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    • 7. 发明申请
    • OZONE CLEANING SYSTEM
    • 臭氧清洁系统
    • WO2008112947A1
    • 2008-09-18
    • PCT/US2008/056936
    • 2008-03-14
    • FOOD SAFETY TECHNOLOGY, LLCLYNN, Daniel W.
    • LYNN, Daniel W.
    • C01B13/10
    • C11D3/3947B01F3/04475B01F3/04503B01F3/04985B01F5/0068B01F5/0415B01F13/065B01F2003/04886B01F2215/0468B08B2203/005C01B13/10C02F1/78C11D11/0041
    • An industrial cleaning system 10 that produces and distributes an aqueous ozone solution is described. The system 10 includes an ozone generator 240 for generating ozone gas, which is injected by an injector 310 into a supply of water to form the aqueous ozone solution. A reaction vessel 350 receives the aqueous ozone solution from the injector 310 as the reaction vessel 350 reduces the bubbles of ozone gas in the aqueous ozone solution to increase the oxidation reduction potential of the aqueous ozone solution. The reaction vessel 350 includes a conical-shaped surface 385 having two or more edges 380 or ridges 382. The conical-shaped surface 385 defines a generally hollow interior 388. An inlet port 355 is in fluidic communication with a supply of an aqueous ozone solution to supply the aqueous ozone solution to the conical-shaped surface 380. Nozzles 360 direct water under pressure at the conical-shaped surface 380, and the water mixes with the aqueous ozone solution from the inlet port 355. An outlet 390 is in fluidic communication with the industrial cleaning system 10. A method of making an aqueous ozone solution is described. The reaction vessel 350 is in fluidic communication with a supply of a first aqueous ozone solution. The first aqueous ozone solution is directed to the reaction vessel 350. Water is directed to the reaction vessel 350, and the water and the first aqueous ozone solution are mixed to form a second aqueous ozone solution. Compositions for aqueous ozone solutions are also described. The aqueous ozone solution contains approximately 1 part by volume water mixed with approximately 4 parts by volume to approximately 9 parts by volume of the first aqueous ozone solution to form the second aqueous ozone solution that has an oxidation reaction potential of up to approximately 2.6 and having an ozone concentration of up to approximately 20 ppm.
    • 描述了产生和分布臭氧水溶液的工业清洁系统10。 系统10包括用于产生臭氧气体的臭氧发生器240,臭氧发生器240由注射器310注入水源以形成臭氧水溶液。 当反应容器350减少臭氧水溶液中的臭氧气泡时,反应容器350接收来自注射器310的臭氧水溶液,以提高臭氧水溶液的氧化还原电位。 反应容器350包括具有两个或多个边缘380或脊382的圆锥形表面385.圆锥形表面385限定大致中空的内部388.入口端口355与臭氧溶液水溶液流体连通 将臭氧水溶液供应到锥形表面380.喷嘴360在锥形表面380处引导压力下的水,并且水与来自入口355的臭氧溶液混合。出口390处于流体连通 与工业清洁系统10一起描述制备臭氧水溶液的方法。 反应容器350与第一含水臭氧溶液的流体连通。 将第一臭氧水溶液引导至反应容器350.将水引导至反应容器350,并将水和第一臭氧水溶液混合以形成第二臭氧水溶液。 还描述了臭氧水溶液的组合物。 臭氧水溶液含有约1体积份的水,其混合约4体积份至约9体积份的第一臭氧水溶液,以形成氧化反应电位高达约2.6的第二臭氧水溶液,并具有 臭氧浓度高达约20ppm。
    • 8. 发明申请
    • METHOD AND DEVICE FOR INTRODUCING A GAS OR GAS MIXTURE INTO A LIQUID
    • 方法和设备,用于输入气体或气体混合物在液体
    • WO1997043219A1
    • 1997-11-20
    • PCT/AT1997000093
    • 1997-05-13
    • STAUDINGER, Johann
    • C02F03/20
    • B01F3/04475C02F3/201Y02W10/15
    • The invention concerns a method and device for introducing a gas or gas mixture into a liquid using a filter through which the gas or gas mixture is introduced into the liquid. According to the invention, in order to provide advantageous introduction conditions, the liquid is guided in a surface-parallel flow at a minimum flow speed of 0.5 m/s via a multifilament filter mesh (5) which is supported on a support surface on the side remote from the liquid flow. The gas or gas mixture is fed in a manner restricted locally by the support surface to the filter mesh (5) which lies loosely against the support surface at least in given regions, along the liquid flow path.
    • 它是用一个过滤器的方法和用于在液体中,通过该气体或气体混合物引入到所述液体引入气体或气体混合物的设备的帮助下描述。 为了提供有利的进入条件使液体在表面平行流动通过multifil滤布通过以0.5米/秒的最小流量(5),其是在侧远离支撑在支撑表面上的液体流动侧被提出,并 该气体或气体混合物局部地供给到所述至少部分松弛地抵靠在沿穿过支撑表面的流体的流动路径中的支撑表面滤布(5)。
    • 9. 发明申请
    • FORCED EVAPORATIVE HUMIDIFIER USING NANOSTEAM
    • 强化蒸发器使用纳诺沙坦
    • WO2013039329A3
    • 2013-05-10
    • PCT/KR2012007330
    • 2012-09-13
    • KOREA FOOD RES INSTKIM BYEONG SAMKIM JI YOUNGKIM JONG HOONKWON KI HYUNCHA HWAN SOO
    • KIM BYEONG SAMKIM JI YOUNGKIM JONG HOONKWON KI HYUNCHA HWAN SOO
    • F24F6/12F24F3/14F24F5/00F24F6/18
    • F24F3/166B01F3/04475B01F3/04489F24F3/14F24F6/14F24F11/0008F24F2003/1617F24F2003/1671F24F2003/1689F24F2006/008F28C1/02Y02A50/21Y02B30/545
    • The present invention relates to a forced evaporative humidifier using nanosteam, and the forced evaporative humidifier using nanostream according to the present invention comprises: a housing having gas vent holes made in the upper surface thereof, and having gas-suction holes made in one side of the front surface thereof; a water tank which is positioned below the gas-suction holes and stores water; a spray unit which comprises a spray nozzle positioned above the gas-suction holes, a pump which draws up the water of the water tank into the spray nozzle, and a forwarding tube for moving the water being drawn up by means of the pump; a blower fan which is positioned above the spray nozzle, and forwards air towards the gas vent holes of the housing; a humidification unit obtained by the transverse lamination of a body surface, which is positioned below the spray nozzle and is formed such that the water sprayed from the spray nozzle will flow, and a thin plate comprising a plurality of tubular spacers formed projecting on the body surface; and an eliminator which is positioned between the blower fan and the spray nozzle and prevents the scattering of water droplets contained in humid air that has been humidified in the humidification unit.
    • 本发明涉及使用纳摩星的强制蒸发加湿器,根据本发明的使用纳流的强制蒸发加湿器包括:具有在其上表面上形成的气体通气孔的壳体, 其前表面; 位于吸气孔下方并储存水的水箱; 喷雾单元,其包括位于气体吸入孔上方的喷嘴,将水箱的水抽入喷嘴的泵,以及用于通过泵驱动被抽出的水的前进管; 鼓风扇,其位于喷嘴的上方,并朝向壳体的排气孔向前推进空气; 通过身体表面的横向层叠获得的加湿单元,其位于喷嘴下方并形成为使得从喷嘴喷射的水将流动;以及薄板,其包括突出于主体上的多个管状间隔件 表面; 以及位于鼓风扇和喷嘴之间的消除器,并且防止包含在加湿单元中被加湿的潮湿空气中的水滴的散射。