CN105664716B - Air trapping handles table and the air treatment equipment system for production line - Google Patents

Air trapping handles table and the air treatment equipment system for production line Download PDF

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Publication number
CN105664716B
CN105664716B CN201610252132.2A CN201610252132A CN105664716B CN 105664716 B CN105664716 B CN 105664716B CN 201610252132 A CN201610252132 A CN 201610252132A CN 105664716 B CN105664716 B CN 105664716B
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Prior art keywords
air
processing
desktop
voc
trapping
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CN201610252132.2A
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CN105664716A (en
Inventor
张尧
罗伟明
蔡进
陈进
郑秋贤
付强
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Foshan Hanshou Environmental Technology Service Co ltd
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Foshan Han Animal Environment Science & Technology Service Co Ltd
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D53/00Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
    • B01D53/34Chemical or biological purification of waste gases
    • B01D53/74General processes for purification of waste gases; Apparatus or devices specially adapted therefor
    • B01D53/86Catalytic processes
    • B01D53/8668Removing organic compounds not provided for in B01D53/8603 - B01D53/8665
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D53/00Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
    • B01D53/02Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols by adsorption, e.g. preparative gas chromatography
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D53/00Separation of gases or vapours; Recovering vapours of volatile solvents from gases; Chemical or biological purification of waste gases, e.g. engine exhaust gases, smoke, fumes, flue gases, aerosols
    • B01D53/34Chemical or biological purification of waste gases
    • B01D53/74General processes for purification of waste gases; Apparatus or devices specially adapted therefor
    • B01D53/84Biological processes
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D2255/00Catalysts
    • B01D2255/80Type of catalytic reaction
    • B01D2255/802Photocatalytic
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D2257/00Components to be removed
    • B01D2257/70Organic compounds not provided for in groups B01D2257/00 - B01D2257/602
    • B01D2257/708Volatile organic compounds V.O.C.'s
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A50/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
    • Y02A50/20Air quality improvement or preservation, e.g. vehicle emission control or emission reduction by using catalytic converters

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  • Engineering & Computer Science (AREA)
  • Chemical & Material Sciences (AREA)
  • Environmental & Geological Engineering (AREA)
  • Health & Medical Sciences (AREA)
  • Biomedical Technology (AREA)
  • Analytical Chemistry (AREA)
  • General Chemical & Material Sciences (AREA)
  • Oil, Petroleum & Natural Gas (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Molecular Biology (AREA)
  • Disinfection, Sterilisation Or Deodorisation Of Air (AREA)

Abstract

The present invention provides a kind of air trapping processing table, including desk body, gas gathering mask and air-breathing processing unit, desk body includes desktop and is connected to the air guide bucket of the bottom of the table, desktop is relatively formed with processing district on top surface, desktop top surface offers several getter holes and is connected to the air guide bucket of bottom, the gas gathering mask is located on desktop, gas gathering mask offers gathering hole opposite and corresponding with the processing zone position, air-breathing processing unit is mounted on air guide bucket outlet at bottom end, it sucks from getter hole and is discharged after the processing of air-breathing processing unit so that being located at the air in gas gathering mask above desktop.Air trapping of the present invention handles table, can fully absorb the aerial VOC air that volatilizees when processing, prevent pollution environment.

Description

Air trapping handles table and the air treatment equipment system for production line
Technical field
The present invention relates to for administering Organic Waste Gas Pollution environmental protection equipment more particularly to a kind of air trapping processing table and Air treatment equipment system for production line.
Background technology
VOC substances refer to the general name of volatile organic matter under room temperature, common are formaldehyde, toluene, dimethylbenzene, acetone and fourth Ketone etc..In the industries such as petrochemical industry, pharmacy, paint, coating, electronic manufacture, surface anticorrosion, shoemaking, printing and communications and transportation Production and use during will produce a large amount of VOC, cause extreme influence, VOC to have a stimulating effect on the human body air quality And to the toxic effect of human body viscera, be detrimental to health, and VOC is inflammable causes security risk, and VOC is because discharge capacity is big, kind Class is more, difficult to degrade, strong toxicity, security risk have become greatly focus of the current whole world various countries to air-treatment problem.For example, It in sole manufacturing process, needs more bottoms being bonded by glue, in bonding, glue can volatilize a large amount of and have stimulation Property smell VOC gas, therefore, how quickly simultaneously staff smells or sucks this gas, be not conducive to good health for a long time, And the gas that glue volatilization generates fully is eliminated as a technical problem urgently to be resolved hurrily of the industry, and combine production Scene, while the airhandling equipment provided is also required to be suitble to flow line production.
Invention content
In view of the above, the present invention provides a kind of VOC gas that can fully absorb and handle volatilization, and suitable for stream The air trapping of aquatic producing line handles table.
Technical solution provided by the invention is:A kind of air trapping processing table, including desk body, gas gathering mask and air-breathing processing Device, desk body include desktop and are connected to the air guide bucket of the bottom of the table, and processing district, desktop are relatively formed on desktop top surface Top surface offers several getter holes and is connected to the air guide bucket of bottom, and the gas gathering mask is located on desktop, and gas gathering mask offers Gathering hole opposite and corresponding with the processing zone position, air-breathing processing unit are mounted on air guide bucket outlet at bottom end so that It is located at the air in gas gathering mask above desktop to suck from getter hole and be discharged after the processing of air-breathing processing unit.
Further, several getter holes are avoided and surround the processing district opening up, and are in " work " in the plate face of desktop Font is distributed, and getter pore size gradually becomes from the position of center line that two processing districts are isolated to neighbouring corresponding processing area edge Small, getter pore size is tapered into from separate processing district both ends to neighbouring corresponding processing district size.
Further, the desk body includes being used to support the supporting rack of desktop, and supporting rack includes several supporting rods and company It is connected on the crossbeam of supporting bar top two-by-two, desktop is two and is oppositely arranged plate body composition, and each plate body is hinged on cross by loose-leaf Liang Shang.
Further, the top of the air guide bucket is fixed in the frame that crossbeam surrounds, and the top of air guide bucket is with respect to crossbeam The edge that protrudes out of preset length is protruded out, is accordingly formed on the plate body and the engaging edge that protrudes out edge and mutually seal cooperation.
Further, the top middle portion of the air guide bucket is formed with two supporting beams, if being provided on the internal perisporium of air guide bucket Heavenly Stems and Earthly Branches bracer, the plate body after being closed for Supporting cover.
Further, the air-breathing processing unit includes multistage filtering component and suction fan, multistage filtering component packet Dust-proof layer, adsorption layer and cracking zone structure are included, suction fan is mounted on the bottom end of multistage filtering component to provide air-breathing power.
Further, the cracking zone structure includes being catalyzed lamp and the catalysis stratum reticulare mounted on catalysis lamp both sides, catalysis net It is formed with cracking and catalyzing enzyme on layer.
Further, the gas gathering mask is translucent cover, locating piece is provided at the angle on desktop, for the bottom with gas gathering mask Angle coordinates.
Further, air trapping processing table includes intelligent checking system, intelligent checking system include display with And air detection instrument, display are mounted on desktop surface, air detection instrument is mounted on the outlet end of air-breathing processing unit.
In addition, it is necessary to provide a kind of VOC air treatment equipment systems for production line by the present invention.
A kind of VOC air treatment equipment systems for production line include several air trappings processing tables, several Air-treatment pipe and air-treatment case, several air trappings processing tables collect VOC air and carry out the to the VOC air of collection Coagulation, air-treatment pipe connect air trapping and handle table, import air trapping processing table treated air and carry out second Grade processing, and the air after two stage treatment is sent to air-treatment case, carry out third level processing.
Compared to the prior art, the present invention handles table using the air trapping, is suitable in flow shop, can be fast The VOC gas of volatilization are fully collected and are handled by speed, meanwhile, working power is low, has effectively saved using energy source, using institute The VOC air treatment equipment systems for stating air trapping processing table, combine chemical photocatalysis technology and biologic treating technique, can fill Divide and absorbs VOC gas.
Description of the drawings
Above description is only the general introduction of technical solution of the present invention, in order to illustrate more clearly of technical scheme of the present invention, under Face will a brief introduction will be made to the drawings that need to be used in the embodiment or the description of the prior art, and the attached drawing in description is only pair Should in specific embodiments of the present invention, to those skilled in the art, without creative efforts, Other drawings may also be obtained based on these drawings when needed.
Fig. 1 is structural schematic diagram of the present invention for the VOC air treatment equipment systems of production line;
Fig. 2 is that the air trapping of air treatment equipment system shown in FIG. 1 handles the overall diagram of table;
Fig. 3 is the exploded view that air trapping shown in Fig. 2 handles table;
Fig. 4 is the vertical view for the desktop that air trapping shown in Fig. 2 handles table;
Fig. 5 is the stereogram after the desktop expansion of air trapping shown in Fig. 2 processing table;
Fig. 6 is the sectional view for the desk body that air trapping shown in Fig. 2 handles table;
Fig. 7 is the section schematic diagram of a layer structure of the air-breathing processing unit of desktop bottom shown in fig. 6;
Fig. 8 is the stereogram of the air-treatment pipe structure of air treatment equipment system shown in FIG. 1;
Fig. 9 is the stereogram of the air-treatment box structure of air treatment equipment system shown in FIG. 1;
Figure 10 is the schematic diagram of the first better embodiment of layer structure in air-treatment box structure shown in Fig. 9;
Figure 11 is the schematic cross-section of the second preferred embodiment air-treatment box structure of the invention;
Figure 12 is the schematic top plan view of air-treatment box structure shown in Figure 11;
Figure 13 is air-treatment box structure shown in Figure 11 along the schematic diagram in the directions A-A;
Figure 14 is air-treatment box structure shown in Figure 11 along the schematic diagram in the directions B-B;
Figure 15 is schematic cross-section when air-treatment box structure shown in Figure 11 is equipped with nutrition liquid status;
Figure 16 is the schematic cross-section of third preferred embodiment air-treatment box structure of the present invention;
Figure 17 is air-treatment box structure shown in Figure 16 along the schematic diagram in the directions A-A.
Specific implementation mode
In order to elaborate the technical solution that the present invention is taken to reach predetermined technique purpose, below in conjunction with this hair Attached drawing in bright embodiment, technical scheme in the embodiment of the invention is clearly and completely described, it is clear that described Embodiment is only the section Example of the present invention, instead of all the embodiments, also, before not making the creative labor It puts, the technological means or technical characteristic in the embodiment of the present invention can replace, below with reference to the accompanying drawings and in conjunction with the embodiments It is next that the present invention will be described in detail.
Referring to Fig. 1, a kind of VOC air treatment equipment systems for production line, are located at the one of flowing water conveyer belt 200 Side.VOC air treatment equipment systems include several air trapping processing tables 10, several air-treatment pipes 20 and air-treatment case 30.Several air trapping processing tables 10 are arranged in the side of flowing water conveyer belt 200, and first order processing is carried out to the air of collection, Air-treatment pipe 20 connects air trapping and handles table 10, imports air trapping processing table 10 treated air and carries out at the second level Reason, and the air after two stage treatment is sent to air-treatment case 30, carry out third level processing.
Fig. 2, Fig. 3 are please referred to, it includes desk body 11, gas gathering mask 12 and air-breathing processing unit 13 that air trapping, which handles table 10,. Desk body 11 includes supporting rack 111, the desktop 112 on supporting rack 111 and the air guide bucket mounted on 112 bottom of desktop 113.Supporting rack 111 includes several supporting rods 114 and the crossbeam 115 for being connected to 114 top of supporting rod two-by-two.The present embodiment In, desk body 11 is quadrangle desk body, and supporting rod 114 and crossbeam 115 are four.Desktop 112 is carried on crossbeam 115, table Neighbouring both sides are relatively formed with processing district 116 on 112 top surface of plate.In the present embodiment, processing district 116 is recessed rectangular recessed Slot.112 top surface of desktop offers several getter holes 117, the space that the air guide bucket 113 of getter hole 117 and 112 bottom of desktop surrounds Connection.
Fig. 4 is please referred to, several getter holes 117 avoid the processing district 116 and open up and surround the processing district 116, The distribution in the shape of an " I " in the plate face of desktop 112.Further, during 117 size of getter hole is isolated from two processing districts 116 Heart line position to neighbouring 116 edge of corresponding processing district tapers into, and 117 size of getter hole is from separate 116 both ends of processing district It is tapered into 116 size of neighbouring corresponding processing district, by being so distributed, the gas for being more advantageous to 112 top of desktop is abundant It absorbs.
Fig. 5, Fig. 6 are please referred to, desktop 112 is two and is oppositely arranged plate body composition, and each plate body is hinged on cross by loose-leaf On beam 115, it opposite can open, so installed to air guide bucket 113 convenient for 13 component of air-breathing processing unit.Air guide bucket 113 is in The top of pyramid shape barrel structure, air guide bucket 113 is fixed in the quadrangle frame that crossbeam 115 surrounds, the top of air guide bucket 113 What opposite crossbeam 115 protruded out preset length protrudes out edge 118, and the sealing of 118 phase of edge is accordingly formed with and protruded out on plate body and is coordinated Engaging edge so that end sealing with air guide bucket 113 after air guide bucket cover closes prevents the air leakage of sucking air guide bucket 113.It leads The top middle portion of gas bucket 113 is formed with two supporting beams 119, the plate body after being closed for Supporting cover.Further, air guide bucket 113 Several supporting blocks 110 are provided on internal perisporium, for assist supporting beam 119 together Supporting cover close after plate body.
The gas gathering mask 12 to be located on desktop 112, gas gathering mask 12 offer it is opposite and with the processing district 116 The corresponding gathering hole in position 121.In the present embodiment, gas gathering mask 12 is rectangular cover made of transparent material.For the ease of gas gathering mask 12 on desktop 112 cooperation position it is accurate, the four corners on desktop 112 are respectively arranged with locating piece 1121, for gas collection The quadrangle cooperation of cover 12.In addition, gas gathering mask 12 also may be designed as two opposite half case compositions, each half case is respectively articulated with On crossbeam 115.
Fig. 6 and Fig. 7 is please referred to, air-breathing processing unit 13 is mounted on 113 outlet at bottom end of air guide bucket, air-breathing processing unit 13 Including multistage filtering component 131 and suction fan 132, multistage filtering component 131 include dust-proof layer 133, adsorption layer 134 and Cracking zone structure 135.Dust-proof layer 133 is arranged in the outlet end of air guide bucket 113, to by the larger particle mistake of the grain sizes such as dust Filter.Adsorption layer 134 is arranged below dust-proof layer 133, predominantly activated carbon material, passes through activated carbon physical absorption VOC gas.It splits Change layer structure 135 and be mounted on 134 lower section of adsorption layer, to be cracked to VOC gas, cracking zone structure 135 includes catalysis lamp 1351 And the catalysis stratum reticulare 1352 mounted on 1351 both sides of catalysis lamp, it is catalyzed on stratum reticulare 1352 and is formed with cracking and catalyzing enzyme, such as nano peptide Deng, can catalysis lamp 1351 excitation under effect by VOC gas cracking, that is, carry out chemical breakdown.Suction fan 132 is arranged In the lower section of multistage filtering component 131,112 top of desktop is made to be located at the sky in gas gathering mask 12 by 132 air-breathing of suction fan Gas is fully absorbed in air guide bucket 113, then is imported after multistage filtering component 131 is handled from suction fan 132 through air guide bucket 113 Air outlet is discharged.
Further, air trapping processing table 10 further includes intelligent checking system, and intelligent checking system includes display 141 And air detection instrument (not shown), display 141 are mounted on 112 surface of desktop, operator can be with direct viewing to display Parameter value, parameter value include concentration, temperature and suction fan power etc., and air detection instrument goes out mounted on air-breathing processing unit 13 Mouth end, with the related parameter values of VOC gas after real-time detection process, and shows in display in real time.
When operator's production operation, the suction fan 132, gathering hole of the extraneous air from 12 both sides of gas gathering mask are opened Enter at 121, will not be shed from gathering hole 121 by the VOC air of material or workpiece volatilization above desktop 112 and pollutes sky Gas, VOC air can be inhaled into, and the air stream entered from two gathering holes 121 is collided, and the air stream collided can be flowed to both ends It is dynamic, at the both ends for flowing to desk body 11, heavy caliber is opened by the getter hole 117 of the wide-bore diameter in centerline and at both ends Hole can suck main air flow to form negative pressure in gas gathering mask 12 along speed ground, collect in this way, volatilization can fully be taken away along speed VOC gas in gas hood 12, therefore, by being I-shaped and suction hole varying aperture direction by air-breathing hole arrangement, well Using air rheology principle, realization quickly fully sucks the VOC in gas gathering mask 12, and can reduce suction fan 132 Working power, effectively saved the energy.
In conjunction with Fig. 8, air-treatment pipe 20 includes pipe sleeve 21 and the air-treatment structure in pipe sleeve 21 refering to fig. 1 22.Air-treatment structure 22 includes hurricane band 221 and fluorescent tube 222.The internal diameter phase of hurricane band 221 whole diameter and pipe sleeve 21 When hurricane band 221 helically extends in pipe sleeve 21, and 221 center of hurricane band is surrounded by axis through-hole, the zone face of hurricane band 221 On be coated with light enzyme catalyst (not shown), gas can be catalytically decomposed under the action of illumination.Fluorescent tube 222 is mounted on spiral In axis through-hole with 221 centers, ultraviolet lamp tube can be used in fluorescent tube 222, and the catalysis on 221 zone face of hurricane band is excited by illumination Agent.Preferably, being provided with the hurricane band 221 of a plurality of cooperation that is interweaved in pipe sleeve 21 and forming axis through-hole.
Air-treatment pipe 20 is several, and pore size can be different.In present pre-ferred embodiments, several air-treatments The pipe frame structure that pipe 20 forms includes several branch pipes 24 of manifold 23, connection on manifold 23, and is connected on manifold 23 and uses Gas in manifold 23 to be imported to the collecting pipe 25 of air-treatment case 30.Each branch pipe 24 is separately connected each air trapping processing 132 air outlet of suction fan of table 10.In this way, collecting treated VOC air through air-breathing wind by air trapping processing table 10 132 suction manifold 24 of machine from branch pipe 24 enters manifold 23 again, then enters collecting pipe 25 from manifold 23, enters at air Case 30 is managed, is handled with the prolonged second level in this way, VOC air passes through the long path carried out by air-treatment pipe 20, it can be preferable Ground is further processed the VOC air not eliminated completely in air trapping processing table 10.
Fig. 9, Figure 10 are please referred to, air-treatment case 30 includes air-washer 31 and the exhaust mounted on 31 top of air-washer Fan 32.Air-washer 31 includes babinet 40, the clear depressed structure 50 of reflux and admission line 60.
The top of babinet 40 has opening 41, and microbial nutrient solution is equipped in babinet 40.During this is preferably implemented, babinet 40 It is selected as hollow rectangular box, includes positioned at the first side wall 42 and second sidewall 43 of babinet both sides, positioned at top of the box Roof 44 and bottom wall 45 positioned at the bottom of box.Air inlet pipe mounting hole 421 is offered on the first side wall 42.It is opened up on roof 44 There is the opening 41.Drainage hole 451 is offered on bottom wall 45.
The clear depressed structure 50 of reflux is arranged in babinet 40, the clear depressed structure 50 that flows back include a partition board 51, several aeroscopic plates 52, Microbial inoculant coating and microbial nutrition component.Babinet 40 is divided into a reflux space 511 and a clear headroom by partition board 51 512, in the present embodiment specifically, 51 both sides of partition board are solidly connected on the forward and backward end wall of babinet, bottom end and the babinet 40 of partition board 51 There is certain gap between the inner surface of bottom wall, form reflux space 511 between partition board 51 and the first side wall 42, space of flowing back 511 gaps are smaller, for the liquid reflux bottom of box of top of the box.Clear headroom is formed between partition board 51 and second sidewall 43 512, form air guide channel for assembling several aeroscopic plates 52.Aeroscopic plate 52 includes hang plate 521 and level board 522, hang plate 521 relatively install two-by-two in the opposite the first side wall 42 in clear headroom, second sidewall 43, are in " eight " font, level board 522 Mounted on the top of two hang plates 521, block "eight" shape open top end and there is certain height with the open end Distance.The both ends of level board are attached on the forward and backward end wall of clear headroom internal box.Hang plate 521 is in clear headroom 512 It installs step by step from bottom to up, and a level board 522 is both provided with per a pair of 521 top of hang plate for forming "eight" shape.Such as This, the both sides in clear headroom 512 form the air guide channel prolonged in two complications.
The bottom end that a deflector 523 is vertically connected to partition board 51, deflector 523 is arranged in bottom in clear headroom 512 An air inlet honeycomb duct 524 is formed between the bottom wall of babinet 40, and is formed between the end of deflector 523 and second sidewall 53 There is gap, conductance runner 524 is connected to air guide channel.When VOC gas are imported in babinet 40, bottom in babinet 40 is introduced VOC gas flow into the bottom end space for two hang plates 521 to form "eight" shape along air inlet honeycomb duct 524, and gas is tilted along two The bottom surface of plate 521 flows up, and the then open top Jing Guo "eight" shape flows to the bottom of level board 522, and gas is along water The bottom of tablet 522 is divided into two strands and is flowed to the both sides of clear headroom 512, subsequently into two inclinations to upper level "eight" shape The bottom end space of plate 521, so flows up step by step, until after being divided to two plumes to go out from the bottom of the level board 522 of top, gas Body is flowed out from the opening 41 on 40 top of babinet.The gradient formed between hang plate 521 and horizontal plane selects between 10 degree to 45 degree, Preferably it is selected as 30 degree.When gas flows in air guide channel, while nutrient solution in clear headroom 512 can be driven the bottom of from It holds to top and flows, and flow back into reflux space 511 from the top of clear headroom 512, nutrient solution is entered by space 511 of flowing back To air inlet honeycomb duct 524, bottom end in clear headroom 512 is flow back into, is so recycled.
Microbial inoculant coating is coated on the bottom surface of aeroscopic plate, for forming microorganism in aeroscopic plate bottom surface microbe inoculation Group's layer.Microbial inoculant coating main component is made of the prokaryotes of symbiosis with biting VOC fungies and part, according to The gas ingredients of different pollution sources allocate composition by a certain percentage, and microbial inoculant coating of the present invention mainly carbon-based is received using compound Rice bed (coating).Since VOC gas density is relatively low, it is introduced into the VOC gas of the bottom of box rising edge aeroscopic plate in nutrient solution Bottom surface is moved, i.e., flows into the bottom surface of level board 522 from 521 bottom surface of hang plate, then moved along 522 bottom surface of level board, then Into the bottom surface of last layer hang plate 521, in this way, VOC gas are flowed along 52 bottom surface of aeroscopic plate always.
Microbial nutrition component is arranged in the top surface of aeroscopic plate 52, for providing the microorganism in microbial inoculant coating Nutrient, for microbial reproduction, culture.Contain trace mineral, carbohydrate and micro- for stablizing and accelerating in microbial nutrition component The enzyme preparation of biocoene metabolism, VOC are considered as the nutriment of microorganism.Nutrient solution prescription can be directly placed at aeroscopic plate top Face or air guide plate top surface setting accommodating device are respectively implanted microbial nutrition group such as grid or test tube in accommodating device Point.
Admission line 60 is mounted on the first side wall 42 of babinet 40, and one end of admission line 60 connects with extraneous air intake duct It connects, the other end stretches into babinet and extend to clear 50 bottom of depressed structure of reflux, is connected to air inlet honeycomb duct 524.
When using air-treatment box structure, accommodating height of the microbial nutrient solution in babinet 40 is that the clear depressed structure of reflux is high At 2/3 position of degree.VOC air is directed into air guide channel by admission line 60, VOC air contacts the painting of aeroscopic plate bottom surface Layer, which is bitten the VOC in air by microorganism, to be removed, and VOC air drivens microbial nutrient solution is flowed along air guide channel, nutrition Liquid flows back to the bottom of box by reflux space so that nutrient solution is in babinet internal circulation flow.The detailed process of nutrient solution effect For activation activation occurs for the microorganism of nutrient solution and attachment, and the common cracking effect generated to VOC is molten after VOC cracking Liquid is lysate, after preset time, when splitting action declines or cannot act on, passes through 451 waste discharge of drainage hole.
Exhaust fan 32 is mounted on 41 position of opening of air-treatment box structure, will be arranged from the air of 41 discharge of opening Go out, exhaust fan 32 includes exhaust pipe.Further, air detection instrument is installed in exhaust pipe, is handled through air trapping with detection The VOC content of table 10, air-treatment pipe 20 and air-treatment case 30 treated air, in real time detection and real-time display inspection The various data surveyed are realized to air treatment equipment system real-time control and timely feedback detection result.
1,12 are please referred to Fig.1, the present invention is used for the second of the air-treatment case of the VOC air treatment equipment systems of production line Preferred embodiment, including babinet 70, the clear depressed structure 80 of reflux and admission line 90.
The top of babinet 70 is formed with opening 71, and microbial nutrient solution is equipped in babinet 70.During this is preferably implemented, babinet 70 are selected as hollow rectangular box, include positioned at the first side wall 72 and second sidewall 73 of babinet both sides, positioned at top of the box Roof 74 and bottom wall 75 positioned at the bottom of box.Air inlet pipe mounting hole 721 is offered on the first side wall 72.It is opened on roof 74 Equipped with the opening 71.Drainage hole 751 is offered on bottom wall 75.
The clear depressed structure 80 of reflux is arranged in babinet 70, the clear depressed structure 80 that flows back include a partition board 81, several aeroscopic plates 82, Microbial inoculant coating and microbial nutrition component.
Figure 13, Figure 14 are please referred to, babinet 70 is divided into a reflux space 811 and a clear headroom 812 by partition board 81, this In embodiment specifically, 81 both sides of partition board are solidly connected on the forward and backward end wall of babinet, the bottom end of partition board 81 and the bottom wall of babinet 70 There is certain gap between inner surface, form reflux space 811 between partition board 81 and the first side wall 72, between space 811 of flowing back Gap is smaller, for the liquid reflux bottom of box of top of the box.Clear headroom 812 is formed between partition board 81 and second sidewall 73, Air guide channel is formed for assembling several aeroscopic plates 82.
Several aeroscopic plates 82 are alternately installed on 812 two opposite side walls of clear headroom and aeroscopic plate 82 is with respect to itself and side wall One end of connection tilts preset angle upwards, and the air guide channel prolonged in a complications is so formed in clear headroom.This implementation In example, aeroscopic plate 82 is rectangular slab, and aeroscopic plate 82 can be divided into several first aeroscopic plates being parallelly fixed on partition board 81, and flat Several second aeroscopic plates being fixed in capablely in second sidewall 73, the first aeroscopic plate are arranged alternately with the second aeroscopic plate, specifically, One end of first aeroscopic plate is solidly connected on partition board 81, and the other end extends to second sidewall 73 and to the preset angle of updip, and first The other end of aeroscopic plate is not connected to second sidewall 73, and the first ventilative gap 821 is formed between second sidewall 73;Accordingly, One end of second aeroscopic plate is solidly connected in second sidewall 73 and positioned at the 821 preset height in top of the first ventilative gap, second leads The other end of gas plate extends to partition board 81 and to the preset angle of updip, and the other end of the second aeroscopic plate is not connected to partition board 81, The second ventilative gap 822 is formed between partition board 81.According to above-mentioned mounting means, alternating installs aeroscopic plate, and air guide successively The front and rear sides of plate is respectively fixed on the forward and backward end wall of babinet, in this way, the air guide channel will be formed, it is illustrated that in, it introduces The VOC gas of the bottom of box are flowed along the first aeroscopic plate bottom surface channel, and the second air guide is flowed into after the first air-guiding gap 221 Board bottom face channel flows into the bottom surface channel of the first aeroscopic plate of last layer after the second air-guiding gap 222.In this way, guiding VOC Gas is flowed along air guide channel, and the gas of introducing is made to be dissipated from the opening of babinet 71 after air guide channel from the bottom of babinet Go out.It is appreciated that the gradient that the first aeroscopic plate updip or the second aeroscopic plate updip are formed may be the same or different, the gradient is selected 10 It spends between 45 degree, is preferably selected as 30 degree.The first ventilative gap 821 between first aeroscopic plate end and second sidewall 73 The second ventilative gap 822 between the second aeroscopic plate end and partition board 81 may be the same or different, preferably, being selected as identical.
When VOC gas flow in air guide channel, while the nutrient solution in babinet can be driven to flow to the clear depressed structure of reflux Top, slid to reflux space 811 at top for the ease of nutrient solution, the aeroscopic plate of top is set as connecting with partition board 81 The first aeroscopic plate, in this way, the first aeroscopic plate of top top surface formed one convenient for nutrient solution glide slope surface, for nutrition Liquid slides along the first air guide plate top surface to reflux space 811.What if the aeroscopic plate of top was set as connecting with second sidewall 31 Second aeroscopic plate, then the nutrient solution for being not easy to flow out from air guide channel circulates glibly, steady to the stress of entire babinet Property is impacted.In addition, being discharged by gas surge for the ease of air guide channel end, the ventilative gap of least significant end is (corresponding Ventilative gap between the first aeroscopic plate of top and second sidewall 73) gap width be more than lowermost end air inlet when ventilative gap (the ventilative gap between corresponding the first aeroscopic plate of lowermost end and second sidewall 73).
Further, in order to enable the gas gone out from air guide channel is to the impact dynamic balance of babinet both sides, the present invention is also A kind of reflux structure depressed clearly for reinforcing balance-impact power is provided.Please refer to Fig.1 6, Figure 17, corresponding the first aeroscopic plate of top with A feeder current pipe 85 is installed in the lower section in the ventilative gap between second sidewall 73, and feeder current pipe 85 is connected to the bottom in babinet, in this way, When nutrient solution is that gas is gone out from air guide channel end, a nutrient solution part is empty by flowing through reflux from the first aeroscopic plate top side Between 811 to bottom in babinet, another part directly flows back to the bottom of babinet by feeder current pipe 85, in this way, can enhance babinet both sides The balance of stress.In the present embodiment, feeder current pipe 85 can be one or side by side several using straight-through pipe, each Feeder current pipe 85 penetrates the bottom that several aeroscopic plates are connected in babinet.
Microbial inoculant coating is coated on the bottom surface of aeroscopic plate, and microbial nutrition component is arranged in the top surface of aeroscopic plate.VOC Gas flows into the bottom surface of the second aeroscopic plate from the first aeroscopic plate bottom surface after the first air-guiding gap 221, is then led along second Gas board bottom face is moved, and the bottom surface of the first aeroscopic plate of last layer is entered after the second air-guiding gap 222, VOC gas always lead by edge Gas board bottom surface current is dynamic.Admission line 90 is mounted on the first side wall of babinet, and one end of air inlet pipe 30 connects with extraneous air intake duct It connects, the other end stretches into babinet and extend to the lower section of the aeroscopic plate of clear 80 bottom of depressed structure of reflux, is connected to air guide channel.
Please refer to Fig.1 5, using the second preferred embodiment air-treatment case when, microbial nutrient solution is in babinet 70 At 2/3 position of the accommodating height for the clear gas structure height that flows back.VOC air is directed into air guide channel by admission line 90, The coating of VOC air contact aeroscopic plate bottom surface, which is bitten the VOC in air by microorganism, to be removed, and VOC air driven microorganisms Nutrient solution is flowed along air guide channel, and nutrient solution flows back to the bottom of box by reflux space and feeder current pipe 85 so that nutrient solution exists Babinet internal circulation flow.
Further, one VOC adsorption plates can be installed in the top of reflux depressed structure 80 clearly in babinet, to reinforce to VOC Removal.
VOC air treatment equipments system of the present invention include air trapping processing table 10 processing, air-treatment pipe 20 processing, with And the processing of three processes of the processing of air-treatment case 30, the air trapping processing processing of table 10 is that physical absorption combination chemical light is urged Change is handled, and air-treatment pipe 20 is chemical photocatalysis treatment, and air-treatment case 30 is biological technical finesse, according to right on production line The requirement of VOC composition of air or degree for the treatment of may be selected the combination merely through a process or arbitrary several processes, such as can be Individual air trapping processing table 10 is handled, and individual air-treatment pipe 20 is handled, the processing of individual air-treatment case 30, or empty Gas collects processing table 10 and is combined processing or air trapping processing table 10, air-treatment pipe 20, Yi Jikong with air-treatment pipe 20 30 three of gas disposal case is combined processing.
In addition, air-treatment box structure provides the technology path of a completely new VOC processing, using by preferably and tame and docile The microorganism species of change and a special reflux structure depressed clearly with folding labyrinth-like containing microbial lytic liquid, are protected Card organic exhaust gas can come into full contact with the lysate containing microorganism, become harmless to there will be an opportunity to thoroughly decompose Carbon dioxide and water, removal rate can reach 98% or more, and can be kept in 3 months in the case where not updating lysate It plays a role.Organic exhaust gas on-Line Monitor Device is installed by the organic exhaust gas inlet and outlet in air-treatment box structure, It can be directly observed changing value of the organic exhaust gas before improvement and after administering, and uploaded to remotely by wired or wireless way Monitor supervision platform.Treatment effect is examined for administrative department, reliable data are provided and are supported.Pass through the VOC of synchronization monitoring before and after the processing Emissions data, and upload to data center and analyzed, to realize air large database concept, for supervision realize discharge charge and Air regulation provides foundation.This system operation costs are very low, usually only tens watts of power consumption, the replacement week of lysate Phase is and low-cost at 3 months or more, and overall cost is the 1/3 of existing processing unit, and management service is very easy.
The above described is only a preferred embodiment of the present invention, be not intended to limit the present invention in any form, though So the present invention has been disclosed as a preferred embodiment, and however, it is not intended to limit the invention, any technology people for being familiar with this profession Member, without departing from the scope of the present invention, when the technology contents using the disclosure above make a little change or modification For the equivalent embodiment of equivalent variations, as long as be without departing from technical solution of the present invention content, according to the technical essence of the invention, Within the spirit and principles in the present invention, to any simple modification, equivalent replacement and improvement etc. made by above example, still Belong within the protection domain of technical solution of the present invention.

Claims (9)

1. a kind of air trapping processing table (10), including desk body (11), gas gathering mask (12) and air-breathing processing unit (13), desk body (11) include desktop (112) and be connected to the air guide bucket (113) of desktop (112) bottom, relatively formed on desktop (112) top surface There are processing district (116), desktop (112) top surface to offer several getter holes (117) and be connected to the air guide bucket (113) of bottom, institute Gas gathering mask (12) is stated to be located on desktop (112), gas gathering mask (12) offer it is opposite and with the processing district (116) position pair The gathering hole (121) answered, air-breathing processing unit (13) are mounted on air guide bucket (113) outlet at bottom end so that above desktop (112) Air in gas gathering mask (12) is sucked from getter hole (117) and is discharged after air-breathing processing unit (13) processing;Several institutes Getter hole (117) is stated to avoid and open up around the processing district (116), the distribution in the shape of an " I " in the plate face of desktop (112), Getter hole (117) size from the position of center line that two processing districts (116) are isolated to neighbouring corresponding processing district (116) edge by Gradual change is small, and getter hole (117) size is gradual from separate processing district (116) both ends to neighbouring corresponding processing district (116) size Become smaller.
2. air trapping processing table (10) according to claim 1, it is characterised in that:The desk body (11) includes for branch The supporting rack (111) of desktop (112) is supportted, supporting rack (111) includes several supporting rods (114) and is connected to supporting rod two-by-two (114) crossbeam (115) on top, desktop (112) is two and is oppositely arranged plate body composition, and each plate body is hinged on cross by loose-leaf On beam (115).
3. air trapping processing table (10) according to claim 2, it is characterised in that:The top of the air guide bucket (113) It is fixed in the frame that crossbeam (115) surrounds, the top of air guide bucket (113) protrudes out the convex of preset length with respect to crossbeam (115) Edge (118) is stretched, is accordingly formed on the plate body and the engaging edge that protrudes out edge (118) and mutually seal cooperation.
4. air trapping processing table (10) according to claim 2, it is characterised in that:The top of the air guide bucket (113) Middle part is formed with two supporting beams (119), several supporting blocks (110) is provided on the internal perisporium of air guide bucket (113), for Supporting cover Plate body after conjunction.
5. air trapping processing table (10) according to claim 1, it is characterised in that:Air-breathing processing unit (13) packet Multistage filtering component (131) and suction fan (132) are included, multistage filtering component (131) includes dust-proof layer (133), adsorption layer (134) and cracking zone structure (135), suction fan (132) are mounted on the bottom end of multistage filtering component (131) to provide air-breathing Power.
6. air trapping processing table (10) according to claim 5, it is characterised in that:Cracking zone structure (135) packet Catalysis lamp (1351) and the catalysis stratum reticulare (1352) mounted on catalysis lamp (1351) both sides are included, is formed on catalysis stratum reticulare (1352) Cracking and catalyzing enzyme.
7. air trapping processing table (10) according to claim 1, it is characterised in that:The gas gathering mask (12) is transparent It covers, locating piece (1121) is provided at the angle on desktop (112), for coordinating with the base angle of gas gathering mask (12).
8. air trapping processing table (10) according to claim 1, it is characterised in that:Including intelligent checking system, intelligence Detecting system includes display (141) and air detection instrument, and display (141) is mounted on desktop (112) surface, air detection Instrument is mounted on the outlet end of air-breathing processing unit (13).
9. a kind of VOC air treatment equipment systems for production line, it is characterised in that:Including any one of claim 1 to 8 institute Air trapping processing table (10), several air-treatment pipes (20) and the air-treatment case (30) stated, several air trapping processing Table (10) collects VOC air and carries out first order processing to the VOC air of collection, and air-treatment pipe (20) connects at air trapping Table (10) is managed, air trapping processing table is imported (10) treated air and carry out second level processing, and by the sky after two stage treatment Gas is sent to air-treatment case (30), carries out third level processing.
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Inventor after: Zhang Yao

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