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    • 1. 发明专利
    • Liquid treatment apparatus using electrodeless discharge ultraviolet irradiation device
    • 使用无电极放电超紫外线辐射装置的液体处理装置
    • JP2014086183A
    • 2014-05-12
    • JP2012232240
    • 2012-10-19
    • Photoscience Japan Corp株式会社日本フォトサイエンス
    • KUBO MITSUMASAINOUE AKIHIRO
    • H01J65/04B01J19/12C02F1/32
    • PROBLEM TO BE SOLVED: To provide a liquid treatment apparatus equipped with an electrodeless discharge ultraviolet irradiation device capable of causing discharge more effectively by improving energy transmission efficiency from a high frequency power source to a discharge tube.SOLUTION: In a liquid treatment apparatus having an ultraviolet discharge tube which is placed at a flow passage for a treated liquid from an inflow port to an outflow port for a liquid to be treated and which irradiates the treated liquid flowing through the flow passage with ultraviolet rays, an ultraviolet ray is caused in the discharge tube by mutually connecting ferrite cores arranged respectively on each discharge tube filled with a discharge medium with a core connection part and energizing one or a plurality of induction coils wound on the ferrite core or the discharge tube. Thereby, since the leakage of magnetic flux to the outside is reduced by circulating the magnetic flux induced by the induction coil in a loop via the ferrite coil and the core connection part, and the energy is efficiently transferred from the induction coil to the discharge tube (in other words, the energy transmission efficiency is increased), the discharge is more efficiently caused.
    • 要解决的问题:提供一种配备有无电极放电紫外线照射装置的液体处理装置,其能够通过提高从高频电源到放电管的能量传输效率而更有效地进行放电。解决方案:在具有 紫外线放电管被放置在处理液的流路上,从流入口到待处理液体的流出口,并用紫外线照射流过流路的处理液,在 通过将分别布置在填充有放电介质的每个放电管上的铁芯与芯连接部分相互连接并激励缠绕在铁氧体磁芯或放电管上的一个或多个感应线圈的放电管。 由此,通过使由感应线圈感应的磁通经由铁氧体线圈和铁芯连接部使环路感应到外部的磁通量的泄漏而降低,能量从感应线圈有效地传递到放电管 (换句话说,能量传输效率增加),更有效地引起放电。
    • 2. 发明专利
    • Liquid processor using electrodeless discharge ultraviolet irradiation device
    • 使用无电极放电超紫外线辐照器件的液体处理器
    • JP2012256568A
    • 2012-12-27
    • JP2011129940
    • 2011-06-10
    • Photoscience Japan Corp株式会社日本フォトサイエンス
    • THOMAS KIYOMITSU KEVININOUE AKIHIRO
    • H01J65/04H01J61/30H01J61/35
    • PROBLEM TO BE SOLVED: To provide a liquid processor with high efficiency having an electrodeless discharge ultraviolet irradiation device that can generate discharge almost uniformly over the whole length of a discharge tube effectively.SOLUTION: In a liquid processor having a discharge tube emitting an ultraviolet ray to a processing liquid arranged in a processing liquid passage from an inflow port of a liquid to be processed to an outflow port and passing through the passage, the discharge tube is formed in a tubular shape having a cavity penetrating the inside, and a ferrite core on which a plurality of induction coils are wound is arranged in the cavity. The plurality of induction coils are arranged on the ferrite core by being dispersed along a longitudinal direction of the discharge tube. Since the discharge tube is arranged so as to surround the outer periphery of the ferrite core on which the plurality of induction coils are dispersed and wound, there is no need to excite the coils at a high frequency, and the discharge can be generated uniformly over the whole length of the discharge tube without concentrating on one part of the discharge tube. Further, it has a simple configuration without need to provide means to cool the ferrite core.
    • 要解决的问题:为了提供一种具有无电极放电紫外线照射装置的高效率的液体处理器,其可以有效地在放电管的整个长度上几乎均匀地产生放电。 解决方案:在具有对从处理液体通道中排出的处理液体的放电管发射紫外线的液体处理器中,所述处理液体从待处理液体的流入口流向出口并通过通道,所述放电管 形成为具有穿透内部的空腔的管状,并且在该空腔内布置有多个感应线圈缠绕在其上的铁氧体磁芯。 多个感应线圈沿着放电管的长度方向分散配置在铁氧体磁芯上。 由于放电管被布置成围绕多个感应线圈被分散和缠绕的铁氧体磁芯的外周,所以不需要以高频率激励线圈,并且可以均匀地产生放电 放电管的整个长度,而不会集中在放电管的一部分上。 此外,其具有简单的构造,而不需要提供冷却铁氧体磁心的装置。 版权所有(C)2013,JPO&INPIT
    • 3. 发明专利
    • Liquid treating equipment
    • 液体处理设备
    • JP2012223732A
    • 2012-11-15
    • JP2011095485
    • 2011-04-21
    • Photoscience Japan Corp株式会社日本フォトサイエンス
    • YAMAKOSHI YUJITERAOKA TAKAHIROISHII SHININOUE AKIHIRO
    • C02F1/32A01J11/00A23L3/28H01J65/04
    • PROBLEM TO BE SOLVED: To provide liquid treating equipment including an electrodeless discharge tube which is designed to display constantly high ability of liquid treatment.SOLUTION: In the liquid treating equipment, ferrite cores wound with induction coils electrified via a lead wire are arranged to interlink with an electrodeless ultraviolet discharge tube in a state of surrounding a part of the discharge tube. The whole of the liquid treating equipment of a complex shape having asperity is covered with an ultraviolet-ray-transmitting coating member. This eliminates the possibility that any part of the liquid treating equipment of the uneven shape having asperity cannot be covered with the coating member and prevents the liquid to be treated from infiltrating from such a part. Especially because the coating member prevents the ultraviolet discharge tube from being directly exposed to the liquid to be treated, any contamination of the liquid to be treated does not stick to the ultraviolet discharge tube, and the ultraviolet output from the ultraviolet discharge tube can be restrained from reducing due to temperature changes so that the liquid treating ability can be kept constantly high.
    • 要解决的问题:提供包括无极放电管的液体处理设备,其被设计成显示出不断高的液体处理能力。 解决方案:在液体处理设备中,通过引线通电的感应线圈缠绕的铁氧体磁心被布置成在围绕放电管的一部分的状态下与无电极紫外线放电管相互连接。 具有凹凸的复杂形状的整个液体处理设备被紫外线透射涂覆部件覆盖。 这消除了不均匀形状的具有凹凸的液体处理设备的任何部分不能被涂覆部件覆盖,并且防止液体被处理从这种部件渗透的可能性。 特别是因为涂层部件防止紫外线放电管直接暴露于待处理的液体中,所以被处理液体的任何污染物都不会附着在紫外线放电管上,因此能够抑制紫外线放电管的紫外线输出 由于温度变化引起的减少,使得液体处理能力可以保持恒定。 版权所有(C)2013,JPO&INPIT
    • 4. 发明专利
    • Liquid treatment apparatus employing electrodeless discharge ultraviolet irradiation device
    • 采用无电极放电超紫外线辐射装置的液体处理装置
    • JP2014093190A
    • 2014-05-19
    • JP2012242823
    • 2012-11-02
    • Photoscience Japan Corp株式会社日本フォトサイエンス
    • INOUE AKIHIROISHII ARATA
    • H01J65/04H01J61/35H01J61/52
    • PROBLEM TO BE SOLVED: To provide a liquid treatment apparatus employing an electrodeless discharge ultraviolet irradiation device of which the lifetime is more prolonged than the prior arts.SOLUTION: An inner wall surface within a quartz electroless ultraviolet discharge tube in which a discharge medium is encapsulated, is covered with a material which shields or extinguishes ultraviolet rays of wavelengths equal to or less than 185 nm. Thus, when ultraviolet rays are generated in the ultraviolet discharge tube, since ultraviolet rays of wavelengths equal to or less than 185 nm are shielded or extinguished, it can be temporally delayed for the total quantity of received ultraviolet rays with the wavelength of 185 nm to reach about 700 W hour/cm. If the total quantity of received ultraviolet rays with the wavelength of 185 nm does not reach about 700 W hour/cm, cracking is prevented from being incurred by incurring binding/separation of quartz molecules and changing a density of the quartz constituting the discharge tube. Therefore, though the lifetime of the electrodeless ultraviolet discharge tube is longer than that of an electrode-fitted discharge tube originally, the lifetime can be further prolonged in comparison with the prior arts.
    • 要解决的问题:提供一种采用无电极放电紫外线照射装置的液体处理装置,其寿命比现有技术更长。解决方案:在其中封装有放电介质的石英化学紫外线放电管内的内壁表面 覆盖有屏蔽或熄灭等于或小于185nm的紫外线的材料。 因此,当在紫外线放电管中产生紫外线时,由于紫外线等于或小于185nm的紫外线被屏蔽或熄灭,因此对于波长185nm的接收紫外线的总量,可以暂时延迟 达到约700 W小时/ cm。 如果接收到的波长为185nm的紫外线的总量不达到约700W小时/ cm,则防止由于引起石英分子的结合/分离和改变构成放电管的石英的密度而引起的裂纹。 因此,与现有技术相比,尽管无电极紫外线放电管的寿命比原来安装电极的放电管的寿命更长,但寿命可以进一步延长。
    • 5. 发明专利
    • Liquid treatment apparatus
    • 液体处理设备
    • JP2012061440A
    • 2012-03-29
    • JP2010209170
    • 2010-09-17
    • Photoscience Japan Corp株式会社日本フォトサイエンス
    • ISHII SHINTERAOKA TAKAHIROINOUE AKIHIRO
    • C02F1/32H01J65/04
    • PROBLEM TO BE SOLVED: To provide a more compact and easily usable liquid treatment apparatus in which energy efficiency is good and liquid treatment capability is further enhanced.SOLUTION: The electrodeless ultraviolet discharging tube interlinked with the ferrite core is arranged in the state of submerging in the liquid to be treated on upon subjecting a lead wire including at least the ferrite core and an induction coil to waterproof treatment and the treatment of the liquid to be treated is carried out by ultraviolet ray generated by the ultraviolet discharging tube. The frequency for changing discharging tubes is raised by using the electrodeless ultraviolet discharging tube generating the ultraviolet ray according to energization of the induction coil wound around the ferrite core. The connection of a primarily current of the oil and the secondary coil of the discharging tube is improved and energy transmission can be raised. High frequency loss by the liquid to be treated mainly comprising water can be reduced and it becomes possible to effectively transmit energy from a high frequency power source side to the discharging tube side without enlarging the ferrite core.
    • 要解决的问题:提供一种更加紧凑且易于使用的能量效率好的液体处理装置,并且液体处理能力进一步提高。 解决方案:将与铁氧体磁心相互连接的无电极紫外线放电管,在对包含至少铁氧体磁芯和感应线圈的导线进行防水处理和处理的状态下,配置在浸没在被处理液中的状态 的待处理液体由紫外线放电管产生的紫外线进行。 通过使用根据缠绕在铁氧体磁芯上的感应线圈的激励产生紫外线的无电极紫外线放电管,提高了放电管的频率。 提高了排出管的油和次级线圈的一次电流的连接,能够提高能量传递。 主要由水处理的待处理液体的高频损失可以降低,并且可以有效地将能量从高频电源侧传输到放电管侧,而不需要扩大铁氧体磁心。 版权所有(C)2012,JPO&INPIT
    • 6. 发明专利
    • Liquid treatment device
    • 液体处理装置
    • JP2012040505A
    • 2012-03-01
    • JP2010183810
    • 2010-08-19
    • Photoscience Japan Corp株式会社日本フォトサイエンス
    • ISHII SHININOUE AKIHIRO
    • C02F1/72A61L2/02A61L2/10C02F1/20C02F1/32C02F1/36C02F1/78H01J65/04
    • PROBLEM TO BE SOLVED: To provide a liquid treatment device realizing further improvement of treating capacities such as sterilization and organic material decomposition despite its cost-reduced, compact and simple configuration.SOLUTION: A fine bubble generator and ultraviolet lamp are arranged in a treating container having a flow path through which a liquid to be treated is passed, and the generation of fine bubbles and ultraviolet irradiation are nearly simultaneously performed without leaving large time interval in the identical container. By a combined effect of the above treatment, further improvement of treating capacities such as sterilization and organic matter decomposition is achieved. In other words, by irradiating the liquid to be treated just after supply of fine bubbles with ultraviolet light, oxygen or the like in the fine bubbles is activated to further improve efficiencies of sterilization and decomposition. Besides, by irradiating the liquid just after the fine bubbles are broken by applying pressure with the ultraviolet light, in addition to the active OH group generated by ultraviolet irradiation, the active groups generated in response to pressure break of fine bubbles join to the OH group and thus, the efficiencies of sterilization and decomposition are further improved by accelerated treatment.
    • 解决问题:尽管成本降低,结构紧凑,结构简单,但是提供了能够进一步提高处理能力如灭菌和有机材料分解的液体处理装置。 解决方案:在具有通过待处理液体的流动路径的处理容器中布置有微小的气泡发生器和紫外线灯,并且几乎同时执行细小气泡的产生和紫外线照射,而不会留下大的时间间隔 在相同的容器中。 通过上述处理的综合效果,实现了灭菌和有机物分解等处理能力的进一步提高。 换句话说,通过在用紫外光供应微细气泡后立即照射待处理的液体,活化微小气泡中的氧等以进一步提高灭菌和分解效率。 此外,通过利用紫外线施加压力使微细气泡破裂后的液体除了通过紫外线照射产生的活性OH基之外,响应于微小气泡的压力破坏而产生的活性基团连接到OH基团 因此通过加速处理进一步提高灭菌和分解的效率。 版权所有(C)2012,JPO&INPIT
    • 7. 发明专利
    • Liquid treatment apparatus using electrodeless discharge ultraviolet irradiation device
    • 使用无电极放电超紫外线辐射装置的液体处理装置
    • JP2014086182A
    • 2014-05-12
    • JP2012232239
    • 2012-10-19
    • Photoscience Japan Corp株式会社日本フォトサイエンス
    • INOUE AKIHIROTHOMAS KIYOMITSU KEVIN
    • H01J65/04B01J19/12C02F1/32H01J61/35H01J61/52
    • PROBLEM TO BE SOLVED: To provide a liquid treatment apparatus equipped with an electrodeless discharge ultraviolet irradiation device capable of effectively causing a stable discharge of strong ultraviolet radiation almost uniformly over the entire length of a discharge tube.SOLUTION: In a liquid treatment apparatus having an ultraviolet discharge tube which is placed at a flow passage for a treated liquid from an inflow port to an outflow port for a liquid to be treated and which irradiates the treated liquid flowing through the flow passage with ultraviolet rays, the discharge tube is formed into a tube shape having a hollow portion passing through the inside, a ferrite core is arranged inside the hollow portion and one or a plurality of induction coils are wound on the outer circumference of the discharge tube. Thereby, discharge is easily caused since relatively high voltage is applied to the outer circumference of the discharge tube and the amount of radiation of a vacuum ultraviolet ray which is effective for organic matter decomposition may increase since a discharge space comes closer to the surface. Since a wide space is ensured between the ferrite core and the induction coil, discharge is easily caused stably and continuously. It is also easy to optimize the efficiency of ultraviolet radiation by cooling the ferrite core.
    • 要解决的问题:提供一种配备有无电极放电紫外线照射装置的液体处理装置,其能够在放电管的整个长度上几乎均匀地有效地引起强烈紫外线辐射的稳定放电。解决方案:在具有 紫外线放电管,其设置在处理液的流路中,从流入口到待处理液体的流出口,并用紫外线照射流过流路的处理液,将放电管形成为 具有穿过内部的中空部的管状,在中空部内部配置铁氧体磁心,在放电管的外周卷绕一个或多个感应线圈。 因此,由于相对高的电压被施加到放电管的外周,容易引起放电,并且由于放电空间更靠近表面,对有机物质分解有效的真空紫外线的辐射量可能增加。 由于在铁氧体磁芯和感应线圈之间确保了宽的空间,容易稳定且连续地进行放电。 也可以通过冷却铁氧体磁芯来优化紫外线辐射的效率。