CN105180302B - A kind of room air monitoring processor - Google Patents

A kind of room air monitoring processor Download PDF

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Publication number
CN105180302B
CN105180302B CN201510598604.5A CN201510598604A CN105180302B CN 105180302 B CN105180302 B CN 105180302B CN 201510598604 A CN201510598604 A CN 201510598604A CN 105180302 B CN105180302 B CN 105180302B
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CN
China
Prior art keywords
air
filter
monitoring device
environment monitoring
filter core
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CN201510598604.5A
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Chinese (zh)
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CN105180302A (en
Inventor
刘伟峰
胥麟毅
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Guangzhou jintianruilin Environmental Technology Co. Ltd.
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GUANGZHOU JINTIAN RUILIN PURIFICATION EQUIPMENT MANUFACTURING Co Ltd
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Priority to CN201510598604.5A priority Critical patent/CN105180302B/en
Publication of CN105180302A publication Critical patent/CN105180302A/en
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Classifications

    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F1/00Room units for air-conditioning, e.g. separate or self-contained units or units receiving primary air from a central station
    • F24F1/02Self-contained room units for air-conditioning, i.e. with all apparatus for treatment installed in a common casing
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F6/00Air-humidification, e.g. cooling by humidification
    • F24F6/12Air-humidification, e.g. cooling by humidification by forming water dispersions in the air
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/10Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/10Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering
    • F24F8/15Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering by chemical means
    • F24F8/158Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering by chemical means using active carbon
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/10Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering
    • F24F8/192Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by separation, e.g. by filtering by electrical means, e.g. by applying electrostatic fields or high voltages
    • FMECHANICAL ENGINEERING; LIGHTING; HEATING; WEAPONS; BLASTING
    • F24HEATING; RANGES; VENTILATING
    • F24FAIR-CONDITIONING; AIR-HUMIDIFICATION; VENTILATION; USE OF AIR CURRENTS FOR SCREENING
    • F24F8/00Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying
    • F24F8/20Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by sterilisation
    • F24F8/22Treatment, e.g. purification, of air supplied to human living or working spaces otherwise than by heating, cooling, humidifying or drying by sterilisation using UV light
    • 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
    • Y02BCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO BUILDINGS, e.g. HOUSING, HOUSE APPLIANCES OR RELATED END-USER APPLICATIONS
    • Y02B30/00Energy efficient heating, ventilation or air conditioning [HVAC]
    • Y02B30/70Efficient control or regulation technologies, e.g. for control of refrigerant flow, motor or heating

Abstract

The present invention provides a kind of room airs to monitor processor, including body, wind turbine, filter device, fresh oxygengenerating plant, humidifier, sterilizing unit, indoor air environment monitoring device, exhaled gas environment monitoring device and control cabinet;The cavity of body is separated to form negative pressure cavity and positive pressure chamber by wind turbine;Negative pressure cavity is separated to form positioned at pollution air chamber and purification air chamber by filter device;Indoor air environment monitoring device is set in pollution air chamber;Exhaled gas environment monitoring device is set to positive pressure intracavitary;Fresh oxygengenerating plant, humidifier and sterilizing unit are set in purification air chamber;The signal input part of control cabinet is connect with indoor air environment monitoring device and exhaled gas environment monitoring device respectively;The signal output end of control cabinet is connect with wind turbine, fresh oxygengenerating plant, humidifier and sterilizing unit respectively.Using the present invention, comprehensive comprehensive detection in real time and processing can be carried out to indoor air quality, and easy to use, practical reliable.

Description

A kind of room air monitoring processor
Technical field
The present invention relates to air purifier technical fields more particularly to a kind of room air to monitor processor.
Background technology
With the continuous improvement of living standards, more stringent requirements are proposed to healthy living by people, with modern industry It continuing to develop, air quality in recent years constantly deteriorates, and seriously affects the normal life of people, although air monitering processor Appearance improves indoor air quality to a certain extent, but air monitering processor is due to season alternation of today, round the clock Inconvenient when the temperature difference is larger, area surroundings difference uses, function is excessively single;Lack comprehensive prison to indoor air quality It surveys and analyzes, such as whether the harmful substance (formaldehyde, PM2.5 particles, smoke, bacterium) of room air exceeds normal range (NR), room Whether interior air is excessively dry etc..In addition, the cleaning envoy as room air, also lacks targetedly processing mode.
Invention content
Technical problem to be solved by the present invention lies in indoor air quality can be carried out synthesis comprehensively by providing one kind Detection in real time and processing, and easy to use, practical reliable room air monitors processor.
In order to solve the above technical problem, the present invention provides a kind of room air monitor processor comprising have into The body of gas port and gas outlet;Wind turbine, filter device, fresh oxygengenerating plant, humidifier, sterilization dress are provided in the body It sets, indoor air environment monitoring device, exhaled gas environment monitoring device and control cabinet;The wind turbine is by the sky of the body Chamber is separated to form the negative pressure cavity positioned at the air inlet side and the positive pressure chamber positioned at the air outlet side;The filter device setting In in the negative pressure cavity and the negative pressure cavity be separated to form pollution air chamber on front side of the filter device and being located at institute State the purification air chamber on rear side of filter device;The indoor air environment monitoring device is set in the pollution air chamber;Institute It states exhaled gas environment monitoring device and is set to the purification air chamber or positive pressure intracavitary;The fresh oxygengenerating plant, humidification dress It sets and is set in the purification air chamber with sterilizing unit;The signal input part of the control cabinet respectively with the Interior Space compression ring Border monitoring device is connected with exhaled gas environment monitoring device;The signal output end of the control cabinet respectively with the wind turbine, fresh Oxygengenerating plant, humidifier are connected with sterilizing unit.
Preferably, the filter device is by the first primarily efficient filter layer, active carbon layer, the second primarily efficient filter layer and height Effect filter layer is sequentially overlapped;Wherein, the first primarily efficient filter layer and the second primarily efficient filter layer include by non-woven fabrics structure At the first filter core and enclose the first outline border set on the first filter core surrounding;First filter core is W-shaped wrinkle structure, Surrounding and the inside of first outline border are seamlessly connected;First filter core is lined with metal mesh;The high efficiency filter layer includes The second filter core for being made of ultra-fine fibre glass paper, enclose set on the second filter core surrounding the second outline border and be covered in described The protecting wire net of second filter core upper and lower surface;Second filter core is W-shaped wrinkle structure, the inside nothing of surrounding and second outline border Seam connection;Second filter core is lined with metal mesh;The active carbon layer includes by multiple activated carbon filter plate units by W-shaped arrangement The third filter core of composition and enclose the third outline border set on the third filter core surrounding;Activated carbon filter plate unit shape described in each two At angle end be equipped with baffle;It is equipped with side positioned at the end of the activated carbon filter plate unit of the third filter core orientation both sides Baffle;The periphery of the third filter core is seamlessly connected with the third outline border, baffle and side shield respectively.
Preferably, being provided with vertical clapboard in the cavity of the body and from the vertical clapboard bottom end towards described The tilt clapboard that the front panel one of body is sloped downwardly, the wind turbine are arranged between the tilt clapboard and organism soleplate; The cavity of the body is separated to form positioned at the air inlet side and has funnel by the vertical clapboard, tilt clapboard and wind turbine The negative pressure cavity of shape structure and positioned at the air outlet side and with funnel-shaped structure positive pressure chamber;Setting is useful in the negative pressure cavity In the mounting base for installing the filter device, the mounting base is located on the upside of the tilt clapboard.
Preferably, the mounting base includes the support baseboard of bottom opening, it is vertically arranged at the support baseboard two The limiting plate of side and the clamping device being set at the top of the limiting plate.
Preferably, the air inlet is arranged behind the front panel top of the body and higher than filter device installation Highly.
Preferably, the sterilizing unit is ultraviolet sterilization apparatus and is arranged in the support baseboard and tilt clapboard Between.
Preferably, the indoor air environment monitoring device and exhaled gas environment monitoring device include shell, The sensor module that air inlet and outlet in the housing sidewall is set and is arranged in the shell;The sensing Device assembly includes being spaced apart for detecting the Temperature Humidity Sensor of indoor air temperature and humidity, for detecting room air The smell sensor of middle smell, the PM2.5 sensors for detecting fine particle in air, for detecting content of formaldehyde gas Formaldehyde sensor, the oxygen sensor for detecting oxygen concentration and the biosensor for detecting air-borne bacteria content; The air inlet of the shell is provided with air inlet fan.
Preferably, the air inlet is equipped with multiple and is annularly distributed on the front panel of the body;The room Interior air environment monitoring device is arranged on the front panel of the body and is located at the middle region of the air inlet of the annular distribution Domain;The opening direction of the air inlet is towards the indoor air environment monitoring device.
Preferably, the fresh oxygen that atomization water vapour and the fresh oxygengenerating plant that the humidifier generates generate Qi leel is not led to by pipeline at the gas outlet;The filler pipe of the humidifier extends to outside the body.
Preferably, the organism bottom is provided with movable pulley.
A kind of room air monitoring processor for implementing the present invention has the advantages that compared with prior art:
The present invention work when, by indoor air environment monitoring device to formaldehyde in indoor air, PM2.5 particles, smoke, Bacterium, oxygen, water vapour content be measured in real time and feed back to control cabinet, when the content of detected object in room air When more than systemic presupposition value, control cabinet outputs a control signal to corresponding processing equipment (such as wind turbine, fresh oxygengenerating plant, humidification Device and sterilizing unit), room air is drawn into cocurrent in body and is filtered net through filter device by blower fan work, wind turbine Change.When bacterial content is more than systemic presupposition value in room air, control cabinet outputs a control signal to sterilizing unit and wind turbine, kills Bacterium device and wind turbine synchronous working, flow through sterilizing unit through the purified room air of filter device, carry out bacterial decomposition, to Keep the bacterial content of room air in a dynamic equilibrium state.When oxygen content is less than systemic presupposition value in room air When, control cabinet outputs a control signal to fresh oxygengenerating plant and wind turbine, fresh oxygengenerating plant and wind turbine synchronous working, defeated to interior Go out fresh oxygen, to keep the oxygen content of room air in a dynamic equilibrium state.When vapour content in room air When less than systemic presupposition value, control cabinet outputs a control signal to humidifier and wind turbine, humidifier and wind turbine synchronous working, to Indoor output atomized steam, to keep the humidity of room air in a dynamic equilibrium state.At the same time, also by exhaling Go out gas environment monitoring device to be measured in real time formaldehyde, PM2.5 particles, smoke, the content of bacterium in equipment exhaled gas And control cabinet is fed back to, when the content of formaldehyde, PM2.5 particles and smoke in exhaled gas is more than systemic presupposition value, system will The filter core of filter device is replaced in prompt, or increases the delivery efficiency of wind turbine;When bacterial content is more than that system is pre- in exhaled gas If when value, system will increase the delivery efficiency of sterilizing unit.As it can be seen that the present invention can carry out indoor air quality synthesis comprehensively Real-time detection and processing, and it is easy to use, practical reliable.
Description of the drawings
In order to illustrate the technical solution of the embodiments of the present invention more clearly, will simply be situated between to the attached drawing of embodiment below It continues.
Fig. 1 is a kind of explosive view of room air monitoring processor of the present invention;
Fig. 2 is a kind of installation diagram of room air monitoring processor of the present invention;
Fig. 3 is filter device and the structural schematic diagram of mounting base;
Fig. 4 is the structural schematic diagram of the first primarily efficient filter layer and the second primarily efficient filter layer of structure shown in Fig. 3;
Fig. 5 is the structural schematic diagram of the high efficiency filter layer of structure shown in Fig. 3;
Fig. 6 is the structural schematic diagram of the active carbon layer of structure shown in Fig. 3.
Specific implementation mode
Following will be combined with the drawings in the embodiments of the present invention, and technical solution in the embodiment of the present invention carries out clear, complete Site preparation describes, it is clear that described embodiments are only a part of the embodiments of the present invention, instead of all the embodiments.It is based on Embodiment in the present invention, those of ordinary skill in the art are obtained every other without creative efforts Embodiment shall fall within the protection scope of the present invention.
As depicted in figs. 1 and 2, one embodiment of the invention, a kind of room air monitoring processor comprising there is air inlet The body 1 of mouth 11 and gas outlet 12;Wind turbine 2, filter device 3, fresh oxygengenerating plant 4, humidifier are provided in the body 1 5, sterilizing unit 6, indoor air environment monitoring device 7, exhaled gas environment monitoring device 8 and control cabinet 9;The wind turbine 2 The cavity of the body 1 is separated to form positioned at the negative pressure cavity 13 of 11 side of the air inlet and positioned at 12 side of the gas outlet just Press chamber 14;The filter device 3 is set in the negative pressure cavity 13 and the negative pressure cavity 13 is separated to form positioned at the filtering The pollution air chamber 15 and the purification air chamber 16 on rear side of the filter device 3 of 3 front side of device;The indoor air environment Monitoring device 7 is set in the pollution air chamber 15;The exhaled gas environment monitoring device 8 is set to the purification air In chamber 16 or positive pressure chamber 14;The fresh oxygengenerating plant 4, humidifier 5 and sterilizing unit 6 are set to the purification air chamber 16 It is interior;The signal input part of the control cabinet 9 is filled with the indoor air environment monitoring device 7 and exhaled gas environmental monitoring respectively Set 8 connections;The signal output end of the control cabinet 9 respectively with the wind turbine 2, fresh oxygengenerating plant 4, humidifier 5 and sterilization Device 6 connects.
When the present invention works, by indoor air environment monitoring device 7 to formaldehyde in indoor air, PM2.5 particles, cigarette Taste, bacterium, oxygen, water vapour content be measured in real time and feed back to control cabinet 9, when detected object in room air When content is more than systemic presupposition value, control cabinet 9 outputs a control signal to corresponding processing equipment (such as wind turbine 2, fresh oxygengenerating plant 4, humidifier 5 and sterilizing unit 6), wind turbine 2 works, and room air is drawn into body 1 cocurrent through filter device by wind turbine 2 3, it is filtered purification.When bacterial content is more than systemic presupposition value in room air, control cabinet 9 outputs a control signal to sterilization Device 6 and wind turbine 2, sterilizing unit 6 and wind turbine 2 work asynchronously, and sterilizing unit is flowed through through 3 purified room air of filter device 6, bacterial decomposition is carried out, to keep the bacterial content of room air in a dynamic equilibrium state.When oxygen in room air When Gas content is less than systemic presupposition value, control cabinet 9 outputs a control signal to fresh oxygengenerating plant 4 and wind turbine 2, fresh oxygengenerating plant 4 and wind turbine 2 work asynchronously, to the fresh oxygen of indoor output, to keep the oxygen content of room air in a dynamic equilibrium-like State.When vapour content is less than systemic presupposition value in room air, control cabinet 9 outputs a control signal to humidifier 5 and wind Machine 2, humidifier 5 and wind turbine 2 work asynchronously, to indoor output atomized steam, to keep the humidity of room air at one Dynamic equilibrium state.At the same time, also by exhaled gas environment monitoring device 8 to formaldehyde, PM2.5 in equipment exhaled gas Particle, smoke, the content of bacterium are measured in real time and feed back to control cabinet 9, when formaldehyde in exhaled gas, PM2.5 particles and When the content of smoke is more than systemic presupposition value, system will be prompted to replace the filter core of filter device 3, or increase the output of wind turbine 2 Efficiency;When bacterial content is more than systemic presupposition value in exhaled gas, system will increase the delivery efficiency of sterilizing unit 6.As it can be seen that The present invention can carry out indoor air quality comprehensive comprehensive detection in real time and processing, and easy to use, practical reliable.
As shown in figure 3, the filter device 3 is by the first primarily efficient filter layer 31a, active carbon layer 32, the second primarily efficient filter Layer 31b and high efficiency filter layer 33 are sequentially overlapped.In use, the multi-filtering structure to be mounted on to the negative pressure side chamber of wind turbine 2 In vivo, it is power with wind turbine 2, is formed and recycle positive and negative pressure gas stream, room air is allowed to circulate, air is from the first primarily efficient filter layer 31a Side enters, and is discharged by 33 side of high efficiency filter layer after filtering.Since entire filter device is split structure, filter can be replaced at any time Core avoids the phenomenon that scrapping entire filter device, saves supplies consumption and cost, saved maintenance time, is easy to answer With popularization.
As shown in figure 4, the first primarily efficient filter layer 31a and the second primarily efficient filter layer 31b include being made of non-woven fabrics The first filter core 311 and enclose the first outline border 312 set on 311 surrounding of the first filter core;First filter core 311 is W-shaped Wrinkle structure, surrounding and the inside of first outline border 312 are seamlessly connected.First filter core 311 is lined with metal mesh (figure In do not indicate);The inside of first outline border 312 is equipped with the U-lag being socketed with 311 surrounding of the first filter core;Described first The surrounding of filter core 311 is seamlessly connected by glue and the U-lag.When it is implemented, the first outline border 312 is with firm metal Board group is at for fixed the first filter core 311 for having folded completion.First filter core 311 can be increased using the design of W-shaped wrinkle structure The filter area of big filter core prolongs the service life to increase the dust containing capacity of filter core, improves filter efficiency.First filter core 311 is pacified When dress, the surrounding of the first filter core 311 is all socketed with the U-lag of the first outline border 312 positions first, then filled in U-lag Profession bonding glue, make filter core surrounding bond fully be adhesively fixed in U-lag, to effectively prevent air leak or because Windage pressure causes damaged situation to occur.First filter core 311 is the nonwoven cloth material of wrinkle, since material itself is easy to break easily It is curved, one metal mesh of liner is needed to support molding, prevents non-woven fabrics from deforming under the effect of windage pressure.As it can be seen that at the beginning of first The simple and strong in structure of filter layer 31a and the second primarily efficient filter layer 31b is imitated, easy for installation, consumptive material is few, at low cost.Further, since First filter core 311 is packed into high intensity outline border in the form of W-shaped wrinkle, larger in the air of inflow with larger front face area Dust particle effectively stopped between pleat and pleat by filtering material, pure air from another side flow out, air-flow is gently uniform, and Under same air quantity effect, resistance is low, reaches 2 energy-saving effect of wind turbine.
As shown in figure 5, the high efficiency filter layer 33 includes the second filter core 331 being made of ultra-fine fibre glass paper, encloses and set In 331 surrounding of the second filter core the second outline border 332 and be covered in the protecting wire net 333 of 331 upper and lower surface of the second filter core; Second filter core 331 is W-shaped wrinkle structure, and surrounding and the inside of second outline border 332 are seamlessly connected;Second filter Core 331 is lined with metal mesh (not indicated in figure);The inside of second outline border 332 is equipped with and 331 surrounding of the second filter core The U-lag of socket;The surrounding of second filter core 331 is seamlessly connected by glue and the U-lag.When it is implemented, second Outline border 332 is formed with firm metallic plate, for fixed the second filter core 331 for having folded completion.Second filter core 331 uses W The design of shape wrinkle structure can increase the filter area of filter core, to increase the dust containing capacity of filter core, prolong the service life, and improve Filter efficiency.When second filter core 331 is installed, the surrounding of the second filter core 331 is all socketed with the U-lag of the second outline border 332 first Then profession bonding glue is filled in positioning in U-lag, so that the surrounding of filter core is bonded and be fully adhesively fixed in U-lag, from And air leakage or damaged situation caused by windage pressure is effectively prevent to occur.Second filter core 331 is the superfine glass of wrinkle Fibrous material needs one metal mesh of liner to support molding, prevents ultra-fine fibre glass paper from existing since material itself is easy to break pliable It deforms under the effect of windage pressure, at the same time, by the way that protecting wire net 333 is arranged come to second in 331 upper and lower surface of the second filter core Filter core 331 is whole to be supported, to achieve the effect that whole bending resistance, anti-folding.As it can be seen that the structure of high efficiency filter layer 33 is simply firm Gu easy for installation, consumptive material is few, at low cost.Further, since the second filter core 331 is the loading high intensity outline border in the form of W-shaped wrinkle It is interior, there is larger front face area, in the air of inflow the dust particle of PM2.5 classes effectively stop by filtering material pleat and pleat it Between, handling rate can reach 100%, and pure air is flowed out from another side, and air-flow is gently uniform, and under same air quantity effect, Resistance is low, reaches 2 energy-saving effect of wind turbine.
As shown in fig. 6, the active carbon layer 32 includes being filtered by the W-shaped third being arranged to make up by multiple activated carbon filter plate units Core 321 and enclose the third outline border 322 set on 321 surrounding of third filter core;The surrounding of the third filter core 321 and described the The inside of three outline borders 322 is seamlessly connected.The angle end that activated carbon filter plate unit described in each two is formed is equipped with baffle 323, institute It is U-shaped groove structure to state baffle 323, which is used to house the angle end that activated carbon filter plate unit described in each two is formed, and It is seamlessly connected with the end.It is equipped with side positioned at the end of the activated carbon filter plate unit of 321 orientation both sides of the third filter core Baffle 324, the side shield 324 are U-shaped groove structure, which is located at 321 orientation two of the third filter core for accommodating The end of the activated carbon filter plate unit of side, and be seamlessly connected with the end.When it is implemented, third outline border 322 is with firm Metallic plate forms, and baffle 323 and side shield 324 is placed by certain size specification gap in third outline border 322, by third filter core 321 (namely activated carbon filter plate units) are arranged by W types to frame so that in a limited space, realize that filter area maximizes, Optimize filter effect, prolongs the service life.The surrounding of third filter core 321 and the medial surface of third outline border 322 are close using polyurethane Sealing, which is realized, to be seamlessly connected, the angle end and be located at 321 row of third filter core that each two activated carbon filter plate unit is formed The end of the activated carbon filter plate unit of column direction both sides is using polyurethane sealant in the U-lag of baffle 323 and side shield 324 It realizes and is seamlessly connected, interior is just directly discharged to without third filter core 321 to prevent the gases such as formaldehyde, smoke, stink.It needs Illustrate, when activated carbon filter plate unit is by the arrangement splicing of W types, baffle 323 and side shield 324 also play activated carbon filter plate unit To the effect of positioning, make the connection more firm stable between activated carbon filter plate unit, convenient for assembly.Further, since third is filtered The activated carbon filter plate unit of core 321 is packed into high intensity outline border with W-shaped spread pattern, is had larger front face area, is made inflow The gases such as formaldehyde in air, smoke, stink adsorbed comprehensively by filtering material (activated carbon), and under same air quantity effect, Resistance is low, reaches 2 energy-saving effect of wind turbine.
As shown in Fig. 2, being provided with vertical clapboard 17 in the cavity of the body 1 and from 17 bottom end court of the vertical clapboard The tilt clapboard 18 that the front panel one of the body 1 is sloped downwardly, the wind turbine 2 are arranged in the tilt clapboard 18 and body Between 1 bottom plate;The vertical clapboard 17, tilt clapboard 18 and wind turbine 2 by the cavity of the body 1 be separated to form positioned at it is described into 11 side of gas port and negative pressure cavity 13 with funnel-shaped structure and positioned at 12 side of the gas outlet and with the positive pressure of funnel-shaped structure Chamber 14;The mounting base 19 for installing the filter device 3 is provided in the negative pressure cavity 13, the mounting base 19 is located at described 18 upside of tilt clapboard.As it can be seen that present invention optimizes 1 internal structure of body layout, gas is changed with funnelform cavity structure Flow velocity in shell, while the wind area of filter device 3 being made to reach rationalization and maximization, make outside air with extremely slow Slow wind speed gently by filter device 3, to ensure that efficient clean-up effect, while also reducing noise.
As shown in figure 3, the mounting base 19 includes the support baseboard 191 of bottom opening, it is vertically arranged at the support bottom The limiting plate 192 of 191 both sides of plate and the clamping device 193 for being set to 192 top of the limiting plate.When filter device 3 is installed, Filter device 3 is first placed on support baseboard 191, then clamps filtering by adjusting the spiro rod length on clamping device 193 Device 3, it is quick and easy for installation.
The air inlet 11 is arranged on the front panel top of the body 1 and higher than the height after the installation of filter device 3.By This, forms a larger gas spatial cache between filter device 3 and air inlet 11, under the speed for making the air of high speed entrance Drop enables outside air to enter filter device 3 with slower wind speed, extends gas flowing time in filter device 3, ensures gas Body is fully purified.
The sterilizing unit 6 is ultraviolet sterilization apparatus, and certainly, other corresponding equipment will also be used as sterilization to use, example Such as microwave sterilizer.In order to enable sterilizing unit to be come into full contact with purified air, the sterilizing unit 6 is arranged in institute It states between support baseboard 191 and tilt clapboard 18, that is, is located at the necking of funnel-form cavity, this is because being conducive to gather at necking Wind.
In order to facilitate the integral arrangement of sensor assembly, the indoor air environment monitoring device 7 and exhaled gas environment Monitoring device 8 includes shell, the air inlet and outlet being arranged in the housing sidewall and is arranged in the shell Sensor module;The sensor module includes being spaced apart for detecting indoor air temperature and the temperature and humidity sensing of humidity Device, for detecting the smell sensor of smell in room air, the PM2.5 sensors for detecting fine particle in air, use In the detection formaldehyde sensor of content of formaldehyde gas, the oxygen sensor for detecting oxygen concentration and for detecting air it is thin The biosensor of bacterial content.Further, for convenience will in indoor gas suction casing, convenient for detection, the shell into Air inlet fan is provided at air port.
Realize that accurate detection, the air inlet 11 are equipped with multiple and are in ring in order to facilitate indoor air environment monitoring device 7 Shape is distributed on the front panel of the body 1;The front panel in the body 1 is arranged in the indoor air environment monitoring device 7 The central region of air inlet 11 upper and positioned at the annular distribution;The opening direction of the air inlet 11 is towards the Interior Space Gas environment monitoring device 7.
The fresh oxygen that the atomization water vapour and the fresh oxygengenerating plant 4 that the humidifier 5 generates generate leads to respectively Piping is led at the gas outlet 12;The filler pipe of the humidifier 5 extends to outside the body 1.
1 bottom of the body is provided with movable pulley 10, to facilitate equipment to carry, place.
Above disclosed is only presently preferred embodiments of the present invention, cannot limit the right of the present invention with this certainly Range, therefore according to equivalent variations made by scope of the present invention patent, be still within the scope of the present invention.

Claims (7)

1. a kind of room air monitors processor, which is characterized in that include the body with air inlet and gas outlet;The body It is inside provided with wind turbine, filter device, fresh oxygengenerating plant, humidifier, sterilizing unit, indoor air environment monitoring device, exhales Go out gas environment monitoring device and control cabinet;The cavity of the body is separated to form positioned at the air inlet side by the wind turbine Negative pressure cavity and positive pressure chamber positioned at the air outlet side;The filter device is set in the negative pressure cavity and by the negative pressure Chamber is separated to form the pollution air chamber on front side of the filter device and the purification air chamber on rear side of the filter device; The indoor air environment monitoring device is set in the pollution air chamber;The exhaled gas environment monitoring device is set to The purification air chamber or positive pressure intracavitary;It is empty that the fresh oxygengenerating plant, humidifier and sterilizing unit are set to the purification In air cavity;The signal input part of the control cabinet respectively with the indoor air environment monitoring device and exhaled gas environmental monitoring Device connects;The signal output end of the control cabinet respectively with the wind turbine, fresh oxygengenerating plant, humidifier and sterilizing unit Connection;
The filter device is folded successively by the first primarily efficient filter layer, active carbon layer, the second primarily efficient filter layer and high efficiency filter layer Add;Wherein, the first primarily efficient filter layer and the second primarily efficient filter layer include the first filter core for being made of non-woven fabrics with And enclose the first outline border set on the first filter core surrounding;First filter core is W-shaped wrinkle structure, surrounding and described first The inside of outline border is seamlessly connected;First filter core is lined with metal mesh;The high efficiency filter layer includes by ultra-fine fibre glass Paper constitute the second filter core, enclose set on the second filter core surrounding the second outline border and be covered in following table on second filter core The protecting wire net in face;Second filter core is W-shaped wrinkle structure, and surrounding and the inside of second outline border are seamlessly connected;Described Two filter cores are lined with metal mesh;The active carbon layer includes being filtered by the W-shaped third being arranged to make up by multiple activated carbon filter plate units Core and enclose the third outline border set on the third filter core surrounding;The angle end that activated carbon filter plate unit described in each two is formed Equipped with baffle;It is equipped with side shield positioned at the end of the activated carbon filter plate unit of the third filter core orientation both sides;Described The periphery of three filter cores is seamlessly connected with the third outline border, baffle and side shield respectively;
Vertical clapboard is provided in the cavity of the body and from the vertical clapboard bottom end towards the front panel one of the body The tilt clapboard being sloped downwardly, the wind turbine are arranged between the tilt clapboard and organism soleplate;The vertical clapboard inclines The cavity of the body is separated to form positioned at the air inlet side and has the negative pressure cavity of funnel-shaped structure by inclined clapboard and wind turbine With positioned at the air outlet side and with funnel-shaped structure positive pressure chamber;It is provided in the negative pressure cavity for installing the filtering The mounting base of device, the mounting base are located on the upside of the tilt clapboard;
The organism bottom is provided with movable pulley.
2. room air as described in claim 1 monitors processor, which is characterized in that the mounting base includes bottom opening Support baseboard, the clamping dress for being vertically arranged at the limiting plate of the support baseboard both sides and being set at the top of the limiting plate It sets.
3. room air as claimed in claim 2 monitors processor, which is characterized in that the air inlet is arranged in the body Front panel top and higher than filter device installation after height.
4. room air as claimed in claim 2 monitors processor, which is characterized in that the sterilizing unit is ultraviolet sterilization Device and be arranged between the support baseboard and tilt clapboard.
5. room air as described in claim 1 monitors processor, which is characterized in that the indoor air environment monitoring device Include shell, the air inlet and outlet being arranged in the housing sidewall and setting with exhaled gas environment monitoring device Sensor module in the shell;The sensor module includes being spaced apart for detecting indoor air temperature and wet The Temperature Humidity Sensor of degree, for detecting the smell sensor of smell in room air, for detecting fine particle in air PM2.5 sensors, the formaldehyde sensor for detecting content of formaldehyde gas, the oxygen sensor for detecting oxygen concentration and Biosensor for detecting air-borne bacteria content;The air inlet of the shell is provided with air inlet fan.
6. room air as described in claim 1 monitors processor, which is characterized in that the air inlet is equipped with multiple and is in ring Shape is distributed on the front panel of the body;The indoor air environment monitoring device be arranged on the front panel of the body and Positioned at the central region of the air inlet of the annular distribution;The opening direction of the air inlet is supervised towards the indoor air environment Survey device.
7. room air as described in claim 1 monitors processor, which is characterized in that the atomized water that the humidifier generates The fresh oxygen that steam and the fresh oxygengenerating plant generate is led to by pipeline at the gas outlet respectively;The humidifier Filler pipe extend to outside the body.
CN201510598604.5A 2015-09-18 2015-09-18 A kind of room air monitoring processor Active CN105180302B (en)

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CN105627512A (en) * 2016-01-04 2016-06-01 广州金田瑞麟净化设备制造有限公司 Control circuit of air purifier
CN109489197A (en) * 2018-10-30 2019-03-19 珠海格力电器股份有限公司 Air purification method, system, clarifier and readable storage medium storing program for executing
CN111569134A (en) * 2020-04-20 2020-08-25 浙江省科技宣传教育中心 Air purification microwave sterilizer and air purification microwave sterilization method
CN114543247B (en) * 2022-03-17 2022-07-15 中山清匠电器科技有限公司 Domestic oxygen suppliment system of making oxygen based on digit regulation and control

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