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    • 1. 发明专利
    • Microbubble generator
    • 微型发电机
    • JP2010115586A
    • 2010-05-27
    • JP2008290114
    • 2008-11-12
    • Kawamoto Pump Mfg Co Ltd株式会社川本製作所
    • TAKEDA KENJISAKATANI TETSUNORIKASHIRO MASASHI
    • B01F3/04A01K63/04B01F5/00B01F5/04B01F5/10C02F3/22
    • Y02W10/15
    • PROBLEM TO BE SOLVED: To efficiently increase and uniformize concentration of dissolved oxygen, and to reduce a running cost. SOLUTION: The microbubble generator 10 is provided with a filtering device 12 having an inlet part 12a into which a fluid in a water tank 11 flows, a filter 16 filtering the fluid, and an outlet part 12b from which the filtered liquid flows out; a microbubble generating devices 15 having an inflow port 32 into which the liquid flows, a gas sucking port 49a into which the gas flows, and a discharge port 33 feeding the bubbles and fluid; a pump 13 having an inflow part 13a taking in the fluid in the water tank 11 and an outflow part 13b connected to the inflow part 12a, and sending the fluid in the water tank 11 to the filtering device 12; and a connection pipe 14 having an inflow side pipe 24 connected to the outlet part 12b of the filtering device 12, and a plurality of outflow side pipes 25 which are branched from the inflow side pipe 24 and extend in different directions respectively and to the outflow parts of which the inflow ports 32 of the microbubble generating devices 15 are connected. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:有效地增加和均匀化溶解氧的浓度,并降低运行成本。 解决方案:微泡发生器10设置有过滤装置12,过滤装置12具有流入水箱11中的流体的入口部分12a,过滤流体的过滤器16以及过滤液体从其流过的出口部分12b 出; 具有液体流入的流入口32的微泡生成装置15,气体流入的气体吸入口49a,以及供给气泡和流体的排出口33; 具有吸入水箱11中的流体的流入部13a和与流入部12a连接的流出部13b的泵13,将水箱11内的流体送到过滤装置12; 以及连接管14,其具有连接到过滤装置12的出口部12b的流入侧管24和从流入侧管24分支并分别沿不同方向延伸的多个流出侧管25和流出侧管 其一部分微气泡发生装置15的流入口32连接。 版权所有(C)2010,JPO&INPIT
    • 2. 发明专利
    • Water purifying apparatus
    • 水净化设备
    • JP2009273968A
    • 2009-11-26
    • JP2008125233
    • 2008-05-12
    • Kawamoto Pump Mfg Co Ltd株式会社川本製作所
    • KASHIRO MASASHISAKATANI TETSUNORIIKENOBO TAKUMA
    • C02F1/64B01D24/00B01D29/60B01D29/66
    • PROBLEM TO BE SOLVED: To enable shifting from filtering operation to backwashing operation without requiring troublesome input operation.
      SOLUTION: A water purifying apparatus comprises a storage means 29 for prestoring the amount of removed impurity components contained in raw water per cycle, an input means 28 for inputting the concentration of the raw water, a calculation means 30 for calculating the maximum amount of filtered water by dividing the amount of the removed impurity components of the raw water per cycle stored in the storage means 29 by the concentration of the raw water, a flow rate detecting means 8 for detecting a flow rate of the raw water flowing through a water pipe 3 or purified water on the secondary side of a filter tank 2 and calculating the integrated flow rate, and a control means 32 for controlling so as to shift to the backwashing operation for making the purified water or the raw water flow through a filter medium of the filter tank from the reverse direction of purifying operation to remove the impurity components, when the integrated amount of the raw water detected by the flow rate detecting means 8 reaches the maximum amount of the filtered water calculated by the calculation means 30.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:使得能够从过滤操作转换到反冲洗操作,而不需要麻烦的输入操作。 解决方案:一种净水装置,包括:存储装置29,用于预先存储每个循环中原料水中所含去除的杂质成分的量;输入装置28,用于输入原水的浓度;计算装置30,用于计算最大值 通过将存储装置29中存储的每个循环的原水的去除的杂质成分的量除以原水的浓度来计算过滤水的量;流量检测装置8,用于检测流过的原水的流量 过滤罐2的二次侧的水管3或净化水,并计算综合流量;以及控制装置32,用于控制以转移到用于使净化水或原水流过的反冲洗操作 滤池的过滤介质从净化操作的相反方向去除杂质成分,当原料水的一体化量由流速de 检测装置8达到由计算装置30计算的过滤水的最大量。版权所有(C)2010,JPO&INPIT
    • 3. 发明专利
    • Filtration apparatus
    • 过滤装置
    • JP2010155196A
    • 2010-07-15
    • JP2008334606
    • 2008-12-26
    • Kawamoto Pump Mfg Co Ltd株式会社川本製作所
    • SAKATANI TETSUNORIIKENOBO TAKUMAKASHIRO MASASHITAKENAKA TOSHIO
    • B01D29/01B01D24/00B01D29/66B01D36/02C02F1/64
    • PROBLEM TO BE SOLVED: To provide a filtration apparatus easy in replacement of a filter estricting the movement of solid matter to a secondary side.
      SOLUTION: The filtration apparatus 1 includes a first filtration vessel 10 having a first ballast layer H layered on the bottom of a first filtration tank 20, a manganese-removing filter medium I layered on the first ballast layer H, and an iron-removing filter medium J layered on the manganese-removing filter medium I; and a second filtration vessel 12 connected to the secondary side of the first filtration vessel 10 and having a filter part 29 having an attachable and detachable filter 37 therein provided to a lid part 34. Removal of the lid part 34 of the second filtration vessel 12 allows the replacement of the filter 37.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种过滤设备,其容易地替代将固体物质向二次侧移动的过滤器。 解决方案:过滤装置1包括第一过滤容器10,其具有层叠在第一过滤槽20的底部上的第一压载层H,层压在第一压载层H上的除锰过滤介质I和铁 - 去除过滤介质I上的移动过滤介质J; 和连接到第一过滤容器10的次级侧的第二过滤容器12,并且具有过滤器部分29,过滤器部分29在其中设置有可拆卸的过滤器37,其设置在盖部分34上。去除第二过滤容器12的盖部分34 允许更换过滤器37.版权所有(C)2010,JPO&INPIT
    • 4. 发明专利
    • Coolant pump
    • 冷却泵
    • JP2009299596A
    • 2009-12-24
    • JP2008155592
    • 2008-06-13
    • Kawamoto Pump Mfg Co Ltd株式会社川本製作所
    • SAKATANI TETSUNORIKASHIRO MASASHITAKADA NORIYUKI
    • F04D29/42F04D29/24F04D29/70
    • PROBLEM TO BE SOLVED: To suppress residual foreign matter in a casing to the minimum.
      SOLUTION: A coolant pump 10 pumping coolant liquid L containing solid foreign matter up from a coolant liquid tank 20 and supplying the same to a delivery pipe 90, is provided with a casing 40 provided in the coolant liquid tank 20 and including a swirl chamber 43 and a delivery guide passage 44, a semi-open type impeller 50 disposed in the swirl chamber 43 and having a rotary shaft set in a vertical direction, a drive motor 60 driving the impeller 50, and a casing cover 41 combining the drive motor 60 and the casing 40. A lower part of a side wall 43b of the swirl chamber 43 is formed in a tapered shape expanding from an inside to an outside.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:将壳体中的残留异物抑制到最小。 解决方案:将冷却剂液体L从冷却液箱20抽出并将其供给到输送管90的冷却剂泵10设置有设置在冷却液箱20内的壳体40, 旋转室43和输送引导通道44,设置在涡流室43中并具有沿垂直方向设置的旋转轴的半开式叶轮50,驱动叶轮50的驱动马达60和将盖板41组合的壳体盖41 驱动马达60和壳体40.旋流室43的侧壁43b的下部形成为从内向外扩展的锥形形状。 版权所有(C)2010,JPO&INPIT