CN113745979A - Series gas-excited negative oxygen ion generator - Google Patents

Series gas-excited negative oxygen ion generator Download PDF

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Publication number
CN113745979A
CN113745979A CN202111134851.1A CN202111134851A CN113745979A CN 113745979 A CN113745979 A CN 113745979A CN 202111134851 A CN202111134851 A CN 202111134851A CN 113745979 A CN113745979 A CN 113745979A
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China
Prior art keywords
gas
excited
negative oxygen
oxygen ion
pressure barrel
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CN202111134851.1A
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Chinese (zh)
Inventor
张龙
何相华
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Shenzhen Hongkang Environmental Technology Co ltd
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Shenzhen Baihong Oxygen Technology Co ltd
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Priority to CN202111134851.1A priority Critical patent/CN113745979A/en
Publication of CN113745979A publication Critical patent/CN113745979A/en
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    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01TSPARK GAPS; OVERVOLTAGE ARRESTERS USING SPARK GAPS; SPARKING PLUGS; CORONA DEVICES; GENERATING IONS TO BE INTRODUCED INTO NON-ENCLOSED GASES
    • H01T23/00Apparatus for generating ions to be introduced into non-enclosed gases, e.g. into the atmosphere

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  • Electrotherapy Devices (AREA)

Abstract

The utility model provides a series connection gas excited type negative oxygen ion generator, includes at least two reaction vessel that communicate in proper order, all is equipped with gas excited type negative oxygen ion generating device and connecting pipe in every reaction vessel, and the connecting pipe of reaction vessel after passes through the blast pipe to be connected with preceding reaction vessel, gas excited type negative oxygen ion generating device includes gas excited hole and gas excited chamber, the connecting pipe communicates with gas excited hole. Compared with the gas-excited negative oxygen ion generator, the negative oxygen ion generator has the advantages that the concentration of the generated negative oxygen ions is much higher, the gas is impacted for multiple times, the particle size is smaller, the activity is higher, the negative oxygen ions can be connected in series, and the gas-excited negative oxygen ion generator is also a great advantage of the gas-excited negative oxygen ion generator. Because the concentration of the negative oxygen ions is improved, the particle size is smaller, the activity is stronger, the medical care effect is more obvious, and the growth promotion effect on animals and plants is stronger.

Description

Series gas-excited negative oxygen ion generator
Technical Field
The invention relates to the field of medical health-care equipment, in particular to a series air-excited negative oxygen ion generator.
Background
The negative oxygen ions are called as 'air vitamins', and have the effects of promoting human metabolism, enhancing immunity, resisting oxidation, resisting aging, eliminating in-vivo free radicals, calming and the like, after a patient inhales high-concentration (more than 1 ten thousand per cm) negative oxygen ion air, the wound healing can be accelerated, the recovery is advanced, meanwhile, air and virus bacteria can be purified, the health is facilitated, and the longevity village all over the world is located in a high-concentration negative oxygen ion environment with unique landform and fresh air, for example, the concentration of the negative oxygen ions of Guangxi Bama is as high as 2 ten thousand per cm, and the proportion of the centenary old is far higher than that of other places.
Negative oxygen ions are classified into two types: the first type is negative oxygen ions generated around free environments such as seashore, forest, grassland and waterfall, the service life of the negative oxygen ions reaches 1-30 minutes, and the negative oxygen ions generated by physical impact such as artificial water attack type and air-blast type also belong to the category; the second type is negative oxygen ions generated by corona discharge, ray, ultraviolet ray, microwave, etc., which have a lifetime of only a few seconds, are large-particle-size and low-activity negative oxygen ions, and contain substances harmful to health such as ozone and oxynitride and have a significant electrostatic effect. The first type of negative oxygen ions are beneficial to body health, and the second type of negative oxygen ions have little or even harmful effect on body health and are mainly used for disinfection and sterilization.
The negative oxygen ion generator which is put into use in batches in the market at present is a corona discharge type negative oxygen ion generator, has large side effect and is worth deep thinking and vigilance of users, scientific and technological boundaries and governments, and in addition, the water attack type negative oxygen ion generator has large volume and high manufacturing cost, is only suitable for large-scale places such as stations, airports, squares, parks, hotels, villas and the like, is beneficial to environment and health, but cannot be popularized to hospital families for large area.
CN201910874260.4 discloses an air-excited oxygen anion generator, which can generate high-concentration ecological oxygen anions, but it has the following defects: the concentration of the negative oxygen ions can not be greatly increased any more, and the range of increasing the concentration of the negative oxygen ions by increasing the gas pressure and the flow is limited, for example, the air pressure is increased from 0.2MPa to 0.8MPa, the concentration of the negative oxygen ions is only increased by 20 percent, but the consumed power is increased by 5 times (theoretically 4 times).
Disclosure of Invention
The invention aims to overcome the defects in the prior art and provide a series gas-excited negative oxygen ion generator which can greatly improve the concentration of negative oxygen ions under the condition of small power increase amplitude.
The technical scheme adopted by the invention for solving the technical problems is as follows: the utility model provides a series connection gas excited type negative oxygen ion generator which characterized in that: including at least two reaction vessel that communicate in proper order, all be equipped with gas in every reaction vessel and swash formula negative oxygen ion generating device and connecting pipe, the connecting pipe of reaction vessel behind passes through the blast pipe and is connected with reaction vessel in the front, gas is swashed formula negative oxygen ion generating device and is included gas and swashs hole and air-swept room, the connecting pipe is linked together with gas and swashs hole, and compressed gas strikes the accumulation many times through gas swashs hole, and negative oxygen ion concentration improves gradually.
As an improvement, the gas-excited negative oxygen ion generator is a lower gas-excited negative oxygen ion generator, the lower gas-excited negative oxygen ion generator comprises a first body, the first body is provided with a gas-excited hole and a gas-excited chamber which are communicated with each other, and the first body is mounted on the connecting pipe.
As another improvement scheme, the air-excited negative oxygen ion generator is an external air-jet excited negative oxygen ion generator, the external air-jet excited negative oxygen ion generator comprises a second body and a tray, the second body is arranged in the tray, the second body is provided with an inner recess, an air storage cavity is formed between the inner recess and the tray, the side wall of the inner recess is provided with a second air-excited hole, a second air-excited chamber is formed in an area between the outer side of the second body and the inner side of the tray, and the second body is mounted on the connecting pipe.
Furthermore, the reaction container is a humidifier and comprises a small-opening humidifier and a wide-opening humidifier.
Further, the reaction vessel is a pressure barrel, and comprises a single-cavity pressure barrel and a multi-cavity pressure barrel.
Further, the pressure barrel comprises a pressure barrel body and a gland, the pressure barrel body and the gland are fixedly connected into a whole through a fastening device, a water level gauge is arranged on the pressure barrel body, a pressure barrel air inlet nozzle, a pressure barrel air outlet nozzle, a splash-proof barrel and a water adding valve are arranged on the gland, the connecting pipe is fixed on the gland, and a water baffle is arranged on the connecting pipe.
Furthermore, the multi-cavity pressure barrel comprises a multi-cavity gland and a plurality of independent pressure barrel bodies, and each pressure barrel body is connected with the multi-cavity gland in a sealing mode through a fastening screw and a sealing ring.
The invention has the following beneficial effects:
compared with the existing corona discharge type air negative oxygen ion generator, the invention generates ecological level small-particle size negative oxygen ions which have high concentration, high activity and long service life and do not contain ozone and oxynitride, has much better quality than the negative oxygen ions generated by the corona discharge type air negative oxygen ion generator, and has obvious medical care and health care effects and growth promotion effects on animals and plants.
Compared with the gas-excited negative oxygen ion generator, the negative oxygen ion generator has the advantages that the concentration of the generated negative oxygen ions is much higher, the gas is impacted for multiple times, the particle size is smaller, the activity is higher, the negative oxygen ions can be connected in series, and the gas-excited negative oxygen ion generator is also a great advantage of the gas-excited negative oxygen ion generator.
Because the concentration of the negative oxygen ions is improved, the particle size is smaller, the activity is stronger, the medical care effect is more obvious, and the growth promotion effect on animals and plants is stronger.
Drawings
FIG. 1 is a schematic structural view of example 1 of the present invention;
FIG. 2 is a top view of FIG. 1;
FIG. 3 is a schematic structural view of embodiment 2 of the present invention;
FIG. 4 is a schematic structural diagram of embodiment 3 of the present invention
FIG. 5 is a schematic structural view of example 4 of the present invention;
fig. 6 is a schematic structural diagram of an external jet excitation type negative oxygen ion generating device in the embodiment of the invention.
In the figure: 1-a small-mouth humidifier, 101-a small-mouth humidifier air inlet nozzle, 102-a small-mouth humidifier air outlet nozzle, 103-a flow meter, 1A-a wide-mouth humidifier, 1A 01-a wide-mouth humidifier air inlet nozzle, 1A 02-a wide-mouth humidifier air outlet nozzle, 2-a lower jet excitation type negative oxygen ion generating device, 201-a first body, 202-an air excitation hole, 203-an air excitation chamber, 2A-an outer jet excitation type negative oxygen ion generating device, 2A 01-a second body, 2A 02-a second air excitation hole, 2A 03-a second air excitation chamber, 2A 04-a tray, 2A 05-an air storage chamber, 3-an air inlet pipe, 4-an exhaust pipe, 5-a connecting pipe, 501-a water baffle, 6-water, 7-a sound insulation box, 701-a cushion, 702-a supporting foot, 703-a lifting handle, a gas storage chamber, a gas inlet nozzle, a gas exhaust pipe, a 5-a connecting pipe, a water baffle, a water baffle, a water baffle, a baffle, 704-supporting wheel, 8-pressure barrel body, 801-fastening device, 802-water level meter, 9-pressing cover, 901-pressure barrel inlet nozzle, 902-pressure barrel outlet nozzle, 903-splash-proof barrel, 904-first water adding valve, 10-multi-cavity pressure barrel, 1001-multi-cavity pressure barrel body, 1002-water level meter nail, 1003-fastening screw, 1004-sealing ring, 11-multi-cavity pressing cover, 1101-first inlet nozzle, 1102-first outlet nozzle, 1103-second inlet nozzle, 1104-second outlet nozzle, 1105-second water adding valve and 1106-exhaust valve.
Detailed Description
The invention is described in further detail below with reference to the figures and the embodiments.
Example 1:
referring to fig. 1 and 2, the present embodiment includes a small-mouth humidifier 1, a lower jet excitation type negative oxygen ion generating device 2, an air inlet pipe 3, an air outlet pipe 4, and a connecting pipe 5, which are sequentially communicated. Jet-propelled formula negative oxygen ion generating device 2 comprises first body 201 down, set up gas in the first body 201 and swashs hole 202 and gas laser room 203, gas laser room 203 is through gas laser hole 202 and connecting pipe 5 intercommunication, the lower extreme fixed connection of hickey and connecting pipe 5 is seted up to the upper end of first body 201, and arrange the inner chamber of small-mouth humidifier 1 together, the inner chamber splendid attire water 6 of small-mouth humidifier 1, lower jet-propelled formula negative oxygen ion generating device 2 submergence is in 60mm department under the surface of water, the upper end of connecting pipe 5 is fixed in on the small-mouth humidifier 1 and communicates with small-mouth humidifier suction nozzle 101, the inner chamber and the small-mouth humidifier 102 intercommunication of small-mouth humidifier 1. First small-mouth humidifier air outlet nozzle 102 communicates with second small-mouth humidifier air inlet nozzle 101 through blast pipe 4, second small-mouth humidifier air outlet nozzle 102 communicates with third small-mouth humidifier air inlet nozzle 101 again, three small-mouth humidifier 1 is fixed in on the sound-proof pad 701 among the sound-proof box 7, two osculums are seted up to the lateral wall of sound-proof box 7, wherein the osculum of one side holds the intake pipe 3 that links to each other with first small-mouth humidifier air inlet nozzle 101, the osculum of opposite side holds blast pipe 4 that links to each other with third small-mouth humidifier air outlet nozzle 102, reach the shock insulation that gives sound insulation and pleasing to the eye purpose.
The working principle of the embodiment is as follows: the compressed air (or oxygen) firstly impacts the side wall of the gas excitation chamber 203 of the first lower gas-jet excitation type negative oxygen ion generating device 2 and water, and then impacts the side wall of the gas excitation chamber 203 of the second lower gas-jet excitation type negative oxygen ion generating device 2 and water, and negative oxygen ions with higher concentration are generated through three times of continuous impact, so that the concentration of the negative oxygen ions is improved, the particle size is smaller, and the activity is stronger.
Example 2:
referring to fig. 3 and 6, the present embodiment includes four wide-mouth humidifiers 1A that communicate in proper order, and water 6, outer jet excitation type negative oxygen ion generating device 2A, intake pipe 3, blast pipe 4, connecting pipe 5 and sound insulation box 7 are injected in wide-mouth humidifier 1A. The external jet excited negative oxygen ion generator 2A comprises a second body 2A01 and a tray 2A04, a second gas exciting hole 2A02 is formed in the side face of the second body 2A01, the second body 2A01 is in threaded connection with the tray 2A04, an indent is arranged on the second body 2A01, a gas storage chamber 2A05 is formed in the area between the indent and the tray 2A04, the second gas exciting hole 2A02 is located on the side wall of the indent, a second gas exciting chamber 2A03 is formed in the area between the outer side of the second body 2A01 and the inner side of the tray 2A04, and a threaded connector is formed on the second body 2A01 and fixedly connected with the lower end of the connecting pipe 5. The upper end of the connecting pipe 5 is fixed on the wide-mouth humidifier 1A and is communicated with the wide-mouth humidifier air inlet nozzle 1A01, and the air outlet nozzle 1A02 of the previous wide-mouth humidifier is communicated with the connecting pipe 5 of the next wide-mouth humidifier 1A through the exhaust pipe 4.
In this embodiment, the soundproof case 7 is added with a support leg 702 and a handle 703.
The rest is the same as example 1.
Example 3:
referring to fig. 4, the present embodiment includes an external jet excitation type negative oxygen ion generating device 2A, an air inlet pipe 3, an exhaust pipe 4, a connecting pipe 5, a sound insulation box 7, and two pressure barrels connected in series, where the pressure barrels include a pressure barrel body 8 and a gland 9, and water 6 is injected into the pressure barrel body 8. The pressure barrel body 8 is provided with a fastening device 801 and a water level meter 802, the gland 9 is provided with a pressure barrel inlet nozzle 901, a pressure barrel outlet nozzle 902, a splash-proof cylinder 903 and a first water adding valve 904, the pressure barrel body 8 and the gland 9 are fixedly connected into a whole through a bolt 801, the outer jet excitation type negative oxygen ion generating device 2A is arranged in an inner cavity of the pressure barrel body 8 through a connecting pipe 5, the connecting pipe 5 is fixed on the gland 9 through a nut, the middle section of the connecting pipe 5 is provided with a water baffle plate 501, and the splash-proof cylinder 903 and the water baffle plate 501 are used for preventing water from being sprayed out of the pressure barrel. The pressure barrel inlet nozzle 901 on the first pressure barrel is connected with the inlet pipe 3, the pressure barrel outlet nozzle 902 is communicated with the connecting pipe 5 on the second pressure barrel through the exhaust pipe 4, and the pressure barrel outlet nozzle 902 on the second pressure barrel is connected with the exhaust pipe 4.
In this embodiment, a support wheel 704 is provided under the soundproof case 7.
The rest is the same as example 1.
Example 4:
referring to fig. 5, the present embodiment includes an external jet excitation type negative oxygen ion generating device 2A, a connecting pipe 5 and a multi-cavity pressure barrel 10, where the multi-cavity pressure barrel 10 includes a multi-cavity pressure barrel body 1001 and a multi-cavity gland 11, an inner cavity of the multi-cavity pressure barrel is divided into 2 to 4 independent cavities (divided into two independent cavities in the present embodiment), each independent cavity is internally provided with one external jet excitation type negative oxygen ion generating device 2A and is fixed on the multi-cavity gland 11 through the connecting pipe 5, each independent cavity in the multi-cavity pressure barrel 10 is hermetically connected with the multi-cavity gland 11, each independent cavity is provided with a second water feeding valve 1105, and an exhaust valve 1106 is installed on an exhaust nozzle 1104 of the last independent cavity, where a first exhaust nozzle 1102 of the first independent cavity is communicated with a second intake nozzle 1103 of the second cavity.
In this embodiment, no soundproof case is provided.
The rest is the same as example 3.
It should be noted that the above embodiments are only used for illustrating the technical solutions of the present application, and not for limiting the same, and although the present application is described in detail with reference to the foregoing embodiments, it should be understood by those skilled in the art that the technical solutions described in the foregoing various embodiments can be modified or equivalent replaced by some of the technical features, and these modifications or replacements do not make the corresponding technical solutions depart from the spirit and scope of the technical solutions of the embodiments of the present application.
What is not described in detail in the specification is prior art that is well known to those skilled in the art.

Claims (9)

1. The utility model provides a series connection gas excited type negative oxygen ion generator which characterized in that: including at least two reaction vessel that communicate in proper order, all be equipped with gas in every reaction vessel and swash formula negative oxygen ion generating device and connecting pipe, the connecting pipe of reaction vessel behind passes through the blast pipe and is connected with reaction vessel in the front, gas is swashed formula negative oxygen ion generating device and is included gas and is swashed hole and gas and swashed room, the connecting pipe communicates with gas and swashed hole.
2. The series gas-excited oxygen anion generator of claim 1, wherein: the gas-excited negative oxygen ion generator is a lower gas-excited negative oxygen ion generator, the lower gas-excited negative oxygen ion generator comprises a first body, a gas-excited hole and a gas-excited chamber which are communicated with each other are formed in the first body, and the first body is installed on the connecting pipe.
3. The series gas-excited oxygen anion generator of claim 1, wherein: the gas-excited negative oxygen ion generator is an external gas-jet excited negative oxygen ion generator, the external spraying type negative oxygen ion generator comprises a second body and a tray, the second body is arranged in the tray, an inner concave is arranged on the second body, a gas storage cavity is formed between the inner concave and the tray, a second gas-excited hole is formed in the side wall of the inner concave, a second gas-excited chamber is formed in the area between the outer side of the second body and the inner side of the tray, and the second body is installed on the connecting pipe.
4. The series gas-excited oxygen anion generator of any of claims 1 to 3, wherein: the reaction vessel is a humidifier.
5. The series gas-excited oxygen anion generator of claim 5, wherein: the humidifier comprises a small-opening humidifier and a wide-opening humidifier.
6. The series gas-excited oxygen anion generator of any of claims 1 to 3, wherein: the reaction vessel is a pressure barrel.
7. The series gas-excited oxygen anion generator of claim 7, wherein: the pressure barrel comprises a pressure barrel body and a gland, the pressure barrel body and the gland are fixedly connected into a whole through a fastening device, a water level gauge is arranged on the pressure barrel body, a pressure barrel air inlet nozzle, a pressure barrel air outlet nozzle, a splash-proof barrel and a water adding valve are arranged on the gland, a connecting pipe is fixed on the gland, and a water baffle is arranged on the connecting pipe.
8. The series gas-excited oxygen anion generator of claim 8, wherein: the pressure barrel comprises a single-cavity pressure barrel and a multi-cavity pressure barrel.
9. The series gas-excited oxygen anion generator of claim 9, wherein: the multi-cavity pressure barrel comprises a multi-cavity gland and a plurality of independent pressure barrel bodies, and each pressure barrel body is connected with the multi-cavity gland in a sealing mode through a fastening screw and a sealing ring.
CN202111134851.1A 2021-09-27 2021-09-27 Series gas-excited negative oxygen ion generator Pending CN113745979A (en)

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CN202111134851.1A CN113745979A (en) 2021-09-27 2021-09-27 Series gas-excited negative oxygen ion generator

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Application Number Priority Date Filing Date Title
CN202111134851.1A CN113745979A (en) 2021-09-27 2021-09-27 Series gas-excited negative oxygen ion generator

Publications (1)

Publication Number Publication Date
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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115235032A (en) * 2022-07-26 2022-10-25 蚌埠奥斯韦尔智能科技有限公司 Natural negative oxygen ion physical mechanical generating device

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN115235032A (en) * 2022-07-26 2022-10-25 蚌埠奥斯韦尔智能科技有限公司 Natural negative oxygen ion physical mechanical generating device

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TA01 Transfer of patent application right

Effective date of registration: 20221221

Address after: 1302, Building F, Tongfang Information Port, No. 11, Langshan Road, Songpingshan Community, Xili Street, Nanshan District, Shenzhen, Guangdong 518000

Applicant after: Shenzhen Hongkang Environmental Technology Co.,Ltd.

Address before: 518000 floor 2, building e, Baifuli Industrial Park, Shanghenglang Industrial Zone, Henglang community, Dalang street, Longhua District, Shenzhen, Guangdong Province

Applicant before: Shenzhen Baihong oxygen Technology Co.,Ltd.

TA01 Transfer of patent application right