WO2007009309A1 - Dispositif générateur d’eau enrichie en oxygène/d’eau d’ozone - Google Patents

Dispositif générateur d’eau enrichie en oxygène/d’eau d’ozone Download PDF

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Publication number
WO2007009309A1
WO2007009309A1 PCT/CN2005/001354 CN2005001354W WO2007009309A1 WO 2007009309 A1 WO2007009309 A1 WO 2007009309A1 CN 2005001354 W CN2005001354 W CN 2005001354W WO 2007009309 A1 WO2007009309 A1 WO 2007009309A1
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Prior art keywords
water
ozone
oxygen
enriched
tank
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PCT/CN2005/001354
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English (en)
French (fr)
Inventor
Gavin Hsu
Maxwell Hsu
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Yantai United Ozonetec Corporation
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Application filed by Yantai United Ozonetec Corporation filed Critical Yantai United Ozonetec Corporation
Publication of WO2007009309A1 publication Critical patent/WO2007009309A1/zh

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    • CCHEMISTRY; METALLURGY
    • C01INORGANIC CHEMISTRY
    • C01BNON-METALLIC ELEMENTS; COMPOUNDS THEREOF; METALLOIDS OR COMPOUNDS THEREOF NOT COVERED BY SUBCLASS C01C
    • C01B13/00Oxygen; Ozone; Oxides or hydroxides in general
    • C01B13/10Preparation of ozone
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B01PHYSICAL OR CHEMICAL PROCESSES OR APPARATUS IN GENERAL
    • B01DSEPARATION
    • B01D61/00Processes of separation using semi-permeable membranes, e.g. dialysis, osmosis or ultrafiltration; Apparatus, accessories or auxiliary operations specially adapted therefor
    • B01D61/14Ultrafiltration; Microfiltration
    • B01D61/145Ultrafiltration
    • 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

Definitions

  • the present invention relates to an ozone water/oxygen-enriched water machine. It belongs to the field of ozone disinfection technology and oxygen therapy and health technology.
  • Ozone-dissolved water is called ozone water.
  • concentration of ozone in the water reaches a certain concentration, ozone water can completely kill bacteria and bacteria.
  • Ozone water has become a safe, effective and non-toxic side effect bactericide for a wide range of applications.
  • Ozone water is a new development in ozone application technology. Various ozone water preparation equipments are in a period of rapid development.
  • ozone water preparation equipment there are several types: First, ozone is produced by using ozone generated by physical corona discharge method using air as a raw material. Large, the first prepared ozone water concentration is very low, generally less than 2ppm, such low concentration of ozone water can not effectively kill bacteria, bacteria. Second, the ozone water is contaminated by N0X. Ozone water contaminated with N0X has toxic side effects. Second, another type of ozone-hydrogen water-making equipment is to first separate oxygen from the air, and then ionize oxygen to generate ozone by physical corona discharge method, and then prepare ozone water. The ozone water produced by this ozone water preparation equipment can reach a relatively high concentration and has practical use value.
  • Electrolytic ozone generator using pure water as raw material is electrolyzed to generate ozone, and then ozone water is prepared. This type is suitable for medium and small-scale preparation of ozone water for household and medical types.
  • Oxygen therapy and oxygen care are the use of supplemental oxygen to improve the physiological and biochemical environment of the human body and promote a virtuous cycle of metabolism to achieve the purpose of treating diseases, alleviating symptoms and promoting rehabilitation.
  • Practice has proved that oxygen therapy can effectively treat various acute and chronic ischemia, hypoxic diseases and secondary diseases caused by hypoxia with its unique therapeutic mechanism. Therefore, oxygen therapy is used in clinical medicine.
  • Preventive medicine, urgent Rescue medicine, geriatric rehabilitation and health care have irreplaceable important roles and broad development prospects.
  • the conventional method of oxygen therapy is to increase the amount of oxygen inhaled by the human body when the body is deprived of oxygen or hypoxia, thereby increasing the oxygen content of the arterial blood to improve the hypoxia of the tissue.
  • the invention relates to an ozone water/oxygen-enriched water machine, which comprises: a pure water type electrolytic ozone generator, a pure water tank, a gas-water mixer, a reducer, a valve for controlling the flow of ozone water, a valve for controlling the flow of oxygen-enriched water, A reducer, a tap water inlet, an ozone water effluent/oxygen-rich water outlet line, and an electrical system for controlling the above valve, characterized in that a sterilizing tank capable of storing oxygen-enriched water is provided before the reducing device.
  • the ozone water/oxygen-enriched water machine of the present invention is characterized in that a reverse osmosis membrane and/or a resin tank are attached to the pure water tank.
  • the above ozone water/oxygen-enriched water machine is also characterized in that a displacement type pressure protector is provided in the sterilization tank.
  • the above ozone water/oxygen-enriched water machine is further characterized in that a spray mist type water jet head is provided in the gas-water mixer.
  • the above ozone water/oxygen-enriched water machine is further characterized in that the reducer is filled with shell-shell activated carbon.
  • the above ozone water/oxygen-enriched water machine is further characterized in that a membrane type check valve is provided between the pure water tank and the gas-water mixer.
  • the ozone water/drinkable oxygen-enriched water machine of the present invention works like this:
  • the electrolytic ozone generator electrolyzes the pure water supplied from the pure water tank into an anode gas, an ozone and oxygen, and a cathode gas, a hydrogen gas. Hydrogen enters the atmosphere and is freely discharged, while ozone and oxygen enter the gas-water mixer. Accumulation.
  • the tap water enters the gas-water mixer through the atomized water spout and mixes with ozone and oxygen to form ozone water and oxygen-enriched water. It is then flowed through the ozone water line.
  • the generated ozone water enters the sterilization tank for a period of time, so that the bacteria and germs are completely killed, and then enters the reducer, where the ozone water is reduced by the shell activated carbon in the reducer.
  • the water no longer contains ozone. After it becomes completely oxygen-enriched water, it flows out from the oxygen-enriched water outlet for drinking.
  • Figure 1 is a schematic structural view of an ozone water/oxygen-enriched water machine of the present invention.
  • the tap water is treated with pure water through the reverse osmosis membrane 2 and the resin tank 3, and then enters the pure water tank 6.
  • the electrolytic ozone generator 5 starts operating, the anode gas (ozone, oxygen) generated by the electrolysis of the pure water by the electrolytic ozone generator 5 enters the gas-water mixer 8 through the membrane type check valve 7, and the tap water passes through the tap water solenoid valve 9 Also entering the gas-water mixer 8, the atomizing spray port 16 of the gas-water mixer 8 is sprayed into a mist; in the space of the gas-water mixer 8, there is also ozone stored again after the last work (including Oxygen); At this time, the water-like tap water and ozone are mixed in the gas-water mixer 8, and the high-concentration ozone water generated instantaneously flows out through the water outlet solenoid valve 10 through the water outlet 15 for disinfection, after the shutdown, electrolysis
  • the ozone generator 5 is operated for a period of time, and the ozone and
  • the electrolytic ozone generator 5 starts to operate, and the pure water in the pure water tank 6 is injected into the gas water through the membrane type check valve 7 by the anode gas (ozone, oxygen) generated by the electrolytic ozone generator 5.
  • the mixer 8 is also supplied to the gas-water mixer 8 through the tap water solenoid valve 9, and is sprayed into a mist by the atomizing spray port 16 of the gas-water mixer 8, and is stored in the space of the gas-water mixer 8. inside.
  • the ozone (including oxygen) stored after the last work is mixed with the misty tap water, and the high-concentration ozone water is generated instantaneously, and then it enters the sterilization tank 11, and the ozone water accumulated in the disinfection tank 11 is stored.
  • the oxygen water is pressed into the reducer 13.
  • the husk activated carbon packed in the reducer 13 reduces the ozone in the ozone water to obtain oxygen-enriched water which is discharged from the water outlet 15 through the oxygen-enriched water outlet solenoid valve 14 for drinking.
  • the pure water tank water level detection output signal electronic control system (not shown) is opened, the reverse osmosis membrane water inlet solenoid valve 1, the tap water passes through the reverse osmosis membrane, and then passes through the resin tank 3 Enter The pure water tank 6 is supplemented with pure water.
  • the membrane type check valve, the atomizing type sprinkler, and the displacement type pressure sensor are in the applicant's application number: 2005 2 01138 2 7. X, and the name is: one for the ozone/ozone water circuit
  • the membrane type check valve "application number: 200520113833. 5, the name is: a spray atomization type ozone gas water mixing device" and "application number: 200520113835. 4 , the name is: a displacement Pressure sensor" utility model patent application.

Landscapes

  • Chemical & Material Sciences (AREA)
  • Engineering & Computer Science (AREA)
  • Water Supply & Treatment (AREA)
  • Organic Chemistry (AREA)
  • Chemical Kinetics & Catalysis (AREA)
  • Inorganic Chemistry (AREA)
  • Water Treatment By Electricity Or Magnetism (AREA)
  • Treatment Of Water By Oxidation Or Reduction (AREA)
  • Apparatus For Disinfection Or Sterilisation (AREA)
  • Electrolytic Production Of Non-Metals, Compounds, Apparatuses Therefor (AREA)

Description

一种臭氧水 /富氧水机
技术领域
本发明涉及一种臭氧水 /富氧水机。 属于臭氧消毒技术领域和氧疗保健技 术领域。
背景技术
臭氧的强氧化性使其能够杀灭细菌、 病菌。 人们为了方便利用臭氧的强 氧化性达到杀菌的目的, 开拓了臭氧水的应用技术。 溶有臭氧的水称为臭氧 水。 当水中臭氧浓度达到一定浓渡时, 臭氧水可以完全有效杀灭细菌、 病菌。 同时, 因为臭氧水在使用过程中对空气污染的负面影响远远小于臭氧气体的 直接应用。 因此臭氧水成为可在广泛领域应用的一种安全有效无毒副作用的 杀菌剂。 臭氧水是臭氧应用技术新发展。 各种臭氧水制备设备正处于高速的 发展时期, 目前有几种类型的臭氧水制备设备: 一、 利用以空气为原料采用 物理电晕放电法产生的臭氧来制备臭氧水, 这种方法缺陷很大, 首先制备的 臭氧水浓度很低, 一般达不到 2ppm, 如此低浓度的臭氧水不能有效杀灭细菌、 病菌。 其次臭氧水被 N0X污染。 而被 N0X污染的臭氧水有毒副作用。 二、 臭 氧水制备设备的另一种类型是先从空气中分离出氧, 然后再以物理电暈放电 法电离氧气产生臭氧, 然后再制备臭氧水。 这种臭氧水制备设备生成的臭氧 水可以达到相当高的浓度, 具有实际使用价值。 在中型、 较大型的臭氧水制 备设备上, 采用这种方法是可行的, 但是在较小型的臭氧水制备设备上, 例 如在家用型或医疗型的臭氧水制备设备上使用这种类型的设备, 则存在着体 积大、 噪音强、 成本高等问题。 三、 采用以纯水为原料的电解臭氧发生器电 解产生臭氧, 然后制备臭氧水, 这种类型适用家用型、 医用型等中、 小规模 制备臭氧水的设备。 ,
氧疗和氧保健是利用补给氧气改善人体的生理、 生化环境, 促进代谢的 良性循环, 以达到治疗疾病, 緩解病状, 促进康复的目的。 实践证明, 氧疗 以其独特的治疗机理, 对各中急性、 慢性缺血、 缺氧性疾病和因缺氧引起的 继发性疾病能够起到有效的治疗作用, 因而氧疗在临床医学、 预防医学、 急 救医学、 老年医学康复和保健等方面都有不可替代的重要作用和广阔的发展 前途。
氧疗的常规方法是在人体缺氧或出现缺氧的时候 , 适量增加人体吸入氧 气的量, 从而提高动脉血的氧含量以改善组织缺氧的状况。
最新研究发现, 在人体缺氧或将发生缺氧时, 通过饮用高含氧量的水, 使溶于水中的氧通过消化系统毛细血管进入血液, 可直接提高血浆中物理溶 解的氧含量, 而血浆中的物理溶解的氧, 有效地提高了人体組织对氧的利用 效率。 因此饮用含氧量高的水是改善人体供氧的一种重要途¾·, 但目前生产 的富氧水发生设备不具有杀菌、 消毒功能。
因此, 本发明的目的在于提供一种臭氧水 /可饮用的富氧水制备设备。 发明内容
本发明一种臭氧水 /富氧水机, 它包括: 纯水式电解臭氧发生器、纯水箱、 气水混合器、 还原器、 控制臭氧水流向的阀、 控制富氧水流向的阀、 还原器、 自来水进水、 臭氧水出水 /富氧水出水管路及控制上述阀门的电气系统, 其特 征在于, 在所述的还原器之前设有可储存富氧水的消毒罐。
本发明一种臭氧水 /富氧水机, 其特征还在于, 在所述的纯水箱之前接有 逆渗透膜和 /或树脂罐。
上述臭氧水 /富氧水机的特征还在于在所述的消毒罐内设有位移式压力 保护器。
上述臭氧水 /富氧水机的特征还在于, 在所述的气水混 器内设有喷淋雾 化式水喷头。
上述臭氧水 /富氧水机的特征还在于, 所述的还原器于内充有果壳活性 碳。
上述臭氧水 /富氧水机的特征还在于, 在所述的纯水箱和气水混合器之间 设有薄膜式单向阀。
本发明的臭氧水 /可饮用的富氧水机是这样工作的:
电解臭氧发生器将纯水箱提供的纯水电解成阳极气体一臭氧和氧气, 阴 极气体一氢气。 氢气进入大气被自由排放, 而臭氧和氧气进入气水混合器中 积储。 当需要臭氧水时, 自来水经雾化水喷口以水雾状进入气水混合器与臭 氧、 氧气混合生成臭氧水和富氧水。 然后由臭氧水管路流。 当需要富氧水时, 生成的臭氧水进入消毒罐暂存一段时间, 以使细菌、 病菌完全被杀灭, 之后 再进入还原器, 于此, 臭氧水被还原器中的果壳活性碳还原, 水中不再含有 臭氧, 成为完全的富氧水之后从富氧水出口流出供饮用。
以下结合附图具体说明本发明。
附图说明
附图 1是本发明的臭氧水 /富氧水机的示意结构图。
具体实施方式
参见图 1 , 自来水经逆渗透膜 2和树脂罐 3处理成纯水后进入纯水箱 6。 电解臭氧发生器 5开始工作时, 该纯水被电解臭氧发生器 5电解而生成的阳 极气体 (臭氧、 氧气 )通过薄膜式单向阀 7进入气水混合器 8 , 同时自来水经 过自来水电磁阀 9也进入气水混合器 8, 通过气水混合器 8的雾化喷淋口 16 被喷成为水雾状; 在气水混合器 8 的空间内还存有上次工作后重新储存的臭 氧(包括氧气); 此时水雾状自来水与臭氧在气水混合器 8内混合, 瞬间生成 的高浓度臭氧水, 它通过臭氧水出水电磁阀 10由出水口 15流出供消毒使用, 在停机后, 电解臭氧发生器 5延时工作一段时间, 在该段时间内电解产生的 臭氧、 氧气积储在气水混合器 8 的空间内以备下次使用。 在需要富氧水时, 令电解臭氧发生器 5开始工作, 纯水箱 6内的纯水被电解臭氧发生器 5电解 生成的阳极气体 (臭氧、 氧气)通过薄膜式单向阀 7进入气水混合器 8, 同时 自来水经过自来水电磁阀 9也进入气水混合器 8 ,并通过气水混合器 8的雾化 喷淋口 16被喷成为水雾状, 而储存在气水混合器 8的空间内的。 上次工作后 储存的臭氧(包括氧气)与水雾状的自来水混合, 瞬间生成的高浓度臭氧水, 然后它进入消毒罐 11, 并将消毒罐 11内上次工作积储的臭氧水(富氧水)压 入还原器 13内。 还原器 13内装填的果壳活性碳将臭氧水中的臭氧还原之后, 得到富氧水, 它通过富氧水出水电磁阀 14由出水口 15流出供饮用。
在纯水箱 6 的纯水水位过低时, 纯水箱水位检测输出信号电控系统(未 示)打开,逆渗透膜进水电磁阀 1, 自来水经逆渗透膜后, 又经过树脂罐 3进入 純水箱 6补充纯水。
位移式压力传感器 12与消毒罐 13之间有连接管路。 当消毒罐 13内的压 力增大时, 位移式压力传感器 12 输出信号, 控制系统关闭自来水进水电磁 阀 9起到限压保护作用。
所述的薄膜式单向阀、 雾化式喷淋口、 位移式压力传感器在本申请人的 "申请号为: 200520113827. X, 名称为: 一种用于臭氧 /臭氧水回路中的薄膜 式单向阀"、 "申请号为: 200520113833. 5, 名称为: 一种喷淋雾化式臭氧气 水混合装置" 及 "申请号为: 200520113835. 4 , 名称为: 一种位移式压力传 感器" 的实用新型专利申请中。

Claims

一种臭氣水 /富氧水机 权利 要求 书
1、 一种臭氧水 /富氧水机, 它包括: 纯水式电解臭氧发生器、 纯水箱、 气水混合器、 还原器、 控制臭氧水流向的阀、 控制富氧水流向的阀、 还原器、 自来水进水、 臭氧水出水 /富氧水出水管路及控制上述阀门的电气系统, 其特 征在于, 在所述的还原器之前设有可储存富氧水的消毒罐。
2、 根据权利要求 1 所述的臭氧水 /富氧水机, 其特征在于, 在所述的气 水混合器内设有喷淋雾化式水喷头。
3、 根据权利要求 2 所述的臭氧水 /富氧水机, 其特征还在于, 在所述的 纯水箱之前接有逆渗透膜和 /或树脂罐。
4、 根据权利要求 1或 2所述的臭氧水 /富氧水机, 其特征在于, 在所述 的消毒罐内设有位移式压力保护器。
5、 根据权利要求 4 所述的臭氧水 /富氧水机, 其特征在于, 在所述的纯 水箱和气水混合器之间设有薄膜式单向阀。
6、 根据权利要求 1-3任一项所述的臭氧水 /富氧水机, 其特征在于, 所 述的还原器于内充有果壳活性碳。
7、 根据权利要求 4 所述的臭氧水 /富氧水机, 其特征在于, 所述的还原 器于内充有果壳活性碳。
8、 根据权利要求 5 所述的臭氧水 /富氧水机, 其特征在于, 所述的还原 器于内充有果壳活性碳。
PCT/CN2005/001354 2005-07-21 2005-08-29 Dispositif générateur d’eau enrichie en oxygène/d’eau d’ozone WO2007009309A1 (fr)

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CN107982043A (zh) * 2017-11-30 2018-05-04 宁波惠士康健康科技有限公司 一种臭氧水多功能健康护理机

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CN101376086B (zh) * 2008-09-22 2010-07-21 徐名勇 一种制造压力为0.3~7.0kg/cm2的高压力臭氧水的多级高压混合装置
CN102030400A (zh) * 2010-10-28 2011-04-27 昆山科技大学 利用含碳物质处理液相臭氧的方法
CN105752934B (zh) * 2016-01-08 2018-08-10 冷光君 智能氧气分离机
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