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    • 3. 发明授权
    • Nanobubble-containing liquid producing apparatus and nanobubble-containing liquid producing method
    • 含纳微气泡的液体生产设备和含纳米气泡的液体生产方法
    • US08317165B2
    • 2012-11-27
    • US12574949
    • 2009-10-07
    • Kazuyuki YamasakiKazumi ChuhjohKoji Iwata
    • Kazuyuki YamasakiKazumi ChuhjohKoji Iwata
    • B01F3/04
    • B01F3/04106B01F13/1013B01F13/1016B01F2003/04858
    • A nanobubble-containing liquid producing apparatus includes: a microbubble generating device that prepares a microbubble-containing liquid with use of a liquid introduced into a microbubble generation tank and discharges the microbubble-containing liquid into the microbubble generation tank; a micro-nanobubble generating device that prepares a micro-nanobubble-containing liquid with use of the microbubble-containing liquid introduced into a micro-nanobubble generation tank and discharges the micro-nanobubble-containing liquid into the micro-nanobubble generation tank; and a nanobubble generating device that prepares a nanobubble-containing liquid with use of the micro-nanobubble-containing liquid introduced into a nanobubble generation tank and discharges the nanobubble-containing liquid into the nanobubble generation tank. Therefore, an apparatus for producing a nanobubble-containing liquid with use of general-purpose products can be manufactured at low cost and in a short period of time.
    • 含纳米泡沫的液体生成装置包括:微泡生​​成装置,其使用引入到微泡生成槽中的液体制备含微泡的液体,并将含微泡的液体排出到微泡生成槽中; 一种微纳米泡沫发生装置,其使用引入微量微泡生成槽的含微泡液的液体制备含微纳米气泡的液体,并将含有微纳米气泡的液体排放到微纳管气泡生成槽中; 以及纳米气泡发生装置,其使用引入纳米泡沫发生罐的含微纳米气泡的液体制备含纳米泡沫的液体,并将含纳米气泡的液体排放到纳米泡沫生成槽中。 因此,可以以低成本和短时间制造使用通用产品的含纳米气泡的液体的制造装置。
    • 5. 发明授权
    • Water treatment system
    • 水处理系统
    • US07803272B2
    • 2010-09-28
    • US11992156
    • 2006-02-28
    • Kazuyuki YamasakiKazuyuki SakataKazumi Chuhjoh
    • Kazuyuki YamasakiKazuyuki SakataKazumi Chuhjoh
    • B01D33/70
    • C02F1/28C02F3/006C02F3/108C02F3/20C02F3/30C02F2209/04C02F2209/22C02F2301/046C02F2303/26Y02W10/15
    • A first treatment tank (1) to a fourth treatment tank are installed prior to ultrapure water production apparatus (5), dilute wastewater recovering apparatus (34), general service water recovering apparatus and wastewater treatment apparatus. The treatment tanks (1, 2, . . . ) each have a micro-nano bubble generation tank (6, 23, . . . ) and an anaerobic measuring tank (7, 24, . . . ). Accordingly, microbes within the respective anaerobic measuring tanks (7, 24, . . . ) are activated by micro-nano bubbles generated in each micro-nano bubble generation tank (6, 23, . . . ) to thereby enhance the treatment efficiency of low-concentration organic matter. Further, when the value measured by dissolved oxygen meter (13, 30, . . . ) or oxidation-reduction potentiometer (14, 31, . . . ) of each anaerobic measuring tank (7, 24, . . . ) exceeds an individually determined given range, the rotational speed of a circulating pump (9, 26, . . . ) is controlled to thereby decrease the generation of micro-nano bubbles. Thus, the micro-nano bubble content in water undergoing treatment is held appropriate.
    • 在超纯水生产设备(5),稀释废水回收设备(34),一般服务水回收设备和废水处理设备之前,安装第一处理槽(1)至第四处理槽。 处理罐(1,2)各自具有微纳米泡沫生成罐(6,23 ...)和厌氧测量罐(7,24 ...)。 因此,各个厌氧测量罐(7,24 ...)内的微生物通过在每个微纳米泡沫生成罐(6,23 ...)中产生的微纳米气泡而被活化,从而提高了处理效率 低浓度有机物质。 此外,当每个厌氧测量罐(7,24,...)的溶解氧计(13,30,...)或氧化还原电位计(14,31,...)测量的值超过单独 确定给定范围,控制循环泵(9,26 ...)的旋转速度,从而减少微纳米气泡的产生。 因此,正在进行处理的水中的微纳米气泡含量是适当的。
    • 6. 发明申请
    • NANOBUBBLE-CONTAINING LIQUID PRODUCING APPARATUS AND NANOBUBBLE-CONTAINING LIQUID PRODUCING METHOD
    • 含有液体的液体生产设备和含有纳豆的液体生产方法
    • US20100089133A1
    • 2010-04-15
    • US12574949
    • 2009-10-07
    • Kazuyuki YamasakiKazumi ChuhjohKoji Iwata
    • Kazuyuki YamasakiKazumi ChuhjohKoji Iwata
    • G01N33/00B01D47/02
    • B01F3/04106B01F13/1013B01F13/1016B01F2003/04858
    • A nanobubble-containing liquid producing apparatus includes: a microbubble generating device that prepares a microbubble-containing liquid with use of a liquid introduced into a microbubble generation tank and discharges the microbubble-containing liquid into the microbubble generation tank; a micro-nanobubble generating device that prepares a micro-nanobubble-containing liquid with use of the microbubble-containing liquid introduced into a micro-nanobubble generation tank and discharges the micro-nanobubble-containing liquid into the micro-nanobubble generation tank; and a nanobubble generating device that prepares a nanobubble-containing liquid with use of the micro-nanobubble-containing liquid introduced into a nanobubble generation tank and discharges the nanobubble-containing liquid into the nanobubble generation tank. Therefore, an apparatus for producing a nanobubble-containing liquid with use of general-purpose products can be manufactured at low cost and in a short period of time.
    • 含纳米泡沫的液体生成装置包括:微泡生​​成装置,其使用引入到微泡生成槽中的液体制备含微泡的液体,并将含微泡的液体排出到微泡生成槽中; 一种微纳米泡沫发生装置,其使用引入微量微泡生成槽的含微泡液的液体制备含微纳米气泡的液体,并将含有微纳米气泡的液体排放到微纳管气泡生成槽中; 以及纳米气泡发生装置,其使用引入纳米泡沫发生罐的含微纳米气泡的液体制备含纳米泡沫的液体,并将含纳米气泡的液体排放到纳米泡沫生成槽中。 因此,可以以低成本和短时间制造使用通用产品的含纳米气泡的液体的制造装置。
    • 8. 发明申请
    • Water Treatment System
    • 水处理系统
    • US20090145827A1
    • 2009-06-11
    • US11992156
    • 2006-02-28
    • Kazuyuki YamasakiKazuyuki SakataKazumi Chuhjoh
    • Kazuyuki YamasakiKazuyuki SakataKazumi Chuhjoh
    • C02F3/28C02F1/28C02F1/34C02F3/10
    • C02F1/28C02F3/006C02F3/108C02F3/20C02F3/30C02F2209/04C02F2209/22C02F2301/046C02F2303/26Y02W10/15
    • A first treatment tank (1) to a fourth treatment tank are installed prior to ultrapure water production apparatus (5), dilute wastewater recovering apparatus (34), general service water recovering apparatus and wastewater treatment apparatus. The treatment tanks (1, 2, . . . ) each have a micro-nano bubble generation tank (6, 23, . . . ) and an anaerobic measuring tank (7, 24, . . . ). Accordingly, microbes within the respective anaerobic measuring tanks (7, 24, . . . ) are activated by micro-nano bubbles generated in each micro-nano bubble generation tank (6, 23, . . . ) to thereby enhance the treatment efficiency of low-concentration organic matter. Further, when the value measured by dissolved oxygen meter (13, 30, . . . ) or oxidation-reduction potentiometer (14, 31, . . . ) of each anaerobic measuring tank (7, 24, . . . ) exceeds an individually determined given range, the rotational speed of a circulating pump (9, 26, . . . ) is controlled to thereby decrease the generation of micro-nano bubbles. Thus, the micro-nano bubble content in water undergoing treatment is held appropriate.
    • 在超纯水生产设备(5),稀释废水回收设备(34),一般服务水回收设备和废水处理设备之前,安装第一处理槽(1)至第四处理槽。 处理罐(1,2)各自具有微纳米泡沫生成罐(6,23 ...)和厌氧测量罐(7,24 ...)。 因此,各个厌氧测量罐(7,24 ...)内的微生物通过在每个微纳米泡沫生成罐(6,23 ...)中产生的微纳米气泡而被活化,从而提高了处理效率 低浓度有机物质。 此外,当每个厌氧测量罐(7,24,...)的溶解氧计(13,30,...)或氧化还原电位计(14,31,...)测量的值超过单独 确定给定范围,控制循环泵(9,26 ...)的旋转速度,从而减少微纳米气泡的产生。 因此,正在进行处理的水中的微纳米气泡含量是适当的。