CN113041724A - Integrated pump station with waste gas purification function - Google Patents

Integrated pump station with waste gas purification function Download PDF

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Publication number
CN113041724A
CN113041724A CN202110280022.8A CN202110280022A CN113041724A CN 113041724 A CN113041724 A CN 113041724A CN 202110280022 A CN202110280022 A CN 202110280022A CN 113041724 A CN113041724 A CN 113041724A
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CN
China
Prior art keywords
fixed
pipe
chamber
gas purification
box
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Withdrawn
Application number
CN202110280022.8A
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Chinese (zh)
Inventor
刘建华
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Individual
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Individual
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Priority to CN202110280022.8A priority Critical patent/CN113041724A/en
Publication of CN113041724A publication Critical patent/CN113041724A/en
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    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F9/00Multistage treatment of water, waste water or sewage
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • B01D46/0027Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with additional separating or treating functions
    • B01D46/0036Filters or filtering processes specially modified for separating dispersed particles from gases or vapours with additional separating or treating functions by adsorption or absorption
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • B01D46/30Particle separators, e.g. dust precipitators, using loose filtering material
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D46/00Filters or filtering processes specially modified for separating dispersed particles from gases or vapours
    • B01D46/66Regeneration of the filtering material or filter elements inside the filter
    • B01D46/69Regeneration of the filtering material or filter elements inside the filter by means acting on the cake side without movement with respect to the filter elements, e.g. fixed nozzles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D53/00Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
    • B01D53/34Chemical or biological purification of waste gases
    • B01D53/38Removing components of undefined structure
    • B01D53/40Acidic components
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D53/00Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
    • B01D53/34Chemical or biological purification of waste gases
    • B01D53/74General processes for purification of waste gases; Apparatus or devices specially adapted therefor
    • B01D53/77Liquid phase processes
    • B01D53/78Liquid phase processes with gas-liquid contact
    • CCHEMISTRY; METALLURGY
    • C25ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
    • C25BELECTROLYTIC OR ELECTROPHORETIC PROCESSES FOR THE PRODUCTION OF COMPOUNDS OR NON-METALS; APPARATUS THEREFOR
    • C25B1/00Electrolytic production of inorganic compounds or non-metals
    • C25B1/01Products
    • C25B1/02Hydrogen or oxygen
    • C25B1/04Hydrogen or oxygen by electrolysis of water
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D2258/00Sources of waste gases
    • B01D2258/02Other waste gases
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/001Processes for the treatment of water whereby the filtration technique is of importance
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/02Treatment of water, waste water, or sewage by heating
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F1/38Treatment of water, waste water, or sewage by centrifugal separation
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F1/00Treatment of water, waste water, or sewage
    • C02F2001/007Processes including a sedimentation step
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/30Hydrogen technology
    • Y02E60/36Hydrogen production from non-carbon containing sources, e.g. by water electrolysis

Abstract

The invention provides an integrated pump station with a waste gas purification function, which comprises a filter chamber, a combustion heating chamber and a waste gas purification chamber, wherein a motor bottom plate is fixed on the upper surface in the filter chamber, a motor is fixed on the lower surface of the motor bottom plate, a rotating shaft is arranged at the lower power output end of the motor, the bottom end of the rotating shaft extends into a centrifugal box, a centrifugal impeller is fixed at the bottom end of the rotating shaft, a conical block is fixed on the lower surface in the centrifugal box, the right part of the lower surface of the centrifugal box is communicated with the top end of a second lower discharge pipe, the bottom end of the second lower discharge pipe is communicated with the upper surface of a first inclined pipe, the left side surface of the centrifugal box is communicated with the right side surface of a settling box through a first middle pipe, and a triangular plate is arranged at the. The technical scheme disclosed by the invention effectively solves the technical problems that the prior art does not have three-stage water flow filtering capacity and cannot realize water flow heating, waste gas purification and the like, and is beneficial to popularization and application.

Description

Integrated pump station with waste gas purification function
Technical Field
The invention relates to the technical field of pump stations, in particular to an integrated pump station with a waste gas purification function.
Background
The integrated prefabricated pump station is lifting equipment for lifting sewage, rainwater and wastewater, is produced and assembled in a factory and then is transported to a booster pump station installed on site, and can be divided into a sewage pump station, a rainwater pump station and a river pump station. The prefabricated pump station of integration degree is high, is convenient for realize the automation, and area is little, but effective volume is high, and the appearance is pleasing to the eye, easily coordinates with the surrounding environment, and is little to the surrounding environment influence, even there is high-grade hotel next door, residence community, when administrative official working etc. place, can not give off the foul smell yet, and the influence is very little, reducible environmental problem and unnecessary the trouble that arouses. The integrated prefabricated pump station has the advantages of high automatic control degree, low maintenance and operation cost, simple construction and short construction period.
The invention of the integrated pump station with the waste gas purification function brings various conveniences to production and life of people, and the integrated pump station with the waste gas purification function plays an important role in modern production and life. However, the existing integrated pump station with the waste gas purification function often does not have the water flow tertiary filtering capability and cannot realize the technical problems of water flow heating, waste gas purification and the like, so in view of the above, research and improvement are performed on the structure and the deficiency in the prior art, and a novel integrated pump station with the waste gas purification function is provided, which can effectively solve the problems and is beneficial to the future popularization and application of the device.
Disclosure of Invention
The invention aims to provide an integrated pump station with a waste gas purification function, and aims to solve the technical problems that the prior art does not have three-level water flow filtering capacity and cannot realize water flow heating, waste gas purification and the like.
In order to achieve the aim, the invention provides an integrated pump station with an exhaust gas purification function, which comprises a filter chamber, a combustion heating chamber and an exhaust gas purification chamber, wherein a motor bottom plate is fixed on the upper surface inside the filter chamber, a motor is fixed on the lower surface of the motor bottom plate, a rotating shaft is arranged at the power output end of the lower side of the motor, the bottom end of the rotating shaft extends into the centrifugal box, a centrifugal impeller is fixed at the bottom end of the rotating shaft, a conical block is fixed on the lower surface inside the centrifugal box, the right part of the lower surface of the centrifugal box is communicated with the top end of a second lower discharge pipe, the bottom end of the second lower discharge pipe is communicated with the upper surface of a first inclined pipe, the left side surface of the centrifugal box is communicated with the right side surface of a settling box through a first middle pipe, and a triangular plate is arranged at the left part of the lower surface inside the settling box, the side of going up of setting tank be provided with the inflow pipe, the right part of the lower surface of setting tank and the top intercommunication of first calandria, the bottom of first calandria and the upper surface intercommunication of first slant pipe.
The filter chamber is internally provided with a filter box, the upper part of the left side surface of the filter box is communicated with the right side surface of the centrifugal box through a second middle pipe, the lower side surface of the filter box is provided with a flow outlet pipe, the left side surface of the filter box is communicated with the right end of a second inclined pipe, the left end of the second inclined pipe is communicated with the top end of a third lower discharge pipe, the bottom end of the third lower discharge pipe is communicated with the upper surface of the first inclined pipe, a through hole arranged on the right side surface of the filter box is contacted with the middle part of a movable inclined block, the right side surface of the movable inclined block is fixed with a first cross arm, the right end of the first cross arm is fixed with a middle ball, the left side surface and the right side surface of the middle ball are respectively contacted with a left longitudinal arm and a right longitudinal arm, the bottom ends of the left longitudinal arm and the right longitudinal arm are respectively fixedly connected with the top surface of a lower cross arm, the bottom surface of the lower cross arm is provided with a first connecting, the bottom of first connection semi-axis be connected with the top of dwang, the right flank at the middle part of dwang be fixed with square piece, the middle part of square piece be provided with first fixed rotating shaft, square piece can encircle first fixed rotating shaft and rotate, the bottom mounting of dwang have the handle.
The right part of the inside lower surface of burning heating chamber be provided with the power supply ware, the side of going up of power supply ware be provided with positive plate, negative pole piece, the top of positive plate, negative pole piece be provided with anodal electrolysis post, negative pole electrolysis post respectively, the top of anodal electrolysis post, negative pole electrolysis post stretch into the inside of electrolysis box respectively, the inside storage of electrolysis box have the pure water, the left surface of electrolysis box pass through the right flank intercommunication of air duct and plenum chamber, the left surface of plenum chamber pass through the right flank intercommunication of coupling hose and combustion chamber, the inside of combustion chamber placed fuel, the left surface of combustion chamber and the right-hand member intercommunication of third syncline pipe, the left end of third syncline pipe stretch out from the left surface of burning heating chamber.
The upper surface of the interior of the combustion heating chamber is fixedly provided with a heat-conducting plate, the left part of the lower surface of the heat-conducting plate is contacted with the top end of the combustion groove, the lower surface of the heat-conducting plate is contacted with the top end of the thermal expansion rod, the bottom end of the thermal expansion rod is contacted with the left part of the upper surface of the rotary plate, the middle part of the rotary plate is provided with a third fixed rotating shaft, the rotary plate can rotate around the third fixed rotating shaft, the right part of the lower surface of the rotary plate is fixedly connected with the top end of the drawstring, the bottom end of the drawstring is fixedly connected with the upper surface of the follow-up rotary arm, the left end of the follow-up rotary arm is fixedly provided with a bearing, the middle part of the bearing is provided with a second fixed rotating shaft, the bearing can rotate around the second fixed rotating shaft, the right part of the upper surface of the connecting hose is contacted with the lower end of the fixed end block, and the rear end of the, and the top of the right end of the follow-up rotating arm is fixedly provided with a pressing column, and the top end of the pressing column is contacted with the right part of the lower surface of the connecting hose.
The inside of exhaust purification room be provided with and remove the acid tank, the inside storage that removes the acid tank have alkaline solution, the bottom intercommunication of the top surface of removing the acid tank and aiutage, the middle part contact cooperation that the through-hole that removes the right flank setting of acid tank and horizontal pipe, the left end of horizontal pipe and the top intercommunication of vertical pipe, the bottom of vertical pipe stretch into alkaline solution's inside, the right-hand member of horizontal pipe and the top intercommunication of converging the pipe, the bottom of converging the pipe stretch out from exhaust purification room's downside, the lower part of the right flank of converging the pipe respectively with the left end intercommunication of first slant pipe, third slant pipe.
The inside upper surface of exhaust gas purification room fixed with the water tank, the lower surface of water tank be provided with the shower nozzle, the shower nozzle be provided with the sponge layer under, the downside on sponge layer be fixed with the activated carbon layer, the left end on sponge layer, activated carbon layer be fixed with left position gasket, the right-hand member on sponge layer, activated carbon layer be fixed with right position gasket, the side of going up on sponge layer about the part respectively be fixed with left position spring, right position spring, the top of left position spring, right position spring respectively with the inside upper surface of exhaust gas purification room about a fixed connection.
The utility model discloses an exhaust gas purification room, including exhaust gas purification room, side fixed guide piece, upper fixed guide piece, lower fixed guide piece, upper fixed guide piece, spray nozzle controller, lower fixed guide piece, the inside right surface of exhaust gas purification room fixed with the electric cabinet, the left part of the inside lower surface of electric cabinet and return spring's bottom fixed connection, return spring's top be fixed with the side diaphragm, the right-hand member of side diaphragm and the left surface fixed connection of the lower extreme of passive post, the top of passive post stretch out from the upper surface of electric cabinet, the right flank of the lower extreme of passive post be fixed with the conducting strip, the right flank of conducting strip and the left surface contact of upper fixed guide piece, be provided with lower fixed guide piece under the upper fixed guide piece, the right flank of lower fixed guide piece between establish ties through the wire and have first power, shower nozzle controller, the bottom fixed limiting base of lower.
The motor, the centrifugal impeller, the power supply, the spray head and the like are all assembled by the existing equipment, so the specific model and specification are not described in detail.
The invention has the beneficial effects that:
1. the components of the integrated pump station with the waste gas purification function are reliably connected, the detection and maintenance are very convenient, the realization cost is low, and the motor, the centrifugal impeller, the power supply, the spray head and the like which are involved in the equipment are all assembled by the existing equipment, so that the popularization and the application of the integrated pump station with the waste gas purification function in the technical field of future pump stations are facilitated;
2. the integrated pump station with the waste gas purification function innovatively realizes the three-stage filtration function of the pump station water flow, can effectively remove impurities in the water flow, and ensures the water quality to be pure, concretely, the upper surface of the inside of the filtration chamber is fixedly provided with a motor bottom plate, the lower surface of the motor bottom plate is fixedly provided with a motor, the lower power output end of the motor is provided with a rotating shaft, the bottom end of the rotating shaft extends into the inside of a centrifugal box, the bottom end of the rotating shaft is fixedly provided with a centrifugal impeller, the lower surface of the inside of the centrifugal box is fixedly provided with a conical block, the right part of the lower surface of the centrifugal box is communicated with the top end of a second lower discharge pipe, the bottom end of the second lower discharge pipe is communicated with the upper surface of a first inclined pipe, the left side of the centrifugal box is communicated with the right side of a settling box through a first middle pipe, and the left part of, the upper side surface of the settling tank is provided with an inflow pipe, the right part of the lower surface of the settling tank is communicated with the top end of a first downward discharging pipe, the bottom end of the first downward discharging pipe is communicated with the upper surface of a first inclined pipe, the inside of the filtering chamber is provided with a filtering tank, the upper part of the left side surface of the filtering tank is communicated with the right side surface of the centrifugal tank through a second middle pipe, the lower side surface of the filtering tank is provided with an outflow pipe, the left side surface of the filtering tank is communicated with the right end of the second inclined pipe, the left end of the second inclined pipe is communicated with the top end of a third downward discharging pipe, the bottom end of the third downward discharging pipe is communicated with the upper surface of the first inclined pipe, a through hole arranged on the right side surface of the filtering tank is contacted with the middle part of a movable inclined block, the right side surface of the movable inclined block is fixed with a first transverse arm, the right end of the first transverse arm is fixed with a middle ball, the left side surface and the right side surface of the middle, the bottom surface of the lower cross arm is provided with a first connecting half shaft, the bottom of the first connecting half shaft is connected with the top end of the rotating rod, the right side surface of the middle part of the rotating rod is fixedly provided with a square block, the middle part of the square block is provided with a first fixed rotating shaft, the square block can rotate around the first fixed rotating shaft, the bottom end of the rotating rod is fixedly provided with a handle, further, after water flows into the interior of the settling box through the inflow pipe, impurities with higher specific gravity slide down along the upper inclined plane of the triangular plate and slide into the first lower discharge pipe, after the water flows into the interior of the centrifugal box through the first middle pipe, under the rotating and stirring action of the centrifugal impeller, the impurities carry out centrifugal motion and are discharged into the second lower discharge pipe, after the water flows into the interior of the filter box through the second middle pipe, a user can rotate the handle and the rotating rod to change the transverse positions of the first cross arm and the movable oblique block, thereby realizing the, impurities which can not pass through the filtering gap at the left side of the movable inclined block are discharged into a third lower discharge pipe through a second inclined pipe;
3. the combustion heating chamber is innovatively designed to achieve a water flow heating function, oxygen is provided for combustion through an oxygen generating device, and automatic intelligent control over oxygen supply can be achieved, specifically, a power supply is arranged on the right portion of the inner lower surface of the combustion heating chamber, a positive plate and a negative plate are arranged on the upper side face of the power supply, a positive electrode electrolysis column and a negative electrode electrolysis column are respectively arranged on the tops of the positive plate and the negative plate, the top ends of the positive electrode electrolysis column and the negative electrode electrolysis column extend into an electrolysis box respectively, purified water is stored in the electrolysis box, the left side face of the electrolysis box is communicated with the right side face of a plenum chamber through an air duct, the left side face of the plenum chamber is communicated with the right side face of a combustion groove through a connecting hose, fuel is placed in the combustion groove, the left side face of the combustion groove is communicated with the right end of a third inclined tube, the left end of the third inclined pipe extends out of the left side surface of the combustion heating chamber, a heat-conducting plate is fixed on the inner upper surface of the combustion heating chamber, the left part of the lower surface of the heat-conducting plate is contacted with the top end of the combustion groove, the lower surface of the heat-conducting plate is contacted with the top end of a thermal expansion rod, the bottom end of the thermal expansion rod is contacted with the left part of the upper surface of a rotary plate, the middle part of the rotary plate is provided with a third fixed rotary shaft, the rotary plate can rotate around the third fixed rotary shaft, the right part of the lower surface of the rotary plate is fixedly connected with the top end of a drawstring, the bottom end of the drawstring is fixedly connected with the upper surface of a follow-up rotary arm, a bearing is fixed at the left end of the follow-up rotary arm, a second fixed rotary shaft is arranged at the middle part of the bearing, the bearing can rotate around the second fixed rotary shaft, the right part, the top of the right end of the follow-up rotating arm is fixed with a compression column, the top end of the compression column is contacted with the right part of the lower surface of the connecting hose, further, the power supply device electrolyzes purified water in the electrolytic tank through the anode electrolytic column and the cathode electrolytic column, generated hydrogen and oxygen are discharged into the plenum chamber through the air duct, oxygen with larger specific gravity is discharged into the combustion chamber through the connecting hose, fuel is combusted to generate heat to heat the heat conducting plate, the heat conducting plate heats water flow in the filter chamber, when the temperature of the heat conducting plate is overhigh, the thermal expansion bar expands by heating, the rotary plate is pushed to rotate anticlockwise around the third fixed rotating shaft, the follow-up rotating arm is pulled to rotate anticlockwise around the second fixed rotating shaft, the compression column fixed at the right end of the second fixed rotating shaft compresses the connecting hose, oxygen circulation in the connecting hose is reduced, and further the combustion intensity is reduced, the over-high temperature of the heat conducting plate is avoided;
4. the integrated pump station with the waste gas purification function can realize the purification effect on waste gas generated in the pump station based on a waste gas purification chamber, can realize the automatic cleaning function on a sponge layer and an activated carbon layer, and reduces the labor cost, in particular, an acid removal box is arranged in the waste gas purification chamber, alkaline solution is stored in the acid removal box, the top surface of the acid removal box is communicated with the bottom end of an exhaust funnel, a through hole arranged on the right side surface of the acid removal box is in contact fit with the middle part of a transverse guide pipe, the left end of the transverse guide pipe is communicated with the top end of a longitudinal guide pipe, the bottom end of the longitudinal guide pipe extends into the alkaline solution, the right end of the transverse guide pipe is communicated with the top end of a confluence pipe, the bottom end of the confluence pipe extends from the lower side surface of the waste gas purification chamber, the lower part of the right side surface of the confluence pipe is respectively communicated with the left ends of a first oblique pipe, the upper surface of the interior of the waste gas purification chamber is fixed with a water tank, the lower surface of the water tank is provided with a spray head, a sponge layer is arranged right below the spray head, an activated carbon layer is fixed on the lower side surface of the sponge layer, a left sealing sheet is fixed on the sponge layer and the left end of the activated carbon layer, a right sealing sheet is fixed on the right end of the sponge layer and the right end of the activated carbon layer, a left spring and a right spring are respectively fixed on the left part and the right part of the upper surface of the interior of the waste gas purification chamber, an electric cabinet is fixed on the right surface of the interior of the waste gas purification chamber, the left part of the lower surface of the interior of the electric cabinet is fixedly connected with the bottom end of a return spring, a side transverse plate is fixed on the top end of the return spring, the right end of the side transverse plate is fixedly connected with the left side surface of the lower end of a passive column, the top end of the passive column extends out of the upper surface, the right side surface of the conducting strip is contacted with the left side surface of the upper fixed guide strip, a lower fixed guide strip is arranged right below the upper fixed guide strip, a first power supply and a spray nozzle controller are connected in series between the right side surfaces of the upper fixed guide strip and the lower fixed guide strip through a lead, a limiting base is fixed at the bottom end of the lower fixed guide strip, further, waste gas in the filtering chamber and the combustion heating chamber is discharged into an acid removing box through a converging pipe, a transverse guide pipe and a longitudinal guide pipe, the waste gas is subjected to acid removing treatment by alkaline solution, the waste gas after acid removing is discharged through an exhaust funnel, impurities in the waste gas are absorbed by a sponge layer and an activated carbon layer, the sponge layer which absorbs excessive impurities and the activated carbon layer overcome the force of spring to displace downwards under the action of gravity, a driven column is pressed to move downwards, the right side surface of the conducting strip is contacted and communicated with the left side surfaces of the upper fixed guide strip and the lower fixed guide strip, and the spray, so as to realize the automatic cleaning of the sponge layer and the activated carbon layer.
In addition to the objects, features and advantages described above, other objects, features and advantages of the present invention are also provided. The present invention will be described in further detail below.
Drawings
FIG. 1 is a schematic diagram of an axial side projection structure of the overall structure of the device of the present invention.
Fig. 2 is a front view of the overall structure of the device of the present invention.
Fig. 3 is a left side view of the overall structure of the device of the present invention.
FIG. 4 is a schematic top view of the overall structure of the device of the present invention.
Figure 5 is a schematic view of the internal structure of the filtering chamber according to the present invention.
Figure 6 is a cross-sectional internal structure schematic view of the filtering chamber of the present invention.
Fig. 7 is a schematic view of the internal structure of the combustion heating chamber according to the present invention.
Fig. 8 is a schematic sectional view of the inside of the combustion heating chamber according to the present invention.
Fig. 9 is a schematic view of the internal structure of the exhaust gas purifying chamber according to the present invention.
Fig. 10 is a schematic view of an internal structure of the electric cabinet according to the present invention.
1. A filter chamber, 2, a combustion heating chamber, 3, an exhaust gas purification chamber, 4, a motor bottom plate, 5, a motor, 6, a rotation shaft, 7, a centrifugal impeller, 8, an inflow pipe, 9, a settling tank, 10, a triangular plate, 11, a first downward discharge pipe, 12, a first slant pipe, 13, a first intermediate pipe, 14, a centrifugal tank, 15, a conical block, 16, a second downward discharge pipe, 17, a second intermediate pipe, 18, a filter tank, 19, a second slant pipe, 20, a third downward discharge pipe, 21, a movable slant block, 22, an outflow pipe, 23, a first cross arm, 24, an intermediate ball, 25, a left longitudinal arm, 26, a right longitudinal arm, 27, a lower cross arm, 28, a first connection half shaft, 29, a rotation shaft, 30, a square block, 31, a first fixed rotation shaft, 32, a handle, 33, a heat conduction plate, 34, a combustion tank, 35, fuel, 36, an anode electrolysis column, 37, a cathode electrolysis column, 38. an electrolytic tank, 39, purified water, 40, a gas guide tube, 41, a plenum chamber, 42, a fixed end block, 43, a connecting hose, 44, a compression column, 45, a follower rotating arm, 46, a bearing, 47, a second fixed rotating shaft, 48, a drawstring, 49, a rotating plate, 50, a third fixed rotating shaft, 51, a heat expansion rod, 52, a third inclined tube, 53, a converging tube, 54, a transverse conduit, 55, a longitudinal conduit, 56, an alkaline solution, 57, an acid removal tank, 58, an exhaust tube, 59, an activated carbon layer, 60, a sponge layer, 61, a left sealing sheet, 62, a right sealing sheet, 63, a left spring, 64, a right spring, 65, an electric cabinet, 66, a passive column, 67, a side transverse sheet, 68, a return spring, 69, a conducting sheet, 70, an upper fixed guide sheet, 71, a lower fixed guide sheet, 72, a conducting wire, 73, a first power supply, 74, a spray head controller, 75 and a limit base, 76. a power supply unit 77, a positive plate 78, a negative plate 79, a water tank 80 and a spray head.
Detailed Description
The invention is described in detail below with reference to the attached drawing figures:
referring to fig. 1 to 10, the integrated pump station with an exhaust gas purification function according to the present invention includes a filter chamber 1, a combustion heating chamber 2, and an exhaust gas purification chamber 3, wherein a motor bottom plate 4 is fixed to an upper surface inside the filter chamber 1, a motor 5 is fixed to a lower surface of the motor bottom plate 4, a rotating shaft 6 is provided at a lower power output end of the motor 5, a bottom end of the rotating shaft 6 extends into a centrifugal chamber 14, a centrifugal impeller 7 is fixed to a bottom end of the rotating shaft 6, a conical block 15 is fixed to a lower surface inside the centrifugal chamber 14, a right portion of a lower surface of the centrifugal chamber 14 communicates with a top end of a second lower discharge pipe 16, a bottom end of the second lower discharge pipe 16 communicates with an upper surface of a first inclined pipe 12, a left side surface of the centrifugal chamber 14 communicates with a right side surface of a settling chamber 9 through a first intermediate pipe 13, the left part of the inside lower surface of setting tank 9 be provided with set-square 10, the side of going up of setting tank 9 be provided with inflow pipe 8, the right part of the lower surface of setting tank 9 and the top intercommunication of first calandria 11, the bottom of first calandria 11 and the upper surface intercommunication of first slant pipe 12.
Further, the filtering chamber 1 is provided with a filtering box 18 inside, the upper portion of the left side of the filtering box 18 is communicated with the right side of the centrifugal box 14 through a second middle pipe 17, the lower side of the filtering box 18 is provided with a flow outlet pipe 22, the left side of the filtering box 18 is communicated with the right end of a second inclined pipe 19, the left end of the second inclined pipe 19 is communicated with the top end of a third lower discharge pipe 20, the bottom end of the third lower discharge pipe 20 is communicated with the upper surface of the first inclined pipe 12, a through hole arranged on the right side of the filtering box 18 is contacted with the middle of a movable inclined block 21, the right side of the movable inclined block 21 is fixed with a first cross arm 23, the right end of the first cross arm 23 is fixed with an intermediate ball 24, the left side and the right side of the intermediate ball 24 are respectively contacted with a left longitudinal arm 25 and a right longitudinal arm 26, the left longitudinal arm 25, the right longitudinal arm 25, the left longitudinal arm and the right longitudinal, The bottom of right position longitudinal wall 26 respectively with the top surface fixed connection of lower xarm 27, the bottom surface of lower xarm 27 be provided with first connection semi-axis 28, the bottom of first connection semi-axis 28 be connected with the top of dwang 29, the right flank at the middle part of dwang 29 be fixed with square piece 30, the middle part of square piece 30 be provided with first fixed rotating shaft 31, square piece 30 can encircle first fixed rotating shaft 31 and rotate, the bottom mounting of dwang 29 have handle 32. Furthermore, the device can realize the three-stage filtering function of the water flow of the pump station, effectively remove impurities in the water flow, ensure the water quality to be pure, after the water flow flows into the interior of the settling tank 9 through the inflow pipe 8, the impurities with higher specific gravity slide down along the upper inclined plane of the triangular plate 10 and fall into the first lower discharge pipe 11, the water flow flows into the centrifugal box 14 through the first middle pipe 13, under the rotating and stirring action of the centrifugal impeller 7, the impurities are centrifugally moved and discharged into the second discharging pipe 16, after the water flows into the interior of the filter tank 18 through the second intermediate pipe 17, the user can rotate the handle 32 and the lever 29 to change the lateral positions of the first crossbar 23 and the movable slant block 21, further, the left side filtering gap of the movable inclined block 21 is adjusted, and the impurities which cannot pass through the left side filtering gap of the movable inclined block 21 are discharged into the third downward discharge pipe 20 through the second inclined pipe 19.
Further, the right part of the inner lower surface of the combustion heating chamber 2 is provided with a power supply 76, the upper side of the power supply 76 is provided with a positive plate 77 and a negative plate 78, the tops of the positive plate 77 and the negative plate 78 are respectively provided with a positive electrode electrolysis column 36 and a negative electrode electrolysis column 37, the top ends of the anode electrolytic column 36 and the cathode electrolytic column 37 respectively extend into the electrolytic tank 38, the inside of the electrolytic tank 38 is stored with pure water 39, the left side surface of the electrolytic tank 38 is communicated with the right side surface of the plenum chamber 41 through the air duct 40, the left side surface of the inflation chamber 41 is communicated with the right side surface of the combustion groove 34 through a connecting hose 43, the fuel 35 is placed in the combustion groove 34, the left side surface of the combustion groove 34 is communicated with the right end of the third inclined pipe 52, and the left end of the third inclined pipe 52 extends out of the left side surface of the combustion heating chamber 2.
Further, a heat conducting plate 33 is fixed on the upper surface inside the combustion heating chamber 2, the left portion of the lower surface of the heat conducting plate 33 is in contact with the top end of the combustion groove 34, the lower surface of the heat conducting plate 33 is in contact with the top end of a thermal expansion rod 51, the bottom end of the thermal expansion rod 51 is in contact with the left portion of the upper surface of a rotary plate 49, a third fixed rotating shaft 50 is arranged in the middle of the rotary plate 49, the rotary plate 49 can rotate around the third fixed rotating shaft 50, the right portion of the lower surface of the rotary plate 49 is fixedly connected with the top end of a pull belt 48, the bottom end of the pull belt 48 is fixedly connected with the upper surface of a follow-up rotating arm 45, a bearing 46 is fixed at the left end of the follow-up rotating arm 45, a second fixed rotating shaft 47 is arranged in the middle of the bearing 46, the bearing 46 can rotate around the second fixed rotating shaft 47, the right portion of the upper surface of the connecting hose 43 is in contact with the lower end of the fixed, the rear end of the fixed end block 42 is fixedly connected to the rear surface of the interior of the combustion heating chamber 2, the top of the right end of the follower rotating arm 45 is fixed with a pressing column 44, and the top end of the pressing column 44 is in contact with the right portion of the lower surface of the connecting hose 43. The device can realize the combustion heating function of water flow, provide oxygen for combustion through an oxygen making device, and realize the automatic intelligent control of oxygen supply amount, a power supply device 76 electrolyzes purified water 39 in an electrolytic tank 38 through an anode electrolytic column 36 and a cathode electrolytic column 37, generated hydrogen and oxygen are discharged into a plenum chamber 41 through a gas guide pipe 40, oxygen with larger specific gravity is discharged into a combustion groove 34 through a connecting hose 43, fuel 35 is combusted to generate heat to supply heat to a heat conduction plate 33, the heat conduction plate 33 heats water flow in a filter chamber 1, when the temperature of the heat conduction plate 33 is overhigh, a thermal expansion bar 51 is heated to expand and lengthen, a rotary plate 49 is pushed to rotate anticlockwise around a third fixed rotating shaft 50, a follow-up rotary arm 45 is pulled to rotate anticlockwise around a second fixed rotating shaft 47 through a pull belt 48, a compression column 44 fixed at the right end of the second fixed rotating shaft 47 compresses the connecting hose 43, the oxygen circulation in the connecting hose 43 is reduced, the combustion intensity is reduced, and the over-high temperature of the heat conducting plate 33 is avoided.
Further, an acid removing tank 57 is disposed inside the exhaust gas purifying chamber 3, an alkaline solution 56 is stored inside the acid removing tank 57, the top surface of the acid removing tank 57 is communicated with the bottom end of an exhaust funnel 58, a through hole disposed on the right side surface of the acid removing tank 57 is in contact fit with the middle of the transverse conduit 54, the left end of the transverse conduit 54 is communicated with the top end of the longitudinal conduit 55, the bottom end of the longitudinal conduit 55 extends into the alkaline solution 56, the right end of the transverse conduit 54 is communicated with the top end of the junction pipe 53, the bottom end of the junction pipe 53 extends from the lower side surface of the exhaust gas purifying chamber 3, and the lower portion of the right side surface of the junction pipe 53 is respectively communicated with the left ends of the first inclined pipe 12 and the third inclined pipe 52.
Further, the inside upper surface of exhaust gas purification room 3 fixed with water tank 79, water tank 79's lower surface be provided with shower nozzle 80, shower nozzle 80 be provided with sponge layer 60 under, sponge layer 60's downside be fixed with activated carbon layer 59, sponge layer 60, activated carbon layer 59's left end be fixed with left position gasket 61, the right-hand member of sponge layer 60, activated carbon layer 59 be fixed with right position gasket 62, sponge layer 60 about the portion of going up the side be fixed with left position spring 63, right position spring 64 respectively, the top of left position spring 63, right position spring 64 respectively with the inside upper surface of exhaust gas purification room 3 about the portion fixed connection.
Furthermore, an electric cabinet 65 is fixed on the right surface of the interior of the exhaust gas purification chamber 3, the left part of the lower surface of the interior of the electric cabinet 65 is fixedly connected with the bottom end of a return spring 68, a side transverse plate 67 is fixed at the top end of the return spring 68, the right end of the side transverse plate 67 is fixedly connected with the left side surface of the lower end of the driven column 66, the top end of the passive column 66 extends out from the upper surface of the electric cabinet 65, a conducting strip 69 is fixed on the right side surface of the lower end of the passive column 66, the right side surface of the conducting strip 69 contacts with the left side surface of the upper fixed guide strip 70, a lower fixed guide strip 71 is arranged right below the upper fixed guide strip 70, a first power source 73 and a nozzle controller 74 are connected in series between the right side surfaces of the upper fixed guide vane 70 and the lower fixed guide vane 71 through a wire 72, and a limiting base 75 is fixed at the bottom end of the lower fixed guide vane 71. Furthermore, the device of the invention can realize the purification effect of waste gas generated in a pump station, can realize the automatic cleaning function of the sponge layer 60 and the activated carbon layer 59, and reduce the labor cost, the waste gas in the filter chamber 1 and the combustion heating chamber 2 is discharged into the deacidification tank 57 through the converging pipe 53, the transverse conduit 54 and the longitudinal conduit 55, the alkaline solution 56 is used for deacidifying the waste gas, the waste gas after deacidification is discharged through the exhaust funnel 58, the sponge layer 60 and the activated carbon layer 59 are used for absorbing impurities in the waste gas, the sponge layer 60 and the activated carbon layer 59 which absorb excessive impurities are downwards displaced under the action of gravity against the spring force to press the driven column 66 to downwards move, the right side surface of the conducting sheet 69 is in contact communication with the left side surfaces of the upper fixed guide sheet 70 and the lower fixed guide sheet 71, the spray head controller 74 is electrified and controls the spray head 80 to spray water flow in the water tank 79, so as to realize the automatic cleaning of the sponge layer 60 and the activated carbon layer 59.
The motor 5, the centrifugal impeller 7, the power supply 76, the nozzle 80 and the like are all assembled by existing equipment, and therefore specific models and specifications are not described in detail.
The working principle of the invention is as follows:
the invention provides an integrated pump station with an exhaust gas purification function, which comprises a filter chamber 1, a combustion heating chamber 2 and an exhaust gas purification chamber 3, wherein a motor bottom plate 4 is fixed on the upper surface in the filter chamber 1, a motor 5 is fixed on the lower surface of the motor bottom plate 4, a rotating shaft 6 is arranged at the lower power output end of the motor 5, the bottom end of the rotating shaft 6 extends into a centrifugal box 14, a centrifugal impeller 7 is fixed at the bottom end of the rotating shaft 6, a conical block 15 is fixed on the lower surface in the centrifugal box 14, the right part of the lower surface of the centrifugal box 14 is communicated with the top end of a second lower discharge pipe 16, the bottom end of the second lower discharge pipe 16 is communicated with the upper surface of a first inclined pipe 12, the left side surface of the centrifugal box 14 is communicated with the right side surface of a sedimentation box 9 through a first middle pipe 13, a triangular plate 10 is arranged at the left part of the lower surface in the sedimentation box 9, the upper side of the settling tank 9 is provided with an inflow pipe 8, the right part of the lower surface of the settling tank 9 is communicated with the top end of a first downward discharging pipe 11, the bottom end of the first downward discharging pipe 11 is communicated with the upper surface of a first inclined pipe 12, the inside of the filtering chamber 1 is provided with a filtering tank 18, the upper part of the left side surface of the filtering tank 18 is communicated with the right side surface of the centrifugal tank 14 through a second intermediate pipe 17, the lower side surface of the filtering tank 18 is provided with an outflow pipe 22, the left side surface of the filtering tank 18 is communicated with the right end of a second inclined pipe 19, the left end of the second inclined pipe 19 is communicated with the top end of a third downward discharging pipe 20, the bottom end of the third downward discharging pipe 20 is communicated with the upper surface of the first inclined pipe 12, a through hole arranged on the right side surface of the filtering tank 18 is contacted with the middle part of a movable inclined block 21, and a first cross arm 23 is fixed on the right side surface of the movable inclined block 21, the right end of the first cross arm 23 is fixed with a middle ball 24, the left side surface and the right side surface of the middle ball 24 are respectively contacted with a left longitudinal arm 25 and a right longitudinal arm 26, the bottom ends of the left longitudinal arm 25 and the right longitudinal arm 26 are respectively fixedly connected with the top surface of a lower cross arm 27, the bottom surface of the lower cross arm 27 is provided with a first connecting half shaft 28, the bottom of the first connecting half shaft 28 is connected with the top end of a rotating rod 29, further, the device can realize the three-stage filtering function of the pump station water flow, effectively remove impurities in the water flow, ensure the water quality to be pure, after the water flow flows into the interior of the settling box 9 through the inflow pipe 8, the impurities with higher specific gravity slide down along the upper inclined plane of the triangular plate 10 and slide down into the first lower discharge pipe 11, after the water flow flows into the interior of the centrifugal box 14 through the first middle pipe 13, under the rotating and stirring action of the centrifugal impeller 7, the impurities are centrifugally discharged into the second discharging pipe 16, and after the water flows into the inside of the filtering box 18 through the second middle pipe 17, the user can rotate the handle 32 and the rotating rod 29 to change the transverse positions of the first cross arm 23 and the movable inclined block 21, so as to adjust the filtering gap on the left side of the movable inclined block 21, and the impurities which cannot pass through the filtering gap on the left side of the movable inclined block 21 are discharged into the third discharging pipe 20 through the second inclined pipe 19.
The right part of the inside lower surface of the combustion heating chamber 2 is provided with a power supply 76, the upper side surface of the power supply 76 is provided with a positive plate 77 and a negative plate 78, the tops of the positive plate 77 and the negative plate 78 are respectively provided with a positive electrolysis column 36 and a negative electrolysis column 37, the top ends of the positive electrolysis column 36 and the negative electrolysis column 37 respectively extend into the electrolysis chamber 38, the inside of the electrolysis chamber 38 is stored with purified water 39, the left side surface of the electrolysis chamber 38 is communicated with the right side surface of a plenum chamber 41 through an air duct 40, the left side surface of the plenum chamber 41 is communicated with the right side surface of the combustion chamber 34 through a connecting hose 43, fuel 35 is placed in the combustion chamber 34, the left side surface of the combustion chamber 34 is communicated with the right end of a third inclined tube 52, the left end of the third inclined tube 52 extends out from the left side surface of the combustion heating chamber 2, the upper surface of the interior of the combustion heating chamber 2 is fixed with a heat conducting plate 33, the left part of the lower surface of the heat conducting plate 33 is contacted with the top end of the combustion groove 34, the lower surface of the heat conducting plate 33 is contacted with the top end of a thermal expansion rod 51, the bottom end of the thermal expansion rod 51 is contacted with the left part of the upper surface of a rotary plate 49, the middle part of the rotary plate 49 is provided with a third fixed rotating shaft 50, the rotary plate 49 can rotate around the third fixed rotating shaft 50, the right part of the lower surface of the rotary plate 49 is fixedly connected with the top end of a pull belt 48, the bottom end of the pull belt 48 is fixedly connected with the upper surface of a follow-up rotating arm 45, the left end of the follow-up rotating arm 45 is fixed with a bearing 46, the middle part of the bearing 46 is provided with a second fixed rotating shaft 47, the bearing 46 can rotate around the second fixed rotating shaft 47, the right part of the upper surface of the connecting hose 43 is contacted with the lower end, the rear end of the fixed end block 42 is fixedly connected with the rear surface inside the combustion heating chamber 2, the device can realize the combustion heating function of water flow, oxygen is provided for combustion through an oxygen generating device, automatic intelligent control of oxygen supply can be realized, the power supply 76 electrolyzes purified water 39 inside the electrolytic tank 38 through the anode electrolytic column 36 and the cathode electrolytic column 37, generated hydrogen and oxygen are discharged into the plenum chamber 41 through the air duct 40, oxygen with high specific gravity is discharged into the combustion tank 34 through the connecting hose 43, the fuel 35 is combusted to generate heat, heat is supplied to the heat conduction plate 33, the heat conduction plate 33 heats the water flow inside the filtering chamber 1, when the temperature of the heat conduction plate 33 is overhigh, the heat expansion rod 51 is heated to expand and lengthen, the rotary plate 49 is pushed to rotate around the third fixed rotating shaft 50 anticlockwise, the follow-up rotary arm 45 is pulled by the pull belt 48 to rotate around the second fixed rotating shaft 47 anticlockwise, the fixed oppression post 44 in second fixed pivot 47 right-hand member oppresses coupling hose 43, reduces the inside oxygen circulation of coupling hose 43, and then reduces the intensity of combustion, avoids heat-conducting plate 33 high temperature.
The inside of exhaust gas purification room 3 be provided with deacidification case 57, the inside of deacidification case 57 store alkaline solution 56, the top surface of deacidification case 57 communicate with the bottom of aiutage 58, the through-hole that the right flank of deacidification case 57 set up contact the cooperation with the middle part of horizontal pipe 54, the left end of horizontal pipe 54 communicate with the top of vertical pipe 55, the bottom of vertical pipe 55 stretch into the inside of alkaline solution 56, the right end of horizontal pipe 54 communicate with the top of converging pipe 53, the bottom of converging pipe 53 stretches out from the downside of exhaust gas purification room 3, the lower part of the right flank of converging pipe 53 communicate with the left end of first diagonal pipe 12, third diagonal pipe 52 respectively, the inside upper surface of exhaust gas purification room 3 be fixed with water tank 79, the lower surface of water tank 79 be provided with shower nozzle 80, a sponge layer 60 is arranged right below the spray head 80, an activated carbon layer 59 is fixed on the lower side surface of the sponge layer 60, a left sealing sheet 61 is fixed on the left ends of the sponge layer 60 and the activated carbon layer 59, a right sealing sheet 62 is fixed on the right ends of the sponge layer 60 and the activated carbon layer 59, a left spring 63 and a right spring 64 are respectively fixed on the left and right parts of the upper side surface of the sponge layer 60, the top ends of the left spring 63 and the right spring 64 are respectively fixedly connected with the left and right parts of the inner upper surface of the waste gas purification chamber 3, an electric cabinet 65 is fixed on the inner right surface of the waste gas purification chamber 3, the left part of the inner lower surface of the electric cabinet 65 is fixedly connected with the bottom end of a return spring 68, a side transverse plate 67 is fixed on the top end of the return spring 68, and the right end of the side transverse plate 67 is fixedly connected with the left side surface of the lower end of a driven column 66, the top end of the driven column 66 extends out of the upper surface of the electric cabinet 65, the right side surface of the lower end of the driven column 66 is fixed with a conducting sheet 69, the right side surface of the conducting sheet 69 is contacted with the left side surface of an upper fixed guide sheet 70, a lower fixed guide sheet 71 is arranged right below the upper fixed guide sheet 70, further, the device can realize the purification effect on waste gas generated in a pump station, can realize the automatic cleaning function on the sponge layer 60 and the activated carbon layer 59, reduces the labor cost, the waste gas in the filter chamber 1 and the combustion heating chamber 2 is discharged into the deacidification tank 57 through the converging pipe 53, the transverse guide pipe 54 and the longitudinal guide pipe 55, the alkaline solution 56 is used for deacidifying the waste gas, the waste gas after deacidification is discharged through the exhaust barrel 58, the sponge layer 60 and the activated carbon layer 59 are used for absorbing impurities in the waste gas, and the sponge layer 60 which absorbs excessive impurities, The activated carbon layer 59 overcomes the spring force to move downwards under the action of gravity, the driven column 66 is pressed to move downwards, the right side surface of the conducting strip 69 is in contact communication with the left side surfaces of the upper fixed guide sheet 70 and the lower fixed guide sheet 71, the spray head controller 74 is electrified and controls the spray head 80 to spray water flow in the water tank 79, and therefore the sponge layer 60 and the activated carbon layer 59 can be automatically cleaned.
The above description is only a preferred embodiment of the present invention and is not intended to limit the present invention, and various modifications and changes may be made by those skilled in the art. Any modification, equivalent replacement, or improvement made within the spirit and principle of the present invention should be included in the protection scope of the present invention.

Claims (7)

1. The utility model provides an integration pump station that possesses exhaust-gas purification function, characterized in that, including filter chamber (1), burning heating chamber (2), exhaust-gas purification room (3), the inside upper surface of filter chamber (1) fixed with motor bottom plate (4), the lower fixed surface of motor bottom plate (4) have motor (5), the downside power take off of motor (5) be provided with rotation axis (6), the bottom of rotation axis (6) stretch into the inside of centrifuge box (14), the bottom mounting of rotation axis (6) have centrifugal impeller (7), the inside lower surface mounting of centrifuge box (14) have toper piece (15), the right part of the lower surface of centrifuge box (14) and the top intercommunication of calandria under the second (16), the bottom of calandria under the second and the upper surface intercommunication of first slant pipe (12), the left surface of centrifuge chamber (14) communicate through the right flank of first intermediate pipe (13) with setting tank (9), the left part of the inside lower surface of setting tank (9) be provided with set-square (10), the side of going up of setting tank (9) be provided with inflow pipe (8), the top intercommunication of the right part of the lower surface of setting tank (9) and first calandria (11), the bottom of first calandria (11) and the upper surface intercommunication of first slant pipe (12).
2. The integrated pump station with the exhaust gas purification function according to claim 1, characterized in that: the inside of filter chamber (1) be provided with rose box (18), the upper portion of the left surface of rose box (18) pass through the right flank intercommunication of second intermediate tube (17) and centrifugal box (14), the downside of rose box (18) be provided with out flow tube (22), the left surface of rose box (18) with the right-hand member intercommunication of second slant pipe (19), the left end of second slant pipe (19) and the top intercommunication of third lower calandria (20), the bottom of third lower calandria (20) and the upper surface intercommunication of first slant pipe (12), the through-hole that the right side of rose box (18) set up contact with the middle part of movable slant piece (21), the right flank of movable slant piece (21) be fixed with first xarm (23), the right-hand member of first xarm (23) be fixed with intermediate ball (24), the left and right sides of intermediate ball (24) respectively with left-position longitudinal arm (25), The contact of right side position longitudinal wall (26), the bottom of left side position longitudinal wall (25), right side position longitudinal wall (26) respectively with the top surface fixed connection of lower xarm (27), the bottom surface of lower xarm (27) be provided with first connection semi-axis (28), the bottom of first connection semi-axis (28) be connected with the top of dwang (29), the right flank at the middle part of dwang (29) be fixed with square piece (30), the middle part of square piece (30) be provided with first fixed rotating shaft (31), square piece (30) can encircle first fixed rotating shaft (31) and rotate, the bottom mounting of dwang (29) have handle (32).
3. The integrated pump station with the exhaust gas purification function according to claim 1, characterized in that: the right part of the inside lower surface of the combustion heating chamber (2) is provided with a power supply (76), the upper side surface of the power supply (76) is provided with a positive plate (77) and a negative plate (78), the tops of the positive plate (77) and the negative plate (78) are respectively provided with a positive electrolysis column (36) and a negative electrolysis column (37), the top ends of the positive electrolysis column (36) and the negative electrolysis column (37) respectively extend into the electrolysis box (38), purified water (39) is stored in the electrolysis box (38), the left side surface of the electrolysis box (38) is communicated with the right side surface of a plenum chamber (41) through a gas guide pipe (40), the left side surface of the plenum chamber (41) is communicated with the right side surface of the combustion chamber (34) through a connecting hose (43), fuel (35) is placed in the combustion chamber (34), and the left side surface of the combustion chamber (34) is communicated with the right end of a third inclined pipe (52), the left end of the third inclined pipe (52) extends out of the left side surface of the combustion heating chamber (2).
4. The integrated pump station with the exhaust gas purification function according to claim 1, characterized in that: the combustion heating chamber (2) inside upper surface fixed with heat-conducting plate (33), the left part of the lower surface of heat-conducting plate (33) and the top contact of burning groove (34), the lower surface of heat-conducting plate (33) and the top contact of thermal expansion stick (51), the bottom of thermal expansion stick (51) and the left part contact of the upper surface of revolution plate (49), the middle part of revolution plate (49) be provided with third fixed rotating shaft (50), revolution plate (49) can encircle third fixed rotating shaft (50) and rotate, the right part of the lower surface of revolution plate (49) and the top fixed connection of stretching strap (48), the bottom of stretching strap (48) and the upper surface fixed connection of follow-up rocking arm (45), the left end fixed bearing (46) of follow-up rocking arm (45), the middle part of bearing (46) be provided with second fixed rotating shaft (47), the bearing (46) can rotate around the second fixed rotating shaft (47), the right part of the upper surface of the connecting hose (43) is in contact with the lower end of the fixed end block (42), the rear end of the fixed end block (42) is fixedly connected with the rear surface of the interior of the combustion heating chamber (2), the top of the right end of the follow-up rotating arm (45) is fixedly provided with a pressing column (44), and the top end of the pressing column (44) is in contact with the right part of the lower surface of the connecting hose (43).
5. The integrated pump station with the exhaust gas purification function according to claim 1, characterized in that: an acid removal tank (57) is arranged in the waste gas purification chamber (3), an alkaline solution (56) is stored in the acid removal tank (57), the top surface of the acid removal box (57) is communicated with the bottom end of the exhaust funnel (58), the through hole arranged on the right side surface of the acid removing box (57) is in contact fit with the middle part of the transverse conduit (54), the left end of the transverse conduit (54) is communicated with the top end of the longitudinal conduit (55), the bottom end of the longitudinal conduit (55) extends into the interior of the alkaline solution (56), the right end of the transverse conduit (54) is communicated with the top end of the confluence pipe (53), the bottom end of the confluence pipe (53) extends out of the lower side surface of the waste gas purifying chamber (3), the lower part of the right side surface of the confluence pipe (53) is respectively communicated with the left ends of the first inclined pipe (12) and the third inclined pipe (52).
6. The integrated pump station with the exhaust gas purification function according to claim 1, characterized in that: the inside upper surface of exhaust purification room (3) fixed with water tank (79), the lower surface of water tank (79) be provided with shower nozzle (80), shower nozzle (80) be provided with sponge layer (60) under, the downside of sponge layer (60) be fixed with activated carbon layer (59), the left end of sponge layer (60), activated carbon layer (59) be fixed with left position gasket (61), the right-hand member of sponge layer (60), activated carbon layer (59) be fixed with right position gasket (62), the portion of controlling of the last side of sponge layer (60) do not be fixed with left position spring (63), right position spring (64), the top of left position spring (63), right position spring (64) respectively with the inside upper surface of exhaust purification room (3) the portion fixed connection of controlling.
7. The integrated pump station with the exhaust gas purification function according to claim 1, characterized in that: the inside right surface of exhaust gas purification room (3) be fixed with electric cabinet (65), the left part of the inside lower surface of electric cabinet (65) and the bottom fixed connection of return spring (68), the top of return spring (68) be fixed with side position diaphragm (67), the right-hand member of side position diaphragm (67) and the left surface fixed connection of the lower extreme of passive post (66), the top of passive post (66) stretch out from the upper surface of electric cabinet (65), the right surface of the lower extreme of passive post (66) be fixed with conducting strip (69), the left surface of conducting strip (69) and the right surface contact of upper fixed guide piece (70), be provided with lower fixed guide piece (71) under upper fixed guide piece (70), the right surfaces of upper fixed guide piece (70), lower fixed guide piece (71) between establish ties through wire (72) and have first power (73), establish ties, And the bottom end of the lower fixed guide sheet (71) is fixedly provided with a limiting base (75).
CN202110280022.8A 2021-05-19 2021-05-19 Integrated pump station with waste gas purification function Withdrawn CN113041724A (en)

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CN211612126U (en) * 2019-12-31 2020-10-02 协和环保科技(深圳)有限公司 Industrial waste gas treatment device with monitoring function
CN212440547U (en) * 2020-06-03 2021-02-02 苏州宜效新材料科技有限公司 Decorative panel hot press exhaust purification tower

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