JPH105323A - Health medical air conditioner of carbon dioxide cracking device as well as oxygen reduction system used for this device and its production - Google Patents

Health medical air conditioner of carbon dioxide cracking device as well as oxygen reduction system used for this device and its production

Info

Publication number
JPH105323A
JPH105323A JP8215835A JP21583596A JPH105323A JP H105323 A JPH105323 A JP H105323A JP 8215835 A JP8215835 A JP 8215835A JP 21583596 A JP21583596 A JP 21583596A JP H105323 A JPH105323 A JP H105323A
Authority
JP
Japan
Prior art keywords
lamps
carbon dioxide
air conditioner
ultraviolet lamp
ultraviolet
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
JP8215835A
Other languages
Japanese (ja)
Inventor
Toshimi Yoshida
俊美 吉田
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.)
Individual
Original Assignee
Individual
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 Individual filed Critical Individual
Priority to JP8215835A priority Critical patent/JPH105323A/en
Publication of JPH105323A publication Critical patent/JPH105323A/en
Pending legal-status Critical Current

Links

Classifications

    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02ATECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE
    • Y02A50/00TECHNOLOGIES FOR ADAPTATION TO CLIMATE CHANGE in human health protection, e.g. against extreme weather
    • Y02A50/20Air quality improvement or preservation, e.g. vehicle emission control or emission reduction by using catalytic converters

Landscapes

  • Treating Waste Gases (AREA)
  • Physical Or Chemical Processes And Apparatus (AREA)

Abstract

PROBLEM TO BE SOLVED: To provide a health medical air conditioner which maintains the health of the human body and provides the refreshment of the body by reducing the carbon dioxide existing in the atm. air (of offices and rooms) to oxygen and ozone. SOLUTION: UV rays are formed to symmetrical UV lamps and these lamps are fixed and mounted within cylindrical curved reflection mirrors in order to oxidize and reduce the carbon dioxide by the photon energy of the UV rays, by which photon bombardment energy is generated. The carbon dioxide is then reduced to the oxygen and ozone by carbon dioxide 2CO2 → C2 +2O2 or 6CO2 → 3C2 +2O3 , 3O2 → 2O3 . An outside box is mounted at the upper part of a bottom box and the symmetrical UV lamps consisting of the cylindrical curved reflection mirrors are formed as two-lamps 13. The carbon dioxide cracking device interlocked to the constitution of 4-lamps 15 is constructed. Sockets are mounted at the base of the outside box and the UV lamps are fixed thereto to constitute the symmetrical UV lamps. The tops and bottoms of the cylindrical curved reflection mirrors are used partly as illumination via caps. The health medical air conditioner is thus constituted. Synthetic resins, shoji paper, glass, etc., are stuck to the surfaces of the outside box.

Description

【発明の詳細な説明】DETAILED DESCRIPTION OF THE INVENTION

【0001】[0001]

【産業上の利用分野】本発明は、光量子的紫外線発生機
により二酸化炭素分解とオゾンO発生を備えた二酸化
炭素分解装置の健康医療空調機並びに該装置に用いる酸
素還元システム及びその製造方法に関する。
The present invention relates to a oxygen reduction system and a manufacturing method thereof used in health care air conditioner and the apparatus for carbon dioxide cracking unit provided with a carbon dioxide decomposing ozone O 3 generated by photon basis ultraviolet generator .

【0002】[0002]

【従来の技術】従来の酸素発生装置としては、工業的に
は電気分解による発生機構や、金属製素子によって若干
の二酸化炭素が分解されていた。
2. Description of the Related Art As a conventional oxygen generating apparatus, a small amount of carbon dioxide is industrially decomposed by an electrolysis generating mechanism or a metal element.

【0003】[0003]

【発明が解決しようとする課題】従来の酸素発生機にあ
っては、湿気や水分を多量に含んだ大気を偏在さてたま
ま起動すると、たとえ十分に容量を大きく作られても、
素子の保守が大変であったり、寿命と効率が悪いなどの
問題点があった。
In the conventional oxygen generator, if the startup is performed while the atmosphere containing a large amount of moisture or moisture is unevenly distributed, even if the capacity is made sufficiently large,
There have been problems such as difficult maintenance of the element and poor life and efficiency.

【0004】本発明は、酸素発生機の中に湿気などをあ
る程度偏在させたまま起動しても、紫外線による光量子
発生機によって二酸化炭素分解とオゾンOを得ること
を目的としており、さらに該装置に用いられ紫外線発生
装置が対称光源紫外線ランプであり、健康医療空調機の
酸素還元システム及びその製造方法を提供することを目
的としている
An object of the present invention is to provide an apparatus for decomposing carbon dioxide and obtaining ozone O 3 by a photon generator using ultraviolet light, even if the apparatus is started with a certain amount of moisture or the like unevenly distributed in the oxygen generator. The ultraviolet light generator used in the present invention is a symmetric light source ultraviolet lamp, and an object thereof is to provide an oxygen reduction system for a health care air conditioner and a method of manufacturing the same.

【0005】[0005]

【課題を解決するための手段】上記目的を達成するため
に、本発明の二酸化炭素分解装置においては、紫外線を
反射させる為に円筒反射鏡を取り付け、また該紫外線ラ
ンプを対称紫外線ランプとして固着すると共に健康医療
空調機として酸素還元システムを取り付けたものであ
る。
In order to achieve the above object, in the carbon dioxide decomposing apparatus of the present invention, a cylindrical reflecting mirror is attached for reflecting ultraviolet rays, and the ultraviolet lamp is fixed as a symmetric ultraviolet lamp. In addition, it is equipped with an oxygen reduction system as a health care air conditioner.

【0006】上記紫外線ランプを取り付ける位置は、酸
素還元システムの適当な箇所とすることが可能である
が、後記する理由により紫外線ランプ縦型に取り付ける
ことが効果的である。
The position where the above-mentioned ultraviolet lamp is mounted can be an appropriate position in the oxygen reduction system, but it is effective to mount the ultraviolet lamp vertically in the vertical position for the reasons described below.

【0007】また、紫外線ランプが2灯から、連係され
たセットの構成の多灯として設置され、完全に円筒曲面
反射鏡内に密閉された構造と、紫外線ランプの一部上部
を露出して形成すると、例えば照明付きとしても用いら
れる。
[0007] Further, an ultraviolet lamp is installed as a multi-lamp of a linked set from two lamps, and is completely sealed in a cylindrical curved reflecting mirror, and is formed by exposing a part of the upper part of the ultraviolet lamp. Then, for example, it is used also with illumination.

【0008】さらに、紫外線ランプの紫外線が外部に照
らされる部分の遮蔽として外箱に合成樹脂、障子紙、ガ
ラスなどを取り付けることが好ましい。
Further, it is preferable to attach a synthetic resin, shoji paper, glass or the like to the outer box as a shield for a portion of the ultraviolet lamp to be irradiated with ultraviolet rays to the outside.

【0009】そして、前置円筒曲面反射鏡内に紫外線ラ
ンプを挿入して形成した紫外線ランプの製造方法として
は、円筒曲面反射鏡を設置してから紫外線ランプを挿入
するのと、紫外線ランプの上から円筒を半分に分割した
反射鏡を組み立てて円筒曲面反射鏡として形成する製造
方法がある。
As a method of manufacturing an ultraviolet lamp formed by inserting an ultraviolet lamp into a front cylindrical curved reflecting mirror, a method of installing the cylindrical curved reflecting mirror and then inserting the ultraviolet lamp can be used. There is a manufacturing method of assembling a reflecting mirror in which a cylinder is divided into two halves and forming it as a cylindrical curved reflecting mirror.

【0010】[0010]

【作用】上記のように構成された、円筒曲面反射鏡内に
対称紫外線ランプを設置してやると、紫外線が光量子エ
ネルギーとなってこの光量子エネルギーが炭酸ガスCO
を炭素Cと酸素Oに還元し一部を6CO→3C
+2O、3O→2Oのオゾンとして発生する。
When a symmetrical ultraviolet lamp is installed in a cylindrical curved reflecting mirror constructed as described above, ultraviolet light becomes photon energy and this photon energy is converted into carbon dioxide gas.
2 is reduced to carbon C 2 and oxygen O 2 and part is reduced to 6CO 2 → 3C
Ozone is generated as 2 + 2O 3 , 3O 2 → 2O 3 .

【0011】そして、対称紫外線ランプの2灯、4灯の
連係されたところの多灯として構成され、上部又は下部
に取り付けられたファンを介して酸素還元システム装置
として健康医療空調機に構成される。
[0011] The symmetrical ultraviolet lamp is configured as a multi-lamp in which two or four symmetrical lamps are linked, and is configured in a health care air conditioner as an oxygen reduction system device via a fan mounted on the upper or lower part. .

【0012】また、対称紫外線ランプの上部の一部を照
明として形成すると遮蔽を介して生化学線としても得ら
れる。
Further, when a part of the upper part of the symmetrical ultraviolet lamp is formed as illumination, it can be obtained as bioactinic radiation through shielding.

【0013】[0013]

【実施例】実施例について図面を参照して説明すると、
図1において底箱1に外箱2を構成し、このなかに支柱
6を介して2灯、4灯からなる対称紫外線ランプ4を形
成し、円筒曲面反射鏡5内に挿入してやるか、又は半分
にした円筒反射鏡を上部から組み立てて円筒曲面反射鏡
とする。
Embodiments will be described with reference to the drawings.
In FIG. 1, an outer box 2 is formed on a bottom box 1 and a symmetrical ultraviolet lamp 4 composed of two lamps and four lamps is formed therein via a support column 6 and inserted into a cylindrical curved reflecting mirror 5 or a half thereof. The cylindrical reflecting mirror is assembled from above to form a cylindrical curved reflecting mirror.

【0014】図2に示される実施例では、底箱1にトラ
ンス12、グローランプ8を取付け、ファン11を介し
て酸素還元システムとしており、排気穴10であり、支
柱6から取付板7の紫外線ランプが固定されている。
In the embodiment shown in FIG. 2, a transformer 12 and a glow lamp 8 are mounted on the bottom box 1 to form an oxygen reduction system through a fan 11, and the exhaust hole 10 is provided. Lamp is fixed.

【0015】図3に示される実施例では紫外線ランプが
2灯、4灯として多灯の対称紫外線ランプ14として形
成取り付けられて、円筒曲面反射鏡を介してセットされ
た対称紫外線ランプとして連係構成されている。
In the embodiment shown in FIG. 3, two ultraviolet lamps and four ultraviolet lamps are formed and mounted as a multi-lamp symmetric ultraviolet lamp 14, and are linked and configured as a symmetric ultraviolet lamp set via a cylindrical curved reflecting mirror. ing.

【0016】図4に示される実施例では、円筒曲面反射
鏡内にセットされて連係された対称紫外線ランプ15の
上部の一部が照明として形成されている。
In the embodiment shown in FIG. 4, a part of the upper part of the symmetrical ultraviolet lamp 15 set and linked in the cylindrical curved reflecting mirror is formed as illumination.

【0017】図5に示される実施例では、2灯設置の外
箱1の部分でトランス12、グローランプ8が取り付け
られ、スイッチ18で外箱2が構成され、吸入口19を
介して還元システムとして空気が対流し、照明は蓋16
で仕切られている。
In the embodiment shown in FIG. 5, the transformer 12 and the glow lamp 8 are attached to the outer box 1 provided with two lamps, the outer box 2 is constituted by the switch 18, and the reduction system is The air is convected as
It is divided by.

【0018】図(a)(b)は、前記対称紫外線ランプ
に円筒曲面反射鏡を挿入して形成する二酸化炭素分解装
置の製造工程を示すもので、この製造工程は。
FIGS. 1A and 1B show a manufacturing process of a carbon dioxide decomposing apparatus formed by inserting a cylindrical curved reflecting mirror into the symmetrical ultraviolet lamp.

【0019】(イ)第一工程(6図(a)):紫外線ラ
ンプを傾斜した状態でベース14にソケット3を取り付
け、2灯、4灯から成る紫外線ランプを固着し、一方の
端から円筒曲面反射鏡16を取り付け形成する工程。
(A) First step (FIG. 6 (a)): The socket 3 is mounted on the base 14 with the ultraviolet lamp being inclined, and the two ultraviolet lamps and four ultraviolet lamps are fixed, and a cylinder is formed from one end. A step of attaching and forming the curved reflecting mirror 16.

【0020】(ロ)第二工程(6図(b)):紫外線ラ
ンプに曲面円筒反射鏡を設置した後に上部と下部に蓋1
を介して紫外線を防ぎ、上の方へファン11を固着した
工程。からなる。
(B) Second step (FIG. 6 (b)): After a curved cylindrical reflecting mirror is installed on the ultraviolet lamp, lids 1 are placed on the upper and lower parts.
And a step of fixing the fan 11 to the upper side by preventing the ultraviolet rays through. Consists of

【0021】[0021]

【発明の効果】本発明は、以上説明したように構成され
ているので、以下に記載されるような効果を奏する。紫
外線ランプを対称灯として取り付けることによって、紫
外線の光量子エネルギーが大きくなって、二酸化炭素の
光化学変換によって簡単にCOが酸素に還元される。
Since the present invention is configured as described above, it has the following effects. By mounting the ultraviolet lamp as a symmetrical lamp, photon energy of the ultraviolet rays is increased, easily CO 2 is reduced to oxygen by photochemical conversion of carbon dioxide.

【0022】そして、該対称紫外線ランプを円筒曲面反
射鏡に固着することにおいて、さらに光量子エネルギー
が大きくなり、二酸化炭素が分解されてオゾンOとし
て形成される。
[0022] Then, in that securing the symmetry ultraviolet lamp cylindrically curved reflector, further photon energy is increased, is formed carbon dioxide is decomposed as ozone O 3.

【0023】さらに、2灯から成る対称紫外線ランプを
4灯とすることによって多量の炭酸ガスを酸素還元シス
テムとして構成することができ、健康医療空調機として
有益に増幅される。
Further, by using four symmetrical ultraviolet lamps consisting of two lamps, a large amount of carbon dioxide gas can be constituted as an oxygen reduction system, which is beneficially amplified as a health care air conditioner.

【0024】また、対称紫外線ランプを多灯として連係
したことの装置としても、4灯の対称紫外線ランプが連
係したところのユニット構成ができ、ニーズにあった構
成が容易である。
Further, even in a device in which the symmetrical ultraviolet lamps are linked as multiple lamps, a unit configuration in which four symmetrical ultraviolet lamps are linked can be realized, and a configuration suitable for needs can be easily achieved.

【0025】また、ベースに設置したソケットを介し
て、対称紫外線ランプを簡単に形成され、下部と上部に
紫外線を防ぐ蓋を取り付けるので製造が簡単である。
Further, the symmetrical ultraviolet lamp can be easily formed via the socket provided on the base, and the lid for preventing ultraviolet rays is attached to the lower and upper parts, so that the manufacture is simple.

【0026】また、円筒曲面反射鏡を介することによっ
て、紫外線ランプの光量子エネルギーが容易に得られる
製造の利点を有する。なお2灯、4灯にあわせて円筒曲
面の内経を造ることができる。
Further, there is an advantage in that the photon energy of the ultraviolet lamp can be easily obtained through the cylindrical curved reflecting mirror. In addition, the inner diameter of the cylindrical curved surface can be made in accordance with two lights and four lights.

【0027】さらに、対称紫外線ランプの上部の一部を
照明とすることによって生化学線も得ることになり人体
にとっての健康医療空調機とすることができる。
Furthermore, by illuminating a part of the upper part of the symmetrical ultraviolet lamp, bioactinic radiation is also obtained, and a health care air conditioner for a human body can be obtained.

【0028】そして、記記円筒曲面反射鏡内に対称紫外
線ランプを挿入して形成する二酸化炭素分解装置の製造
方法として、前記した製造方法を採用することによっ
て、2灯、4灯に応じて円筒曲面反射鏡内にセットした
該対称紫外線ランプとして構成し、容易な製造工程によ
って光量子エネルギーの変換として酸素還元システムと
しての健康医療空調機を製造することができる。
By adopting the above-described manufacturing method as a method of manufacturing a carbon dioxide decomposing apparatus formed by inserting a symmetrical ultraviolet lamp into the cylindrical curved reflecting mirror, a cylindrical lamp can be manufactured according to two lamps and four lamps. By configuring as a symmetric ultraviolet lamp set in a curved reflecting mirror, a health care air conditioner as an oxygen reduction system can be manufactured as a conversion of photon energy by an easy manufacturing process.

【図面の簡単な説明】[Brief description of the drawings]

【図1】(健康医療空調機を示した縦断面図である。)FIG. 1 is a longitudinal sectional view showing a health care air conditioner.

【図2】(健康医療空調機の実施例を示した縦断面図で
ある。)
FIG. 2 is a longitudinal sectional view showing an embodiment of a health care air conditioner.

【図3】(二酸化炭素分解装置の健康医療空調機を示し
た縦断面図である。)
FIG. 3 is a longitudinal sectional view showing a health care air conditioner of a carbon dioxide decomposing device.

【図4】(二酸化炭素分解装置の健康医療空調機の実施
例を示した縦断面図である。)
FIG. 4 is a longitudinal sectional view showing an embodiment of the health care air conditioner of the carbon dioxide decomposing device.

【図5】(二酸化炭素分解装置の取付部の実施例を示す
縦断面図である。)
FIG. 5 is a longitudinal sectional view showing an embodiment of a mounting portion of the carbon dioxide decomposing device.

【図6】(二酸化炭素分解装置の製造工程を示す図であ
る。)
FIG. 6 is a view showing a manufacturing process of a carbon dioxide decomposer.

【符号の説明】[Explanation of symbols]

1…底箱 14…(ユニット)対称
紫外線ランプ 2…製外箱 15…(照明付)対称紫
外線ランプ 4…4灯紫外線ランプ 16…円筒曲面反射鏡 5…円筒曲面反射鏡 17…蓋 6…支柱 7…取付板 8…グローランプ 11…ファン 12…トランス 13…2灯紫外線ランプ
DESCRIPTION OF SYMBOLS 1 ... Bottom box 14 ... (Unit) Symmetric UV lamp 2 ... Outer box 15 ... (With illumination) Symmetric UV lamp 4 ... 4 lamps UV lamp 16 ... Cylindrical curved reflecting mirror 5 ... Cylindrical curved reflecting mirror 17 ... Cover 6 ... Post 7 mounting plate 8 glow lamp 11 fan 12 transformer 13 ultraviolet lamp

Claims (4)

【特許請求の範囲】[Claims] 【請求項1】 底箱(1)の上部に外箱(2)を取り付
け、前記外箱(2)の内部に円筒反射鏡(5)を介して
対称紫外線ランプ(13、4、14、15)を固着した
前記円筒曲面反射鏡(5)に光量子変換の紫外線ランプ
を取り付けた二酸化炭素分解装置の健康医療空調機。
1. An outer box (2) is mounted on an upper portion of a bottom box (1), and a symmetric ultraviolet lamp (13, 4, 14, 15) is provided inside the outer box (2) via a cylindrical reflector (5). A health care air conditioner for a carbon dioxide decomposer in which an ultraviolet lamp for photon conversion is attached to the cylindrical curved reflecting mirror (5) to which the above ()) is fixed.
【請求項2】 対称紫外線ランプから排気穴(10)に
向ってCOが対流する構造で対称紫外線と円筒曲面反
射鏡の光量子エネルギーによって酸素還元システム構成
の請求項1記載の二酸化炭素分解装置の健康医療空調機
の酸素還元システム。
2. A towards the symmetry ultraviolet lamp into the exhaust hole (10) CO 2 is carbon dioxide decomposition apparatus according to claim 1 wherein the oxygen reduction system constituted by photon energy of symmetry ultraviolet cylindrical curved reflector with structure convectively Oxygen reduction system for health care air conditioners.
【請求項3】 対称紫外線ランプが2灯(13)、多灯
の紫外線ランプ(14)で、円筒曲面反射鏡より紫外線
ランプが現われている装置が4灯(4)からなる多灯紫
外線ランプ(15)の構成として取り付けた請求項2記
載の二酸化炭素分解装置の健康医療空調機。
3. A multi-lamp ultraviolet lamp comprising two symmetrical ultraviolet lamps (13) and a multi-lamp ultraviolet lamp (14), and an apparatus in which the ultraviolet lamps appear from a cylindrical curved reflecting mirror comprises four lamps (4). The health and medical air conditioner for a carbon dioxide decomposer according to claim 2, wherein the air conditioner is installed as the configuration of (15).
【請求項4】 ベース(14)にソケット(3)を介し
て2灯紫外線ランプ(13)を取り付け、その紫外線灯
を中央とするように円筒曲面反射鏡(16)を挿入し、
その上部から支柱(6)を固着し4灯(4)は紫外線ラ
ンプが現われており、対称紫外線ランプ(14)は全部
反射鏡にセットされたことを特徴とする請求項3記載の
二酸化炭素分解装置の健康医療空調機。
4. A two-ultraviolet lamp (13) is attached to a base (14) via a socket (3), and a cylindrical curved reflecting mirror (16) is inserted with the ultraviolet lamp as a center.
4. Decomposition of carbon dioxide according to claim 3, characterized in that the column (6) is fixed from the upper part, and the four lamps (4) are UV lamps, and the symmetric UV lamps (14) are all set on the reflecting mirror. Equipment health medical air conditioner.
JP8215835A 1996-06-18 1996-06-18 Health medical air conditioner of carbon dioxide cracking device as well as oxygen reduction system used for this device and its production Pending JPH105323A (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
JP8215835A JPH105323A (en) 1996-06-18 1996-06-18 Health medical air conditioner of carbon dioxide cracking device as well as oxygen reduction system used for this device and its production

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
JP8215835A JPH105323A (en) 1996-06-18 1996-06-18 Health medical air conditioner of carbon dioxide cracking device as well as oxygen reduction system used for this device and its production

Publications (1)

Publication Number Publication Date
JPH105323A true JPH105323A (en) 1998-01-13

Family

ID=16679061

Family Applications (1)

Application Number Title Priority Date Filing Date
JP8215835A Pending JPH105323A (en) 1996-06-18 1996-06-18 Health medical air conditioner of carbon dioxide cracking device as well as oxygen reduction system used for this device and its production

Country Status (1)

Country Link
JP (1) JPH105323A (en)

Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2439142A (en) * 2006-06-14 2007-12-19 John Rutherford Moody Recovery of carbon from carbon dioxide
GB2450145A (en) * 2007-06-14 2008-12-17 Christopher John Ralph Strevens A device for converting carbon dioxide into oxygen and carbon
GB2463038A (en) * 2008-08-28 2010-03-03 Shu-Chin Chen UV-initiated decomposition of carbon dioxide to form carbon and water
CN110975560A (en) * 2019-12-30 2020-04-10 哈尔滨工业大学(深圳) VOCs waste gas purification treatment method and device

Cited By (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2439142A (en) * 2006-06-14 2007-12-19 John Rutherford Moody Recovery of carbon from carbon dioxide
GB2450145A (en) * 2007-06-14 2008-12-17 Christopher John Ralph Strevens A device for converting carbon dioxide into oxygen and carbon
GB2463038A (en) * 2008-08-28 2010-03-03 Shu-Chin Chen UV-initiated decomposition of carbon dioxide to form carbon and water
CN110975560A (en) * 2019-12-30 2020-04-10 哈尔滨工业大学(深圳) VOCs waste gas purification treatment method and device
US12576361B2 (en) 2019-12-30 2026-03-17 Harbin Institute Of Technology Shenzhen Devices and methods for gas purification treatment

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