WO2022095029A1 - 粪污处理设备全密封快速卸污系统 - Google Patents

粪污处理设备全密封快速卸污系统 Download PDF

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Publication number
WO2022095029A1
WO2022095029A1 PCT/CN2020/127520 CN2020127520W WO2022095029A1 WO 2022095029 A1 WO2022095029 A1 WO 2022095029A1 CN 2020127520 W CN2020127520 W CN 2020127520W WO 2022095029 A1 WO2022095029 A1 WO 2022095029A1
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manure
waste
bin
waste liquid
treatment
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PCT/CN2020/127520
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English (en)
French (fr)
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韩延镇
刘文明
张威
张庆
石鑫
霍太虎
刘月胜
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单县舜天专用车制造有限公司
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Publication of WO2022095029A1 publication Critical patent/WO2022095029A1/zh

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    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F11/00Treatment of sludge; Devices therefor
    • C02F11/12Treatment of sludge; Devices therefor by de-watering, drying or thickening
    • C02F11/121Treatment of sludge; Devices therefor by de-watering, drying or thickening by mechanical de-watering
    • C02F11/122Treatment of sludge; Devices therefor by de-watering, drying or thickening by mechanical de-watering using filter presses
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F11/00Treatment of sludge; Devices therefor
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F11/00Treatment of sludge; Devices therefor
    • C02F11/02Biological treatment
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F11/00Treatment of sludge; Devices therefor
    • C02F11/12Treatment of sludge; Devices therefor by de-watering, drying or thickening
    • C02F11/121Treatment of sludge; Devices therefor by de-watering, drying or thickening by mechanical de-watering
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F11/00Treatment of sludge; Devices therefor
    • C02F11/12Treatment of sludge; Devices therefor by de-watering, drying or thickening
    • C02F11/13Treatment of sludge; Devices therefor by de-watering, drying or thickening by heating
    • 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
    • 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
    • C02F1/44Treatment of water, waste water, or sewage by dialysis, osmosis or reverse osmosis
    • C02F1/441Treatment of water, waste water, or sewage by dialysis, osmosis or reverse osmosis by reverse osmosis
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F2103/00Nature of the water, waste water, sewage or sludge to be treated
    • C02F2103/20Nature of the water, waste water, sewage or sludge to be treated from animal husbandry
    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F3/00Biological treatment of water, waste water, or sewage
    • C02F3/34Biological treatment of water, waste water, or sewage characterised by the microorganisms used

Definitions

  • the invention relates to the technical field of manure treatment, in particular to a fully-sealed and quick discharge system for manure treatment equipment.
  • Manure refers to wastes such as manure and sewage generated in the process of livestock and poultry breeding.
  • manure includes manure, urine, bedding, washing water, animal carcasses, feed residues and odors produced in the process of livestock and poultry breeding; in a narrow sense, manure refers to livestock and poultry manure, urine excrement, etc. and its mixture with rinse water.
  • the random discharge of manure will not only pollute the surrounding air environment, but also affect the surrounding visual effects.
  • the random discharge of manure is also a manifestation of waste of resources, because manure contains a lot of organic matter and rich N, P , K and other fertilizer components can completely realize the resource utilization of manure by means of processing and recycling. Therefore, there are many equipment and systems for treating feces, but when the existing equipment and systems are used for treating feces, the treatment effect is usually poor, and it is difficult to unload the feces during the treatment process. and other problems, making the traditional manure treatment equipment unable to effectively realize the rapid treatment of manure.
  • a fully-sealed and fast unloading system for manure treatment equipment includes a comprehensive manure treatment device, and the upstream of the comprehensive treatment device for manure passes through a suction pipe Inserted into the sewage tank, a sewage suction pump is installed on the suction pipe, and a sewage concentration treatment device and a sewage purification treatment device are respectively installed downstream of the comprehensive sewage treatment device.
  • the treatment device is used to realize pretreatment of feces and realize solid-liquid separation
  • the fecal concentration treatment device is used to receive the solid feces separated by the comprehensive treatment device for feces and perform secondary treatment.
  • the manure purification and treatment device is used for receiving the liquid manure separated by the manure comprehensive treatment device and performing secondary treatment.
  • the comprehensive treatment device for manure includes a multi-layer treatment tower, and a number of relatively independent treatment bins are arranged in sequence from top to bottom in the multi-layer treatment tower, and each of the treatment bins is sequentially arranged from top to bottom. It is arranged as a receiving bin assembly, a primary waste liquid bin, a secondary waste liquid bin, a primary waste bin and a secondary waste bin, and the receiving bin assembly is respectively connected with the primary waste liquid bin and the primary waste bin , the primary waste liquid silo is connected to the secondary waste liquid silo, the primary waste silo is connected to the secondary waste silo, the secondary waste liquid silo is connected to the fecal concentration treatment device, The secondary waste bin is connected to the manure purification treatment device.
  • the receiving bin assembly is used for pulverizing, stirring, sedimentation and stratification of the feces.
  • the receiving bin assembly includes an internal cavity of the receiving bin, a rotating lead screw is arranged in the internal cavity of the receiving bin, and the bottom of the rotating lead screw is movably inserted in the center of the bottom of the internal cavity of the receiving bin.
  • the rotating lead screw moves through the stepped shaft section at the top and seals through the top of the inner cavity of the receiving bin and is fixedly connected with the motor shaft of a stirring and driving motor, and the motor shell of the stirring and driving motor passes through the top of the inner cavity of the receiving bin.
  • the mounting frame is fixed on the top of the receiving bin group, and a rotating lifting nut is matched with a rotating lifting nut on the outer side wall of the rotating screw, and several stirring nut are uniformly fixed and installed on the outer side wall of the rotating lifting nut along its circumference.
  • the discharge end of the suction pipe is communicated with the inner cavity of the receiving bin
  • a transparent observation window is arranged on the outer side wall of the middle part of the inner cavity of the receiving bin
  • a belt is arranged on the inner cavity of the receiving bin
  • There is a reaction material feeding pipe with a sealed valve the inner cavity of the receiving bin is relatively sealed from the outside, and a first-stage waste communication pipe with a valve connected to the first-stage waste bin is arranged at the bottom of the inner cavity of the receiving bin, A first-stage waste liquid pipe with a valve communicated with the first-stage waste liquid storage bin is fitted on the inner upper part of the inner cavity of the receiving bin.
  • an electric heating pipe is arranged on the outer side wall of the multi-layer treatment tower, and a thermometer for detecting the internal temperature is arranged in each of the treatment bins, and the electric heating pipe is controlled by an external temperature controller to adjust its temperature to each of the treatment chambers.
  • the heating temperature of the feces in the treatment bin is controlled by an external temperature controller to adjust its temperature to each of the treatment chambers.
  • a waste liquid silo semi-circular circulation pipe and a waste silo semi-circular circulation pipe are respectively provided on one side of the first-level waste liquid silo and the first-level waste silo, and a semi-circular circulation pipe of the waste liquid silo is arranged on the side.
  • a waste liquid circulation pump is arranged on it, and the waste liquid circulation pump is used to realize the circulation and stirring treatment of the liquid inside the first-stage waste liquid silo.
  • a peristaltic circulation pump is arranged on the semicircular circulation pipe of the waste silo. The peristaltic circulation pump is used to realize the cyclic flow treatment of the semi-fluid inside the first-stage waste silo.
  • a waste liquid transfer pump is installed on the intermediate waste liquid transfer pipe, the first-level waste transfer pipe is communicated with the interior of the second-level waste tank through an intermediate waste transfer pipe, and a waste transfer pump is installed on the intermediate waste transfer pipe .
  • the bottom of the secondary waste liquid silo is connected to the feed port of the manure purification treatment device through a waste liquid transport and output pipe, and a waste liquid transport and output pump is installed on the waste liquid transport and output pipe.
  • the bottom of the secondary waste bin is connected to the feed port of the manure concentration treatment device through a waste transfer and output pipe, and a waste transfer and output pump is installed on the waste transfer and output pipe.
  • a secondary feeding pipe with its own control valve is provided on the secondary waste liquid silo and the secondary waste silo, respectively.
  • the primary treatment of dynamic decomposition is carried out in the primary waste liquid silo
  • the secondary treatment of static decomposition is carried out in the secondary waste liquid silo
  • the primary treatment of dynamic fermentation is carried out in the primary waste silo
  • the secondary waste is carried out in the warehouse.
  • the sewage purification treatment device includes several reverse osmosis membrane units arranged in parallel, and a check valve is installed on the inlet and outlet pipelines of each reverse osmosis membrane unit, and the inlet and outlet pipes of each reverse osmosis membrane unit are respectively installed. It is connected with the main inlet pipe and the main outlet pipe respectively through a multi-pass pipe, and a primary filter, a secondary filter and a booster pump are installed on the main inlet pipe; the liquid outlet of each reverse osmosis membrane unit is connected to the The downstream clean water collection tank is connected.
  • the manure concentration treatment device includes a water filter assembly connected to the waste transfer and output pipe through a feed port, and the filtered water flow from the water filter assembly is transported to the primary waste liquid through a bypass pipe
  • a bypass return pump is installed on the bypass pipeline, and the solid manure collected by the water filter assembly is discharged into the plate and frame filter press through the discharge structure to press out excess water.
  • the formed semi-dry manure is dried and then packaged for recycling after drying.
  • the water filter assembly includes a concentration collection box, and a water filter screen inclined from upstream to downstream is arranged in the middle of the concentration collection box, and the downstream of the water filter screen is lower than the water filter screen.
  • the discharge structure is fixedly installed on the side wall of the concentration collection box at the upstream end of the water filter, and the discharge structure is a pushing cylinder arranged along the direction of the inclined surface of the water filter.
  • the front end of the piston rod of the pushing cylinder is fixedly installed with a pushing and discharging shovel whose bottom is in contact with the inclined surface of the water filter screen, and a concentration collection box at the end of the water filter screen is provided with a
  • the discharge channel matched with the material receiving port of the plate-and-frame filter press is provided with the bypass pipeline which is communicated with the inside of the concentration collection box under the water filter screen.
  • the system adopts a fully sealed control treatment method in the process of pre-treatment of manure, which can effectively realize the separation and treatment of solid and liquid of manure according to needs;
  • Multi-stage treatment is adopted in the treatment of fecal waste liquid, which can effectively ensure the effect of treatment, and finally ensure that the waste liquid is effectively purified and reused;
  • the overall treatment effect of this system is good in the process of manure treatment. It can control the sealing of the treatment process, reduce the degree of outward diffusion of manure odor, and improve the ecological and environmental protection of processing.
  • FIG. 1 is a schematic diagram of the overall structure of the present invention.
  • FIG. 2 is a schematic diagram of the internal structure of the receiving bin assembly of the present invention.
  • FIG. 3 is a schematic top-view partial structure diagram of the primary waste liquid silo of the present invention.
  • FIG. 4 is a schematic top view of the partial structure of the primary waste bin of the present invention.
  • Multi-layer treatment tower 611, Electric heating pipe; 612, Thermometer; 62, Receiving bin assembly; 621, Inner cavity of receiving bin; ;624, mounting frame; 625, rotating lifting nut; 626, stirring blade; 627, transparent observation window; 628, reaction material feeding pipe; 629, first-level waste communication pipe; 630, first-level waste liquid pipe; 63, first-level Waste liquid silo; 631, semicircular circulation pipe of waste liquid silo; 632, semicircular circulation pipe of waste silo; 633, waste liquid circulation pump; 634, peristaltic circulation pump; 635, intermediate waste liquid transfer pipe; 636, waste liquid transfer pump ; 637, intermediate waste transfer pipe; 638, waste transfer pump; 64, secondary waste liquid silo; 641, waste liquid transfer output pipe; 642, waste liquid transfer output pump; 65, primary waste silo; 66, secondary waste Warehouse; 661, waste transfer output pipe; 662, waste transfer output pump; 7, secondary feeding pipe; 8, water filter assembly; 81,
  • the fully-sealed and fast unloading system of the manure treatment equipment includes a comprehensive manure treatment device 6, and the upstream of the comprehensive manure treatment device 6 is inserted into the manure tank through a suction pipe 2 3, a sewage suction pump 4 is installed on the suction pipe 2, and a sewage concentration treatment device 5 and a sewage purification treatment device 1 are respectively arranged downstream of the comprehensive sewage treatment device 6.
  • the comprehensive sewage treatment device 6 is used to realize the pretreatment of feces and realize solid-liquid separation
  • the described sewage concentration treatment device 5 is used to receive the solid feces separated by the described comprehensive sewage treatment device 6 and carry out the solid-liquid separation.
  • Secondary treatment the manure purification and treatment device 1 is used to receive the liquid manure separated by the comprehensive manure treatment device 6 and perform secondary treatment.
  • a specified amount of manure can be transported to the interior of the comprehensive manure treatment device 6 for preliminary treatment to realize solid-liquid separation and preliminary treatment respectively.
  • the reaction agent for auxiliary treatment is added to the interior according to the needs.
  • the decomposing agent, the waste liquid and semi-fluid waste after being processed by the comprehensive manure treatment device 6 are directly discharged to the interior of the manure purification treatment device 1 and the manure concentration treatment device 5 for advanced secondary treatment.
  • the comprehensive manure treatment device 6 includes a multi-layer treatment tower 61, and a plurality of relatively independent treatment bins are sequentially arranged in the multi-layer treatment tower 61 from top to bottom, and each of the treatment bins starts from the top.
  • the lower part is sequentially arranged as a receiving bin assembly 62, a primary waste liquid bin 63, a secondary waste liquid bin 64, a primary waste bin 65, and a secondary waste bin 66.
  • the receiving bin assembly 62 is respectively connected to the primary waste liquid bin.
  • the silo 63 is connected with the primary waste silo 65, the primary waste silo 63 is connected with the secondary waste silo 64, the primary waste silo 65 is connected with the secondary waste silo 66, the The secondary waste liquid bin 64 is connected to the manure concentration treatment device 5 , and the secondary waste bin 66 is connected to the manure purification treatment device 1 .
  • the receiving bin assembly 62 is used for pulverizing, stirring, and sedimenting and stratifying the feces.
  • the receiving bin assembly 62 includes a receiving bin cavity 621, a rotating screw 622 is arranged in the receiving bin cavity 621, and the bottom of the rotating screw 622 is movably inserted into the receiving bin In the bottom center hole of the inner cavity 621, the rotating lead screw 622 moves through the stepped shaft section at the top and seals through the top of the inner cavity 621 of the receiving bin and is fixedly connected with the motor shaft of a stirring drive motor 623, so The motor shell of the stirring drive motor 623 is fixed on the top of the receiving bin group through the mounting frame 624, and a rotating lifting nut 625 is matched with a rotating lifting nut 625 on the outer side wall of the rotating screw 622.
  • a number of stirring blades 626 are evenly and uniformly installed on the outer side wall along its circumference.
  • the discharge end of the suction pipe 2 is communicated with the inner cavity 621 of the receiving bin.
  • the inner cavity 621 of the receiving bin is relatively sealed from the outside.
  • the bottom of 621 is provided with a first-level waste communication pipe 629 with a valve connected to the first-level waste bin 65.
  • In the upper part of the inner cavity of the receiving bin 621 there is a matching installation with the first-level waste liquid bin 63.
  • the first-level waste liquid pipe 630 with a valve, the depth of the first-level waste liquid pipe 630 extending into the inner cavity 621 of the receiving bin can be adjusted, and a The stage waste liquid pipe 630 extends into the depth so that it is in the upper liquid part and does not contact the lower solid.
  • the receiving bin assembly 62 When the receiving bin assembly 62 receives the initial manure that enters its interior, it can drive the rotating screw 622 below it to rotate rapidly by controlling the rotation of the stirring drive motor 623, and during the rotation of the rotating screw 622, it will drive the rotation up and down.
  • the nut 625 moves up and down while rotating, thereby driving each stirring blade 626 to form a helical stirring structure, which can effectively improve the stirring effect.
  • the stirring and driving motor 623 is controlled to realize the alternating operation of fast and slow speed according to the requirements, so as to realize the control to realize the regular rotary stirring of the feces in the inner cavity 621 of the receiving bin according to the requirements. After 3 hours of standing treatment, stratification will be achieved.
  • the upper liquid is waste liquid such as feces and urine
  • the lower layer is fecal solids, which are respectively discharged to the corresponding treatment system through two channels.
  • the internal situation can be observed through the transparent observation window 627, which is convenient for the next processing.
  • an electric heating tube 611 is arranged on the outer side wall of the multi-layer processing tower 61, and a thermometer 612 for detecting the internal temperature is arranged in each of the processing chambers, and the electric heating tube 611 passes through an external temperature controller. Control the heating temperature of the feces in each of the treatment bins.
  • each processing chamber By controlling the operation of the electric heating tube 611, the temperature in each processing chamber can be effectively controlled, and at the same time, the internal temperature conditions can be displayed by each thermometer 612, which is convenient for real-time control.
  • a waste liquid silo semi-circular circulation pipe 631 and a waste silo semi-circular circulation pipe 632 are respectively provided on one side of the first-level waste liquid silo 63 and the first-level waste silo 65 .
  • a waste liquid circulation pump 633 is arranged on the semi-circular circulation pipe 631, and the waste liquid circulation pump 633 is used to realize the circulating and stirring treatment of the liquid inside the first-stage waste liquid silo 63.
  • a peristaltic circulation pump 634 is provided on it, and the peristaltic circulation pump 634 is used to realize the circulatory flow treatment of the semi-fluid inside the first-level waste warehouse 65.
  • the secondary waste liquid silo 64 is internally communicated, a waste liquid transfer pump 636 is installed on the intermediate waste liquid transfer pipe 635, and the primary waste liquid silo 65 communicates with the secondary waste liquid transfer pipe 637 through an intermediate waste liquid transfer pipe 635.
  • the waste bin 66 is communicated internally, and a waste transfer pump 638 is installed on the intermediate waste transfer pipe 637 .
  • the fecal liquid part after standing and stratification in the inner cavity 621 of the receiving bin will flow to the first-stage waste liquid bin 63 under the action of the power pump body on the first-stage waste liquid pipe 630 for internal circulation, and at the same time, put in a certain amount of decomposition. It is used to promote the decomposition of internal small impurities, and at the same time, it can initially purify the internal waste liquid. By controlling the speed of the waste liquid circulating pump 633, it can drive the internal waste liquid to continuously circulate and stir.
  • the waste liquid circulating pump 633 forms a circumferential motion to improve the swirl mixing effect.
  • the semi-fluid waste part will be transported to the inside of the first-stage waste bin 65 under the action of the conveying power pump on the first-stage waste communication pipe 629, and at the same time, decomposing microorganisms will be put into the inside to promote the decomposition of the internal substances.
  • the speed can achieve the effect of driving the internal semi-fluid waste to move continuously and slowly, and the peristaltic circulating pump 634 is used to form a circumferential motion to improve the effect of mixing and separate treatment.
  • the bottom of the secondary waste liquid silo 64 is connected to the feed port of the fecal purification treatment device 1 through a waste liquid transport output pipe 641, and a waste liquid transport output pipe 641 is installed on the waste liquid transport output pipe 641.
  • the decomposed waste liquid will flow to the inside of the secondary waste liquid tank 64 for static treatment, so that it is left to react in an anaerobic state.
  • the bottom of the secondary waste bin 66 is connected to the feed inlet of the manure concentration treatment device 5 through a waste transfer and output pipe 661 , and a waste transfer and output pump 662 is installed on the waste transfer and output pipe 661 .
  • the decomposed waste liquid will flow to the inside of the secondary waste liquid tank 64 for static treatment, so that it is left to react in an anaerobic state.
  • a secondary feeding pipe 7 with its own control valve is respectively provided on the secondary waste liquid bin 64 and the secondary waste bin 66 .
  • Feeding can be achieved quickly through the secondary feeding pipe 7, and the control valve is in a sealed and closed state under normal conditions.
  • the primary treatment of dynamic decomposition is carried out in the primary waste liquid silo 63
  • the secondary treatment of static decomposition is carried out in the secondary waste liquid silo 64
  • the primary treatment of dynamic fermentation is carried out in the primary waste silo 65
  • the The secondary treatment of static fermentation is performed in the secondary waste bin 66 .
  • the manure purification and treatment device 1 includes a plurality of reverse osmosis membrane units 11 arranged in parallel, and a stop valve 12 is installed on the inlet and outlet pipelines of each reverse osmosis membrane unit 11, and each of the reverse osmosis membrane units
  • the inlet and outlet pipes of 11 are respectively connected with the main inlet pipe 13 and the main outlet pipe 14 through multi-pass pipes, and a primary filter 15, a secondary filter 16 and a booster pump 17 are installed on the main inlet pipe 13;
  • the liquid outlet of the reverse osmosis membrane unit 11 is connected to the downstream clean water collection tank.
  • the set of multiple reverse osmosis membrane units 11 can ensure that when one or several of them are damaged, rapid maintenance and replacement can be achieved without the entire manure purification treatment device 1 being shut down.
  • the stop valve 12 on the corresponding branch can be temporarily closed, and the normal net work of other branches will not be affected.
  • the primary filter 15 and the secondary filter 16 provided here can ensure the filtering effect and prolong the service life of the primary filter 15 and the secondary filter 16 .
  • the manure concentration treatment device 5 includes a water filter assembly 8 connected to the waste transfer and output pipe 661 through a feed port, and the filtered water flow from the water filter assembly 8 is transported to the In the first-stage waste liquid silo 63, a bypass return pump 52 is installed on the bypass pipeline 51, and the solid waste collected by the water filter assembly 8 is discharged into the plate and frame filter press 10 through the discharge structure 9. The excess water is pressed out, and the semi-dry manure formed after pressure filtration is dried, and then packaged and recycled after drying.
  • the bypass structure provided here can improve the overall recycling rate of the feces, and the excess waste liquid water discharged here can be recovered here, and then purified after a step-by-step treatment.
  • the water filter assembly 8 includes a concentration collection box 81, and a water filter screen 82 inclined from upstream to downstream is arranged in the middle of the concentration collection box 81, and the downstream of the water filter screen 82 is lower than the water filter screen 82.
  • the discharge structure 9 is fixedly installed on the side wall of the concentration collection box 81 at the upstream end of the water filter screen 82.
  • the material pushing cylinder 91 arranged in the direction of the inclined surface of the water filter screen 82 is fixedly installed at the front end of the piston rod of the material pushing material cylinder 91 with a material pushing and discharging shovel 92 whose bottom is in contact with the inclined surface of the water filter screen 82.
  • the concentration collection box 81 at the end of the water filter screen 82 is provided with a discharge channel 93 matched with the receiving port of the plate and frame filter press 10, and the concentration collection box 81 below the water filter screen 82 is provided with a discharge channel 93.
  • the bypass pipe 51 communicated with the inside thereof.
  • the pusher and discharge shovel 92 is driven by the pusher cylinder 91 on the discharge structure 9 to move along the slope of the water filter screen 82 to push the upper semi-solid fecal material to the In the existing plate and frame filter press 10, continuous pressure filtration is carried out to further realize the drying of less moisture in the interior, and finally the drying process is performed, and the drying process is packaged for recycling, thereby realizing the treatment of the internal solids.
  • the whole system can be controlled by various valves to make it in a fully sealed state for internal manure reaction treatment.
  • the treatment effect is good, and the moisture and solids in the manure can be effectively recycled and purified.
  • the system adopts a fully sealed control treatment method in the process of pre-treatment of feces, which can effectively realize the separation and treatment of solid and liquid feces according to needs; To ensure the effect of the treatment, and finally ensure that the waste liquid is effectively purified and reused; the solid waste can be separated from the solid and liquid again after being effectively decomposed, and the final solid matter is screened and recycled.
  • the overall treatment effect is good, and the sealing of the treatment process can be achieved through control, reducing the degree of outward diffusion of the fecal odor, and improving the ecological and environmental protection of the processing.

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  • Engineering & Computer Science (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Environmental & Geological Engineering (AREA)
  • Water Supply & Treatment (AREA)
  • Chemical & Material Sciences (AREA)
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  • Mechanical Engineering (AREA)
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Abstract

粪污处理设备全密封快速卸污系统,包括一粪污综合处理装置(6),粪污综合处理装置(6)的上游通过一吸料管道(2)插入至粪污池(3)内,在吸料管道(2)上安装有一吸污泵(4),在粪污综合处理装置(6)的下游分别设置有一粪污浓缩处理装置(5)与一粪污净化处理装置(1),粪污综合处理装置(6)用于实现对粪污的预处理并实现固液分离,粪污浓缩处理装置(5)用于接收经粪污综合处理装置(6)分离出的固体粪污并进行二次处理,粪污净化处理装置(1)用于接收经粪污综合处理装置(6)分离出的液体粪污并进行二次处理。本系统对粪污前期处理的过程中采用全密封控制处理的方式,能够有效地根据需要实现对粪污的固体与液体的分离处理。

Description

粪污处理设备全密封快速卸污系统 技术领域
本发明涉及粪污处理技术领域,尤其是粪污处理设备全密封快速卸污系统。
背景技术
粪污是指畜禽养殖过程中产生的粪便、污水等废弃物。广义上讲,粪污包括畜禽养殖过程中产生的粪、尿、垫料、冲洗水、动物尸体、饲料残渣和臭气等;狭义上讲,粪污则是指畜禽粪、尿排泄物及其与冲洗水形成的混合物。
粪污的随意排放不仅会造成周边空气环境的污染,同时也会影响周边的视觉效果,另外,随意排放的粪污也是资源浪费的表现,因为粪污中含有大量的有机物和丰富的N、P、K等肥效成份,完全可以通过处理回收的手段实现粪污资源化。因此,目前也出现了较多的对粪污进行处理的设备和系统,但是现有的设备和系统在对粪污进行处理时,通常存在处理效果差,处理过程中粪污处理物卸载困难的等问题,使得传统的粪污处理设备无法有效地实现粪污的快速处理。
发明内容
本发明为解决上述技术问题之一,所采用的技术方案是:粪污处理设备全密封快速卸污系统,包括一粪污综合处理装置,所述粪污综合处理装置的上游通过一吸料管道插入至粪污池内,在所述吸料管道上安装有一吸污泵,在所述粪污综合处理装置的下游分别设置有一粪污浓缩处理装置与一粪污净化处理装置,所述粪污综合处理装置用于实现对粪污的预处理并实现固液分离,所述粪污浓缩处理装置用于接收经所述所述粪污综合处理装置分离出的固体粪污并进行二次处理,所述粪污净化处理装置用于接收经所述所述粪污综合处理装置分离出的液体粪污并进行二次处理。
优选地,所述粪污综合处理装置包括一多层处理塔,在所述多层处理塔内自上而下依次设置有若干个相对独立的处理仓,各所述处理仓自上而下依次设置为接收仓组件、一级废液仓、二级废液仓、一级废物仓、二级废物仓,所述接收仓组件分别与所述一级废液仓、所述一级废物仓相连,所述一级废液仓与所述二级废液仓相连,所述一级废物仓与所述二级废物仓相连,所述二级废液仓与所述粪污浓缩处理装置相连,所述二级废物仓与所述粪污净化处理装置相连。
优选地,所述接收仓组件用于实现对粪污的进行粉碎搅拌并沉降分层处理。
优选地,所述接收仓组件包括一接收仓内腔,在所述接收仓内腔内设置有一旋转丝 杠,所述旋转丝杠的底部活动配合插接在所述接收仓内腔的底部中心孔内,所述旋转丝杠通过其顶部的阶梯轴段活动且密封穿出所述接收仓内腔的顶部并与一搅拌驱动电机的电机轴固连,所述搅拌驱动电机的电机壳通过安装架固定在所述接收仓组的顶部,在所述旋转丝杠的外侧壁上配合有与旋转升降螺母,在所述旋转升降螺母的外侧壁上沿其圆周分别均匀固定安装有若干个搅拌叶片,所述吸料管道的出料端与所述接收仓内腔相连通,在所述接收仓内腔的中部外侧壁上设置有一透明观察窗,在所述接收仓内腔上设置有一带有密封阀门的反应料加料管,所述接收仓内腔与外部相对密封设置,在所述接收仓内腔的底部设置有与所述一级废物仓相连的带阀门的一级废物连通管,在所述接收仓内腔的内部上部配合安装有一与所述一级废液仓相连通的带阀门的一级废液管。
优选地,在所述多层处理塔的外侧壁设置有电加热管,在各所述处理仓内设置有用于检测内部温度的温度器,所述电加热管通过外部温控器控制其对各所述处理仓内的粪污的加热温度。
优选地,在所述一级废液仓、所述一级废物仓与的一侧分别设置有一废液仓半圆型循环管、废物仓半圆型循环管,在所述废液仓半圆型循环管上设置有一废液循环泵,所述废液循环泵用于实现所述一级废液仓内部的液体的循环搅拌处理,在所述废物仓半圆型循环管上设置有一蠕动循环泵,所述蠕动循环泵用于实现所述一级废物仓内部的半流体的循环流动处理,所述一级废液仓通过一中间废液转运管与所述二级废液仓内部相连通,在所述中间废液转运管上安装有废液转运泵,在所述一级废物仓通过一中间废物转运管与所述二级废物仓内部相连通,在所述中间废物转运管上安装有废物转运泵。
优选地,所述二级废液仓底部通过废液转运输出管与所述粪污净化处理装置的进料口相连,在所述废液转运输出管上安装有废液转运输出泵。
优选地,所述二级废物仓底部通过废物转运输出管与所述粪污浓缩处理装置的进料口相连,在所述废物转运输出管上安装有废物转运输出泵。
优选地,在所述二级废液仓、所述二级废物仓上分别设置有自带控制阀门的二次加料管。
优选地,所述一级废液仓内进行动态分解一次处理,所述二级废液仓内进行静态分解二次处理;所述一级废物仓内进行动态发酵一次处理,所述二级废物仓内进行静态发酵二次处理。
优选地,粪污净化处理装置包括若干个并联设置的反渗透膜机组,在各所述反渗透膜机组的进出口管路上分别安装有止通阀门,各所述反渗透膜机组的进出口管处分别通过多 通管与总进管、总出管相连,在所述总进管上安装有一级过滤器、二级过滤器、升压泵;各所述反渗透膜机组的出液口与下游的净水收集箱相连。
优选地,所述粪污浓缩处理装置包括一通过进料口与所述废物转运输出管相连的滤水组件,所述滤水组件滤出的水流通过旁路管道输送至所述一级废液仓内,在所述旁路管道上安装有一旁路回流泵,所述滤水组件收集的固体粪污通过排料结构排出至板框压滤机内进行压出多余水份,经压滤后形成的半干粪污进行烘干处理,烘干后打包回收。
优选地,所述滤水组件包括一浓缩收集箱,在所述浓缩收集箱的中部设置有一自上游至下游倾斜设置的滤水网,所述滤水网的下游低于所述滤水网的上游,在所述滤水网的上游端部的所述浓缩收集箱侧壁上固定安装有所述排料结构,所述排料结构为一沿所述滤水网斜面方向设置的推料缸,在所述推料缸的活塞杆的前端固定安装有一底部与所述滤水网斜面抵接配合的推料排料铲,在所述滤水网的末端的浓缩收集箱上设有一与所述板框压滤机接料口相配合的排出通道,在所述滤水网下方的浓缩收集箱上设置有与其内部相连通的所述旁路管道。
本发明的有益效果体现在:
1、本系统对粪污前期处理的过程中采用全密封控制处理的方式,能够有效地根据需要实现对粪污的固体与液体的分离处理;
2、对粪污废液进行处理时采用多级处理,能够有效地保证处理的效果,最终保证废液得到有效地净化后重新利用;
3、固体废物经过有效地分解处理后能够再次实现固液分离,同时对最终的固体物质进行筛选回收利用;
4、本系统在对粪污处理的过程中整体处理效果好,可以通过控制实现处理过程的密封性,减少粪污气味向外扩散的程度,提高加工处理的生态环保性。
附图说明
为了更清楚地说明本发明具体实施方式或现有技术中的技术方案,下面将对具体实施方式或现有技术描述中所需要使用的附图作简单地介绍。在所有附图中,类似的元件或部件一般由类似的附图标记标识。附图中,各元件或部件并不一定按照实际的比例绘制。
图1为本发明的整体结构示意图。
图2为本发明的接收仓组件的内部结构示意图。
图3为本发明的一级废液仓的俯视局部结构示意图。
图4为本发明的一级废物仓的俯视局部结构示意图。
图中,1、粪污净化处理装置;2、吸料管道;3、粪污池;4、吸污泵;5、粪污浓缩处理装置;51、旁路管道;52、旁路回流泵;6、粪污综合处理装置;61、多层处理塔;611、电加热管;612、温度器;62、接收仓组件;621、接收仓内腔;622、旋转丝杠;623、搅拌驱动电机;624、安装架;625、旋转升降螺母;626、搅拌叶片;627、透明观察窗;628、反应料加料管;629、一级废物连通管;630、一级废液管;63、一级废液仓;631、废液仓半圆型循环管;632、废物仓半圆型循环管;633、废液循环泵;634、蠕动循环泵;635、中间废液转运管;636、废液转运泵;637、中间废物转运管;638、废物转运泵;64、二级废液仓;641、废液转运输出管;642、废液转运输出泵;65、一级废物仓;66、二级废物仓;661、废物转运输出管;662、废物转运输出泵;7、二次加料管;8、滤水组件;81、浓缩收集箱;82、滤水网;9、排料结构;91、推料缸;92、推料排料铲;93、排出通道;10、板框压滤机;11、反渗透膜机组;12、止通阀门;13、总进管;14、总出管;15、一级过滤器;16、二级过滤器;17、升压泵。
具体实施方式
下面将结合附图对本发明技术方案的实施例进行详细的描述。以下实施例仅用于更加清楚地说明本发明的技术方案,因此只作为示例,而不能以此来限制本发明的保护范围。
如图1-4中所示,粪污处理设备全密封快速卸污系统,包括一粪污综合处理装置6,所述粪污综合处理装置6的上游通过一吸料管道2插入至粪污池3内,在所述吸料管道2上安装有一吸污泵4,在所述粪污综合处理装置6的下游分别设置有一粪污浓缩处理装置5与一粪污净化处理装置1,所述粪污综合处理装置6用于实现对粪污的预处理并实现固液分离,所述粪污浓缩处理装置5用于接收经所述所述粪污综合处理装置6分离出的固体粪污并进行二次处理,所述粪污净化处理装置1用于接收经所述所述粪污综合处理装置6分离出的液体粪污并进行二次处理。
经过吸料管道2的输送作用可以将指定量的粪污输送至粪污综合处理装置6内部进行初步处理后实现固液分离并分别进行初步处理,处理时根据需要向内部加入辅助处理的反应药剂或者分解剂,经过粪污综合处理装置6处理后的废液以及半流体废物直接排出至粪污净化处理装置1、粪污浓缩处理装置5内部进行深度二次处理。
优选地,所述粪污综合处理装置6包括一多层处理塔61,在所述多层处理塔61内自上而下依次设置有若干个相对独立的处理仓,各所述处理仓自上而下依次设置为接收仓组件62、一级废液仓63、二级废液仓64、一级废物仓65、二级废物仓66,所述接收仓组件62分别与所述一级废液仓63、所述一级废物仓65相连,所述一级废液仓63与所述二级废液 仓64相连,所述一级废物仓65与所述二级废物仓66相连,所述二级废液仓64与所述粪污浓缩处理装置5相连,所述二级废物仓66与所述粪污净化处理装置1相连。
优选地,所述接收仓组件62用于实现对粪污的进行粉碎搅拌并沉降分层处理。
优选地,所述接收仓组件62包括一接收仓内腔621,在所述接收仓内腔621内设置有一旋转丝杠622,所述旋转丝杠622的底部活动配合插接在所述接收仓内腔621的底部中心孔内,所述旋转丝杠622通过其顶部的阶梯轴段活动且密封穿出所述接收仓内腔621的顶部并与一搅拌驱动电机623的电机轴固连,所述搅拌驱动电机623的电机壳通过安装架624固定在所述接收仓组的顶部,在所述旋转丝杠622的外侧壁上配合有与旋转升降螺母625,在所述旋转升降螺母625的外侧壁上沿其圆周分别均匀固定安装有若干个搅拌叶片626,所述吸料管道2的出料端与所述接收仓内腔621相连通,在所述接收仓内腔621的中部外侧壁上设置有一透明观察窗627,在所述接收仓内腔621上设置有一带有密封阀门的反应料加料管628,所述接收仓内腔621与外部相对密封设置,在所述接收仓内腔621的底部设置有与所述一级废物仓65相连的带阀门的一级废物连通管629,在所述接收仓内腔621的内部上部配合安装有一与所述一级废液仓63相连通的带阀门的一级废液管630,一级废液管630伸入至接收仓内腔621内部的深度可以调节,主要根据观察窗口观察到的静置分层后固液分界面进行确定一级废液管630伸入的深度,使其处于上层液体部分并不与下层的固体相接触。
接收仓组件62接收到进入其内部的初始粪污时,通过控制搅拌驱动电机623旋转可以带动其下方的旋转丝杠622快速旋转,在所述旋转丝杠622进行旋转的过程中会带动旋转升降螺母625实现边旋转边进行升降,从而带动各个搅拌叶片626形成螺旋状的搅拌结构,能够有效地提高搅拌效果。
根据需要控制搅拌驱动电机623实现快速和慢速的交替运转,从而按照要求实现控制对接收仓内腔621内部的粪污实现定期的旋转搅拌,搅拌完成后进行静置处理,静置处理2-3小时,静置处理后会实现分层,上部的液体为粪尿等废液、下层为粪污固体,分别通过两种通道排出至对应的处理系统。
通过透明观察窗627可以观察内部的情况,便于进行下一步的处理。
优选地,在所述多层处理塔61的外侧壁设置有电加热管611,在各所述处理仓内设置有用于检测内部温度的温度器612,所述电加热管611通过外部温控器控制其对各所述处理仓内的粪污的加热温度。
通过控制电加热管611的运转可以有效地控制各个处理仓内的温度,同时可以通过 各个温度器612来显示内部的温度情况,便于实时控制。
优选地,在所述一级废液仓63、所述一级废物仓65与的一侧分别设置有一废液仓半圆型循环管631、废物仓半圆型循环管632,在所述废液仓半圆型循环管631上设置有一废液循环泵633,所述废液循环泵633用于实现所述一级废液仓63内部的液体的循环搅拌处理,在所述废物仓半圆型循环管632上设置有一蠕动循环泵634,所述蠕动循环泵634用于实现所述一级废物仓65内部的半流体的循环流动处理,所述一级废液仓63通过一中间废液转运管635与所述二级废液仓64内部相连通,在所述中间废液转运管635上安装有废液转运泵636,在所述一级废物仓65通过一中间废物转运管637与所述二级废物仓66内部相连通,在所述中间废物转运管637上安装有废物转运泵638。
接收仓内腔621内经过静置分层后的粪污液体部分会在一级废液管630上的动力泵体的作用下流动至一级废液仓63进行内部循环,同时投入一定的分解剂或者微生物,用以促进内部的细小杂质的分解,同时起到初步净化内部废液的目的,通过控制废液循环泵633运转的速度可以实现其带动内部的废液不断循环搅拌的作用,利用废液循环泵633形成周向运动,提高旋流混合效果。
半流体废物部分会在一级废物连通管629上的输送动力泵的作用下输送至一级废物仓65内部,同时向内部投入分解微生物,促进内部的物质分解,通过控制蠕动循环泵634运转的速度可以实现其带动内部的半流体废物不断慢速的循环移动的作用,利用蠕动循环泵634形成周向运动,提高混合分别处理效果。
优选地,所述二级废液仓64底部通过废液转运输出管641与所述粪污净化处理装置1的进料口相连,在所述废液转运输出管641上安装有废液转运输出泵642。
经过分解后的废液会流动至二级废液仓64内部静置处理,使其处于无氧状态下静置反应。
优选地,所述二级废物仓66底部通过废物转运输出管661与所述粪污浓缩处理装置5的进料口相连,在所述废物转运输出管661上安装有废物转运输出泵662。
经过分解后的废液会流动至二级废液仓64内部静置处理,使其处于无氧状态下静置反应。
优选地,在所述二级废液仓64、所述二级废物仓66上分别设置有自带控制阀门的二次加料管7。
通过二次加料管7可以快速的实现加料,正常状态下控制阀门处于密封关闭的状态。
优选地,所述一级废液仓63内进行动态分解一次处理,所述二级废液仓64内进行静态分解二次处理;所述一级废物仓65内进行动态发酵一次处理,所述二级废物仓66内进行静态发酵二次处理。
优选地,粪污净化处理装置1包括若干个并联设置的反渗透膜机组11,在各所述反渗透膜机组11的进出口管路上分别安装有止通阀门12,各所述反渗透膜机组11的进出口管处分别通过多通管与总进管13、总出管14相连,在所述总进管13上安装有一级过滤器15、二级过滤器16、升压泵17;各所述反渗透膜机组11的出液口与下游的净水收集箱相连。
设置的多个反渗透膜机组11可以保证当其中的一个或者几个损坏后在整个粪污净化处理装置1处于不停机的情况下就可以实现快速的维修更换,维修某个支路时只需要将对应支路上的止通阀门12暂时关闭即可,并不影响其它支路的正常净工作。
同时,在此设置的一级过滤器15、二级过滤器16可以保证过滤效果,延长一级过滤器15、二级过滤器16的使用寿命。
优选地,所述粪污浓缩处理装置5包括一通过进料口与所述废物转运输出管661相连的滤水组件8,所述滤水组件8滤出的水流通过旁路管道51输送至所述一级废液仓63内,在所述旁路管道51上安装有一旁路回流泵52,所述滤水组件8收集的固体粪污通过排料结构9排出至板框压滤机10内进行压出多余水份,经压滤后形成的半干粪污进行烘干处理,烘干后打包回收。
在此设置的旁路结构能够提高对粪污的整体的回收利用率,在此排出的多余废液水份可以在此回收,然后经过一步步的处理后实现净化。
优选地,所述滤水组件8包括一浓缩收集箱81,在所述浓缩收集箱81的中部设置有一自上游至下游倾斜设置的滤水网82,所述滤水网82的下游低于所述滤水网82的上游,在所述滤水网82的上游端部的所述浓缩收集箱81侧壁上固定安装有所述排料结构9,所述排料结构9为一沿所述滤水网82斜面方向设置的推料缸91,在所述推料缸91的活塞杆的前端固定安装有一底部与所述滤水网82斜面抵接配合的推料排料铲92,在所述滤水网82的末端的浓缩收集箱81上设有一与所述板框压滤机10接料口相配合的排出通道93,在所述滤水网82下方的浓缩收集箱81上设置有与其内部相连通的所述旁路管道51。
在利用滤水组件8进行固液分离时通过排料结构9上的推料缸91带动推料排料铲92实现沿着滤水网82斜面运动即可实现将上部的半固体粪料推至现有的板框压滤机10内进行继续压滤,进一步的实现压干内部较少的水分,最终经过烘干处理,烘干后打包回收,从而 实现对内部的固体的处理。
整个系统通过各个阀门控制可以使其处于全密封的状态下进行内部粪污反应处理,处理效果好,能够有效地对粪污内部的水分以及固体实现有效地回收净化利用。
本系统对粪污前期处理的过程中采用全密封控制处理的方式,能够有效地根据需要实现对粪污的固体与液体的分离处理;对粪污废液进行处理时采用多级处理,能够有效地保证处理的效果,最终保证废液得到有效地净化后重新利用;固体废物经过有效地分解处理后能够再次实现固液分离,同时对最终的固体物质进行筛选回收利用;本系统在对粪污处理的过程中整体处理效果好,可以通过控制实现处理过程的密封性,减少粪污气味向外扩散的程度,提高加工处理的生态环保性。
以上各实施例仅用以说明本发明的技术方案,而非对其限制;尽管参照前述各实施例对本发明进行了详细的说明,本领域的普通技术人员应当理解:其依然可以对前述各实施例所记载的技术方案进行修改,或者对其中部分或者全部技术特征进行等同替换;而这些修改或者替换,并不使相应技术方案的本质脱离本发明各实施例技术方案的范围,其均应涵盖在本发明的权利要求和说明书的范围当中;对于本技术领域的技术人员来说,对本发明实施方式所做出的任何替代改进或变换均落在本发明的保护范围内。
本发明未详述之处,均为本技术领域技术人员的公知技术。

Claims (10)

  1. 粪污处理设备全密封快速卸污系统,其特征在于:包括一粪污综合处理装置,所述粪污综合处理装置的上游通过一吸料管道插入至粪污池内,在所述吸料管道上安装有一吸污泵,在所述粪污综合处理装置的下游分别设置有一粪污浓缩处理装置与一粪污净化处理装置,所述粪污综合处理装置用于实现对粪污的预处理并实现固液分离,所述粪污浓缩处理装置用于接收经所述所述粪污综合处理装置分离出的固体粪污并进行二次处理,所述粪污净化处理装置用于接收经所述所述粪污综合处理装置分离出的液体粪污并进行二次处理。
  2. 根据权利要求1所述的粪污处理设备全密封快速卸污系统,其特征在于:所述粪污综合处理装置包括一多层处理塔,在所述多层处理塔内自上而下依次设置有若干个相对独立的处理仓,各所述处理仓自上而下依次设置为接收仓组件、一级废液仓、二级废液仓、一级废物仓、二级废物仓,所述接收仓组件分别与所述一级废液仓、所述一级废物仓相连,所述一级废液仓与所述二级废液仓相连,所述一级废物仓与所述二级废物仓相连,所述二级废液仓与所述粪污浓缩处理装置相连,所述二级废物仓与所述粪污净化处理装置相连。
  3. 根据权利要求2所述的粪污处理设备全密封快速卸污系统,其特征在于:所述接收仓组件用于实现对粪污的进行粉碎搅拌并沉降分层处理。
  4. 根据权利要求3所述的粪污处理设备全密封快速卸污系统,其特征在于:所述接收仓组件包括一接收仓内腔,在所述接收仓内腔内设置有一旋转丝杠,所述旋转丝杠的底部活动配合插接在所述接收仓内腔的底部中心孔内,所述旋转丝杠通过其顶部的阶梯轴段活动且密封穿出所述接收仓内腔的顶部并与一搅拌驱动电机的电机轴固连,所述搅拌驱动电机的电机壳通过安装架固定在所述接收仓组的顶部,在所述旋转丝杠的外侧壁上配合有与旋转升降螺母,在所述旋转升降螺母的外侧壁上沿其圆周分别均匀固定安装有若干个搅拌叶片,所述吸料管道的出料端与所述接收仓内腔相连通,在所述接收仓内腔的中部外侧壁上设置有一透明观察窗,在所述接收仓内腔上设置有一带有密封阀门的反应料加料管,所述接收仓内腔与外部相对密封设置,在所述接收仓内腔的底部设置有与所述一级废物仓相连的带阀门的一级废物连通管,在所述接收仓内腔的内部上部配合安装有一与所述一级废液仓相连通的带阀门的一级废液管。
  5. 根据权利要求4所述的粪污处理设备全密封快速卸污系统,其特征在于:在所述多层处理塔的外侧壁设置有电加热管,在各所述处理仓内设置有用于检测内部温度的温度器,所述电加热管通过外部温控器控制其对各所述处理仓内的粪污的加热温度。
  6. 根据权利要求5所述的粪污处理设备全密封快速卸污系统,其特征在于:在所述一级废液仓、所述一级废物仓与的一侧分别设置有一废液仓半圆型循环管、废物仓半圆型循环管, 在所述废液仓半圆型循环管上设置有一废液循环泵,所述废液循环泵用于实现所述一级废液仓内部的液体的循环搅拌处理,在所述废物仓半圆型循环管上设置有一蠕动循环泵,所述蠕动循环泵用于实现所述一级废物仓内部的半流体的循环流动处理,所述一级废液仓通过一中间废液转运管与所述二级废液仓内部相连通,在所述中间废液转运管上安装有废液转运泵,在所述一级废物仓通过一中间废物转运管与所述二级废物仓内部相连通,在所述中间废物转运管上安装有废物转运泵。
  7. 根据权利要求6所述的粪污处理设备全密封快速卸污系统,其特征在于:所述二级废液仓底部通过废液转运输出管与所述粪污净化处理装置的进料口相连,在所述废液转运输出管上安装有废液转运输出泵。
  8. 根据权利要求7所述的粪污处理设备全密封快速卸污系统,其特征在于:所述二级废物仓底部通过废物转运输出管与所述粪污浓缩处理装置的进料口相连,在所述废物转运输出管上安装有废物转运输出泵。
  9. 根据权利要求8所述的粪污处理设备全密封快速卸污系统,其特征在于:在所述二级废液仓、所述二级废物仓上分别设置有自带控制阀门的二次加料管。
  10. 根据权利要求9所述的粪污处理设备全密封快速卸污系统,其特征在于:所述一级废液仓内进行动态分解一次处理,所述二级废液仓内进行静态分解二次处理;所述一级废物仓内进行动态发酵一次处理,所述二级废物仓内进行静态发酵二次处理。
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