会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 2. 发明专利
    • Water treatment facility using ozone
    • 使用臭氧的水处理设施
    • JP2011005406A
    • 2011-01-13
    • JP2009150578
    • 2009-06-25
    • Eco Design KkTaizo Nagahiroエコデザイン株式会社長廣 泰藏
    • NAGAKURA MASAAKINAGAHIRO TAIZO
    • C02F1/78B01F1/00B01F3/04B01F5/04C01B13/10C01B13/11C02F1/50
    • PROBLEM TO BE SOLVED: To provide a water treatment facility using ozone whose construction cost and operation cost are low.SOLUTION: A method is adopted where an ozone generator and an ozone dissolving unit are incorporated in a common ozone aeration tank, and all generated ozone is dissolved in water to be treated to perform ozone treatment. Selected figure shows an example using two quartz glass double tube type ozone generators as the ozone generator and using two ejectors as the ozone dissolving unit. The water to be treated is introduced into the ejectors 38 through the water to be treated inlet 6, and ozone gas generated in the ozone generators 15 is drawn from the gas suction ports of the ejectors to be dissolved as ozone bubbles 8. Undissolved ozone gas enters into electric dischargers 15 for ozone generation from the raw material gas inlets 9 of the ozone generators 15 to increase the ozone gas concentration, and then is drawn into the ozone dissolving unit 5. All generated ozone is dissolved in the water to be treated 28 in the manner, and then taken out from the purified water outlet 7 to the outside.
    • 要解决的问题:提供使用臭氧的水处理设施,其施工成本和操作成本低。解决方案:采用臭氧发生器和臭氧溶解单元并入普通臭氧曝气池中的方法,并且所有产生的臭氧 溶解在待处理的水中进行臭氧处理。 选择的图示出了使用两个石英玻璃双管型臭氧发生器作为臭氧发生器并使用两个喷射器作为臭氧溶解单元的示例。 待处理的水通过待处理的入口6的水被引入喷射器38中,并且在臭氧发生器15中产生的臭氧气体从喷射器的气体吸入口抽出,作为臭氧气泡8溶解。未溶解的臭氧气体 从臭氧发生器15的原料气体入口9进入用于产生臭氧的放电器15,以增加臭氧气体浓度,然后被吸入臭氧溶解单元5.将所有产生的臭氧溶解在待处理水28中 然后从净化水出口7中取出至外部。
    • 3. 发明专利
    • Ozonizer and ozone water producing system
    • 臭氧和臭氧水生产系统
    • JP2008019132A
    • 2008-01-31
    • JP2006193329
    • 2006-07-13
    • Taizo NagahiroOkumine:Kk株式会社オクミネ泰藏 長廣
    • NAGAHIRO TAIZO
    • C01B13/11C02F1/78
    • PROBLEM TO BE SOLVED: To stabilize silent discharge in a discharge gap 59 by keeping the amount of the discharge gap 59 nearly constant.
      SOLUTION: An ozonizer comprises: an outer cylinder electrode in which outer insulating layer is formed to cover the outer peripheral surface of an outer cylinder electrode main body, an outer dielectric layer is formed on the inner peripheral surface of the outer cylinder electrode main body to cover it and an outer jacket is partitioned between the outer peripheral surface of the outer cylinder electrode and the inner surface of a casing; an inner cylinder electrode in which an inner insulating layer is formed on the inner peripheral surface of the inner cylinder electrode main body to cover it, an inner dielectric layer is formed on the outer peripheral surface of the inner cylinder electrode main body, the discharge gap is partitioned between the outer peripheral surface of the inner cylinder electrode and the inner peripheral surface of the outer cylinder electrode and an inner jacket is provided; and a power source device for applying high frequency voltage between the outer cylinder electrode main body and the inner cylinder electrode main body.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:通过保持放电间隙59的量几乎恒定来稳定放电间隙59中的静音放电。 解决方案:臭氧发生器包括:外筒电极,其中外绝缘层形成为覆盖外筒电极主体的外周面,外电介质层形成在外筒电极的内周面上 主体覆盖其外套和外护套分隔在外筒电极的外周表面和外壳的内表面之间; 在内筒电极主体的内周面上形成内绝缘层以覆盖内绝缘层的内筒电极,在内筒电极主体的外周面上形成有内电介质层,放电间隙 在内筒电极的外周面与外筒电极的内周面之间分隔设置有内套; 以及用于在外筒电极主体和内筒电极主体之间施加高频电压的电源装置。 版权所有(C)2008,JPO&INPIT
    • 4. 发明专利
    • Apparatus for manufacturing ozone water
    • JP2004122043A
    • 2004-04-22
    • JP2002292046
    • 2002-10-04
    • Taizo NagahiroOkumine:Kk株式会社オクミネ長廣 泰藏
    • NAGAHIRO TAIZO
    • C02F1/78B01F1/00B01F3/04B01F5/00
    • PROBLEM TO BE SOLVED: To provide a device for manufacturing ozone water capable of sufficiently bringing the ozone gas into contact with raw water by sucking a large amount of ozone gas even in the case where an ejector using a certain amount of suction raw water is used.
      SOLUTION: The ejector 20 has a first throttled flow passage 20b to which city water is fed as a raw water W at approximately city water pressure and injecting the raw water W at a high speed; an ozone gas feed chamber 20c provided adjacent to the first throttle flow passage so as to surround the periphery of the injected water F from the first throttled flow passage 20b; a second throttle flow passage 20d having a larger diameter than that of the first throttled flow passage 20b, provided on the opposite side of the first throttled flow passage 20b against the ozone gas feed chamber 20c so as to be concentric to the first throttle flow passage 20b and mixing the ozone gas G in the ozone gas feed chamber 20c into the injected water F; and a diffuser part 20e provided adjacent to the second throttle flow passage 20d in which the flow passage diameter is gradually enlarged from the second throttle flow passage 20d.
      COPYRIGHT: (C)2004,JPO
    • 5. 发明专利
    • Gas-dissolved liquid manufacturing system
    • 气体溶解液体制造系统
    • JP2011092893A
    • 2011-05-12
    • JP2009250477
    • 2009-10-30
    • Taizo NagahiroSyoken Co Ltd商研株式会社泰藏 長廣
    • NAGAHIRO TAIZOOZAWA HIROUMI
    • B01F1/00A61H33/02B01F3/04B01F5/02B01F5/10
    • PROBLEM TO BE SOLVED: To efficiently manufacture a high concentration gas supersaturation solution compared with the case of an apparatus of prior art.
      SOLUTION: The gas-dissolved liquid manufacturing system 10 includes a jet pump 15 configured such that a pressurized gas E in a pressurizing/dissolving tank 12 is absorbed and mixed into a pressurized liquid D introduced from a circulation pump 13 to dissolve the gas at a high speed and a high concentration pressurized gas-dissolved solution F may be sent to a liquid layer C from the jet pump 15. In addition, the produced high concentration pressurized gas-dissolved solution F is suddenly released to a lower pressure through a restriction orifice 16, thereby enabling the gas to be utilized as a gas supersaturation solution H containing microbubbles G.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:与现有技术的装置的情况相比,有效地制造高浓度气体过饱和溶液。 气体溶解液体制造系统10包括喷射泵15,该喷射泵15构造成使得加压溶解槽12中的加压气体E被吸收并混合到从循环泵13引入的加压液体D中, 高速气体和高浓度加压气体溶解溶液F可以从喷射泵15送到液体层C.另外,生成的高浓度加压气体溶解溶液F突然释放到较低的压力 限制孔16,从而使气体能够用作含有微泡G的气体过饱和溶液H.版权所有(C)2011,JPO&INPIT