipes and is perpendicular to the two pesticide inlet pipes, and a plurality of pesticide spraying net pipes which are vertically arranged in the water storage frame are constructed on the connecting pipe in an array mode along the length direction.
Furthermore, the rolling collecting cylinder comprises a rotating pipe which is rotatably communicated with one side of the sewage discharge pipe, the other end of the rotating pipe is fixedly communicated with a sludge hopper which is positioned above the water storage frame, and the other end of the sludge hopper is fixedly connected with a roller which is clamped at the edge of the upper end of the water storage frame.
Further, a sludge pipe is fixedly communicated with one side face of the sewage discharge pipe, a sludge pump is fixedly communicated with the other end of the sludge pipe, and a sludge discharge pipe is fixedly communicated with the other end of the sludge pump.
Further, the driving assembly comprises a gear ring which is fixedly sleeved on the outer side of the second sewage draining pipe and is positioned at the bottom in the water-resisting frame, a transmission gear meshed with the gear ring is installed in the water-resisting frame in a rotating mode, and a motor connected with the transmission gear is fixedly installed in the water-resisting frame.
Further, the feeding assembly comprises a feeding pipe which runs through the first sewage draining pipe and is fixedly communicated with one side surface of the water inlet pipe, the other end of the feeding pipe is fixedly communicated with a feeding pump, the other end of the feeding pump is fixedly communicated with a material storage frame, and a control valve is fixedly arranged in the feeding pipe.
Further, the circulating air-entrapping assembly comprises a first circulating pipe fixedly communicated with one side of the medicine inlet pipe, the other end of the first circulating pipe is fixedly communicated with an air dissolving pump, and the other end of the air dissolving pump is fixedly communicated with a second circulating pipe communicated with the bottom of the water filtering frame.
The utility model has the advantages as follows:
1. the utility model discloses an it is integrated as a whole with the flocculation treatment device of filtration liquid to set up to the prototype, the at utmost has reduced area, and will intake, advance medicine, flocculation, blowdown and go on at the same time with the process of going out water, improve work efficiency, through setting up the effectual use cost that has reduced of circulation air entrainment subassembly.
2. The utility model discloses a set up reinforced subassembly, can add the activated carbon in the intake pipe along with filtration liquid stoste synchronous entering deposit water frame, the activated carbon can effectually play the acceleration effect to the flocculating agent, makes the flocculation effect better sooner to can make the mud that the flocculation came out inseparabler, can not too loose, make things convenient for the roll collecting vessel to collect.
Drawings
FIG. 1 is a perspective view of the present invention;
fig. 2 is a plan view of the present invention;
fig. 3 is a cross-sectional view taken along the line a-a of fig. 2 in accordance with the present invention;
fig. 4 is a cross-sectional view taken in the direction B-B of fig. 2 in accordance with the present invention;
fig. 5 is a cross-sectional view taken along line C-C of fig. 2 in accordance with the present invention;
reference numerals: 1. a water storage frame; 2. a water filtering frame; 3. a waterproof frame; 4. a medicine inlet pipe; 401. a first medicine inlet pipe; 402. a third pipe rotating part; 403. a second medicine inlet pipe; 5. a water inlet pipe; 501. a first water inlet pipe; 502. a pipe rotating part II; 503. a water inlet pipe II; 6. a blow-off pipe; 601. a first sewage discharge pipe; 602. a first pipe rotating part; 603. a second sewage discharge pipe; 7. a pesticide spraying assembly; 701. a connecting pipe; 702. spraying a network pipe; 8. a water outlet assembly; 9. rolling the collecting cylinder; 901. rotating the tube; 902. a sludge hopper; 903. a roller; 10. a drive assembly; 1001. a gear ring; 1002. a transmission gear; 1003. a motor; 11. a feeding assembly; 1101. a feed pipe; 1102. a charge pump; 1103. a material storage frame; 1104. a control valve; 12. a circulating gas filling assembly; 1201. a first circulating pipe; 1202. a dissolved air pump; 1203. a second circulating pipe; 13. a water outlet pipe; 14. a sludge pipe; 15. a mud pump; 16. a sludge discharge pipe.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings in the embodiments of the present invention, and it is obvious that the described embodiments are some, but not all, embodiments of the present invention. The components of embodiments of the present invention, as generally described and illustrated in the figures herein, may be arranged and designed in a wide variety of different configurations.
As shown in figures 1-3, the integrated equipment for treating leachate and wastewater in a garbage transfer station provided by one embodiment of the invention comprises a water storage frame 1, a water filtering frame 2 and a water-proof frame 3, wherein the water storage frame 1 is sleeved outside the water filtering frame 2, the water filtering frame 2 is sleeved outside the water-proof frame 3, the water filtering frame 1 is a cylindrical frame body, the occupied area can be reduced, the cost can be saved, the water filtering frame 2 is a cylindrical frame plate with a filtering net at the middle part and is coaxially arranged with the water storage frame 1, the filtering net at the middle part can effectively flow the water source of sludge at the separation part at the middle part of the water storage frame 1 into the water filtering frame 2, the water-proof frame 3 is convenient to install the equipment and is prevented from being influenced by leachate, a medicine inlet pipe 4, a water inlet pipe 5 and a sewage discharge pipe 6 which are sequentially sleeved are arranged are rotatably arranged in the water filtering frame 3, the upper end of the medicine inlet pipe 4 is fixedly communicated with a medicine spraying component 7 arranged in the water storage frame 1, spout medicine subassembly 7 and can evenly spray the flocculating agent in water storage frame 1, accelerate reaction efficiency, the fixed intercommunication in inlet tube 5 upper end has the play water subassembly 8 of setting in water storage frame 1, play water subassembly 8 can be with the stoste in the inlet tube 5 that the intercommunication has leachate storage device rapidly to discharge into water storage frame 1, blow off pipe 6 upper end one side is rotated the intercommunication and is had the roll collecting vessel 9 that sets up on water storage frame 1, can rotate the mud of the liquid surface in water storage frame 1 through roll collecting vessel 9 and scrape, thereby enter into the mud storage device rather than the intercommunication through blow off pipe 6, install in the water proof frame 3 and be used for driving the drive assembly 10 that medicine inlet pipe 4, inlet tube 5 and blow off pipe 6 wholly rotated, can drive medicine inlet pipe 4 through drive assembly 10, the part that inlet tube 5 and blow off pipe 6 are located in water proof frame 3 rotates, thereby make spout medicine subassembly 7, The water outlet component 8 and the rolling collecting cylinder 9 rotate along the circumference of the water storage frame 1 to increase the use area and accelerate the reaction and treatment efficiency, one side of the lower end of the water inlet pipe 5 is fixedly communicated with a feeding component 11 for adding active carbon to the water inlet pipe 5 to increase the flocculation effect of a flocculating agent and enable scattered sludge to be more compact, the rolling collecting cylinder 9 is convenient to collect sludge, one side of the lower end of the medicine inlet pipe 4 is fixedly communicated with a circulating air adding component 12 communicated with the bottom of the water filtration frame 2 for adding a large amount of gas into water to enable the dissolved air water to wrap the flocculated sludge with bubbles when entering the percolate so as to enable the sludge to float to the surface, the rolling collecting cylinder 9 is more convenient to collect on the water surface, the other side of the bottom of the water filtration frame 2 is fixedly communicated with a water outlet pipe 13, the device discharges water after the raw liquid enters the treatment in the water storage frame 1, the distance that the liquid flowed through has greatly been reduced, has reduced the problem that leads to the treatment effect to reduce because of debris deposit to also reduce a large amount of area, saved the cost, accelerated treatment effeciency.
As shown in figure 3, in some embodiments, the sewage draining pipe 6 comprises a first sewage draining pipe 601 fixedly connected to the bottom of the water-stop frame 3, a first pipe transfer member 602 is connected to the upper end of the first sewage draining pipe 601, a second sewage draining pipe 603 positioned in the water-stop frame 3 is rotatably connected to the upper end of the first pipe transfer member 602, the water inlet pipe 5 comprises a first water inlet pipe 501 fixedly connected to the bottom in the first sewage draining pipe 601, a second pipe transfer member 502 is connected to the upper end of the first water inlet pipe 501, a second water inlet pipe 503 positioned in the water-stop frame 3 is rotatably connected to the upper end of the second pipe transfer member 502, the first chemical inlet pipe 401 fixedly penetrates through the first water inlet pipe 501 and the bottom in the first sewage draining pipe 601, a third pipe transfer member 402 is connected to the upper end of the first chemical inlet pipe 401, a second chemical inlet pipe 403 positioned in the water-stop frame 3 is rotatably connected to the upper end of the third pipe transfer member 402, and the upper ends of the first sewage inlet pipe 6, the second water inlet pipe 5 and the chemical inlet pipe 4 are fixedly arranged, the driving component 10 is convenient to drive the rotating component to rotate, and the connection of the lower end and the other components can not be influenced.
As shown in fig. 3, in some embodiments, the upper end of the second drug inlet pipe 403 fixedly penetrates the upper end of the second water inlet pipe 503, the pesticide spraying assembly 7 includes a connecting pipe 701 fixedly connected to the upper end of the second drug inlet pipe 403 and vertically arranged therewith, a plurality of pesticide spraying net pipes 702 vertically arranged in the water storage frame 1 are configured on the connecting pipe 701 in an array manner along the length direction, and a plurality of meshes are configured on the pesticide spraying net pipes 702, so that the pesticide and the gas-dissolved water can be uniformly sprayed in the water storage frame 1.
As shown in fig. 4, in some embodiments, the rolling collecting cylinder 9 includes a rotating pipe 901 rotatably connected to one side of the sewage draining pipe 6, the other end of the rotating pipe 901 is fixedly connected to a sludge hopper 902 located above the water storage frame 1, the other end of the sludge hopper 902 is fixedly connected to a roller 903 which is clamped on the edge of the upper end of the water storage frame 1 in a rolling manner, when the driving component 10 drives the sewage draining pipe 6 to rotate, the rotating pipe 901 can be driven to rotate around the axis of the water storage frame 1, and the roller 903 is caused to roll along the edge of the water storage frame 1, so as to drive the sludge hopper 902 to rotate to collect the sludge on the liquid surface.
As shown in fig. 3, in some embodiments, a sludge pipe 14 is fixedly communicated with the side surface of the first sewage discharge pipe 601, a sludge pump 15 is fixedly communicated with the other end of the sludge pipe 14, a sludge discharge pipe 16 is fixedly communicated with the other end of the sludge pump 15, and the internal suction force of the sludge hopper 902 can be increased through the sludge pump 15, so that the sludge on the water surface can be quickly discharged into the sludge pipe 14 for discharge after being dug.
As shown in fig. 3, in some embodiments, the driving assembly 10 includes a gear ring 1001 fixedly sleeved on the outer side of the second sewage drain pipe 603 and located at the bottom in the water-stop frame 3, a transmission gear 1002 engaged with the gear ring 1001 is rotatably installed in the water-stop frame 3, a motor 1003 connected with the transmission gear 1002 is fixedly installed in the water-stop frame 3, the motor 1003 drives the transmission gear 1002 to rotate, so as to drive the second sewage drain pipe 603 fixedly connected with the gear ring 1001 to rotate, so as to drive all the parts connected with the transmission gear to synchronously rotate, increase the reaction and treatment area, and accelerate the working efficiency.
As shown in fig. 5, in some embodiments, the feeding assembly 11 includes a feeding pipe 1101 penetrating through the first sewage draining pipe 601 and fixedly communicating with the side of the first water inlet pipe 501, the other end of the feeding pipe 1101 is fixedly communicating with a feeding pump 1102, the other end of the feeding pump 1102 is fixedly communicating with a storage frame 1103, a control valve 1104 is fixedly installed in the feeding pipe 1101, activated carbon is added in the storage frame 1103, the activated carbon can be fed into the first water inlet pipe 501 through the feeding pump 1102, so that the activated carbon is blended into the raw liquid, and the reaction effect of the flocculant is increased, and the control valve 1104 is used for controlling the opening and closing of the feeding pipe 1101 and preventing the raw liquid from flowing back.
As shown in fig. 2 and 5, in some embodiments, the circulating aeration assembly 12 includes a first circulating pipe 1201 fixedly communicated with one side of the first drug inlet pipe 401, a dissolved air pump 1202 is fixedly communicated with the other end of the first circulating pipe 1201, a second circulating pipe 1203 fixedly communicated with the bottom of the water filtering frame 2 is fixedly communicated with the other end of the dissolved air pump 1202, water after filtration treatment of the water filtering frame 2 enters the dissolved air pump 1202 through the second circulating pipe 1203 for aeration, enters the first drug inlet pipe 401 through the first circulating pipe 1201 and is fused with the drug, and the synchronous drug enters the water storing frame 1 together, so that the drug can be sprayed more uniformly, sludge at a flocculation part can float on the water surface due to bubbles, and the collecting cylinder 9 can be collected conveniently by rolling.

Claims (8)

1. The utility model provides a rubbish transfer station filtration liquid waste water treatment integration is equipped, includes water storage frame (1), drainage frame (2) and water proof frame (3), its characterized in that, water storage frame (1) cover is established outside water storage frame (2), water filtration frame (2) cover is established outside water proof frame (3), water proof frame (3) internal rotation is provided with advance pencil (4), inlet tube (5) and blow off pipe (6) of establishing of overlapping in proper order, it has medicine spraying assembly (7) of setting in water storage frame (1) to advance pencil (4) upper end fixed intercommunication, the fixed intercommunication in inlet tube (5) upper end has water outlet assembly (8) of setting in water storage frame (1), blow off pipe (6) upper end one side is rotated the intercommunication and is had roll collecting cylinder (9) of setting on water storage frame (1), install in water proof frame (3) and be used for the drive to advance pencil (4), The device comprises a water inlet pipe (5) and a blow-off pipe (6) integrally rotating driving assembly (10), wherein a feeding assembly (11) is fixedly communicated with one side of the lower end of the water inlet pipe (5), a circulating air-entrapping assembly (12) communicated with the bottom of a water filtering frame (2) is fixedly communicated with one side of the lower end of a medicine inlet pipe (4), and a water outlet pipe (13) is fixedly communicated with the other side of the bottom of the water filtering frame (2).
2. The integrated refuse transfer station leachate/wastewater treatment equipment as claimed in claim 1, wherein the blowdown pipe (6) comprises a first blowdown pipe (601) fixedly connected to the bottom of the water-stop frame (3), the upper end of the first blowdown pipe (601) is connected with a first transfer pipe (602), the upper end of the first transfer pipe (602) is rotatably connected with a second blowdown pipe (603) positioned in the water-stop frame (3), the water inlet pipe (5) comprises a first water inlet pipe (501) fixedly connected to the bottom of the first blowdown pipe (601), the upper end of the first water inlet pipe (501) is connected with a second transfer pipe (502), the upper end of the second transfer pipe (502) is rotatably connected with a second water inlet pipe (503) positioned in the water-stop frame (3), the chemical inlet pipe (4) comprises a first chemical inlet pipe (401) fixedly penetrating through the first water inlet pipe (501) and the bottom of the first blowdown pipe (601), the upper end of the first medicine inlet pipe (401) is connected with a third rotating pipe fitting (402), and the upper end of the third rotating pipe fitting (402) is rotatably connected with a second medicine inlet pipe (403) located in the water-resisting frame (3).
3. The integrated garbage transfer station leachate wastewater treatment equipment as claimed in claim 2, wherein the upper end of the second pesticide inlet pipe (403) is fixedly penetrated through the upper end of the second water inlet pipe (503), the pesticide spraying assembly (7) comprises a connecting pipe (701) which is fixedly communicated with the upper end of the second pesticide inlet pipe (403) and is arranged perpendicular to the upper end of the second pesticide inlet pipe, and a plurality of pesticide spraying pipe nets (702) which are vertically arranged in the water storage frame (1) are constructed on the connecting pipe (701) in an array manner along the length direction.
4. The integrated garbage transfer station percolate and wastewater treatment equipment as claimed in claim 1, wherein the rolling collection cylinder (9) comprises a rotating pipe (901) which is rotatably communicated with one side of the sewage discharge pipe (6), the other end of the rotating pipe (901) is fixedly communicated with a sludge hopper (902) which is positioned above the water storage frame (1), and the other end of the sludge hopper (902) is fixedly connected with a roller (903) which is clamped at the edge of the upper end of the water storage frame (1) in a rolling manner.
5. The integrated garbage transfer station leachate wastewater treatment equipment as claimed in claim 2, wherein a sludge pipe (14) is fixedly communicated with the side surface of the first sewage discharge pipe (601), a sludge pump (15) is fixedly communicated with the other end of the sludge pipe (14), and a sludge discharge pipe (16) is fixedly communicated with the other end of the sludge pump (15).
6. The integrated garbage transfer station leachate wastewater treatment equipment as claimed in claim 2, wherein the driving assembly (10) comprises a gear ring (1001) fixedly sleeved outside the second sewage discharge pipe (603) and located at the bottom in the water-stop frame (3), a transmission gear (1002) engaged with the gear ring (1001) is rotatably installed in the water-stop frame (3), and a motor (1003) connected with the transmission gear (1002) is fixedly installed in the water-stop frame (3).
7. The integrated landfill transfer station leachate wastewater treatment equipment of claim 2, wherein the feeding assembly (11) comprises a feeding pipe (1101) which penetrates through the first drainage pipe (601) and is fixedly communicated with the side surface of the first water inlet pipe (501), the other end of the feeding pipe (1101) is fixedly communicated with a feeding pump (1102), the other end of the feeding pump (1102) is fixedly communicated with a material storage frame (1103), and a control valve (1104) is fixedly installed in the feeding pipe (1101).
8. The integrated garbage transfer station leachate wastewater treatment equipment as claimed in claim 2, wherein the circulating aeration assembly (12) comprises a first circulating pipe (1201) fixedly communicated with one side of the first chemical inlet pipe (401), the other end of the first circulating pipe (1201) is fixedly communicated with a dissolved air pump (1202), and the other end of the dissolved air pump (1202) is fixedly communicated with a second circulating pipe (1203) communicated with the bottom of the water filtering frame (2).
CN202123136829.9U 2021-12-13 2021-12-13 Garbage transfer station leachate wastewater treatment integrated equipment Active CN216837422U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202123136829.9U CN216837422U (en) 2021-12-13 2021-12-13 Garbage transfer station leachate wastewater treatment integrated equipment

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202123136829.9U CN216837422U (en) 2021-12-13 2021-12-13 Garbage transfer station leachate wastewater treatment integrated equipment

Publications (1)

Publication Number Publication Date
CN216837422U true CN216837422U (en) 2022-06-28

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ID=82108225

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202123136829.9U Active CN216837422U (en) 2021-12-13 2021-12-13 Garbage transfer station leachate wastewater treatment integrated equipment

Country Status (1)

Country Link
CN (1) CN216837422U (en)

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