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    • 31. 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。
    • 35. 发明授权
    • Water treatment apparatus
    • 水处理设备
    • US07625484B2
    • 2009-12-01
    • US11467194
    • 2006-08-25
    • Kazuyuki YamasakiKeichiro UdaKazumi Chuhjoh
    • Kazuyuki YamasakiKeichiro UdaKazumi Chuhjoh
    • C02F3/00
    • B01F3/04106B01F13/1027B01F15/00207C02F1/74C02F2103/346C02F2209/11
    • A water treatment apparatus has a turbidity meter, which is a detection part, for detecting a generation state of bubbles in a micro/nano bubble generation state confirmation tank, as a turbidity of treatment water. The water treatment apparatus also has a controller, which is a control part, for receiving an signal representing the turbidity of treatment water detected by the turbidity meter, to control openings of air flow control valves in an interlocked manner in response to the signal, so that the amount of air flowing through the control valves is automatically controlled. The openings of the air flow control valves are controlled in an interlocked manner by the controller in such a way that the signal representing turbidity shows that the treatment water within the confirmation tank is whitely turbid (i.e., the turbidity shows not less than a specified value).
    • 水处理装置具有作为检测部的浊度计,用于检测微/纳泡产生状态确认罐中气泡的产生状态,作为处理水的浊度。 水处理装置还具有作为控制部的控制器,用于接收表示由浊度计检测到的处理水的浊度的信号,以响应于该信号以联锁方式控制空气流量控制阀的开口,因此 自动控制流过控制阀的空气量。 控制器以联锁的方式控制气流控制阀的开口,使得表示浊度的信号表明确认罐内的处理水是白浊的(即,浊度不小于规定值 )。
    • 36. 发明申请
    • WASTEWATER TREATMENT METHOD AND WASTEWATER TREATMENT EQUIPMENT
    • 废水处理方法和废水处理设备
    • US20090032460A1
    • 2009-02-05
    • US11816985
    • 2006-01-31
    • Kazuyuki YamasakiKazumi ChuhjohKohji OhokaKeichiro Uda
    • Kazuyuki YamasakiKazumi ChuhjohKohji OhokaKeichiro Uda
    • C02F3/06C02F1/32C02F101/30
    • B01D61/18B01D65/08B01D2315/06B01D2321/185C02F1/325C02F1/725C02F3/1273C02F2201/3222C02F2305/10Y02W10/15
    • In a micronanobubble reaction vessel 3 of wastewater treatment equipment, wastewater containing organic matter is treated with micronanobubbles. Thereafter, the 5 wastewater is introduced into an aeration tank 7. Part of organic matter in the wastewater is oxidized in the micronanobubble reaction vessel 3 by micronanobubble treatment prior to treatment with activity of microorganisms enhanced in the aeration tank 7. After organic matter load is thus reduced, the treatment water is introduced into the aeration tank 7, in which microorganisms exist in high concentration due to submerged membranes 17, so that the organic matter in wastewater can be effectively treated. This makes it possible to accomplish miniaturization of the aeration tank 7, reduction in scale of the whole equipment and therefore reduction in initial cost. Also, a photocatalyst tank 22 is provided downstream of the aeration tank 7, so that a minute amount of organic matter unaffected by the microbial treatment alone can be oxidized at high-level by using a photocatalyst plate 24.
    • 在废水处理设备的微量元素反应容器3中,含有机物的废水用微量气泡处理。 此后,将5种废水引入曝气池7.废水中的有机物质的一部分在微生物反应容器3内通过微量元素处理在经曝气池7中增强的微生物活性处理之前被氧化。有机物质负载为 因此,将处理水引入曝气池7中,由于浸没膜17,微生物以高浓度存在,因此能够有效地处理废水中的有机物质。 这使得可以实现曝气池7的小型化,整个设备的规模缩小,从而降低初始成本。 另外,在曝气池7的下游设置有光催化剂槽22,因此,仅通过微生物处理不受微生物处理影响的微量有机物质可以通过使用光催化剂板24进行高水平的氧化。