CN206735403U - High viscosity pigment wastewater sludge conveyer - Google Patents

High viscosity pigment wastewater sludge conveyer Download PDF

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Publication number
CN206735403U
CN206735403U CN201720564844.8U CN201720564844U CN206735403U CN 206735403 U CN206735403 U CN 206735403U CN 201720564844 U CN201720564844 U CN 201720564844U CN 206735403 U CN206735403 U CN 206735403U
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CN
China
Prior art keywords
transfer pond
pond
transfer
flow
increasing agent
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Expired - Fee Related
Application number
CN201720564844.8U
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Chinese (zh)
Inventor
吴滨
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Individual
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Individual
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Priority to CN201720564844.8U priority Critical patent/CN206735403U/en
Application granted granted Critical
Publication of CN206735403U publication Critical patent/CN206735403U/en
Expired - Fee Related legal-status Critical Current
Anticipated expiration legal-status Critical

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  • Treatment Of Sludge (AREA)

Abstract

It the utility model is related to a kind of high viscosity pigment wastewater sludge conveyer, including sedimentation basin, flow increasing agent accumulator tank, transfer pond, flow valve, PLC, mashing pump;The installation screw conveying device conveying of sedimentation basin is to transfer pond, agitating device is installed in transfer pond, the top installation flow increasing agent accumulator tank in transfer pond, flow valve is installed on the drain pipe of flow increasing agent accumulator tank, the drainage conduit in transfer bottom of pond portion connects the feed pipe of mashing pump, the discharge nozzle connection sludge filter press of mashing pump with the drainage conduit in the second transfer bottom of pond portion.The PLC connection control circuit of mashing pump, flow valve, magnetic valve etc..The utility model installs flow increasing agent accumulator tank on transfer pond, and controls flow increasing agent dosage by flow valve, in the mobility of transfer pond conditioning of mud, realizes long distance pumping, improves sludge transfer efficiency.

Description

High viscosity pigment wastewater sludge conveyer
Technical field
Field of water treatment equipment is the utility model is related to, specifically, the utility model is related to a kind of sludge conveyer.
Background technology
Water treatment field is usually to be precipitated sewage to sewage disinfection treatment in sedimentation basin, and precipitation is stayed in after sewage disposal Sludge in pond typically will use take out mud equipment and detach.Existing sludge conveyer is promoted by screw rod, the suction of sludge and Push efficiency is low, and fed distance is short.CN203794243U discloses a kind of sludge conveyer, improves traditional screw rod and promotes row Journey is hydraulic jack stroke, effectively improves the suction to sludge and push efficiency, greatly improves fed distance.But this device Conveyed using hydraulic pressure, pipe-line construction cost is higher.CN205114516U discloses a kind of sludge conveyer, including sedimentation basin, Also include suction channel, pumping equipment and discharge pipeline, the pumping equipment is arranged on the top of suction channel, suction channel end Stretch into sedimentation basin, one end of the discharge pipeline is connected on suction channel, and the other end is provided with mud discharging mouth, is dirt below mud discharging mouth Mud reservoir.But for high-viscosity sludge, resistance is big in course of conveying, easy putty, CN205114516U still can not Solves the smooth transportation problem of high-viscosity sludge.
Utility model content
The above situation based on prior art, the purpose of this utility model are to provide a kind of high viscosity pigment wastewater sludge Conveying device, for transfer of highly viscous pigment wastewater sludge, the mobility of sludge is automatically adjusted, realizes automatic transport.
The utility model is realized by following technical proposals.
A kind of high viscosity pigment wastewater sludge conveyer, including sedimentation basin, the first conveying screw rod, the second conveying screw rod, Second stirring motor, the second flow increasing agent accumulator tank, second flow valve, the second agitating paddle, the second transfer pond, second solenoid valve, One stirring motor, the first flow increasing agent accumulator tank, first flow valve, the first agitating paddle, the first transfer pond, the first magnetic valve, PLC Controller, mashing pump;The first conveying screw rod is installed in the bottom of sedimentation basin and the second conveying screw rod, the first conveying screw rod pass through first Feeder motor drives, and the first transfer pond of discharging opening alignment of the first conveying screw rod, the second conveying screw rod passes through the second feeder motor Driving, the second transfer pond of discharging opening alignment of the second conveying screw rod;First agitating paddle, the first agitating paddle are installed in the first transfer pond Driven by the first stirring motor, the first flow increasing agent accumulator tank is installed in the top in the first transfer pond, and the first flow increasing agent accumulator tank goes out First flow valve, the bottom installation drainage conduit in the first transfer pond and the first magnetic valve are installed in liquid pipe;Installed in second transfer pond Second agitating paddle, the second agitating paddle are driven by the second stirring motor, and the second flow increasing agent accumulator tank is installed in the top in the second transfer pond, Second flow valve, the bottom installation drainage conduit in the second transfer pond and the second electromagnetism are installed on the drain pipe of the second flow increasing agent accumulator tank Valve;The drainage conduit in the first transfer bottom of pond portion connects entering for mashing pump with the drainage conduit in the second transfer bottom of pond portion by tee pipe coupling Expects pipe, the discharge nozzle connection sludge filter press of mashing pump.The PLC connection control circuit of mashing pump, the first feeder motor, Second feeder motor, the first stirring motor, the second stirring motor, first flow valve, second flow valve, the first magnetic valve, second Magnetic valve.
Further preferably, the bottom in the first transfer pond and the second transfer pond is conical bottom, is easy to ensure that conveying is thorough.
Further preferably, two grooves of bottom setting of sedimentation basin, groove first conveying screw rod of interior installation, another The second conveying screw rod of installation in groove.
Technique effect of the present utility model:Flow increasing agent accumulator tank is installed on transfer pond, and flow increasing is controlled by flow valve Agent dosage, in the mobility of transfer pond conditioning of mud, long distance pumping is realized, improves sludge transfer efficiency.
Brief description of the drawings
Fig. 1 is schematic diagram of the present utility model.
In figure:1. sedimentation basin, 2. first feeder motors, 3. first conveying screw rods, 4. second conveying screw rods, 5. second conveyings Motor, 6. second stirring motors, 7. second flow increasing agent accumulator tanks, 8. second flow valves, 9. second agitating paddles, 10. second transfers Pond, 11. second solenoid valves, 12. first stirring motors, 13. first flow increasing agent accumulator tanks, 14. first flow valves, 15. first Agitating paddle, 16. first transfer ponds, 17. first magnetic valves, 18.PLC controllers, 19. mashing pumps, 20. sludge filter press.
Embodiment
As shown in figure 1, a kind of high viscosity pigment wastewater sludge conveyer, including sedimentation basin 1, the first conveying screw rod 3, Two conveying screw rods 4, the second stirring motor 6, the second flow increasing agent accumulator tank 7, second flow valve 8, the second agitating paddle 9, the second transfer Pond 10, second solenoid valve 11, the first stirring motor 12, the first flow increasing agent accumulator tank 13, first flow valve 14, the first agitating paddle 15th, the first transfer pond 16, the first magnetic valve 17, PLC 18, mashing pump 19;Bottom installation the first conveying spiral shell of sedimentation basin 1 The conveying screw rod 4 of bar 3 and second, the first conveying screw rod 3 are driven by the first feeder motor 2, the discharging opening pair of the first conveying screw rod 3 Neat first transfer pond 16, the second conveying screw rod 4 are driven by the second feeder motor 5, the discharging opening of the second conveying screw rod 4 alignment the Two transfer ponds 10;The first agitating paddle 15 of installation, the first agitating paddle 15 are driven by the first stirring motor 12 in first transfer pond 16, the The first flow increasing agent accumulator tank 13 is installed in the top in one transfer pond 16, is installed on the drain pipe of the first flow increasing agent accumulator tank 13 first-class Measure valve 14, the bottom installation drainage conduit in the first transfer pond 16 and the first magnetic valve 17;The stirring of installation second in second transfer pond 10 Oar 9, the second agitating paddle 9 are driven by the second stirring motor 6, and the second flow increasing agent accumulator tank 7 is installed in the top in the second transfer pond 10, the Second flow valve 8, the bottom installation drainage conduit and the second electricity in the second transfer pond 10 are installed on the drain pipe of two flow increasing agent accumulator tanks 7 Magnet valve 11;The drainage conduit of the bottom of first transfer pond 16 connects slurry with the drainage conduit of the bottom of the second transfer pond 10 by tee pipe coupling Expect the feed pipe of pump 19, the discharge nozzle connection sludge filter press 20 of mashing pump 19.PLC 18 connects the control of mashing pump 19 Circuit, the first feeder motor 2, the second feeder motor 5, the first stirring motor 12, the second stirring motor 6, first flow valve 14, Two flow valves 8, the first magnetic valve 17, second solenoid valve 11.
Because sedimentation basin 1 needs continuous precipitation, and sedimentation basin 1 is general very big, is unsuitable for installing agitating device, so Sedimentation basin 1 installs screw rod feeding device and high-viscosity sludge is transported in the first transfer pond 16 or the second transfer pond 10, first Flow increasing agent is adjusted in the transfer pond 10 of transfer pond 16 or second, and stirs the mobility for improving sludge, is easy to convey.Why use First transfer pond 16 and 10 two, the second transfer pond transfer pond, it is the continuous conveying in order to can be in flow increasing whipping process.I.e. its In the addition flow increasing agent stirring of transfer pond when, pump the sludge that another transfer pond has been stirred, ensure that mashing pump 19 connects Continuous work.
The utility model is realized in that what is automatically controlled, when mashing pump 19 conveys the sludge in the first transfer pond 16, When PLC 18 monitors the load too high of mashing pump 19, show the sludge poor fluidity in the first transfer pond 16, at this moment, PLC controls Second solenoid valve 11 is opened, the first magnetic valve 17 is closed for the control of device 18 processed, starts to convey the sludge in the second transfer pond 10, meanwhile, Start first flow valve 14 and appropriate flow increasing agent is added into the second transfer pond 10, start the first stirring motor 12 and stir.When After the sludge conveying in two transfer ponds 10, the sludge regulated in the first transfer pond 16 of conveying is switched to, is started simultaneously Second feeder motor 5, sludge is conveyed into the second transfer pond 10.
Further, the bottom in the first transfer pond 16 and the second transfer pond 10 is conical bottom, is easy to ensure that conveying is thorough.
Further, the top in the first transfer pond 16 and the second transfer pond 10 sets up supporting plate, the second flow increasing agent storage respectively Groove 7, the first flow increasing agent accumulator tank 13 are fixed on supporting plate.
Further, two grooves of bottom setting of sedimentation basin 1, groove first conveying screw rod 3 of interior installation, another The second conveying screw rod 4 of installation in groove.
, can also be only with a transfer pond as more secondary embodiment, at this moment, conveying device can not continuously work, But high viscosity pigment wastewater sludge transportation work can also be realized.
Outside the discharge nozzle connection sludge filter press 20 of mashing pump 19, other sludge treatment devices can be also connected, such as sludge dries Dry machine, or it is delivered directly to sludge storage space.
Technical scheme in above-described embodiment is clearly and completely described, it is clear that described embodiment is only The utility model part of the embodiment, rather than whole embodiments.Embodiment in the utility model, ordinary skill All other embodiment that personnel are obtained under the premise of creative work is not done, belong to the model of the utility model protection Enclose.

Claims (5)

1. a kind of high viscosity pigment wastewater sludge conveyer, including sedimentation basin (1), the first conveying screw rod (3), the second conveying spiral shell In bar (4), the second stirring motor (6), the second flow increasing agent accumulator tank (7), second flow valve (8), the second agitating paddle (9), second Turn pond (10), second solenoid valve (11), the first stirring motor (12), the first flow increasing agent accumulator tank (13), first flow valve (14), the first agitating paddle (15), the first transfer pond (16), the first magnetic valve (17), PLC (18), mashing pump (19);Its It is characterised by:The bottom of sedimentation basin (1) is installed by the first conveying screw rod (3) and the second conveying screw rod (4), the first conveying screw rod (3) Driven by the first feeder motor (2), the first transfer pond (16) of discharging opening alignment of the first conveying screw rod (3), the second conveying spiral shell Bar (4) is driven by the second feeder motor (5), the second transfer pond (10) of discharging opening alignment of the second conveying screw rod (4);In first Turn the first agitating paddle of installation (15) in pond (16), the first agitating paddle (15) is driven by the first stirring motor (12), the first transfer pond (16) the first flow increasing agent accumulator tank (13) is installed in top, and first flow is installed on the drain pipe of the first flow increasing agent accumulator tank (13) Valve (14), the bottom installation drainage conduit and the first magnetic valve (17) in the first transfer pond (16);Installation the in second transfer pond (10) Two agitating paddles (9), the second agitating paddle (9) are driven by the second stirring motor (6), and the top installation second in the second transfer pond (10) increases Agent accumulator tank (7) is flowed, second flow valve (8) is installed on the drain pipe of the second flow increasing agent accumulator tank (7), the second transfer pond (10) Bottom is installed by drainage conduit and second solenoid valve (11);The drainage conduit of first transfer pond (16) bottom and second transfer pond (10) bottom Drainage conduit pass through tee pipe coupling connect mashing pump (19) feed pipe, mashing pump (19) discharge nozzle connection sludge filter press (20);The control circuit of PLC (18) connection mashing pump (19), the first feeder motor (2), the second feeder motor (5), the One stirring motor (12), the second stirring motor (6), first flow valve (14), second flow valve (8), the first magnetic valve (17), Two magnetic valves (11).
2. high viscosity pigment wastewater sludge conveyer according to claim 1, it is characterised in that:First transfer pond(16) Bottom be conical bottom.
3. high viscosity pigment wastewater sludge conveyer according to claim 1, it is characterised in that:Second transfer pond (10) Bottom be conical bottom.
4. high viscosity pigment wastewater sludge conveyer according to claim 1, it is characterised in that:The bottom of sedimentation basin (1) Portion sets two grooves, and the first conveying screw rod (3) is installed in a groove, the second conveying screw rod (4) is installed in another groove.
5. high viscosity pigment wastewater sludge conveyer according to claim 1, it is characterised in that:First transfer pond (16) Supporting plate is set up respectively with the top in the second transfer pond (10), and the second flow increasing agent accumulator tank (7), the first flow increasing agent accumulator tank (13) are solid It is scheduled on supporting plate.
CN201720564844.8U 2017-05-20 2017-05-20 High viscosity pigment wastewater sludge conveyer Expired - Fee Related CN206735403U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201720564844.8U CN206735403U (en) 2017-05-20 2017-05-20 High viscosity pigment wastewater sludge conveyer

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201720564844.8U CN206735403U (en) 2017-05-20 2017-05-20 High viscosity pigment wastewater sludge conveyer

Publications (1)

Publication Number Publication Date
CN206735403U true CN206735403U (en) 2017-12-12

Family

ID=60567181

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201720564844.8U Expired - Fee Related CN206735403U (en) 2017-05-20 2017-05-20 High viscosity pigment wastewater sludge conveyer

Country Status (1)

Country Link
CN (1) CN206735403U (en)

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GR01 Patent grant
GR01 Patent grant
CF01 Termination of patent right due to non-payment of annual fee
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20171212

Termination date: 20180520