CN212315793U - Biological matrix water purification system - Google Patents

Biological matrix water purification system Download PDF

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Publication number
CN212315793U
CN212315793U CN202022935072.9U CN202022935072U CN212315793U CN 212315793 U CN212315793 U CN 212315793U CN 202022935072 U CN202022935072 U CN 202022935072U CN 212315793 U CN212315793 U CN 212315793U
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fixedly connected
support
transmission
box body
reaction chamber
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张瑜
苏获
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Hunan Runwanhuanbao Ecology Co ltd
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Hunan Runwanhuanbao Ecology Co ltd
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Abstract

The utility model discloses a biological matrix water purification system, which comprises a reaction box body, a power mechanism fixedly connected on the reaction box body, a filtering mechanism in transmission connection with the power mechanism, a cleaning mechanism in sliding connection on the reaction box body, a stirring mechanism fixedly connected on the reaction box body, a feeding pipe fixedly connected on one side of the reaction box body, a solenoid valve arranged on the feeding pipe, and a power device in transmission connection with the cleaning mechanism; can avoid in long-time filtering process, impurity in the waste water blocks up the well grating board influence the feeding of integrated device of filter mechanism, makes waste water after the sediment and more abundant that the additive mixes through setting up rabbling mechanism, and the inside design of third reaction chamber can increase waste water and the reaction time of additive through setting up the reaction box, can make waste water and additive reaction more complete like this.

Description

Biological matrix water purification system
Technical Field
The utility model belongs to the technical field of waste water treatment, concretely relates to biological matrix water purification system.
Background
With the continuous development of society, more and more waste water is produced in daily life, therefore, for environmental protection, the processing of waste water is especially important, and traditional effluent treatment plant adopts grating plate filtration when filtering waste water usually, and after long-time volume filtration, debris in the waste water can block the grating plate with going, is unfavorable for the interpolation of waste water like this, does not carry out abundant mixing when filling the additive for waste water and the reaction of additive are not enough.
SUMMERY OF THE UTILITY MODEL
In order to solve the above problems in the prior art, the present invention is directed to a bio-matrix water purification system.
The utility model discloses the technical scheme who adopts does:
the utility model relates to a biological matrix water purification system, which comprises a reaction box body, a power mechanism fixedly connected on the reaction box body, a filtering mechanism connected on the power mechanism, a cleaning mechanism connected on the reaction box body in a sliding way, a stirring mechanism fixedly connected on the reaction box body, a feeding pipe fixedly connected on one side of the reaction box body, a solenoid valve arranged on the feeding pipe, wherein the power mechanism is in transmission connection with the cleaning mechanism;
power unit includes fixed connection and is in first support on the reaction box, fixed connection is in first motor on the first support rotates to be connected first transmission shaft on the first support, fixed connection is in pressure sensor on the first support, the both sides difference fixedly connected with 1/2 helical gear and 1/2 friction pulley of first motor output shaft, fixedly connected with friction pulley on the first transmission shaft, the equal fixedly connected with first band pulley in first transmission shaft both ends, first band pulley with the transmission is connected between the clearance mechanism, 1/2 friction pulley with the transmission is connected between the friction pulley, the sensor is located 1/2 friction pulley below, 1/2 helical gear with the transmission is connected between the filter mechanism 3.
As a further optimization of this technical scheme, the utility model relates to a biological matrix water purification system, the reaction box is inside to be first reaction chamber, second reaction chamber, third reaction chamber and fourth reaction chamber from a left side to the right side in proper order, the inside ball cover that is provided with of second reaction chamber, the inside water conservancy diversion baffle that is provided with of third reaction chamber, power unit fixed connection be in the first reaction chamber.
As the further optimization of the technical proposal, the utility model relates to a biological matrix water purification system, the pressure sensor with pass through signal connection between the solenoid valve.
As a further optimization of this technical scheme, the utility model relates to a bio-matrix water purification system, filtering mechanism includes the second support, and fixed connection is in first transmission helical gear on the second support sets up the grid board of second support both sides sets up fixing bolt on the grid board, the transmission is connected between first transmission helical gear and the 1/2 helical gear.
As a further optimization of this technical scheme, the utility model relates to a bio-matrix water purification system, clearance mechanism includes the balladeur train, rotates to be connected second axis of rotation on the first support, fixed connection is in the second band pulley of second axis of rotation both sides, fixed connection are in the movable pulley at second axis of rotation middle part, fixed connection are in the clearance brush of balladeur train lower part, balladeur train sliding connection is inside first reacting chamber, movable pulley sliding connection is in the balladeur train, rotate through the belt between second band pulley and the first band pulley and be connected.
As a further optimization of this technical scheme, the utility model relates to a bio-matrix water purification system, rabbling mechanism includes fixed connection and is in third support and fourth support in the second reaction chamber, fixedly connected with second motor on the third support, ring gear in the fixedly connected with on the fourth support, fixedly connected with rocker on the second motor, it is connected with the stirring frame to rotate on the rocker, the upper end fixedly connected with second transmission helical gear of stirring frame, second transmission helical gear with the transmission is connected between the ring gear, the lower extreme of stirring frame is rotated and is connected on the ball cover.
The utility model has the advantages that: compare with traditional device, power unit through setting up drives filtering mechanism and carries out the intermittent type rotation, rotate intermittent type power unit cooperation clearance mechanism at filtering mechanism and accomplish the clearance to filtering mechanism, such setting can be avoided in long-time filtering process, impurity in the waste water blocks up filtering mechanism's well grating board influences the feeding of integrated device, make waste water after the sediment and the more abundant of additive mixture through setting up rabbling mechanism, through the inside design multiplicable waste water of third reacting chamber and the reaction time of additive in the reaction box, can make waste water and additive reaction more complete like this.
Drawings
The present invention will be described in further detail with reference to the accompanying drawings and specific embodiments.
Fig. 1 is a schematic structural view of the whole of the present invention;
FIG. 2 is a schematic structural view of the reaction box of the present invention;
fig. 3 is a schematic structural view of the power mechanism of the present invention;
FIG. 4 is a schematic structural view of the filtering mechanism of the present invention;
FIG. 5 is a schematic structural view of the cleaning mechanism of the present invention;
fig. 6 is a schematic structural diagram of the stirring mechanism of the present invention.
In the figure: 1-a reaction box body; 101-a first reaction chamber; 102-a second reaction chamber; 103-a third reaction chamber; a fourth reaction chamber; 105-ball sleeve; 106-a flow directing baffle; 2, a power mechanism; 201-a first support; 202-a first electric machine; 203-1/2 bevel gears; 204-1/2 friction wheels; 205-a friction wheel; 206-a first drive shaft; 207-a first pulley; 208-a pressure sensor; 3-a filtering mechanism; 301-a second support; 302-a first drive bevel gear; 303-a grid plate; 304-a fixing bolt; 4-a cleaning mechanism; 401-a carriage; 402-a second rotational axis; 403-a second pulley; 404-a sliding wheel; 405-cleaning the brush; 5-a stirring mechanism; 501-a third bracket; 502-a second electric machine; 503-a fourth scaffold; 504-inner ring gear; 505-rocker; 506-stirring frame; 507-a second drive bevel gear; 6-feeding pipe; 7-electromagnetic valve.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and specific embodiments.
The first embodiment is as follows:
the following description of the present embodiment is made with reference to fig. 1 to 6, and a bio-substrate water purification system includes a reaction chamber 1, a power mechanism 2 fixedly connected to the reaction chamber 1, a filtering mechanism 3 in transmission connection with the power mechanism 2, a cleaning mechanism 4 slidably connected to the reaction chamber 1, a stirring mechanism 5 fixedly connected to the reaction chamber 1, a feeding pipe 6 fixedly connected to one side of the reaction chamber 1, and an electromagnetic valve 7 disposed on the feeding pipe, wherein the power mechanism 2 and the cleaning mechanism 4 are in transmission connection;
the power mechanism 2 comprises a first bracket 201 fixedly connected to the reaction box 1, a first motor 202 fixedly connected to the first bracket 201, a first transmission shaft 206 rotatably connected to the first bracket 201, a pressure sensor 208 fixedly connected to the first bracket 201, 1/2 bevel gears 203 and 1/2 friction gears 204 are respectively fixedly connected with both sides of an output shaft of the first motor 202, a friction wheel 205 is fixedly connected to the first transmission shaft 206, a first belt wheel 207 is fixedly connected to both ends of the first transmission shaft 206, the first belt wheel 207 is in transmission connection with the cleaning mechanism 4, the 1/2 friction wheel 204 is in transmission connection with the friction wheel 205, the sensor 208 is positioned below the 1/2 friction wheel 204, and the 1/2 bevel gear 203 is in transmission connection with the filtering mechanism 3; when the device is used, the first motor 202 is driven to drive 1/2 bevel gears 203 and 1/2 friction wheels to rotate, because the positions of the 1/2 bevel gear 203 and the 1/2 friction wheels are arranged, the 1/2 bevel gear 203 drives the filtering mechanism 3 to rotate intermittently, the intermittent 1/2 friction wheels of the filtering mechanism 3 and the friction wheels 205 are subjected to transmission friction to drive the friction wheels 205 to rotate, the rotation of the friction wheels 205 drives the first belt wheels 207 on two sides to rotate intermittently through the first transmission shaft 206, the first belt wheels 207 drive the cleaning mechanism 4 to clean the filtering mechanism 3 through the belt, compared with the traditional device, the device drives the filtering mechanism 3 to rotate intermittently through the arranged power mechanism 2, the intermittent power mechanism 2 is matched with the cleaning mechanism 4 to clean the filtering mechanism 3 when the filtering mechanism 3 rotates, such setting can avoid in long-time filtering process, impurity in the waste water blocks up the well grid plate 303 of filter mechanism 3 and influences the feeding of overall device, makes more abundant that waste water after the sediment mixes with the additive through setting up rabbling mechanism 5, and the reaction time of multiplicable waste water and additive through the inside design of third reaction chamber 103 in reaction box 1, can make waste water and additive react more completely like this.
The second embodiment is as follows:
the present embodiment is described below with reference to fig. 1 to 6, and the present embodiment further describes the first embodiment, a first reaction chamber 101, a second reaction chamber 102, a third reaction chamber 103 and a fourth reaction chamber 104 are sequentially arranged inside the reaction box 1 from left to right, a ball sleeve is arranged inside the second reaction chamber 102, a flow guide baffle 106 is arranged inside the third reaction chamber 103, and the power mechanism 2 is fixedly connected inside the first reaction chamber 101; waste water after filtering mechanism 3 is stored in first reaction chamber 101, deposit in first reaction chamber 101, avoid unable filterable precipitate to block up communicating pipe, second reaction chamber 102 cooperation rabbling mechanism 5 stirs, can make waste water and more even that the additive mixes like this, set up water conservancy diversion baffle 106 in third reaction chamber 103, such snakelike range has increased reaction time, make waste water and additive reaction more complete, carry out further settlement in fourth reaction chamber 104, can further deposit the precipitate that the reaction generated like this, thereby accomplish the comprehensive purification of waste water.
The third concrete implementation mode:
the present embodiment is described below with reference to fig. 1 to 6, and the present embodiment further describes the first embodiment, in which the pressure sensor 208 is connected to the electromagnetic valve 7 through a signal; when the filter mechanism 3 is driven to rotate by the 1/2 bevel gear 203, the 1/2 friction wheel will contact the pressure sensor 208, and the pressure sensor 208 receives pressure to close the solenoid valve 7, and the feeding is stopped.
The fourth concrete implementation mode:
referring to fig. 1 to 6, the present embodiment will be further described, and the present embodiment further describes the first embodiment, the filtering mechanism 3 includes a second bracket 301, a first transmission bevel gear 302 fixedly connected to the second bracket 301, grating plates 303 disposed on both sides of the second bracket 301, fixing bolts 304 disposed on the grating plates 303, and the first transmission bevel gear 302 and the 1/2 bevel gear 203 are in transmission connection; 1/2 the bevel gear 203 meshes with the first transmission bevel gear 302 intermittently to drive the second bracket 301 to rotate, when the 1/2 bevel gear 203 meshes with the first transmission bevel gear 302, the second bracket 301 rotates just 180 degrees, the grating plates 303 are fixedly connected to the two sides of the second bracket 301 through the fixing bolts 304, and the grating plates 303 can be replaced according to different filtering requirements.
The fifth concrete implementation mode:
referring to fig. 1 to 6, the present embodiment will be further described, in which the cleaning mechanism 4 includes a carriage 401, a second rotating shaft 402 rotatably connected to the first bracket 201, second pulleys 403 fixedly connected to both sides of the second rotating shaft 402, a sliding wheel 404 fixedly connected to the middle of the second rotating shaft 402, a cleaning brush 405 fixedly connected to the lower portion of the carriage 401, the carriage 401 is slidably connected to the inside of the first reaction chamber 101, the sliding wheel 404 is slidably connected to the carriage 401, and the second pulley 403 is rotatably connected to the first pulley 207 through a belt; because it is connected to rotate through the belt between second band pulley 403 and the first band pulley 207, the rotation of first band pulley 207 will drive second band pulley 403 and rotate, and second band pulley 403 drives movable pulley 404 through second axis of rotation 402 and rotates, and movable pulley 404 will push away balladeur train 401 and carry out reciprocating motion, because balladeur train 401 lower part is provided with clearance brush 405, clearance brush 405 will clear up grid plate 303.
The sixth specific implementation mode:
the present embodiment is described below with reference to fig. 1 to 6, and the present embodiment further describes the first embodiment, where the stirring mechanism 5 includes a third bracket 501 and a fourth bracket 503 fixedly connected in the second reaction chamber 102, a second motor 502 is fixedly connected to the third bracket 501, an internal gear ring 504 is fixedly connected to the fourth bracket 503, a rocker 505 is fixedly connected to the second motor 502, a stirring rack 506 is rotatably connected to the rocker 505, a second bevel transmission gear 507 is fixedly connected to an upper end of the stirring rack 506, the second bevel transmission gear 507 is in transmission connection with the internal gear ring 504, and a lower end of the stirring rack 506 is rotatably connected to the ball sleeve 105; drive rocker 505 through drive second motor 502 and rotate, because the lower extreme of stirring frame 506 rotates to be connected on ball cover 105, the upper end of stirring frame 506 rotates to be connected on rocker 505, the rotation of rocker 505 will drive stirring frame 506 and realize rotatory rocking, the rotation of rocker 505 makes second transmission helical gear 507 and interior ring gear 504 mesh and drive rocker 505 and rotate, such design can make waste water and more abundant that the additive mixes, make waste water and additive fully react more completely, avoid appearing excessive reaction and the insufficient condition of reaction.
The utility model discloses a biological matrix water purification system, its theory of operation is: when the device is used, the first motor 202 is driven to drive 1/2 bevel gears 203 and 1/2 friction wheels to rotate, as the positions of 1/2 bevel gear 203 and 1/2 friction wheels are arranged, 1/2 bevel gear 203 will drive the filtering mechanism 3 to rotate intermittently, 1/2 bevel gear 203 is meshed with the first transmission bevel gear 302 intermittently to drive the second bracket 301 to rotate, when 1/2 bevel gear 203 is meshed with the first transmission bevel gear 302, the second bracket 301 rotates just 180 degrees, the grating plates 303 are fixedly connected to two sides of the second bracket 301 through fixing bolts 304, the grating plates 303 can be replaced according to different filtering requirements, the friction wheel 1/2 friction wheel and the friction wheel 205 of the filtering mechanism 3 perform transmission friction to drive the friction wheel 205 to rotate, the rotation of the friction wheel 205 drives the first belt wheels 207 of the two sides to rotate intermittently through the first transmission shaft 206, the first belt wheel 207 drives the cleaning mechanism 4 to clean the filtering mechanism 3 through a belt, the second belt wheel 403 is rotatably connected with the first belt wheel 207 through the belt, the second belt wheel 403 is driven to rotate by the rotation of the first belt wheel 207, the sliding wheel 404 is driven to rotate by the second belt wheel 403 through the second rotating shaft 402, the sliding wheel 404 pushes the sliding frame 401 to reciprocate, the cleaning brush 405 is arranged at the lower part of the sliding frame 401 to clean the grid plate 303, when the helical gear 203 1/2 drives the filtering mechanism 3 to rotate, the friction wheel 1/2 is in contact with the pressure sensor 208, the electromagnetic valve 7 is closed by the pressure sensor 208 after receiving pressure, feeding is stopped, the wastewater filtered by the filtering mechanism 3 is stored in the first reaction chamber 101 and is precipitated in the first reaction chamber 101, and the communicating pipe is prevented from being blocked by the unfiltered precipitate, the second reaction chamber 102 is matched with the stirring mechanism 5 for stirring, the rocker 505 is driven to rotate by driving the second motor 502, the lower end of the stirring frame 506 is rotatably connected to the ball sleeve 105, the upper end of the stirring frame 506 is rotatably connected to the rocker 505, the stirring frame 506 is driven to rotate by the rotation of the rocker 505, the second transmission bevel gear 507 is meshed with the inner toothed ring 504 to drive the rocker 505 to rotate by the rotation of the rocker 505, so that the waste water and the additives can be mixed more uniformly, the diversion baffle 106 is arranged in the third reaction chamber 103, the reaction time is prolonged by the serpentine arrangement, the waste water and the additives are reacted more completely, further sedimentation is performed in the fourth reaction chamber 104, and precipitates generated by the reaction can be further precipitated, so that the comprehensive purification of the waste water is completed.
The present invention is not limited to the above-mentioned optional embodiments, and any other products in various forms can be obtained by anyone under the teaching of the present invention, and any changes in the shape or structure thereof, all the technical solutions falling within the scope of the present invention, are within the protection scope of the present invention.

Claims (6)

1. A bio-based water purification system characterized by: the device comprises a reaction box body (1), a power mechanism (2) fixedly connected to the reaction box body (1), a filtering mechanism (3) connected to the power mechanism (2), a cleaning mechanism (4) connected to the reaction box body (1) in a sliding manner, a stirring mechanism (5) fixedly connected to the reaction box body (1), a feeding pipe (6) fixedly connected to one side of the reaction box body (1), an electromagnetic valve (7) arranged on the feeding pipe, and the power mechanism (2) and the cleaning mechanism (4) are in transmission connection;
the power mechanism (2) comprises a first support (201) fixedly connected to the reaction box body (1), a first motor (202) fixedly connected to the first support (201), a first transmission shaft (206) rotatably connected to the first support (201), and a pressure sensor (208) fixedly connected to the first support (201), wherein both sides of an output shaft of the first motor (202) are respectively and fixedly connected with an 1/2 bevel gear (203) and a 1/2 friction wheel (204), the first transmission shaft (206) is fixedly connected with a friction wheel (205), both ends of the first transmission shaft (206) are respectively and fixedly connected with a first belt wheel (207), the first belt wheel (207) is in transmission connection with the cleaning mechanism (4), and the 1/2 friction wheel (204) is in transmission connection with the friction wheel (205), the sensor (208) is positioned below the 1/2 friction wheel (204), and the 1/2 bevel gear (203) is in transmission connection with the filtering mechanism (3).
2. A bio-matrix water purification system according to claim 1, wherein: the reaction box body (1) is inside to be first reaction chamber (101), second reaction chamber (102), third reaction chamber (103) and fourth reaction chamber (104) from a left side to the right side in proper order, second reaction chamber (102) inside is provided with ball cover (105), third reaction chamber (103) inside is provided with water conservancy diversion baffle (106), power unit (2) fixed connection be in first reaction chamber (101).
3. A bio-matrix water purification system according to claim 1, wherein: the pressure sensor (208) is in signal connection with the electromagnetic valve (7).
4. A bio-matrix water purification system according to claim 3, wherein: the filtering mechanism (3) comprises a second support (301), a first transmission bevel gear (302) fixedly connected to the second support (301), grating plates (303) arranged on two sides of the second support (301), and fixing bolts (304) arranged on the grating plates (303), wherein the first transmission bevel gear (302) is in transmission connection with the 1/2 bevel gear (203).
5. A bio-matrix water purification system according to claim 3, wherein: clearance mechanism (4) include balladeur train (401), rotate to be connected second axis of rotation (402) on first support (201), fixed connection is in second band pulley (403) of second axis of rotation (402) both sides, fixed connection is in movable pulley (404) at second axis of rotation (402) middle part, fixed connection be in clearance brush (405) of balladeur train (401) lower part, balladeur train (401) sliding connection is inside first reacting chamber (101), movable pulley (404) sliding connection is in balladeur train (401), rotate through the belt between second band pulley (403) and first band pulley (207) and be connected.
6. A bio-matrix water purification system according to claim 2, wherein: stirring mechanism (5) is including fixed connection third support (501) and fourth support (503) in second reaction chamber (102), fixedly connected with second motor (502) on third support (501), fixedly connected with internal tooth ring (504) on fourth support (503), fixedly connected with rocker (505) on second motor (502), it is connected with stirring frame (506) to rotate on rocker (505), the upper end fixedly connected with second transmission helical gear (507) of stirring frame (506), second transmission helical gear (507) with the transmission is connected between internal tooth ring (504), the lower extreme of stirring frame (506) is rotated and is connected on ball cover (105).
CN202022935072.9U 2020-12-10 2020-12-10 Biological matrix water purification system Active CN212315793U (en)

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CN202022935072.9U CN212315793U (en) 2020-12-10 2020-12-10 Biological matrix water purification system

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Application Number Priority Date Filing Date Title
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114956344A (en) * 2022-05-27 2022-08-30 湖南润万环保科技有限公司 Multi-dimensional constructed wetland system for restoring eutrophic water body

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114956344A (en) * 2022-05-27 2022-08-30 湖南润万环保科技有限公司 Multi-dimensional constructed wetland system for restoring eutrophic water body
CN114956344B (en) * 2022-05-27 2023-07-21 湖南润万环保科技有限公司 Multi-dimensional constructed wetland system for repairing eutrophic water body

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