CN112777878A - Sewage treatment equipment utilizing photocatalytic oxidation reaction - Google Patents

Sewage treatment equipment utilizing photocatalytic oxidation reaction Download PDF

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Publication number
CN112777878A
CN112777878A CN202110118138.1A CN202110118138A CN112777878A CN 112777878 A CN112777878 A CN 112777878A CN 202110118138 A CN202110118138 A CN 202110118138A CN 112777878 A CN112777878 A CN 112777878A
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aeration
groove
plate
photocatalytic oxidation
thyristor
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何晓宇
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Yangtze Normal University
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Yangtze Normal University
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    • CCHEMISTRY; METALLURGY
    • C02TREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02FTREATMENT OF WATER, WASTE WATER, SEWAGE, OR SLUDGE
    • C02F9/00Multistage treatment of water, waste water or sewage
    • 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
    • C02F1/30Treatment of water, waste water, or sewage by irradiation
    • 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
    • C02F1/72Treatment of water, waste water, or sewage by oxidation
    • C02F1/725Treatment of water, waste water, or sewage by oxidation by catalytic oxidation
    • 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
    • C02F3/02Aerobic processes
    • C02F3/10Packings; Fillings; Grids
    • C02F3/102Permeable membranes

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

Abstract

本发明公开了一种利用光催化氧化反应的污水处理设备,其结构包括:法兰方框槽、格栅曝气管、旋流补光架槽、电控柜、按键面板,本发明实现了运用格栅曝气管与旋流补光架槽相配合,通过在两侧适配灯珠螺旋管的轴套帽管体轴承电磁阀通电联动回转灯珠桨叶片引流补光的同时,形成边侧水垢堆积死角的螺旋氧化增压输送操作效果,且提升光催化氧化反应的辅助布光操作效果,再通过晶闸对架板保障格栅横膜板的水洗格槽内全面覆盖光面和生物膜适配曝气反应高效,且管道插接的流通量运输稳定降低滞缓现象,提升连供式污水处理操作效率和连续性提升光催化氧化的曝气杀菌饱和度。

Figure 202110118138

The invention discloses a sewage treatment equipment utilizing photocatalytic oxidation reaction. The grille aeration tube is matched with the swirl light-filling frame slot, and the shaft sleeve cap tube body bearing solenoid valve of the lamp bead spiral tube is energized on both sides, and the rotating lamp bead paddle blade is energized to drain and fill the light, forming an edge. The spiral oxidation pressurized conveying operation effect of the dead angle of the side scale accumulation, and the auxiliary light distribution operation effect of the photocatalytic oxidation reaction is improved, and then the thyristor is used to the frame plate to ensure that the washing groove of the grid transverse film plate is fully covered with smooth surface and biological The membrane is adapted to the aeration reaction efficiently, and the flow transportation of the pipeline plug-in stably reduces the stagnation phenomenon, improves the operation efficiency and continuity of the continuous sewage treatment, and improves the aeration and sterilization saturation of the photocatalytic oxidation.

Figure 202110118138

Description

Sewage treatment equipment utilizing photocatalytic oxidation reaction
Technical Field
The invention relates to a sewage treatment device utilizing a photocatalytic oxidation reaction, belonging to the field of sewage.
Background
Utilize the photocatalysis oxidation reaction to be sewage treatment's the supplementary water purification operational effect of naturalization that prevents that chemistry adds and prevent circular telegram and mix, guarantee the pollution-free and the original ecology at water source, reduce the compound and the electrolyte of bleaching quality of water, promote safe and healthy drinking water treatment operational effect, the public shortcoming of treating optimizing of prior art has:
make sewage treatment obtain the oxidation film grid filtration dialysis purification operation effect of aeration utilizing the photocatalytic oxidation reaction, nevertheless can cause the water retention degree of pure water in the processing great like this, and the incrustation scale is piled up biomembrane adaptation photocatalytic oxidation inefficiency, and the circulation causes easily to block up and grid net rack water pressure to strike too big and the linearity of deformation, leads to subsequent water pollution source to continuously mix the pure water of purification and causes secondary pollution and sewage treatment efficiency not high.
Disclosure of Invention
Aiming at the defects in the prior art, the invention aims to provide sewage treatment equipment utilizing photocatalytic oxidation reaction, which aims to solve the problems that the sewage treatment obtains the aeration operation effect of filtering, dialyzing and purifying an oxidation film grating by utilizing the photocatalytic oxidation reaction, but the water retention of purified water in the treatment is larger, the adaptation photocatalytic oxidation efficiency of a scale accumulation biomembrane is low, the circulation easily causes blockage and the linearity of deformation caused by overlarge water pressure impact of the grating frame, so that the purified water continuously mixed and purified by a subsequent water pollution source causes secondary pollution and the sewage treatment efficiency is low.
In order to achieve the purpose, the invention is realized by the following technical scheme: a sewage treatment apparatus using a photocatalytic oxidation reaction, comprising: the vortex light supplement frame groove is embedded with the grid aeration pipe into a whole, the vortex light supplement frame groove is embedded on the right side of the vortex light supplement frame groove and communicated with the vortex light supplement frame groove, the electric control cabinet is tightly attached to the left side of the vortex light supplement frame groove, the key panel is installed on the front side of the electric control cabinet and located on the same vertical face, the vortex light supplement frame groove is provided with two crystal brake pair frame plates, two lamp bead spiral pipes and a sleeve box groove, the two crystal brake pair frame plates are respectively inserted into the upper side and the lower side of the sleeve box groove, the two lamp bead spiral pipes are respectively installed on the left side and the right side of the sleeve box groove, and the sleeve box groove and the grid aeration pipe are embedded into a whole.
In order to optimize the technical scheme, the method further comprises the following steps:
as a further improvement of the invention, the thyristor pair frame plate is composed of a flat thyristor filler strip and a hoisting sleeve plate, the flat thyristor filler strip is installed inside the hoisting sleeve plate, and the flat thyristor filler strip and the hoisting sleeve plate are buckled together and are positioned on the same vertical surface.
As a further improvement of the invention, the flat thyristor gasket strip is composed of a thyristor lamp rod and a flat ellipsoid gasket strip, the thyristor lamp rod is installed inside the flat ellipsoid gasket strip, and the thyristor lamp rod and the flat ellipsoid gasket strip are inserted and embedded together and are on the same horizontal plane.
As a further improvement of the invention, the lamp bead spiral tube consists of more than two lamp bead paddle blades and a shaft sleeve cap tube body, wherein the lamp bead paddle blades are arranged on the front side of the shaft sleeve cap tube body, and the lamp bead paddle blades and the shaft sleeve cap tube body are nested into a whole, and the axes of the lamp bead paddle blades and the shaft sleeve cap tube body are collinear.
As a further improvement of the invention, the lamp bead paddle blade is composed of two or more arc wing plates and a lamp bead seat, the lamp bead seat is provided with more than two arc wing plates which are respectively arranged at the upper left corner and the lower right corner of the two arc wing plates, and the two arc wing plates are electrically connected with the lamp bead seat through embedded wires and are positioned on the same arc surface.
As a further improvement of the invention, the flange square frame groove consists of a clamping strip and a thin square frame groove, wherein the clamping strip is arranged inside the thin square frame groove, and the clamping strip and the thin square frame groove are buckled together and are positioned on the same vertical surface.
As a further improvement of the invention, the clamping strip is composed of an I-shaped rubber pad and a clamping strip plate groove, the I-shaped rubber pad is arranged inside the clamping strip plate groove, and the I-shaped rubber pad and the clamping strip plate groove are in interference fit.
As a further improvement of the invention, the grid aeration pipe consists of a double-wheel aeration pipe and a grid transverse membrane plate, the double-wheel aeration pipe is arranged on the top of the grid transverse membrane plate, and the double-wheel aeration pipe and the grid transverse membrane plate are tightly attached together and are positioned on the same horizontal plane.
As a further improvement of the invention, the double-wheel aeration pipe consists of an aeration core pipe and a ventilation wheel notch, two ventilation wheel notches are arranged and are respectively installed at the left side and the right side of the aeration core pipe, and the aeration core pipe is inserted and embedded with the ventilation wheel notch and is communicated with the ventilation wheel notch.
As a further improvement of the invention, the thyristor lamp rod is of a lamp holder rod structure with a short-pin relay tube inserted into a thyristor corrugated sheet, so that the lamp holder rod is convenient to transversely insert to form the operation effect of up-down contraposition illumination light distribution adaptive photocatalytic oxidation reaction aeration.
As a further improvement of the invention, the double-arc wing plate is of a corrugated plate structure with a concave arc at the upper left corner and a convex arc at the lower right corner, so that lamp beads in different directions can be conveniently loaded up and down to form the operation effects of light condensation and light supplement illumination.
As a further improvement of the invention, the I-shaped rubber pad is of an I-shaped pad frame structure with the upper and lower long plate middle separation rubber short cushion blocks, so that the upper and lower spacing supports can conveniently keep a movable gap between the middle parts and press and buckle the sewage inlet pipe with high efficiency.
As a further improvement of the invention, the opening of the air exchange wheel is of a wheel ring groove structure with four fan plates superposed with a thick frame ring belt bundle opening, so that a pipeline is conveniently and transversely inserted to adapt to biomembrane maintenance, ventilation and high-efficiency water filtration.
Advantageous effects
The invention relates to a sewage treatment device utilizing photocatalytic oxidation reaction, which is characterized in that a worker attaches a clamping strip of a pipeline butt flange frame groove into which sewage is discharged to a thin frame groove, so that an I-shaped rubber pad and the clamping strip plate groove are assembled to form an anti-tripping pipeline with high efficiency, the sewage is discharged into a grid aeration pipe to be adapted to filtration and permeation water purification operation, a crystal brake matched with a rotational flow light filling frame groove controls the frame plate and a lamp bead spiral pipe to be electrified and brightened by an electric control cabinet and a key panel in a sleeve box groove, the flat crystal brake pad strip is inserted into a flat ellipsoid pad strip through a crystal brake lamp strip rod in a hoisting sleeve plate to form an operation effect of vertically and transversely hoisting alignment high photocatalytic oxidation irradiation, and the light filling irradiation oxidation high efficiency of corner scale cleaning is ensured by rotationally linking a double-arc wing plate and a lamp bead seat in a way of adapting to the periphery of a shaft sleeve cap pipe body through a lamp bead paddle blade, thereby improving the continuous supply and slow operation effect, and the rate of light supplementing and light distributing adaptive catalytic oxidation aeration water purification is ensured to be improved.
The invention has the following advantages after operation:
application grid aeration pipe cooperatees with whirl light filling frame groove, when axle sleeve cap body bearing solenoid valve circular telegram linkage gyration lamp pearl paddle blade drainage light filling through at both sides adaptation lamp pearl spiral pipe, form the avris incrustation scale and pile up the spiral oxidation pressure boost at dead angle and carry the operation effect, and promote the supplementary light distribution operation effect of light catalytic oxidation reaction, rethread thyristor covers plain noodles and biomembrane adaptation aeration reaction high efficiency to the water washing check inslot at frame plate guarantee grid transverse membrane board comprehensively, and the circulation transportation of pipeline grafting stably reduces the bradygenesis phenomenon, promote the aeration sterilization saturation that supplies formula sewage treatment operating efficiency and continuity promotion light catalytic oxidation.
Drawings
Other features, objects, and advantages of the present invention will become more apparent from the following detailed description of the embodiments of the invention when taken in conjunction with the accompanying drawings, in which:
FIG. 1 is a schematic structural view of a sewage treatment apparatus using photocatalytic oxidation according to the present invention.
FIG. 2 is a schematic diagram of a detailed side-sectional structure of a flange square frame groove and a rotational flow light supplement frame groove of the present invention.
Fig. 3 is a detailed schematic side sectional structure view of the grating aeration pipe and the rotational flow light supplement frame groove of the invention.
FIG. 4 is a schematic diagram of a detailed side-sectional structure of the spiral-flow light supplement rack groove, the crystal gate pair rack plate and the lamp bead spiral tube of the invention.
FIG. 5 is an enlarged side cross-sectional view of the clamping bar in an operating state.
Fig. 6 is a schematic side sectional enlarged structure view of the working state of the double-wheel aeration pipe of the invention.
Fig. 7 is an enlarged structural diagram of a side cross section of the flat-crystal gate gasket strip in an operating state according to the present invention.
Fig. 8 is a schematic side sectional enlarged structure view of the working state of the lamp bead paddle blade of the invention.
Description of reference numerals: the device comprises a flange square frame groove-1, a grid aeration pipe-2, a rotational flow light supplement frame groove-3, an electric control cabinet-4, a key panel-5, a crystal brake pair frame plate-3A, a lamp bead spiral pipe-3B, a sleeve box groove-3C, a flat crystal brake gasket strip-3A 1, a hoisting sleeve plate-3A 2, a crystal brake lamp sheet rod-3A 11, a flat ellipsoid gasket strip-3A 12, a lamp bead paddle blade-3B 1, a shaft sleeve cap pipe body-3B 2, a double-arc wing plate-3B 11, a lamp bead seat-3B 12, a clamping strip-11, a thin square frame groove-12, an I-shaped rubber pad-111, a clamping strip plate groove-112, a double-wheel aeration pipe-21, a grid transverse membrane plate-22, an aeration core pipe-211 and a ventilation wheel groove-212.
Detailed Description
In order to make the technical means, the creation characteristics, the achievement purposes and the effects of the invention easy to understand, the invention is further described with the specific embodiments.
The first embodiment is as follows:
referring to fig. 1 to 8, the present invention provides a sewage treatment apparatus using photocatalytic oxidation, comprising: the device comprises a flange square frame groove 1, a grid aeration pipe 2, a rotational flow light supplement frame groove 3, an electric control cabinet 4 and a key panel 5, wherein the rotational flow light supplement frame groove 3 and the grid aeration pipe 2 are nested into a whole, the flange square frame groove 1 is nested on the right side of the rotational flow light supplement frame groove 3 and is communicated with each other, the electric control cabinet 4 is tightly attached to the left side of the rotational flow light supplement frame groove 3, the key panel 5 is installed on the front side of the electric control cabinet 4 and is located on the same vertical surface, the rotational flow light supplement frame groove 3 is provided with a crystal brake pair frame plate 3A, lamp bead spiral pipes 3B and a sleeve box groove 3C, the crystal brake pair frame plate 3A is provided with two crystal brakes and is respectively inserted and embedded in the upper side and the lower side of the sleeve box groove 3C, the lamp bead spiral pipes 3B are respectively installed on the left side and the right side of the sleeve box groove 3C and the grid aeration.
Referring to fig. 4, the thyristor counter-frame plate 3A is composed of a flat thyristor pad strip 3A1 and a hoisting sleeve plate 3A2, the flat thyristor pad strip 3A1 is installed inside the hoisting sleeve plate 3A2, the flat thyristor pad strip 3A1 and the hoisting sleeve plate 3A2 are buckled together and are located on the same vertical plane, the lamp bead spiral tube 3B is composed of a lamp bead paddle blade 3B1 and a shaft sleeve cap tube body 3B2, the lamp bead paddle blade 3B1 is provided with more than two and is installed on the front side of the shaft sleeve cap tube body 3B2, the lamp bead paddle blade 3B1 and the shaft sleeve cap tube body 3B2 are nested into a whole and the axes of the lamp bead paddle tube bodies are collinear, and a horizontally and vertically crossed frame slot edge adaptive oxidation operation effect is formed by the flat thyristor pad strip 3A1 and the lamp bead paddle blade 3B 1.
Referring to fig. 7, the flat thyristor gasket strip 3a1 is composed of a thyristor lamp rod 3a11 and a flat ellipsoid gasket strip 3a12, the thyristor lamp rod 3a11 is installed inside the flat ellipsoid gasket strip 3a12, the thyristor lamp rod 3a11 and the flat ellipsoid gasket strip 3a12 are inserted and embedded together and are located on the same horizontal plane, the thyristor lamp rod 3a11 is a lamp holder rod structure in which a short-pin relay tube is inserted into a thyristor corrugated sheet, so that the vertical alignment illumination and light distribution are conveniently and transversely inserted to form an operation effect of adapting to photocatalytic oxidation reaction aeration, and the thyristor lamp rod 3a11 forms an auxiliary photocatalytic oxidation operation effect of integrating and converging high light irradiation one by one in the flat ellipsoid gasket strip 3a 12.
Referring to fig. 8, the lamp bead paddle blade 3B1 is composed of two or more arc wing plates 3B11 and a lamp bead seat 3B12, the lamp bead seat 3B12 is provided with two or more than two arc wing plates and is respectively installed at the upper left corner and the lower right corner of the arc wing plate 3B11, the arc wing plates 3B11 are electrically connected with the lamp bead seat 3B12 through embedded wires and are located on the same arc surface, the arc wing plates 3B11 are of a corrugated plate structure with a concave arc at the upper left corner and a convex arc at the lower right corner, so that the lamp beads in different directions can be conveniently loaded up and down to form the light condensing and light supplementing lighting operation effect, and the arc wing plates 3B11 drive the lamp bead seat 3B12 to form the light condensing and rotation turbulence speed increasing operation effect of the front and back panel surfaces.
Referring to fig. 2, the flange square frame groove 1 is composed of a clamping strip 11 and a thin square frame groove 12, the clamping strip 11 is installed inside the thin square frame groove 12, the clamping strip 11 and the thin square frame groove 12 are buckled together and are located on the same vertical plane, and an input water pipe is clamped in the thin square frame groove 12 through the clamping strip 11 with high efficiency.
Referring to fig. 5, the clamping strip 11 is composed of an i-shaped rubber pad 111 and a clamping strip plate groove 112, the i-shaped rubber pad 111 is installed inside the clamping strip plate groove 112, the i-shaped rubber pad 111 and the clamping strip plate groove 112 are in interference fit, the i-shaped rubber pad 111 is of an i-shaped pad frame structure with upper and lower long plate middle partition rubber short pads, the upper and lower middle partition struts are convenient to keep movable gaps between the upper and lower partition struts, the sewage inlet pipe is pressed and buckled in a butt joint mode, and an operation effect of flange joint butt joint pull buckles is formed in the clamping strip plate groove 112 through the i-shaped rubber pad 111.
The working process is as follows: a worker enables an I-shaped rubber pad 111 and a clamping strip plate groove 112 to be assembled to enable the anti-tripping pipeline to be efficient by attaching a clamping strip 11 of a pipeline butt flange square frame groove 1 into which sewage is discharged to a grid aeration pipe 2 for adaptive filtration, permeation and water purification operation, a crystal brake butt frame plate 3A and a lamp bead spiral pipe 3B matched with a rotational flow light supplementing frame groove 3 are controlled to be electrified and bright by a control cabinet 4 and a key panel 5 in a sleeve box groove 3C, a flat crystal brake pad strip 3A1 is connected with a flat ellipsoid pad strip 3A12 in a hoisting sleeve plate 3A2 through a crystal brake lamp strip rod 3A11 to form an operation effect of vertically and transversely hoisting alignment high photocatalytic oxidation irradiation, and a rotary linkage double-arc-wing plate 3B11 and a lamp bead seat 3B12 are matched with the periphery of a sleeve cap pipe body 3B2 through a lamp bead paddle blade 3B1 to ensure the high efficiency of corner scale removal and improve the slow operation effect of sewage treatment, and the rate of light supplementing and light distributing adaptive catalytic oxidation aeration water purification is ensured to be improved.
Example two:
referring to fig. 1 to 8, the present invention provides a sewage treatment apparatus using photocatalytic oxidation, which is otherwise the same as in example 1 except that:
referring to fig. 3, the grid aeration pipe 2 is composed of a double-wheel aeration pipe 21 and a grid transverse membrane plate 22, the double-wheel aeration pipe 21 is installed on the top of the grid transverse membrane plate 22, the double-wheel aeration pipe 21 and the grid transverse membrane plate 22 are tightly attached together and are located on the same horizontal plane, and the double-wheel aeration pipe 21 forms a purification operation effect of assisting in aeration and filtering sewage on the top of the grid transverse membrane plate 22.
Referring to fig. 6, the dual-wheel aeration pipe 21 is composed of an aeration core pipe 211 and an aeration wheel notch 212, the aeration wheel notch 212 is provided with two notches and is respectively installed at the left side and the right side of the aeration core pipe 211, the aeration core pipe 211 and the aeration wheel notch 212 are inserted and embedded together and are communicated with each other, the aeration wheel notch 212 is of a wheel ring groove structure with four fan plates superposed with a thick frame ring belt bundle opening, so that a pipeline is conveniently and transversely inserted to adapt to biofilm maintenance, ventilation and high efficiency water filtration, and a grid protection frame is formed by the aeration core pipe 211 and the aeration wheel notch 212 to communicate with each other to assist the operation effect of aeration oxidation.
Through discharging into the double round aeration pipe 21 and the horizontal lamina membranacea 22 internal layering dialysis and the oxidation of grid that sewage got into grid aeration pipe 2 earlier stage, adaptation illumination frame ring light filling and absorption make photocatalytic oxidation reaction's supplementary aeration efficiency dock aeration core pipe 211 and take a breath wheel notch 212 promote water purification rate and be high-efficient even.
The invention achieves the effects of spiral oxidation pressurization conveying operation of side scale accumulation dead angles by applying the grating aeration pipe 2 to be matched with the rotational flow light filling frame groove 3 and electrifying the bearing cap pipe body 3B2 bearing electromagnetic valve of the shaft sleeve cap pipe body 3B2 bearing electromagnetic valve of the matched lamp bead spiral pipe 3B at two sides to be linked with the rotary lamp bead paddle blade 3B1 to guide and fill light, and improves the auxiliary light distribution operation effect of the photocatalytic oxidation reaction, and ensures that the frame plate 3A is covered with the smooth surface in the water washing grid groove of the grating transverse membrane plate 22 by the crystal brake and the biomembrane matched aeration reaction is efficient, the circulation transportation of the pipeline insertion is stable and reduces the slow phenomenon, the continuous sewage treatment operation efficiency and the continuous aeration sterilization saturation of the photocatalytic oxidation are improved, so as to solve the operation effect of filtering, dialyzing and purifying of the oxidation membrane grating obtained by the sewage treatment by the photocatalytic oxidation reaction, however, the water retention of the purified water in the treatment process is large, the adaptation photocatalytic oxidation efficiency of the water scale accumulation biomembrane is low, and the flow rate easily causes blockage and the linearity of deformation caused by overlarge water pressure impact of the grid net frame, so that the problems that the purified water continuously mixed and purified in the subsequent water pollution source causes secondary pollution and the sewage treatment efficiency is low are caused.
The specific embodiments described herein are merely illustrative of the invention. Various modifications or additions may be made to the described embodiments or alternatives may be employed by those skilled in the art without departing from the scope of the invention or exceeding the scope of the claims appended hereto.

Claims (9)

1. A sewage treatment apparatus using a photocatalytic oxidation reaction, comprising: flange square frame groove (1), grid aeration pipe (2), whirl light filling frame groove (3), automatically controlled cabinet (4), key panel (5), its characterized in that:
the rotational flow light supplement frame groove (3) and the grid aeration pipe (2) are nested into a whole, the flange square frame groove (1) is nested on the right side of the rotational flow light supplement frame groove (3), the electric control cabinet (4) is tightly attached to the left side of the rotational flow light supplement frame groove (3), and the key panel (5) is installed on the front side of the electric control cabinet (4);
the rotational flow light supplement frame groove (3) is provided with a thyristor pair frame plate (3A), a lamp bead spiral tube (3B) and a sleeve box groove (3C);
the crystal brake pair frame plates (3A) are two and are respectively inserted into the upper side and the lower side of the sleeve box groove (3C), the lamp bead spiral tubes (3B) are two and are respectively installed on the left side and the right side of the sleeve box groove (3C), and the sleeve box groove (3C) and the grid aeration tube (2) are embedded into a whole.
2. The apparatus for treating wastewater using photocatalytic oxidation according to claim 1, wherein: the thyristor counter plate (3A) comprises a thyristor filler strip (3A 1) and a hoisting sleeve plate (3A 2), the thyristor filler strip (3A 1) is installed in the hoisting sleeve plate (3A 2), and the thyristor filler strip (3A 1) is buckled with the hoisting sleeve plate (3A 2).
3. The apparatus for treating wastewater using photocatalytic oxidation according to claim 2, wherein: flat thyristor filler strip (3A 1) comprises thyristor lamp piece pole (3A 11), flat ellipsoid filler strip (3A 12), install in the inside of flat ellipsoid filler strip (3A 12) thyristor lamp piece pole (3A 11), thyristor lamp piece pole (3A 11) is inserted with flat ellipsoid filler strip (3A 12) and is inlayed together.
4. The apparatus for treating wastewater using photocatalytic oxidation according to claim 1, wherein: lamp pearl spiral pipe (3B) comprise lamp pearl oar blade (3B 1), axle sleeve cap body (3B 2), lamp pearl oar blade (3B 1) are equipped with more than two and install in the front side of axle sleeve cap body (3B 2), lamp pearl oar blade (3B 1) and axle sleeve cap body (3B 2) nested an organic whole.
5. The apparatus for treating wastewater using photocatalytic oxidation according to claim 4, wherein: lamp pearl oar blade (3B 1) comprise double arc wing plate (3B 11), lamp pearl seat (3B 12), lamp pearl seat (3B 12) are equipped with more than two and install respectively in the upper left corner and the lower right corner of double arc wing plate (3B 11), double arc wing plate (3B 11) are connected with lamp pearl seat (3B 12) electricity through burying the wire in.
6. The apparatus for treating wastewater using photocatalytic oxidation according to claim 1, wherein: the flange square frame groove (1) is composed of a clamping strip (11) and a thin square frame groove (12), the clamping strip (11) is installed inside the thin square frame groove (12), and the clamping strip (11) and the thin square frame groove (12) are buckled together.
7. The apparatus for treating wastewater using photocatalytic oxidation according to claim 6, wherein: the clamping strip (11) is composed of an I-shaped rubber pad (111) and a strip clamping plate groove (112), the I-shaped rubber pad (111) is installed inside the strip clamping plate groove (112), and the I-shaped rubber pad (111) is matched with the strip clamping plate groove (112).
8. The apparatus for treating wastewater using photocatalytic oxidation according to claim 1, wherein: the grid aeration pipe (2) is composed of a double-wheel aeration pipe (21) and a grid transverse membrane plate (22), the double-wheel aeration pipe (21) is installed on the top of the grid transverse membrane plate (22), and the double-wheel aeration pipe (21) and the grid transverse membrane plate (22) are tightly attached together.
9. The apparatus for treating wastewater using photocatalytic oxidation according to claim 8, wherein: the double-wheel aeration pipe (21) consists of an aeration core pipe (211) and an aeration wheel notch (212), two aeration wheel notches (212) are arranged and are respectively installed on the left side and the right side of the aeration core pipe (211), and the aeration core pipe (211) and the aeration wheel notch (212) are inserted and embedded together.
CN202110118138.1A 2021-01-28 2021-01-28 Sewage treatment equipment utilizing photocatalytic oxidation reaction Pending CN112777878A (en)

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