CN113044925A - Biomembrane separation water treatment equipment - Google Patents

Biomembrane separation water treatment equipment Download PDF

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Publication number
CN113044925A
CN113044925A CN202110353741.8A CN202110353741A CN113044925A CN 113044925 A CN113044925 A CN 113044925A CN 202110353741 A CN202110353741 A CN 202110353741A CN 113044925 A CN113044925 A CN 113044925A
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CN
China
Prior art keywords
department
plate
groove
water treatment
bearing plate
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Pending
Application number
CN202110353741.8A
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Chinese (zh)
Inventor
谭柳萍
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Special Mission Guangzhou Network Technology Co ltd
Original Assignee
Special Mission Guangzhou Network Technology Co ltd
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Application filed by Special Mission Guangzhou Network Technology Co ltd filed Critical Special Mission Guangzhou Network Technology Co ltd
Priority to CN202110353741.8A priority Critical patent/CN113044925A/en
Publication of CN113044925A publication Critical patent/CN113044925A/en
Pending legal-status Critical Current

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    • 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
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D36/00Filter circuits or combinations of filters with other separating devices
    • B01D36/04Combinations of filters with settling tanks

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  • Chemical & Material Sciences (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Hydrology & Water Resources (AREA)
  • Engineering & Computer Science (AREA)
  • Environmental & Geological Engineering (AREA)
  • Water Supply & Treatment (AREA)
  • Organic Chemistry (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Biological Treatment Of Waste Water (AREA)

Abstract

The invention discloses a biomembrane separation water treatment device which structurally comprises an overhaul box, a treatment cabin, a motor and a communicating pipe, wherein the overhaul box is welded at the side end of the treatment cabin; the processing cabin is by the concave pipe, the department of filtration, the sedimentation tank is constituteed, the concave pipe is located the department of filtration left side, the laminating of department of filtration is connected in the sedimentation tank left side, can strike interception mechanism surface when the waste water flows in, leave remaining piece in the waste water in the groove position of piling up the department upper end, and rivers flow through from the hollow flute department, and when the accumulational piece in bearing plate upper end reaches a quantitative, can extrude the bearing plate downwards under receiving the action of gravity, make the bearing plate at the rotation of rotation button, and ripple strip separation block, thereby open downwards, the piece of thereupon upper end can drop collection groove department, gather collection assembly department along interception mechanism and collect, thereby avoid the piece to pile up in concave intraductal.

Description

Biomembrane separation water treatment equipment
Technical Field
The invention belongs to the field of biomembrane separation equipment, and particularly relates to biomembrane separation water treatment equipment.
Background
The membrane separation treatment is one of physical methods, and when the membrane separation treatment is used, a sedimentation tank and a filtering system are utilized to filter and recycle the wastewater which flows and is discharged into equipment, so that the wastewater is separated and treated.
Based on the findings of the inventor, the following defects mainly exist in the prior art, such as: when equipment is applied to stone material cutting waste water treatment, because can mix the produced waste material when cutting in the waste water, make when waste water treatment, the waste material that dopes can follow waste water and enter into equipment in, and receive its waste material of self gravity influence to sink, lead to discharging the in-process part of going into the sedimentation tank and can be detained in the concave type pipe department of front side to reduce the diameter that concave type pipe department rivers can circulate, influence the flow velocity of waste water and arrange the effect into.
Therefore, a biomembrane separation water treatment device is needed.
Disclosure of Invention
To solve the problems of the above-described technology.
The invention relates to a biomembrane separation water treatment device, which is realized by the following specific technical means: the structure of the device comprises an overhaul box, a treatment cabin, a motor and a communicating pipe, wherein the overhaul box is welded at the side end of the treatment cabin, the motor is fixedly arranged at the front end of the treatment cabin, and the communicating pipe is positioned at the right side of the motor; the treatment cabin comprises concave pipe, filtration department, sedimentation tank, concave pipe is located the filtration department left side, the laminating of filtration department is connected in sedimentation tank left side.
The concave pipe is composed of a circulation groove, an intercepting mechanism, hollow plates and a collecting assembly, the intercepting mechanism and the hollow plates are of an integrated structure, the intercepting mechanism is fixedly connected to the inner side of the circulation groove in an embedded mode, the collecting device is movably clamped between the hollow plates, the intercepting mechanism is provided with two parts which are symmetrically arranged on the left side and the right side of the collecting assembly, and the surface of the intercepting mechanism has a certain bending radian.
Wherein, interception mechanism comprises well hollow groove, heap department, crooked board, collection groove, well hollow groove fixed mounting is in crooked board right side upper end, crooked board builds in and connects in heap department right side, it is located heap department lower extreme to collect the groove, crooked inboard is equipped with the hole, and the texture is comparatively hard simultaneously.
Wherein, pile up the department by the bearing plate, link piece, spring, laminating department mutually and constitute, the bearing plate activity joint is in rotating the button, spring bolted connection is in the bearing plate lower extreme, laminating department horizontal connection is between the bearing plate, it is inboard in linking the piece mutually to rotate the button activity joint, laminating department is the cubic and installs between the bearing plate, and has certain toughness.
The laminating department comprises magnetic sheet, vertical board, ripple strip, the magnetic sheet is connected in the ripple strip inboard of inlaying, ripple strip and vertical board structure as an organic whole, the magnetic sheet is arc and ripple strip groove profile phase-match.
Wherein, the collection subassembly is by the rolling wheel, connect the rope, accomodate the groove, place board, protruding block group and constitute, it is inboard in the rolling wheel to connect the movable block of rope, it inlays solid with being connected the rope lower extreme and is connected to place the board upper end left and right sides, it is located protruding block upper end to place the board, protruding block welded connection is in accomodating inslot side middle part, protruding block under narrow width is three horn shapes and installs in placing the board lower extreme, and the surface is the rubber material.
The placing plate is composed of an outer partition plate, a control plate, an elastic cushion and a second spring, the control plate is movably clamped on the inner side of the outer partition plate, the elastic cushion is fixedly connected to the middle of the lower end in an embedded mode, the second spring is located at the upper end of the elastic cushion, the elastic cushion can be bent when being extruded, and the surface of the elastic cushion is not prone to deformation.
Wherein, the cushion comprises parcel board, rubber ring, rigid block, the rubber ring inlays solid the connection in parcel board lower extreme, rigid block meshing is connected in the rubber ring inboardly, rigid block is equipped with eight, and supports in the middle part of the rubber ring for oval-shaped parcel.
Compared with the prior art, the invention has the following beneficial effects:
1. can strike interception mechanism surface when the waste water flows in, leave remaining piece in the waste water in the groove position of piling up the department upper end, and rivers flow through from hollow groove, and when the accumulational piece in bearing plate upper end reached a quantitative, receive the action of gravity and push the bearing plate downwards, make the bearing plate at the knob internal rotation that rotates, and ripple strip separation block, thereby open downwards, the piece of upper end thereupon can drop to the collection groove department, collect subassembly department along gathering of interception mechanism and collect, thereby avoid the piece to pile up in concave type intraductal.
2. When the piece of placing the board increases its weight and constantly aggravates, its connection rope can be followed take-up pulley department and slowly extended the drive and place the board and constantly descend, and the cushion of bottom can contact protruding piece afterwards, and the up end of protruding piece is lived to the rubber ring parcel, then under the ejecting effect of protruding piece, its outer baffle can separate the downward sloping to the left and right sides and become three horn shapes for the piece on surface can be collected from controlling both ends landing to holding groove, avoids discharging once more.
Drawings
FIG. 1 is a schematic structural diagram of a water treatment device for biofilm separation according to the present invention.
FIG. 2 is a schematic structural diagram of a treatment cabin of a biomembrane separation water treatment device of the invention.
FIG. 3 is a schematic structural diagram of a concave pipe of a biomembrane separation water treatment device of the present invention.
FIG. 4 is a schematic structural diagram of an intercepting mechanism of a biomembrane separation water treatment device of the invention.
FIG. 5 is a schematic structural diagram of a pile of a water treatment device for biofilm separation according to the present invention.
FIG. 6 is a schematic structural diagram of a joint of a biomembrane separation water treatment device of the present invention.
FIG. 7 is a schematic structural diagram of a collecting component of a water treatment device for biofilm separation according to the invention.
FIG. 8 is a schematic structural view of a mounting plate of a water treatment apparatus for biofilm separation according to the present invention.
FIG. 9 is a schematic structural diagram of an elastic pad of a water treatment device for biofilm separation according to the present invention.
In the figure: an overhaul box-1, a treatment cabin-2, a motor-3, a communicating pipe-4, a concave pipe-21, a filtering part-22, a sedimentation tank-23, a circulating groove-211, an intercepting mechanism-212, a hollow plate-213, a collecting component-214, a hollow groove-121, a stacking part-122, a bent plate-123, a collecting groove-124, a bearing plate-221, a connecting block-222, a spring-223, a joint part-224, a rotating button-225, a magnetic sheet-241, a vertical plate-242, a corrugated strip-243, a winding wheel-141, a connecting rope-142, a containing groove-143, a placing plate-144, a protruding block-145, an outer partition-441, a control plate-442, an elastic pad-443, a second spring-444, a wrapping plate-431, an outer partition-441, a control plate-442, an elastic pad-443, a second, A rubber ring-432 and a rigid block-433.
Detailed Description
The invention is further described below with reference to the accompanying drawings:
example 1:
as shown in figures 1 to 6:
the invention provides a biomembrane separation water treatment device which structurally comprises an overhaul box 1, a treatment cabin 2, a motor 3 and a communicating pipe 4, wherein the overhaul box 1 is connected to the side end of the treatment cabin 2 in a welding manner, the motor 3 is fixedly arranged at the front end of the treatment cabin 2, and the communicating pipe 4 is positioned on the right side of the motor 3; the treatment cabin 2 consists of a concave pipe 21, a filtering part 22 and a sedimentation tank 23, wherein the concave pipe 21 is positioned on the left side of the filtering part 22, and the filtering part 22 is attached and connected to the left side of the sedimentation tank 23.
Concave pipe 21 comprises circulation groove 211, interception mechanism 212, fretwork board 213, collection component 214, interception mechanism 212 and fretwork board 213 structure as an organic whole, interception mechanism 212 is connected in circulation groove 211 inboardly in an embedded manner, collection device 214 activity joint is between fretwork board 213, interception mechanism 212 is equipped with two and is the symmetry and installs in collection component 214 left and right sides, and its surface has certain crooked radian, is convenient for utilize crooked cambered surface to intercept the piece and collect when waste water flows in, prevents to cause and piles up.
Wherein, interception mechanism 212 comprises well hollow groove 121, heap department 122, crooked board 123, collection groove 124, well hollow groove 121 fixed mounting is in crooked board 123 right side upper end, crooked board 123 is embedded to be connected in heap department 122 right side, it is located heap department 122 lower extreme to collect groove 124, crooked board 123 inboard is equipped with the hole, and the texture is comparatively hard simultaneously, is convenient for flow into the waste water discharge of collecting in groove 124 with following the piece, avoids piling up inside.
Wherein, pile up department 122 by bearing plate 221, continuous piece 222, spring 223, laminating department 224 and constitute, bearing plate 221 activity block is in rotating button 225, spring 223 bolted connection is in the lower extreme of bearing plate 221, laminating department 224 horizontal connection is between bearing plate 221, it is inboard in continuous piece 222 to rotate button 225 activity block, laminating department 224 is the block-like installation between bearing plate 221, and has certain toughness for control opening and shutting of bearing plate 221, increase its stability simultaneously, conveniently collect the piece.
Wherein, laminating department 224 comprises magnetic sheet 241, vertical board 242, ripple strip 243, magnetic sheet 241 inlays the rigid coupling in ripple strip 243 inboard, ripple strip 243 and vertical board 242 formula structure as an organic whole, magnetic sheet 241 is arc and ripple strip 243 recess department profile phase-match to be favorable to adsorbing when ripple strip 243 block is closed, increase its laminating effect.
The specific use mode and function of the embodiment are as follows:
the invention puts the waste water to be treated into the treatment cabin 2 of the equipment, then the waste water entering the treatment cabin 2 flows in from the concave pipe 21 along the edge of the flow groove 211, the hollow plate 213 is arranged at the bottom end of the inner side of the flow groove 211, when the waste water flows in, the waste water impacts the surface of the intercepting mechanism 212, the debris remained in the waste water is left at the groove position at the upper end of the stacking part 122 in the intercepting mechanism 212, the water flows through the hollow groove 121, when the debris stacked at the upper end of the bearing plate 221 in the stacking part 122 reaches a certain amount, the bearing plate 221 is pressed downwards under the action of gravity, the bearing plate 221 rotates in the rotating button 225, the corrugated strips 243 in the bonding part 224 are separated and clamped, and then the debris is opened downwards, and then the debris falls to the collecting groove 124 and is collected at the collecting component 214 along the intercepting mechanism 212, thereby avoiding the debris from being stacked in the concave pipe, and when the piece on the bearing plate 221 emptys completely the back, can drive the bearing plate 221 rotation reduction under the spring action of spring 223, and the block is closed again to ripple strip 243, utilizes magnetic sheet 241 to laminate in the groove, and the bearing plate 221 of being convenient for continues to collect the use, and waste water can enter into filtration department 22 at last, flows into sedimentation tank 23 department after filtering, carries out decomposition under the power effect of motor 3 in sedimentation tank 23.
Example 2:
as shown in fig. 7 to 9: concave pipe 21 comprises circulation groove 211, interception mechanism 212, fretwork board 213, collection component 214, interception mechanism 212 and fretwork board 213 structure as an organic whole, interception mechanism 212 embedded joint is inboard in circulation groove 211, collection device 214 activity joint is between fretwork board 213, interception mechanism 212 is equipped with two and is the symmetry and installs in the left and right sides of collection component 214, and its surface has certain crooked radian, is convenient for utilize crooked cambered surface to intercept the piece and collect when waste water flows in, prevents to cause and piles up.
The collecting assembly 214 comprises a winding wheel 141, a connecting rope 142, a containing groove 143, a placing plate 144 and a protruding block 145, the connecting rope 142 is movably clamped inside the winding wheel 141, the left side and the right side of the upper end of the placing plate 144 are fixedly connected with the lower end of the connecting rope 142, the placing plate 144 is located at the upper end of the protruding block 145, the protruding block 145 is connected to the middle of the inner side of the containing groove 143 in a welding mode, the protruding block 145 is narrow at the upper part and wide at the lower part and is installed at the lower end of the placing plate 144 in a triangular mode, the surface of the protruding block 145 is made of rubber materials and used for being propped against the lower end when the placing plate 144 descends, the placing plate 144 is made to incline to the left side and the right side into the triangular mode.
The placing plate 144 is composed of an outer partition 441, a control panel 442, an elastic pad 443 and a second spring 444, the control panel 442 is movably clamped inside the outer partition 441, the elastic pad 443 is fixedly connected to the middle of the lower end of the outer partition 411, the second spring 444 is located at the upper end of the elastic pad 443, the elastic pad 443 can be bent when being extruded, the surface of the elastic pad is not prone to deformation, the second spring 444 at the upper end can be matched with the outer partition 411 to control opening and closing of the outer partition 411 when being used, and accumulated debris can be poured conveniently.
The elastic pad 443 comprises a wrapping plate 431, eight rigid blocks 433 and a rubber ring 432, wherein the rubber ring 432 is fixedly embedded at the lower end of the wrapping plate 431, the rigid blocks 433 are connected to the inner side of the rubber ring 432 in a meshed manner, and the rigid blocks 433 are eight and are wrapped in the middle of the rubber ring 432 in an oval shape to support, so that the rubber ring 432 is prevented from being excessively extruded when in use, and the surface of the rubber ring 432 is prevented from being deformed and difficult to restore.
The specific use mode and function of the embodiment are as follows:
the debris gathered from the intercepting mechanism 212 slides into the upper end of the placing plate 144 in the collecting assembly 214, when the weight of the debris is increased and the weight of the debris is increased, the connecting rope 142 extends slowly from the winding wheel 141 to drive the placing plate 144 to descend continuously, then the elastic pad 443 at the bottom end contacts the protruding block 145, the rubber ring 432 at the lower end of the wrapping plate 431 wraps the upper end face of the protruding block 145, then under the ejecting action of the protruding block 145, the outer partition plate 441 separates towards the left side and the right side and inclines downwards to form a triangle shape, so that the debris on the surface slides into the collecting groove 143 from the left end and the right end to be collected, and the outer partition plate 441 is driven to be restored and spliced under the control of the second spring 444 after the debris is completely poured out, so that the debris is favorably intercepted and collected in the collecting groove 143, and the fine debris is prevented from being discharged again.
The technical solutions of the present invention or similar technical solutions designed by those skilled in the art based on the teachings of the technical solutions of the present invention are all within the scope of the present invention to achieve the above technical effects.

Claims (8)

1. A biomembrane separation water treatment device structurally comprises an overhaul box (1), a treatment cabin (2), a motor (3) and a communicating pipe (4), wherein the overhaul box (1) is welded and connected to the side end of the treatment cabin (2), the motor (3) is fixedly arranged at the front end of the treatment cabin (2), and the communicating pipe (4) is positioned on the right side of the motor (3); the method is characterized in that:
the treatment cabin (2) comprises a concave pipe (21), a filtering part (22) and a sedimentation tank (23), wherein the concave pipe (21) is positioned on the left side of the filtering part (22), and the filtering part (22) is attached to the left side of the sedimentation tank (23).
2. The biofilm separation water treatment device according to claim 1, wherein: the concave pipe (21) is composed of a flow groove (211), an intercepting mechanism (212), a hollow plate (213) and a collecting component (214), the intercepting mechanism (212) and the hollow plate (213) are of an integrated structure, the intercepting mechanism (212) is fixedly connected to the inner side of the flow groove (211), and the collecting device (214) is movably clamped between the hollow plates (213).
3. The biofilm separation water treatment device according to claim 2, wherein: interception mechanism (212) comprises cavity groove (121), heap department (122), crooked board (123), collection groove (124), cavity groove (121) fixed mounting is in crooked board (123) right side upper end, crooked board (123) are embedded and are connected in heap department (122) right side, collection groove (124) are located heap department (122) lower extreme.
4. The biofilm separation water treatment device according to claim 3, wherein: pile up department (122) and constitute by bearing plate (221), continuous piece (222), spring (223), laminating department (224), bearing plate (221) activity block is in rotating button (225), spring (223) bolted connection is in bearing plate (221) lower extreme, laminating department (224) horizontal connection is between bearing plate (221), it is inboard in continuous piece (222) to rotate button (225) activity block.
5. The biofilm separation water treatment device according to claim 4, wherein: laminating department (224) comprises magnetic sheet (241), vertical board (242), ripple strip (243), magnetic sheet (241) embedded joint is in ripple strip (243) inboard, ripple strip (243) and vertical board (242) structure as an organic whole.
6. The biofilm separation water treatment device according to claim 3, wherein: the collecting assembly (214) comprises a winding wheel (141), a connecting rope (142), a containing groove (143), a placing plate (144) and a protruding block (145), wherein the connecting rope (142) is movably clamped on the inner side of the winding wheel (141), the left side and the right side of the upper end of the placing plate (144) are fixedly connected with the lower end of the connecting rope (142), the placing plate (144) is located at the upper end of the protruding block (145), and the protruding block (145) is welded and connected to the middle of the inner side of the containing groove (143).
7. The apparatus for treating water by biofilm separation according to claim 6, wherein: the placing plate (144) is composed of an outer partition plate (441), a control plate (442), an elastic cushion (443) and a second spring (444), the control plate (442) is movably clamped on the inner side of the outer partition plate (441), the elastic cushion (443) is fixedly embedded in the middle of the lower end of the placing plate (411), and the second spring (444) is located at the upper end of the elastic cushion (443).
8. The apparatus for treating water by biofilm separation according to claim 7, wherein: the elastic pad (443) is composed of a wrapping plate (431), a rubber ring (432) and a rigid block (433), the rubber ring (432) is fixedly embedded at the lower end of the wrapping plate (431), and the rigid block (433) is engaged and connected with the inner side of the rubber ring (432).
CN202110353741.8A 2021-04-01 2021-04-01 Biomembrane separation water treatment equipment Pending CN113044925A (en)

Priority Applications (1)

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CN202110353741.8A CN113044925A (en) 2021-04-01 2021-04-01 Biomembrane separation water treatment equipment

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Application Number Priority Date Filing Date Title
CN202110353741.8A CN113044925A (en) 2021-04-01 2021-04-01 Biomembrane separation water treatment equipment

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Publication Number Publication Date
CN113044925A true CN113044925A (en) 2021-06-29

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114314899A (en) * 2021-12-07 2022-04-12 南京华创环境工程有限公司 Fluorine-containing industrial wastewater treatment device and treatment method thereof

Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105317075A (en) * 2014-07-28 2016-02-10 东莞市金能亮环保科技有限公司 Rainwater collection device
CN112079480A (en) * 2020-09-03 2020-12-15 王文雄 Energy-concerving and environment-protective chemical industry water pollution treatment facility
CN112178959A (en) * 2020-09-24 2021-01-05 北京中瑞名扬广告有限公司 Intelligent temperature step heat storage type solar water heater

Patent Citations (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN105317075A (en) * 2014-07-28 2016-02-10 东莞市金能亮环保科技有限公司 Rainwater collection device
CN112079480A (en) * 2020-09-03 2020-12-15 王文雄 Energy-concerving and environment-protective chemical industry water pollution treatment facility
CN112178959A (en) * 2020-09-24 2021-01-05 北京中瑞名扬广告有限公司 Intelligent temperature step heat storage type solar water heater

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114314899A (en) * 2021-12-07 2022-04-12 南京华创环境工程有限公司 Fluorine-containing industrial wastewater treatment device and treatment method thereof
CN114314899B (en) * 2021-12-07 2023-08-29 广州科绿环保科技有限公司 Treatment device and treatment method for fluorine-containing industrial wastewater

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Application publication date: 20210629

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