Integrated buried transfer station wastewater treatment equipment
Technical Field
The application relates to the field of wastewater, in particular to an integrated buried transfer station wastewater treatment device.
Background
At present, the garbage transfer station is an important hub for collecting and treating urban garbage, is a hub for connecting a garbage generation source and an end treatment system, and is an indispensable link in the urban household garbage collecting, transporting and treating system. Along with the accelerated progress of urban process and improved living standard in China, the garbage yield is increased year by year, and the integrated buried transfer station wastewater treatment equipment is required.
In the prior art, when stirring the water in the anoxic bin, bubbles can be formed and aggregated together to form foam due to the existence of a surfactant or other substances in the water, so that the respiration of microorganisms is influenced, the efficiency of wastewater treatment is reduced, the wastewater overflows, additional treatment and cleaning are needed, and the treatment cost is increased.
Disclosure of utility model
In order to solve the problems that in the prior art, when water in an anoxic bin is stirred, bubbles are formed and gathered together to form foam due to the existence of a surfactant or other substances in the water, and the respiration of microorganisms is influenced, so that the efficiency of wastewater treatment is reduced, the wastewater overflows, additional treatment and cleaning are required, and the treatment cost is increased, the application provides an integrated buried transfer station wastewater treatment device.
The application provides an integrated buried transfer station wastewater treatment device which adopts the following technical scheme:
the utility model provides an integrated buried transfer station effluent disposal equipment, includes the grid pond, one side in grid pond fixed mounting in proper order has regulation Chi Cang, oxygen deficiency storehouse, good oxygen storehouse and membrane pond, clear water storehouse and equipment room, be equipped with the basket grid in the grid pond, seted up the water hole between grid pond and the equalizing basin storehouse, the top fixed mounting in oxygen deficiency storehouse has the driving box, and the top fixed mounting of driving box has agitator motor, be equipped with defoaming mechanism in the driving box, be equipped with rabbling mechanism in the oxygen deficiency storehouse.
Through adopting above-mentioned technical scheme, the basket grid in the grid pond can carry out preliminary filtration to the waste water that gets into in the grid pond.
Preferably, the top of the grid pool is provided with a wastewater collecting pipe, a water inlet pump is fixedly arranged in the regulating pool bin, a water pipe I is communicated between the water inlet pump and the anoxic bin, and an aeration device and a built-in curtain film are arranged in the aerobic bin and the film pool.
By adopting the technical scheme, the aeration device is started to dissolve oxygen in the air into water through strong contact with the water body, and the dissolved oxygen is also an essential element in the self-cleaning process of the water body, thereby being beneficial to oxidizing harmful substances in the water.
Preferably, a water outlet pump is arranged in the clean water bin, a water outlet of the water outlet pump is communicated with a municipal nano tube discharge pipe, a first curtain type membrane water producing pump and a second curtain type membrane water producing pump are arranged in the equipment room, a backwashing tank, an aeration fan and a sludge pump are arranged in the equipment room, and a sludge periodic discharge pipe is arranged between the sludge pump and the outside.
By adopting the technical scheme, the sludge pump can pump out the sludge and discharge the sludge through the sludge periodic discharge pipe.
Preferably, the stirring mechanism comprises a driving rod, the driving rod is rotationally connected in a driving box, the driving rod is fixedly connected with an output shaft of a stirring motor, a driving gear is fixedly connected on the driving rod, two rotating rods are symmetrically rotationally connected in the driving box, driven gears are fixedly connected on the two rotating rods, the two driven gears are meshed with the driving gears, one ends of the two rotating rods are located in an anoxic bin, and stirring blades are fixedly connected on the two rotating rods.
Through adopting above-mentioned technical scheme, drive gear utilizes with the meshing between two driven gears drive two rotary rods and rotates, and two rotary rods drive stirring leaf rotation and stir the processing to waste water.
Preferably, the defoaming mechanism comprises a reciprocating screw rod, the reciprocating screw rod is fixedly connected with the driving rod, a pin barrel is connected in a reciprocating sliding manner of the reciprocating screw rod, and two symmetrical connecting plates are fixedly connected on the outer wall of the pin barrel.
By adopting the technical scheme, the driving rod drives the reciprocating screw rod to rotate, the pin barrel slides up and down along with the reciprocating groove of the reciprocating screw rod, and the pin barrel drives the two connecting plates to move up and down.
Preferably, the bottoms of the two connecting plates are fixedly connected with vertical sliding rods, and the two vertical sliding rods penetrate through the driving box and are positioned in the anoxic bin.
By adopting the technical scheme, the two vertical sliding rods slide between the driving box and the anoxic bin, so that the two connecting plates are limited, and the vertical up-and-down movement of the two connecting plates is ensured.
Preferably, the bottom of the two vertical sliding rods is fixedly connected with a supporting plate, and a foam removing rod is fixedly arranged at the bottom of the supporting plate.
Through adopting above-mentioned technical scheme, when two perpendicular slide bars slide from top to bottom, the accessible layer board drives and goes the bubble stick and reciprocate and handle the bubble.
In summary, the present application includes at least one of the following beneficial technical effects:
1. The output shaft of the stirring motor is utilized to drive the driving rod to rotate, the driving rod drives the driving gear to rotate, the driving gear drives the two rotating rods to rotate by meshing with the two driven gears, and the two rotating rods drive the stirring blades to rotate so as to stir the wastewater;
2. The pin cylinder drives the two connecting plates to move up and down by following the reciprocating groove of the reciprocating screw rod to slide up and down, the two connecting plates drive the bubble removing rod at the bottom of the supporting plate to move up and down by limiting the two vertical sliding rods, and bubbles generated by stirring in the anoxic bin are eliminated, so that waste water overflows, additional treatment and cleaning are needed, and the treatment cost is increased.
Drawings
FIG. 1 is a schematic diagram of the overall structure of an integrated buried transfer station wastewater treatment facility according to an embodiment of the present application;
FIG. 2 is a schematic diagram of a portion A of the embodiment of the present application mainly shown in FIG. 1;
FIG. 3 is a schematic diagram of a portion B of FIG. 1 according to an embodiment of the present application;
FIG. 4 is a schematic view of a perspective view of an embodiment of the present application embodying primarily a reciprocating screw and pin cartridge;
The device comprises the following components of a grid pond, a 2, an adjusting Chi Cang, an anoxic bin, a 4, an aerobic bin, a membrane pond, a5, a clean water bin, a 6, an equipment room, a 7, a driving box, a 8, a stirring motor, a 9, a waste water collecting pipe, a 10, a basket grid, a 11, a water passing hole, a 12, a water inlet pump, a 13, an aeration device, a 14, a built-in curtain type membrane, a 15, a water outlet pump, a 16, a municipal nano tube discharge pipe, a 17, a first curtain type membrane water producing pump, a 18, a second curtain type membrane water producing pump, a 19, a backwashing tank, a 20, an aeration fan, a 21, a sludge pump, a 22, a sludge periodical discharge pipe, a 23, a driving rod, a 24, a driving gear, a 25, a rotating rod, a 26, a driven gear, a 27, a stirring blade, a 28, a pin cylinder, a 29, a connecting plate, a 30, a reciprocating screw rod, a 31, a vertical sliding rod, a 32, a supporting plate, a 33 and a defoaming rod.
Detailed Description
The present application is described in further detail below with reference to fig. 1-4.
The embodiment of the application discloses integrated buried transfer station wastewater treatment equipment.
Referring to fig. 1, the integrated buried transfer station wastewater treatment equipment comprises a grid pond 1, wherein an adjusting pond bin 2, an anoxic bin 3, an aerobic bin, a membrane pond 4, a clear water bin 5 and an equipment room 6 are sequentially and fixedly arranged on one side of the grid pond 1, a basket grid 10 is arranged in the grid pond 1, the basket grid 10 in the grid pond 1 can perform preliminary filtration on wastewater entering the grid pond 1, and a water passing hole 11 is formed between the grid pond 1 and the adjusting pond bin 2.
Referring to fig. 1 and 4, a waste water collecting pipe 9 is arranged at the top of a grid tank 1, a water inlet pump 12 is fixedly arranged in a regulating tank bin 2, a water pipe I is communicated between the water inlet pump 12 and an anoxic tank 3, an aeration device 13 and a built-in curtain membrane 14 are arranged in the aerobic tank and the membrane tank 4, the aeration device 13 is started to dissolve oxygen in air into water through strong contact with the water, dissolved oxygen is an essential element in the self-cleaning process of the water, harmful substances in the water are helped to be oxidized, a water outlet pump 15 is arranged in a clear water tank 5, a water outlet of the water outlet pump 15 is communicated with a municipal nano tube discharge pipe 16, a first curtain membrane water producing pump 17 and a second curtain membrane water producing pump 18 are arranged in a device room 6, a backwash tank 19, an aeration fan 20 and a sludge pump 21 are arranged in the device room 6, a sludge periodic discharge pipe 22 is arranged between the sludge pump 21 and the outside, and the sludge pump 21 can pump out sludge through the sludge periodic discharge pipe.
Referring to fig. 1-2, a stirring mechanism is arranged in the anoxic bin 3, the stirring mechanism comprises a driving rod 23, the driving rod 23 is rotationally connected in the driving box 7, the driving rod 23 is fixedly connected with an output shaft of the stirring motor 8, a driving gear 24 is fixedly connected to the driving rod 23, two rotating rods 25 are symmetrically rotationally connected in the driving box 7, driven gears 26 are fixedly connected to the two rotating rods 25, the two driven gears 26 are meshed with the driving gear 24, one ends of the two rotating rods 25 are positioned in the anoxic bin 3, stirring blades 27 are fixedly connected to the two rotating rods 25, the driving gear 24 drives the two rotating rods 25 to rotate by utilizing the meshing between the two driven gears 26, and the two rotating rods 25 drive the stirring blades 27 to rotate to stir the wastewater.
Referring to fig. 1-2, a driving box 7 is fixedly installed at the top of the anoxic bin 3, a stirring motor 8 is fixedly installed at the top of the driving box 7, a defoaming mechanism is arranged in the driving box 7 and comprises a reciprocating screw rod 30, the reciprocating screw rod 30 is fixedly connected with a driving rod 23, a pin barrel 28 is fixedly connected with two symmetrical connecting plates 29 on the outer wall of the pin barrel 28, the driving rod 23 drives the reciprocating screw rod 30 to rotate, the pin barrel 28 slides up and down along with a reciprocating groove of the reciprocating screw rod 30, the pin barrel 28 drives the two connecting plates 29 to move up and down, vertical slide rods 31 are fixedly connected to the bottoms of the two connecting plates 29, the two vertical slide rods 31 penetrate through the driving box 7 and are positioned in the anoxic bin 3, the two vertical slide rods 31 slide between the driving box 7 and the anoxic bin 3, limiting is facilitated for the two connecting plates 29, the two vertical slide rods 31 are ensured to move vertically up and down, a foam removing rod 33 is fixedly arranged at the bottoms of the two vertical slide rods 31, and when the two vertical slide rods 31 slide up and down, the foam removing rod 33 can be driven by a supporting plate 32 to move up and down.
The embodiment of the application relates to an integrated buried transfer station wastewater treatment device, which comprises the following implementation principles: firstly, wastewater enters a basket grid 10 in a grid pond 1 through a wastewater collecting pipe 9 to be preliminarily filtered, the filtered wastewater enters an adjusting pond bin 2 through a water hole 11, the wastewater is conveyed into an anoxic bin 3 through a water pipe I by a water inlet pump 12 to be treated, a stirring motor 8 is started, an output shaft of the stirring motor 8 drives a driving rod 23 to rotate, the driving rod 23 drives a driving gear 24 to rotate, the driving gear 24 drives two rotating rods 25 to rotate by meshing with two driven gears 26, the two rotating rods 25 drive stirring blades 27 to stir the wastewater, the driving rod 23 drives a reciprocating screw rod 30 to rotate, a pin barrel 28 slides up and down along a reciprocating groove of the reciprocating screw rod 30, the pin barrel 28 drives two connecting plates 29 to move up and down, the two connecting plates 29 are limited by two vertical sliding rods 31, the bubble removing rod 33 at the bottom of the supporting plate 32 is driven to move up and down, bubbles generated by stirring in the anoxic bin 3 are eliminated, so that waste water overflows, additional treatment and cleaning are needed, the treatment cost is increased, the stirred water can enter the anoxic bin and the membrane tank 4 through overflow holes between the anoxic bin 3 and the aerobic bin and between the anoxic bin and the membrane tank 4, the aeration device 13 is started to dissolve oxygen in air into water through strong contact with water, dissolved oxygen is an essential element in the self-cleaning process of the water, harmful substances in the oxidized water are facilitated, the built-in curtain type membrane 14 can filter the water, the first curtain type membrane water producing pump 17 can pump clean water in the aerobic bin and the membrane tank 4 into the clean water bin 5, the water outlet pump 15 can pump water out, and the water is discharged through the municipal nano tube discharging tube 16, the second curtain type membrane water producing pump 18 pumps out the water in the aerobic bin and the membrane tank 4, and conveys the water to the backwashing tank 19 for cleaning, and the sludge pump 21 pumps out the sludge and discharges the sludge through a sludge periodic discharge pipe.
The above embodiments are not intended to limit the scope of the application, so that the equivalent changes of the structure, shape and principle of the application are covered by the scope of the application.