CN108728861A - A kind of portable electronic sieve oxygenerator - Google Patents

A kind of portable electronic sieve oxygenerator Download PDF

Info

Publication number
CN108728861A
CN108728861A CN201810892242.4A CN201810892242A CN108728861A CN 108728861 A CN108728861 A CN 108728861A CN 201810892242 A CN201810892242 A CN 201810892242A CN 108728861 A CN108728861 A CN 108728861A
Authority
CN
China
Prior art keywords
chamber
oxygen
water
filtering
sieves
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN201810892242.4A
Other languages
Chinese (zh)
Inventor
陈善中
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Foshan Shunde Song Mei Electronics Products Co Ltd
Original Assignee
Foshan Shunde Song Mei Electronics Products Co Ltd
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Foshan Shunde Song Mei Electronics Products Co Ltd filed Critical Foshan Shunde Song Mei Electronics Products Co Ltd
Priority to CN201810892242.4A priority Critical patent/CN108728861A/en
Publication of CN108728861A publication Critical patent/CN108728861A/en
Pending legal-status Critical Current

Links

Classifications

    • CCHEMISTRY; METALLURGY
    • C25ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
    • C25BELECTROLYTIC OR ELECTROPHORETIC PROCESSES FOR THE PRODUCTION OF COMPOUNDS OR NON-METALS; APPARATUS THEREFOR
    • C25B11/00Electrodes; Manufacture thereof not otherwise provided for
    • CCHEMISTRY; METALLURGY
    • C25ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
    • C25BELECTROLYTIC OR ELECTROPHORETIC PROCESSES FOR THE PRODUCTION OF COMPOUNDS OR NON-METALS; APPARATUS THEREFOR
    • C25B1/00Electrolytic production of inorganic compounds or non-metals
    • C25B1/01Products
    • C25B1/02Hydrogen or oxygen
    • C25B1/04Hydrogen or oxygen by electrolysis of water
    • CCHEMISTRY; METALLURGY
    • C25ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
    • C25BELECTROLYTIC OR ELECTROPHORETIC PROCESSES FOR THE PRODUCTION OF COMPOUNDS OR NON-METALS; APPARATUS THEREFOR
    • C25B15/00Operating or servicing cells
    • C25B15/02Process control or regulation
    • CCHEMISTRY; METALLURGY
    • C25ELECTROLYTIC OR ELECTROPHORETIC PROCESSES; APPARATUS THEREFOR
    • C25BELECTROLYTIC OR ELECTROPHORETIC PROCESSES FOR THE PRODUCTION OF COMPOUNDS OR NON-METALS; APPARATUS THEREFOR
    • C25B9/00Cells or assemblies of cells; Constructional parts of cells; Assemblies of constructional parts, e.g. electrode-diaphragm assemblies; Process-related cell features
    • C25B9/70Assemblies comprising two or more cells
    • 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
    • Y02EREDUCTION OF GREENHOUSE GAS [GHG] EMISSIONS, RELATED TO ENERGY GENERATION, TRANSMISSION OR DISTRIBUTION
    • Y02E60/00Enabling technologies; Technologies with a potential or indirect contribution to GHG emissions mitigation
    • Y02E60/30Hydrogen technology
    • Y02E60/36Hydrogen production from non-carbon containing sources, e.g. by water electrolysis

Landscapes

  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Electrochemistry (AREA)
  • Materials Engineering (AREA)
  • Metallurgy (AREA)
  • Organic Chemistry (AREA)
  • Inorganic Chemistry (AREA)
  • Automation & Control Theory (AREA)
  • Separation Using Semi-Permeable Membranes (AREA)

Abstract

The present invention relates to a kind of portable electronics to sieve oxygenerator, including the electronics being set on lower housing sieves oxygen module and water storage element processed, and the moisture separation device and control circuit board being set on upper shell;Upper shell is detachably connected with lower housing;Electronics sieves oxygen module processed and is set to water storage element bottom, and moisture separation device detachable is set at the top of water storage element, and control circuit board is set to above moisture separation device.It is high, safe to use that this electronics sieves simple, reasonable for structure oxygenerator design, dependable performance, oxygen generation efficiency height, oxygen quality processed.

Description

A kind of portable electronic sieve oxygenerator
Technical field
The present invention relates to a kind of oxygen generating plant, specifically a kind of portable electronic sieves oxygenerator.
Background technology
Existing oxygenerator generally existing oxygen generation efficiency is low, oxygen effect processed is poor, user uses poor, the bulky inconvenience of embodiment It is easily damaged the deficiencies of service life is short in carrying, control circuit board.As disclosed in Chinese patent literature CN103935960B A kind of bipolar electrode electron adsorption oxygenerator, specifically discloses:Including oxygen-making trough, moisture trap, gas-liquid controller, gas mistake Filter clarifier, gas filtration water tank and small pump;The oxygen-making trough, moisture trap, gas-liquid controller, gas filtration purification Device, gas filtration water tank sequentially pass through pipeline and are connected;The moisture trap is arranged in the top of the oxygen-making trough, the gas Fluid controller is arranged in the top of the moisture trap;The small pump passes through pipeline and the gas filtration water tank and described Moisture trap is connected;The oxygen-making trough includes an oxygen production unit slot or multiple concatenated oxygen production unit slots, each oxygen processed Unit groove includes the oxygen plate processed of two pieces of parallel faces, and lye is filled between two blocks of oxygen plates processed;The inside of each oxygen production unit slot Equipped with metal electrode, air electrode is equipped on two blocks of oxygen plates processed.The oxygenerator oxygen generation efficiency is low, and performance reliability is low, and cloth Office is unreasonable to cause overall volume larger, is unfavorable for carrying.
Therefore, it is necessary to be further improved.
Invention content
It is an object of the invention to overcome above-mentioned the shortcomings of the prior art, and provide that a kind of design is simple, structure is closed The portable electronic that reason, dependable performance, oxygen generation efficiency are high, oxygen quality processed is high, safe to use sieves oxygenerator.
The object of the present invention is achieved like this:
A kind of portable electronic sieve oxygenerator, it is characterised in that:Electronics including being set on lower housing sieves oxygen module processed and storage Water assembly, and the moisture separation device and control circuit board that are set on upper shell;The upper shell connects with lower housing detachable It connects;The electronics sieves oxygen module processed and is set to water storage element bottom, and moisture separation device detachable is set at the top of water storage element, Control circuit board is set to above moisture separation device;
The electronics sieves oxygen module processed and is spliced by several electronics sieve oxygen modular spacing formula processed;The electronics sieves oxygen module packet processed Include oxygen generation box, at least one block of anode conducting plate and at least one piece of cathode conductive plate;The anode conducting plate and cathode conductive plate point It is not set to oxygen generation box inner cavity, anode conducting plate and cathode conductive plate interval type configuration;The side or two of the cathode conductive plate Side is provided with the composite layer of waterproof and breathable, constitutes oxygen-producing membrane;The side at least portion of composite layer is provided on the cathode conductive plate Exceptionally expose oxygen generation box;Power connection end on the anode conducting plate draws oxygen generation box;Upper a set of electronics sieves oxygen mould sun in the block processed Conductive plate a set of electronics under in pole sieves oxygen mould any cathode conductive plate in the block processed and is electrically connected;Head set electronics sieves in oxygen module processed Cathode conductive plate electric connection of power supply cathode, tail sleeve electronics sieve the anode conducting plate electric connection of power supply anode in oxygen module processed;
The moisture separation device includes vapor separating box, which is equipped with the level-one disengagement chamber being sequentially communicated, two Grade disengagement chamber and filter chamber, gas pass through level-one disengagement chamber, the second-order separation chamber and filter chamber successively;It is wrong in the level-one disengagement chamber Position formula is provided with several level-one liquid barriers;The vapor separating box corresponds to the second-order separation chamber and is provided with cooling assembly, the second-order separation Intracavitary dislocation type is provided with several two level liquid barriers;The vapor separating box corresponds to filter chamber and is provided with filter cartridge, from two fractions Pass through filter cartridge from the gas unidirectional that chamber comes out;
The water storage element includes water-storing tank, and oxygen generation box and level-one disengagement chamber are respectively turned on connection water-storing tank.
The anode conducting plate and/or cathode conductive plate are made of corrosion-resistant metal material;The composite layer is by polysulfones material Material is made, have on composite layer it is several cross sieve pores, cross sieve pore aperture be more than air in oxygen molecule, less than the moisture in electrolyte Son.
It includes two pieces of oxygen-producing membranes that the electronics, which sieves oxygen module processed, and the cathode conductive plate in two pieces of oxygen-producing membranes is electrically connected to each other, Two pieces of cathode conductive plates are respectively separated front side and the rear side that formula is arranged in anode conducting plate, are provided on two pieces of cathode conductive plates multiple The side for closing layer exposes outside front side and the rear side of oxygen generation box respectively;It further includes power connecting sheet, power connecting sheet that the electronics, which sieves oxygen module processed, One end is electrically connected with the power connection end on anode conducting plate, and the power connecting sheet other end a set of electronics under sieves any cathode in oxygen module processed Conductive plate is electrically connected.
The bottom surface of the level-one disengagement chamber is less than the bottom surface of the second-order separation chamber;Level-one disengagement chamber one end with into gas bushing Connection, the other end are connected to the second-order separation chamber one end;The filter chamber be divided into mutual disconnected transition chamber thereof, filtering inlet plenum and Discharge chamber is filtered, anti-dumping pressure control valve is provided between transition chamber thereof and filtering inlet plenum and controls mutual break-make, the mistake on filter cartridge Filter import is connected to filtering inlet plenum, and the filtering outlet on air outlet adapter and filter cartridge is connected to filtering discharge chamber respectively;It is described The second-order separation chamber other end is connected to transition chamber thereof, and the bottom surface of transition chamber thereof is higher than the bottom surface of the second-order separation chamber.
The anti-dumping pressure control valve includes that control motor, valve seat and spool, valve seat are fixed in vapor separating box, and control motor is solid Due on valve seat, valve core rotation is set on valve seat, is controlled the output shaft connection spool of motor and is driven valve core rotation, on spool There is gas distribution channel;When valve core rotation to conduction position, gas distribution channel one end is connected to transition chamber thereof, other end connection filtering air inlet Room, when valve core rotation to off-position, gas distribution channel is not attached to lead to transition chamber thereof and/or filtering inlet plenum.
The vapor separating box is equipped with the filtering suction nozzle of connection filtering inlet plenum and the filtering for being connected to filtering discharge chamber Outlet nozzle;Filtered inlet on filter cartridge is connect with filtering suction nozzle, and filtering outlet is connect with filtering outlet nozzle;The filter cartridge Inner cavity has several filtering chamber, several filtering chamber's head and the tail to be connected to, and filtered inlet is connected to first filtering chamber, filtering outlet connection Mo Ge filtering chamber;It is provided with activated charcoal unit in the filtering chamber;It is provided on the filtered inlet and/or filtering outlet Waterproof ventilated membrane.
It is described that compartment on the inside of gas bushing is provided with the air inlet inner tube, the air inlet inner tube one end be connected to level-one disengagement chamber and The aperture position of the end is higher than the bottom surface of level-one disengagement chamber, is detached into the gap connection level-one between gas bushing and the air inlet inner tube Chamber.
The vapor separating box is equipped with the voltage stabilizing set of connection level-one disengagement chamber and/or the second-order separation chamber and/or filter chamber Tin, it is provided with air-pressure balancing device, air-pressure balancing device inner cavity and corresponding chamber on voltage stabilizing sleeve;The air pressure balance Device is made of soft material, and inner cavity has certain retractility.
It is provided with access valve between the water-storing tank and vapor separating box, which opens and closes the outlet on water-storing tank Mouthful, with the gas circuit between on or off water-storing tank and vapor separating box;The access valve includes access upper cover and rotary body; The access upper cover is assemblied on water-storing tank, and is detachably connected with vapor separating box, on access lid on vapor channel with Gas outlet on water-storing tank corresponds;The rotation position is rotatably dispose between water-storing tank and access upper cover On water-storing tank or access on lid, rotary body is equipped with valve port;The rotation of rotary body drives valve port movable simultaneously, when valve port activity Gas circuit when between vapor channel and gas outlet, between water-storing tank and vapor separating box is connected, when valve port activity to and water When vapour channel and/or gas outlet misplace, gas outlet closing.
Humidifying water replanishing device is provided in the vapor separating box, which includes humidifying water tank and moisturizing Pump, humidifying water tank are connect by the first conduit with air outlet adapter, and humidifying water tank is connected by the water inlet end of the second conduit and small pump It connects, the water outlet of small pump is connect by third conduit with the moisturizing connector in vapor separating box, moisturizing connector and water-storing tank Connection;The water-storing tank inner cavity is provided with water level sensor;It is provided with HP detectors in the humidifying water tank;The humidifying water Oxygen supply connector is provided on case.
Beneficial effects of the present invention are as follows:
1. by the way that moisture separation device, water storage element and electronics are sieved the layout of oxygen module processed from top to bottom, to which electric appliance is first Part is detached with electrolyte, achievees the effect that separating dry space from moist space, is effectively prevent electrolyte adhesional wetting electric elements damage or is worked long hours Electric elements are easy moisture damage.Integrally with stacked rationally distributed, effective diminution complete machine the space occupied, and conveniently Carry out relevant Maintenance and Repair etc.;Carry out fluid infusion can be facilitated by unloading water-storing tank, easy to operate.
2. being integrated into an oxygen generation box by the way that oxygenerator structure will be electrolysed, realize that electronics sieves the modularization setting of oxygen module processed, Oxygen making amount as needed need to only increase or decrease electronics and sieve oxygen module number processed, without to anode conducting plate and/or the moon Pole conductive plate is moved, and effectively avoids damaging, it is ensured that oxygen performance processed;In addition, in oxygen module processed, have on cathode conductive plate The composite layer made of polysulfone material reaches waterproof and breathable effect using the characteristic of polysulfone material, ensures the oxygen energy in air Enter in oxygen generation box across composite layer and be dissolved in electrolyte, while preventing the electrolyte in oxygen generation box from oozing out outside oxygen generation box;This Oxygenerator can reliable, effectively, largely adsorb the oxygen in air, and then can be continual using the oxygen in air as raw material Inhalable pure oxygen is prepared, oxygen making amount is high, and oxygen purity obtained is high, and purity can reach 99% or more.
3. several set electronics sieve oxygen module processed splices i.e. composable electronics sieve oxygen module processed successively, need to only be added deduct by increasing Few electronics sieves the i.e. controllable oxygen making amount of splicing quantity of oxygen module processed, meets the use needs of different user and matching for different type of machines Set requirement;Electronics sieves the splicing construction advantages of simple between oxygen module processed, and dependable performance, and electronics is made to sieve the whole of oxygen module processed Body stabilized structure is reliable, and globality is strong;Power connecting sheet in electronics sieve oxygen module processed can take advantage of a situation while each module is spliced to be electrically connected It connects down a set of electronics and sieves oxygen mould cathode conductive plate in the block processed, and then so that each electronics is sieved oxygen module realization processed and be connected in series with, make each Electronics sieve oxygen module processed can simultaneously, synchronize and carry out oxygen operation processed, under the premise of preparing equivalent oxygen, the manufacturing cost of this structure It is low compared with traditional structure;Electronics sieves oxygen module processed and can integrally be assembled with oxygenerator body, easy to operate, facilitates the maintenance in later stage Work, user, which uses, to be embodied.
4. oxygen can complete two-stage separation and by-pass filtration, two-stage piece-rate system in vapor separating box to be efficiently separated out The gaseous electrolysis liquid being mingled in oxygen, filtration system can effectively filter oxygen and adsorbing contaminant;Pass through two-stage separation and level-one Being recycled in the electrolyte meeting automatic back flow to electrolysis box for filtering, greatly improving the safe to use of user, and separate makes With reducing the loss of electrolyte, reduce the frequency of addition electrolyte.
5. to improve the comfort of user's oxygen uptake, needs to carry out humidifying before oxygen supply, have in vapor separating box thus wet Change water replanishing device, the oxygen of completion steam separation, which can be delivered in the water purification of humidifying water tank, carries out humidifying;In addition, in humidifying water tank Equipped with HP detectors, to monitor the HP values of water purification in humidifying water tank constantly, monitor whether each component breaks down with this, if HP values There is exception, oxygenerator is stopped, and then ensures that user's is safe to use.
6. humidifying water tank is connected to water-storing tank, when the water level sensor in water-storing tank detects water level in water-storing tank When too low, the liquid in humidifying water tank is supplemented in water-storing tank by moisturizing pump work, is effectively extended the continuation of the journey of oxygen work processed, is kept away Exempt from the inconvenience case that oxygenerator needs frequent moisturizing.
Description of the drawings
Fig. 1 is the internal structure assembling figure that electronics sieves oxygenerator in one embodiment of the invention.
Fig. 2 is the internal structure exploded view that electronics sieves oxygenerator in one embodiment of the invention.
Fig. 3 is the explosive view of moisture separation device in one embodiment of the invention.
Fig. 4 is the sectional view of moisture separation device in one embodiment of the invention.
Fig. 5 is the stereogram of steam separating plate in one embodiment of the invention.
Fig. 6 is the partial sectional view of steam separating plate in one embodiment of the invention.
Fig. 7 is the exploded view of anti-dumping pressure control valve in one embodiment of the invention.
Fig. 8 is the inside top figure of overturning-preventing the valve opening state in one embodiment of the invention.
Fig. 9 is the inside top figure of overturning-preventing valve closing state in one embodiment of the invention.
Figure 10 is the internal structure vertical view of filter cartridge in one embodiment of the invention.
Figure 11 is the assembling stereogram that electronics sieves oxygen module processed in one embodiment of the invention.
Figure 12 is the exploded view that electronics sieves oxygen module processed in one embodiment of the invention.
Figure 13 is the assembling stereogram that electronics sieves the another orientation of oxygen module processed in one embodiment of the invention.
Figure 14 is the exploded view that electronics sieves the another orientation of oxygen module processed in one embodiment of the invention.
Figure 15 is the assembling vertical view that electronics sieves oxygen module processed in one embodiment of the invention.
The sectional view in the directions I-I in Figure 16 bitmaps 15.
The sectional view in the directions J-J in Figure 17 bitmaps 15.
Figure 18 is the structural schematic diagram of oxygen-producing membrane in one embodiment of the invention.
Figure 19 is the splicing schematic diagram that two sets of electronics sieve oxygen module processed in one embodiment of the invention.
Figure 20 is the exploded view of water storage element in one embodiment of the invention.
Figure 21 is the partial top view of water storage element when gas outlet is connected in one embodiment of the invention.
Figure 22 is the partial top view of water storage element when gas outlet is cut off in one embodiment of the invention.
Specific implementation mode
The invention will be further described with reference to the accompanying drawings and embodiments.
Referring to Fig. 1-Figure 22, this portable electronic sieves oxygenerator, including is set to the electronics sieve oxygen processed of the inner cavities lower housing K2 Module A ' and water storage element B, and it is set to the moisture separation device C and control circuit board of the inner cavities upper shell K1;Upper shell K1 with Lower housing K2 is detachably connected with;Electronics sieves oxygen module A processed ' bottoms water storage element B are set to, moisture separation device C detachables are set Be placed at the top of water storage element B, control circuit board is set to above moisture separation device C, this layout structure can realize electrolyte with The separating dry space from moist space of control circuit board, effectively prevent control circuit board to be influenced to damage by liquid;
Electronics sieves oxygen module A processed ' it is spliced by six sets of electronics sieve oxygen modules A compartments processed;It includes flat that electronics, which sieves oxygen modules A processed, Flat-shaped oxygen generation box, one piece of anode conducting plate A3 and two pieces of cathode conductive plate A201;Storage electrolyte is useful in oxygen generation box Oxygen chamber A9 processed, anode conducting plate A3 and cathode conductive plate A201 are respectively arranged in oxygen chamber A9 processed, and respectively at least partly It is soaked in electrolyte, for two cathode conductive plate A201 interval type configurations in the both sides anode conducting plate A3, electrolyte is containing low dense Spend sodium hydroxide or KOH electrolytic water;The both sides cathode conductive plate A201 are respectively arranged with the composite layer A202 of waterproof and breathable, Oxygen-producing membrane A2 is constituted, so that the oxygen in air may pass through composite layer A202 and enter oxygen chamber A9 processed, so as to oxygen and electrolyte Mixing carries out dissolved oxygen, and electrolyte cannot pass through composite layer A202 and ooze out oxygen chamber A9 processed;It is provided on cathode conductive plate A201 multiple The side of conjunction layer A202 largely exposes outside oxygen generation box and is contacted with air, to adsorb the oxygen in air;Oxygen generation box, which is equipped with, to be connected Lead to the outlet passageway of oxygen chamber A9 processed, the oxygen of preparation passes through outlet passageway to be conveyed to moisture separation device C;Anode conducting plate A3 On power connection end A301 draw oxygen generation box;Upper a set of electronics sieves a set of electronics under of the anode conducting plate A3 in oxygen modules A processed and sieves Any cathode conductive plate A201 electrical connections in oxygen modules A processed;Head set electronics sieves the cathode conductive plate A201 electricity in oxygen modules A processed Power cathode is connected, tail sleeve electronics sieves the anode conducting plate A3 electric connection of power supply anodes in oxygen modules A processed;When work, in air Oxygen pass through composite layer A202 to reach the surfaces cathode conductive plate A201 with cathode, led in cathode under the action of DC electric field Dissolved oxygen reaction occurs for the surfaces battery plate A201, and after and generate back reaction on anode conducting plate A3 and oxygen is made, oxygen passes through Outlet passageway is conveyed to moisture separation device C;
Moisture separation device C includes vapor separating box C1, and the inner cavities vapor separating box C1 are equipped with the level-one disengagement chamber being sequentially communicated C1013, the second-order separation chamber C1015 and filter chamber, the oxygen come out from water storage element B pass through level-one disengagement chamber C1013, two successively Grade disengagement chamber C1015 and filter chamber;Dislocation type is provided with several level-one liquid barrier C1014 in level-one disengagement chamber C1013, and oxygen is defeated It send the steam being mingled in level-one disengagement chamber C1013 that can collide with level-one liquid barrier C1014, makes vapor adhesion in level-one On liquid barrier C1014, and final reflux utilizes, this stage can complete preliminary steam mask work, effectively by most of water Vapour is separated and is recycled;Vapor separating box C1 corresponds to the second-order separation chamber C1015 and is provided with cooling assembly C3, two level Dislocation type is provided with several two level liquid barrier C1016 in disengagement chamber C1015, and oxygen conveys in the second-order separation chamber C1015, is mingled with Steam can collide with two level liquid barrier C1016, make vapor adhesion on two level liquid barrier C1016, in addition, cooling assembly Refrigeration effect moisture condensation can be made to restore to liquid, and be attached on two level liquid barrier C1016, the electrolyte separated is most Reflux utilizes eventually, this stage can effectively detach gaseous steam in oxygen, further complete steam separating treatment;Steam point Filter chamber is corresponded to from box C1 and is provided with filter cartridge C4, and the gas unidirectional come out from the second-order separation chamber C1015 is complete by filter cartridge C4 Enter in filter cartridge C4 immediately at the oxygen of the second-order separation and is filtered, remaining water in the effective adsorption of oxygen of this stage energy Vapour, moreover it is possible to which the impurity in adsorption of oxygen keeps the oxygen cleanliness factor finally supplied high;Vapor separating box C1 is equipped with one fraction of connection Air inlet cannula C 1011 from chamber C1013 and the air outlet adapter C1027 for being connected to filter chamber, wherein air inlet cannula C 1011 are used for and storage Water assembly B conducting connections;
Water storage element B includes water-storing tank B1, and oxygen generation box and level-one disengagement chamber C1013 are respectively turned on connection water-storing tank B1.
Further, anode conducting plate A3 and cathode conductive plate A201 are made of corrosion-resistant metal material respectively, except this with Outside, other metal material insteads can also be used;Composite layer A202 is made of polysulfone material, there is several sieve pores excessively on composite layer A202 A203, the aperture for crossing sieve pore A203 are more than oxygen molecule O2 in air, less than hydrone H2O and the NaOH molecule in electrolyte And KOH molecule.
Further, oxygen generation box includes the procapsid A1 mutually assembled and back casing A4;On procapsid A1 and back casing A4 Respectively assembly and it is exposed have oxygen-producing membrane A2, be effectively increased oxygen uptake area;Procapsid A1 corresponds to oxygen-producing membrane A2 and is equipped with preceding adsorption orifice A101, back casing A4 correspond to oxygen-producing membrane A2 and are equipped with rear adsorption orifice A401, and two oxygen-producing membrane A2 expose outside system by corresponding adsorption orifice Oxygen box;Procapsid A1 and back casing A4 is equipped with the groove of the annular for assembling oxygen-producing membrane A2, oxygen-producing membrane A2 and procapsid A1 With back casing A4 secondary injection moldings.There is columnar outlet sleeve A104 at the top of procapsid A1, outlet sleeve A104 is for leading Lead to and meet water-storing tank B1, outlet passageway is the inner cavities outlet sleeve A104, and outlet sleeve A104 can guarantee the close of outlet passageway Feng Xing, globality and stability;There are outlet retaining wall A404 corresponding with outlet sleeve A104, outlet sleeve at the top of back casing A4 A104 exterior portions are wrapped up by outlet retaining wall A404, and the structure for using air-casing cylinder A104 is more reliable and more stable;At the top of procapsid A1 Integrated injection molding has preceding recess A108, the tops back casing A4 integrated injection molding to have rear recess A408, and preceding recess A108 is with after Recess A408 collectively forms the escape groove for being connected to oxygen chamber A9 processed, and the power connection end A301 on anode conducting plate A3 draws across escape groove Go out outside oxygen generation box.
Further, the connection sealing that box body sealing shroud A7 ensures outlet sleeve A104 is provided in outlet sleeve A104 Property;Sealing ring A5 is provided between power connection end A301 and escape groove, sealing ring A5 is sheathed on the outside of power connection end A301, effectively anti- Only electrolyte is overflowed from escape groove.There is box body connecting pole A103 on the fitting surface of procapsid A1, has on the fitting surface of back casing A4 Box body connector sleeve A403;When procapsid A1 and back casing A4 is mutually assembled, box body connecting pole A103 and box body connector sleeve A403 phases Mutual fastening-type grafting.
Further, it includes power connecting sheet A6, the one end power connecting sheet A6 and connecing on anode conducting plate A3 that electronics, which sieves oxygen modules A processed, Electric end A301 electrical connections, the other end a set of electronics under sieve any cathode conductive plate A201 in oxygen modules A processed and are electrically connected, and make one It is electric to cover the anode conducting plate A3 cathode conductive plate A201 that a set of electronics sieves in oxygen modules A processed under that electronics sieves in oxygen modules A processed Connection realizes that adjacent electronics sieve being connected in series with for oxygen modules A processed.Specifically, there is connection swivel nut A106 at the top of procapsid A1, connect electricity End A301 and power connecting sheet A6 is fixed on by screw on connection swivel nut A106 respectively, and realizes electrical connection each other;The tops procapsid A1 Portion, which is correspondingly connected with swivel nut A106, front wall A105, and being correspondingly connected with swivel nut A106 integrated injection moldings at the top of back casing A4 has front Wall A405, front and back retaining wall collectively form the protection ring for surrounding connection swivel nut A106.
Further, it includes the cathode conductive plate in two pieces of oxygen-producing membranes A2, two pieces of oxygen-producing membrane A2 that electronics, which sieves oxygen modules A processed, A201 is electrically connected to each other, and two pieces of cathode conductive plate A201 are respectively separated front side and the rear side that formula is arranged in anode conducting plate A3, and two The side that composite layer A202 is provided on block cathode conductive plate A201 exposes outside front side and the rear side of oxygen generation box respectively;Specifically, The conductive column A8 of front and rear housings is provided with while plugged on oxygen generation box, and conductive column A8 is electrically connected same electronics and sieves oxygen mould processed Two pieces of cathode conductive plate A201 and upper a set of electronics in block A sieve the power connecting sheet A6 in oxygen modules A processed, and a set of electronics is made to sieve Power connecting sheet A6 two pieces of cathode conductive plate A201 that a set of electronics sieves in oxygen modules A processed under respectively in oxygen modules A processed are electrically connected; The rigging position that procapsid A1 corresponds to conductive column A8 corresponds to the assembly position of conductive column A8 equipped with preceding evacuation opening A110, back casing A4 Opening A410, oxygen-producing membrane A2 are avoided after having installed, and opening A110 and afterwards evacuation opening are avoided before having part to expose outside accordingly A410, conductive column A8 are electrically connected by inserting mode with two cathode conductive plate A201.
Further, there is module connector sleeve A107 on the leading flank of oxygen generation box, have module connecting pole A407 on trailing flank;On A set of electronics sieves module connecting poles of the module connector sleeve A107 in oxygen modules A processed under in a set of electronics sieve oxygen modules A processed A407 is mutually inserted, and realizes that adjacent two electronics sieves the mutual splicing of oxygen modules A processed.
Further, the bottom surface of level-one disengagement chamber C1013 is less than the bottom surface of the second-order separation chamber C1015, makes the second-order separation chamber The electrolyte separated in C1015, which is taken advantage of a situation, flows into level-one disengagement chamber C1013, and is finally back to the water storage water of water storage element B In case;Level-one one end disengagement chamber C1013 is connected to air inlet cannula C 1011, the other end is connected to the one end the second-order separation chamber C1015, Ensure that oxygen can unidirectionally pass through level-one disengagement chamber C1013 and the second-order separation chamber C1015 successively, orderly to carry out steam separation;It crosses Filter chamber is divided into mutual disconnected transition chamber thereof C1017, filtering inlet plenum C1018 and filtering discharge chamber C1019, transition chamber thereof It is provided with anti-dumping pressure control valve C2 between C1017 and filtering inlet plenum C1018 and controls mutual break-make, the filtered inlet on filter cartridge C4 C4011 with filtering inlet plenum C1018 be connected to, the filtering outlet C4014 on air outlet adapter C1027 and filter cartridge C4 respectively with filtering Discharge chamber C1019 connections, above structure can be effectively ensured oxygen and be irreversibly delivered in filter chamber, reach expected filter effect; The second-order separation chamber C1015 other ends are connected to transition chamber thereof C1017, and the bottom surface of transition chamber thereof C1017 is higher than the second-order separation chamber The bottom surface of C1015 makes in transition chamber thereof C1017 remaining electrolyte take advantage of a situation and flows into the second-order separation chamber C1015, prevents adapter cavity Bacterium is grown in room C1017 liquid collectings.Specifically, the bottom surface of level-one disengagement chamber C1013 is obliquely installed to 1011 side of air inlet cannula C; The bottom surface of the second-order separation chamber C1015 is obliquely installed to the sides connection level-one disengagement chamber C1013;The bottom surface of transition chamber thereof C1017 to The sides connection the second-order separation chamber C1015 are obliquely installed.Above-mentioned inclined bottom surface setting, can be such that the electrolyte of each intracavitary all returns Stream to empty whole electrolyte, and then prevents intracavitary liquid collecting from growing bacterium.
Further, anti-dumping pressure control valve C2 includes that control motor C201, valve seat C202 and spool C204, valve seat C202 are fixed on At the top of vapor separating box C1, control motor C201 is fixed at the top of valve seat C202, and spool C204 is rotatably dispose in valve seat C202 Chamber, the output shaft connection spool C204 of control motor C201 simultaneously drive spool C204 to rotate, have gas distribution channel on spool C204 C2042, gas distribution channel C2042 top seals have sealing plate C203;When spool C204 turns to conduction position, gas distribution channel C2042 One end is connected to transition chamber thereof C1017, the other end connection filtering inlet plenum C1018, i.e. transition chamber thereof C1017 pass through gas distribution channel C2042 is connected to filtering inlet plenum C1018;When spool C204 turns to off-position, gas distribution channel C2042 and transition chamber thereof C1017 and/or filtering inlet plenum C1018 are not attached to lead to, i.e. connection between transition chamber thereof C1017 and filtering inlet plenum C1018 It disconnects.When oxygenerator is toppled over, the falling sensor on circuit control panel instructs, and anti-dumping pressure control valve C2 executes relevant finger It enables cut-out transition chamber thereof C1017 and filters the connection between inlet plenum C1018, effectively prevent electrolyte to occur flowing backwards phenomenon, protect Circuit and associated components on shield oxygenerator are not damaged, it is ensured that the using effect of oxygenerator extends the service life of oxygenerator. Specifically, the first stomata C1023 of connection transition chamber thereof C1017 is formed at the top of vapor separating box C1 and is connected to filters inlet plenum The second stomata C1024 of C1018;When spool C204 turns to conduction position, the inlet end C2041 of gas distribution channel C2042 and One stomata C1023 is corresponding and is connected to, and the outlet side C2043 of gas distribution channel C2042 is corresponding with the second stomata C1024 and is connected to;Valve When core C204 turns to off-position, the inlet end C2041 of gas distribution channel C2042 and the first stomata C1023 misplace, gas distribution channel The outlet side C2043 of C2042 and the second stomata C1024 misplace.There is circular valve chamber C2021 in valve seat C202, spool C204 is extremely Small part clearance-type is inserted into valve chamber C2021, and can be rotated in valve chamber C2021;Valve chamber C2021 inner walls are equipped with conducting limit rib C2022 and cut-out limit rib C2023, spool C204 are equipped with limited block C2044;When spool C204 turns to conduction position, Limit rib C2022 position-limiting action limited blocks C2044 is connected, it is ensured that spool C204 accurately turns to conduction position;Spool When C204 turns to off-position, limit rib C2023 position-limiting action limited blocks C2044 is cut off, it is ensured that spool C204 is accurately Turn to off-position.
Further, filtering suction nozzle C1025 and the company of connection filtering inlet plenum C1018 are equipped at the top of vapor separating box C1 By the filtering outlet nozzle C1026 for filtering out gas chamber C1019;The filtered inlet C4011 of the bottoms filter cartridge C4 and filtering suction nozzle C1025 grafting, filtering outlet C4014 are connect with filtering outlet nozzle C1026;There are several filtering chamber C4012 in the inner cavities filter cartridge C4, Several filtering chamber C4012 head and the tail are connected to, and filtered inlet C4011 is connected to first filtering chamber C4012, and filtering outlet C4014 connects Tong Moge filtering chamber C4012, it is ensured that oxygen irreversibly delivers in filter cartridge C4, and it is longest to convey stroke;Filtering chamber It is provided with activated charcoal unit on C4012, in addition to activated charcoal unit, relevant filter element can be also set, to be carried out to oxygen Filter and absorption steam;It is provided with waterproof ventilated membrane on filtered inlet C4011 and filtering outlet C4014, such as:Molecular film, the waterproof Ventilated membrane can further sift out the steam in oxygen, play certain steam separating effect.Filter cartridge C4 is by filtering back box C401 It is assembled with filtering head cover C402, filtered inlet C4011, filtering chamber C4012 and filtering outlet C4014 are separately formed in mistake On filter bottom box C401.
Further, 1011 inside compartment of air inlet cannula C is provided with the air inlet inner tube C1012, the one end the air inlet inner tube C1012 Be connected to level-one disengagement chamber C1013 and the aperture position of the end be higher than level-one disengagement chamber C1013 bottom surface, into gas bushing Gap between C1011 and the air inlet inner tube C1012 is connected to level-one disengagement chamber C1013.When work, the oxygen for preparing can from into Gap between the gas inner cavities inner tube C1012 and air inlet cannula C 1011 and the air inlet inner tube C1012 enters level-one disengagement chamber C1013, And the electrolyte separated then can only be between air inlet cannula C 1011 and the air inlet inner tube C1012 clearance backflow, it is seen that electrolysis The reflux of liquid does not interfere with the normal conveying of oxygen.
Further, the voltage stabilizing sleeve C 1021 of connection level-one disengagement chamber C1013, voltage stabilizing are equipped at the top of vapor separating box C1 Sleeve C 1021 is plugged with air-pressure balancing device C6, the inner cavities air-pressure balancing device C6 and corresponding chamber;Air-pressure balancing device C6 is made of soft material, and inner cavity has certain retractility.Specifically, air-pressure balancing device C6 is arranged in cylinder, side Wall is equipped with telescopic gauffer C6011;When vapor separating box C1 inner cavity air pressures are excessively high, the gauffer on air-pressure balancing device C6 C6011 is upheld, and the inner cavities air-pressure balancing device C6 increase;When vapor separating box C1 inner cavity air pressures are too low, air-pressure balancing device C6 On gauffer C6011 shrink, the inner cavities air-pressure balancing device C6 reduce;Can have by the above-mentioned corresponding actions of air-pressure balancing device C6 Effect ensures the air pressure balance of the inner cavities vapor separating box C1.
Further, it is provided with access valve between water-storing tank B1 and vapor separating box C1, which opens and closes water storage water Gas outlet B101 on case B1, with the gas circuit between on or off water-storing tank B1 and vapor separating box C1;Access valve includes Access upper cover B2 and rotary body B3;Access upper cover B2 passes through screw(The modes such as buckle, stickup)Fixing assembling at the top of water tank B1, And it is detachably connected with vapor separating box C1, the gas outlet B101 at the top of the vapor channel B201 on access upper cover B2 and water tank B1 It is mutually corresponding up and down;Rotary body B3 is located between water tank B1 and access upper cover B2, and is rotatably dispose at the top of water tank B1, rotary body B3 is equipped with valve port B301;The rotation of rotary body B3 drives valve port B301 movable simultaneously, when valve port B301 activities to vapor channel When between B201 and gas outlet B101, water tank B1 be connected with the gas circuit between vapor separating box C1, when valve port B301 activities to When vapor channel B201 and gas outlet B101 misplace, gas outlet B101 closings.Gas outlet is effectively controlled by the way that access valve is arranged The keying of B101, under oxygenerator working condition, by valve port B301 activities to corresponding simultaneously with gas outlet B101 and vapor channel B201 Connection;Water storage element B needs to dismantle moisturizing or when Maintenance and Repair, by valve port B301 activities to gas outlet B101 and vapor channel B201 misplaces, you can effectively prevent water storage element B leaks.Specifically, circular swivelling chute B102 is formed at the top of water tank B1, gone out Gas port B101 is located on the inside of swivelling chute B102;Rotary body B3 forms circular rotating part B302, and rotating part B302 is rotatable Be set on the inside of swivelling chute B102, there is sufficiently small gap between swivelling chute B102 and rotating part B302, swivelling chute B102 with Under the interaction of rotating part B302, rotary body B3 can be rotated effectively, and rotating effect is ideal;Valve port B301 centering types are set to On rotating part B302;When rotating part B302 rotations, valve port B301 is around B201 points of its axis oscillating, gas outlet B101 and vapor channel It Wei Yu not be on the swinging track of valve port B301.The sides rotary body B3 are extended with the turning effort portion B303 of bar shaped, swivelling chute B102 Side offers rotation opening B103, the turning effort portion B303 at least partially through rotation opening B103 and exposes outside on access B2 and water tank B1 is covered, user is facilitated to be rotated by turning effort portion B303 driving rotating bodies B3.
Further, vapor separating box C1 corresponds to the second-order separation chamber C1015 and is equipped with the refrigeration open C 1022 communicated therewith, In cooling assembly C3 insertion refrigeration open Cs 1022, so that the chill surface on cooling assembly C3 stretches into the second-order separation chamber C1015. Cooling assembly C3 includes the refrigeration bottom plate of radiator fan, radiating fin, semiconductor chilling plate and metal material, refrigeration bottom plate closing Formula is fixed in refrigeration open C 1022, and semiconductor chilling plate is set on refrigeration bottom plate, and radiating fin is located at semiconductor chilling plate Top, radiator fan are set on radiating fin.
Humidifying water replanishing device C5 is provided on vapor separating box C1, humidifying water replanishing device C5 include humidifying water tank C502 and Small pump C504, humidifying water tank C502 are connect by the first conduit C501 with air outlet adapter C1027, and humidifying water tank C502 passes through Two conduit C503 are connect with the water inlet end of small pump C504, and the water outlet of small pump C504 passes through third conduit C505 and steam point From the moisturizing connector C1028 connections on box C1, moisturizing connector C1028 is connected to water-storing tank B1;It is completed in vapor separating box C1 The oxygen of steam separating treatment enters humidifying water tank C502 through the first conduit C501, the humidifying of clean water in humidifying water tank C502 Afterwards from oxygen supply connector C506 discharges, to directly feed user's use.The inner cavities water-storing tank B1 are provided with water level sensor, work as water storage When water level is less than setting value in water tank, small pump C504 executes dependent instruction work, and the water extracted in humidifying water tank C502 passes through Air inlet cannula C 1011 is supplemented in water-storing tank;HP detectors are provided in humidifying water tank C502, when detecting humidifying water tank When liquid acid-base value exception in C502, oxygenerator is stopped, to ensure that user's is safe to use;It is set on humidifying water tank C502 It is equipped with oxygen supply connector C506, to supply oxygen.
Further, vapor separating box C is assembled by steam separating plate C101 and steam separation lid C102, level-one separation Chamber C1013, the second-order separation chamber C1015 and filter chamber are integrally formed respectively on steam separating plate C101, and air inlet cannula C 1011 is set It is placed in the bottoms steam separating plate C101;Voltage stabilizing sleeve C 1021, refrigeration open C 1022, the first stomata C1023, the second stomata C1024, filtering suction nozzle C1025, filtering outlet nozzle C1026, air outlet adapter C1027 and moisturizing connector C1028 respectively one at Type is detached in steam on lid C102.Anti-dumping pressure control valve C2, cooling assembly C3, filter cartridge C4, humidifying water replanishing device C5 and air pressure balance Device C6 is respectively arranged at steam separation lid C102 top plates.
The basic principles and main features and the present invention of the present invention have been shown and described in the above-mentioned preferred embodiment for the present invention The advantages of.Those skilled in the art should be recognized that the present invention is not limited to the above embodiments, above embodiments and description Described in merely illustrate the principles of the invention, without departing from the spirit and scope of the present invention the present invention also have it is various Changes and improvements, these changes and improvements all fall within the protetion scope of the claimed invention.The claimed scope of the invention is by institute Attached claims and its equivalent define.

Claims (10)

1. a kind of portable electronic sieves oxygenerator, it is characterised in that:Including being set to lower housing(K2)On electronics sieve oxygen mould processed Group(A')And water storage element(B), and it is set to upper shell(K1)On moisture separation device(C)And control circuit board;On described Shell(K1)With lower housing(K2)It is detachably connected with;The electronics sieves oxygen module processed(A')It is set to water storage element(B)Bottom, water Steum separating device(C)Detachable is set to water storage element(B)Top, control circuit board are set to moisture separation device(C)Top;
The electronics sieves oxygen module processed(A')Oxygen module processed is sieved by several electronics(A)Compartment is spliced;The electronics sieve system Oxygen module(A)Including oxygen generation box, at least one block of anode conducting plate(A3)At least one piece of cathode conductive plate(A201);The anode Conductive plate(A3)With cathode conductive plate(A201)It is respectively arranged at oxygen generation box inner cavity, anode conducting plate(A3)With cathode conductive plate (A201)Interval type configuration;The cathode conductive plate(A201)One or both sides be provided with the composite layer of waterproof and breathable (A202), constitute oxygen-producing membrane(A2);The cathode conductive plate(A201)On be provided with composite layer(A202)Side at least partly Expose outside oxygen generation box;The anode conducting plate(A3)On power connection end(A301)Draw oxygen generation box;Upper a set of electronics sieves oxygen mould processed Block(A)In anode conducting plate(A3)A set of electronics sieves oxygen module processed under(A)In any cathode conductive plate(A201)It is electrically connected It connects;Head set electronics sieves oxygen module processed(A)On cathode conductive plate(A201)Electric connection of power supply cathode, tail sleeve electronics sieve oxygen module processed (A)On anode conducting plate(A3)Electric connection of power supply anode;
The moisture separation device(C)Including vapor separating box(C1), the vapor separating box(C1)It is equipped with one be sequentially communicated Grade disengagement chamber(C1013), the second-order separation chamber(C1015)And filter chamber, gas pass through level-one disengagement chamber successively(C1013), two level Disengagement chamber(C1015)And filter chamber;The level-one disengagement chamber(C1013)Interior dislocation type is provided with several level-one liquid barriers (C1014);The vapor separating box(C1)Corresponding the second-order separation chamber(C1015)It is provided with cooling assembly(C3), the second-order separation chamber (C1015)Interior dislocation type is provided with several two level liquid barriers(C1016);The vapor separating box(C1)Corresponding filter chamber is provided with Filter cartridge(C4), from the second-order separation chamber(C1015)Gas unidirectional out passes through filter cartridge(C4);
The water storage element(B)Including water-storing tank(B1), oxygen generation box and level-one disengagement chamber(C1013)It is respectively turned on connection water storage Water tank(B1).
2. portable electronic according to claim 1 sieves oxygenerator, it is characterised in that:The anode conducting plate(A3)With/ Or cathode conductive plate(A201)It is made of corrosion-resistant metal material;The composite layer(A202)It is made of polysulfone material, composite layer (A202)On have it is several cross sieve pores(A203), cross sieve pore(A203)Aperture be more than air in oxygen molecule(O2), be less than electrolysis Hydrone in liquid(H2O).
3. portable electronic according to claim 1 sieves oxygenerator, it is characterised in that:The electronics sieves oxygen module processed(A) Including two pieces of oxygen-producing membranes(A2), two pieces of oxygen-producing membranes(A2)In cathode conductive plate(A201)It is electrically connected to each other, two pieces of cathode conductions Plate(A201)The formula of being respectively separated is arranged in anode conducting plate(A3)Front side and rear side, two pieces of cathode conductive plates(A201)Upper setting There is composite layer(A202)Side expose outside front side and the rear side of oxygen generation box respectively;The electronics sieves oxygen module processed(A)Further include Power connecting sheet(A6), power connecting sheet(A6)One end and anode conducting plate(A3)On power connection end(A301)Electrical connection, power connecting sheet(A6)Separately One end a set of electronics under sieves oxygen module processed(A)In any cathode conductive plate(A201)Electrical connection.
4. portable electronic according to claim 1 sieves oxygenerator, it is characterised in that:The level-one disengagement chamber(C1013) Bottom surface be less than the second-order separation chamber(C1015)Bottom surface;The level-one disengagement chamber(C1013)One end with into gas bushing(C1011) Connection, the other end and the second-order separation chamber(C1015)One end is connected to;The filter chamber is divided into mutual disconnected transition chamber thereof (C1017), filtering inlet plenum(C1018)With filtering discharge chamber(C1019), transition chamber thereof(C1017)With filtering inlet plenum (C1018)Between be provided with anti-dumping pressure control valve(C2)Control mutual break-make, filter cartridge(C4)On filtered inlet(C4011)With mistake Filter inlet plenum(C1018)Connection, air outlet adapter(C1027)And filter cartridge(C4)On filtering outlet(C4014)Respectively with filtering Discharge chamber(C1019)Connection;The second-order separation chamber(C1015)The other end and transition chamber thereof(C1017)Connection, transition chamber thereof (C1017)Bottom surface be higher than the second-order separation chamber(C1015)Bottom surface.
5. portable electronic according to claim 4 sieves oxygenerator, it is characterised in that:The anti-dumping pressure control valve(C2)Including control Motor processed(C201), valve seat(C202)And spool(C204), valve seat(C202)It is fixed on vapor separating box(C1)On, control motor (C201)It is fixed on valve seat(C202)On, spool(C204)It is rotatably dispose in valve seat(C202)On, control motor(C201)It is defeated Shaft connects spool(C204)And drive spool(C204)Rotation, spool(C204)On have gas distribution channel(C2042);Spool (C204)When turning to conduction position, gas distribution channel(C2042)One end is connected to transition chamber thereof(C1017), the other end connection filtering Inlet plenum(C1018), spool(C204)When turning to off-position, gas distribution channel(C2042)With transition chamber thereof(C1017)With/ Or filtering inlet plenum(C1018)It is not attached to lead to.
6. portable electronic according to claim 4 sieves oxygenerator, it is characterised in that:The vapor separating box(C1)On set There is connection filtering inlet plenum(C1018)Filtering suction nozzle(C1025)Discharge chamber is filtered with being connected to(C1019)Filtering outlet nozzle (C1026);Filter cartridge(C4)On filtered inlet(C4011)With filtering suction nozzle(C1025)Connection, filtering outlet(C4014) With filtering outlet nozzle(C1026)Connection;The filter cartridge(C4)There are several filtering chamber in inner cavity(C4012), several filtering chamber (C4012)Head and the tail are connected to, filtered inlet(C4011)It is connected to first filtering chamber(C4012), filtering outlet(C4014)Connection end A filtering chamber(C4012);The filtering chamber(C4012)On be provided with activated charcoal unit;The filtered inlet(C4011) And/or filtering outlet(C4014)On be provided with waterproof ventilated membrane.
7. portable electronic according to claim 4 sieves oxygenerator, it is characterised in that:It is described into gas bushing(C1011)It is interior Side compartment is provided with the air inlet inner tube(C1012), the air inlet inner tube(C1012)One end and level-one disengagement chamber(C1013)It is connected to and is somebody's turn to do The aperture position of end is higher than level-one disengagement chamber(C1013)Bottom surface, into gas bushing(C1011)With the air inlet inner tube(C1012)It Between gap be connected to level-one disengagement chamber(C1013).
8. portable electronic according to claim 1 sieves oxygenerator, it is characterised in that:The vapor separating box(C1)On set There is connection level-one disengagement chamber(C1013)And/or the second-order separation chamber(C1015)And/or the voltage stabilizing sleeve of filter chamber(C1021), surely Pressing sleeve cylinder(C1021)On be provided with air-pressure balancing device(C6), air-pressure balancing device(C6)Inner cavity and corresponding chamber;Institute State air-pressure balancing device(C6)It is made of soft material, and inner cavity has certain retractility.
9. portable electronic according to claim 1 sieves oxygenerator, it is characterised in that:The water-storing tank(B1)With steam Seperating box(C1)Between be provided with access valve, the access valve open and close water-storing tank(B1)On gas outlet(B101), with conducting or Cut off water-storing tank(B1)With vapor separating box(C1)Between gas circuit;The access valve includes access upper cover(B2)And rotary body (B3);The access upper cover(B2)It is assemblied in water-storing tank(B1)On, and and vapor separating box(C1)It is detachably connected, on access Lid(B2)On vapor channel(B201)With water-storing tank(B1)On gas outlet(B101)It corresponds;The rotary body(B3) Positioned at water-storing tank(B1)With access upper cover(B2)Between, and it is rotatably dispose in water-storing tank(B1)Or access upper cover(B2)On, Rotary body(B3)It is equipped with valve port(B301);Rotary body(B3)Rotation simultaneously drive valve port(B301)Valve port is worked as in activity (B301)Activity is to vapor channel(B201)With gas outlet(B101)Between when, water-storing tank(B1)With vapor separating box(C1)It Between gas circuit conducting, work as valve port(B301)Activity to and vapor channel(B201)The gas outlet and/or(B101)When dislocation, gas outlet (B101)Closing.
10. portable electronic according to claim 1 sieves oxygenerator, it is characterised in that:The vapor separating box(C1)On It is provided with humidifying water replanishing device(C5), the humidifying water replanishing device(C5)Including humidifying water tank(C502)And small pump(C504), wet Change water tank(C502)Pass through the first conduit(C501)With air outlet adapter(C1027)Connection, humidifying water tank(C502)It is led by second Pipe(C503)With small pump(C504)Water inlet end connection, small pump(C504)Water outlet pass through third conduit(C505)With water Vapour Seperating box(C1)On moisturizing connector(C1028)Connection, moisturizing connector(C1028)With water-storing tank(B1)Connection;The storage Water tank(B1)Inner cavity is provided with water level sensor;The humidifying water tank(C502)Inside it is provided with HP detectors;The humidifying water Case(C502)On be provided with oxygen supply connector(C506).
CN201810892242.4A 2018-08-07 2018-08-07 A kind of portable electronic sieve oxygenerator Pending CN108728861A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201810892242.4A CN108728861A (en) 2018-08-07 2018-08-07 A kind of portable electronic sieve oxygenerator

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201810892242.4A CN108728861A (en) 2018-08-07 2018-08-07 A kind of portable electronic sieve oxygenerator

Publications (1)

Publication Number Publication Date
CN108728861A true CN108728861A (en) 2018-11-02

Family

ID=63942386

Family Applications (1)

Application Number Title Priority Date Filing Date
CN201810892242.4A Pending CN108728861A (en) 2018-08-07 2018-08-07 A kind of portable electronic sieve oxygenerator

Country Status (1)

Country Link
CN (1) CN108728861A (en)

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110313437A (en) * 2019-07-04 2019-10-11 佛山顺德歌林美电子产品有限公司 A kind of aquaculture oxygen generation system
WO2021227566A1 (en) * 2020-07-17 2021-11-18 青岛海尔空调器有限总公司 Oxygen generation device and air conditioner having same

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN110313437A (en) * 2019-07-04 2019-10-11 佛山顺德歌林美电子产品有限公司 A kind of aquaculture oxygen generation system
WO2021227566A1 (en) * 2020-07-17 2021-11-18 青岛海尔空调器有限总公司 Oxygen generation device and air conditioner having same

Similar Documents

Publication Publication Date Title
CN108728861A (en) A kind of portable electronic sieve oxygenerator
JP2011125561A (en) Oxygen concentrator
CN204873908U (en) Solar energy system water machine
CN208815124U (en) A kind of portable electronic sieve oxygenerator
CN216604611U (en) Filter efficient oxygenerator
CN208814659U (en) A kind of layout structure of electronics sieve oxygenerator
CN214075848U (en) Medical molecular sieve is for oxygen gas moisture autosegregation device
CN202109590U (en) Humidification purification and dust-absorption integrated machine
CN111632240B (en) Medical oxygen inhalation device
CN212215005U (en) Integrated recovery and dust removal system for tin smelting plant
CN210251756U (en) Oxygen production and supply integrated machine
CN112875950B (en) New energy driven frequency conversion clean water resource intelligent equipment and manufacturing method
CN210656150U (en) Novel oxygenerator
CN208814661U (en) A kind of moisture separation device
CN215675659U (en) Dust collecting equipment with humidification function
CN206549324U (en) A kind of fluorine-containing fluid composition of inertia reclaims the gas and water separator of organic matter eluting column
CN214291614U (en) Air purification device for welding electronic equipment
CN218047033U (en) Low-energy-consumption high-efficiency waste gas collecting, recovering and treating device
CN220656940U (en) Oil gas recovery filter
CN218011958U (en) Oxygen generator for micro-hyperbaric oxygen chamber
CN220802392U (en) Hydrogen production device
CN217887457U (en) Oxygenerator of controlling system oxygen quality through oxygen concentration detection backward flow structure
CN215461516U (en) Filtering type mask fan device and mask applying same
CN214319456U (en) Green building vent filter equipment
CN214551499U (en) Raw water tank with dust filtering structure for direct drinking water engineering

Legal Events

Date Code Title Description
PB01 Publication
PB01 Publication
SE01 Entry into force of request for substantive examination
SE01 Entry into force of request for substantive examination