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    • 54. 发明专利
    • Solids separating apparatus and solids separating method
    • 固体分离装置和固体分离方法
    • JP2014180615A
    • 2014-09-29
    • JP2013056165
    • 2013-03-19
    • Hanex Co Ltd株式会社ハネックス
    • SENBA FUJIO
    • B01D29/00B01D24/42B01D29/01B01D29/44B01D29/90B01D29/92B01D36/00C02F1/24
    • PROBLEM TO BE SOLVED: To provide a solids separating apparatus and a solids separating method which separate solid matter included in liquid discharged from a factory or facility, general sewage water or the like from liquid.SOLUTION: An apparatus 1 which separates solid matter included in liquid comprises: an inflow chamber 2 and an outflow chamber 3 which are partitioned each other by a plate-like filter body 16 extended in a vertical direction; and a discharge chamber 31 communicating with the outflow chamber 3. A supply part 9 of liquid is provided in the inflow chamber 2, a descending passage 32 of liquid communicating with a liquid discharge side 16b of the filter body 16 is provided in the outflow chamber 3, a bubble supply part 36 is provided in a lower portion of the descending passage 32 and below the bottom end of the filter body, a gas discharge part 25a is provided in an upper portion of the outflow chamber 3, an ascending passage 33 of liquid is provided in the discharge chamber 31, a discharge part 26 of liquid is provided in an upper portion of the ascending passage 33, and the lower portion of the descending passage 32 and a lower portion of the ascending passage 33 which are lower than the bubble supply part are communicated with each other.
    • 要解决的问题:提供一种固体分离装置和固体分离方法,其将包括在从工厂或设施排放的液体中的固体物质,一般污水或类似物从液体中分离出来。解决方案:一种将固体物质分离 液体包括:通过在垂直方向上延伸的板状过滤器主体16彼此分隔的流入室2和流出室3; 和与流出室3连通的排出室31.液体供给部9设置在流入室2中,与流出室中的液体排出侧16b连通的液体的下降通道32设置在流出室 如图3所示,气泡供给部36设置在下降通路32的下部并且位于过滤体的下端的下方,气体排出部25a设置在流出室3的上部,上升通路33 液体设置在排出室31中,液体的排出部26设置在上升通路33的上部,下降通路32的下部和上升通路33的下部比下侧通路 气泡供应部分相互通信。
    • 55. 发明专利
    • Operation method of filtration system and filtration system
    • 过滤系统和过滤系统的操作方法
    • JP2014018735A
    • 2014-02-03
    • JP2012159710
    • 2012-07-18
    • Metawater Co Ltdメタウォーター株式会社Hanex Co Ltd株式会社ハネックス
    • MORIYA YUSUKEOHIRA SATOSHIISHIDA KOTARO
    • B01D24/16B01D24/26B01D24/46B01D24/48B01D29/60B01D29/62
    • PROBLEM TO BE SOLVED: To provide a method for operating a filtration system and a filtration system capable of preventing hydrogen sulfide and the like from flowing outside a filtration tank even when air is sprayed to a floating filter medium layer to align a floating filter medium after completion of backwashing the floating filter medium layer.SOLUTION: A filtration system comprises a filtration tank which includes a floating filter medium layer, a screen for preventing the outflow of a floating filter medium, a raw water inflow port and a backwash effluent discharge port, and a filtrate water storage part. The method for operating a filtration system includes the steps of: passing raw water through the floating filter medium layer in an upflow manner to filter the raw water; after the filtering step, discharging water in the filtration tank to backwash the floating filter medium layer in a downflow manner; after the backwashing step, supplying substitute water to the filtration tank to substitute a part of water in the filtration tank; and after the substituting step, spraying gas to the floating filter medium layer to align the floating filter medium. The filtration system is suitable for performing the operation method.
    • 要解决的问题:提供一种操作过滤系统和过滤系统的方法,该过滤系统和过滤系统能够防止硫化氢等流过过滤罐,即使当空气喷洒到浮动过滤介质层上以在浮动过滤介质层之后对准浮动过滤介质时 完成反洗漂浮过滤介质层。过滤系统包括一个过滤槽,该过滤槽包括一个浮动过滤介质层,一个防止浮动过滤介质流出的筛网,一个原水流入口和一个反洗流出物排放口, 和滤液储水部。 用于操作过滤系统的方法包括以下步骤:使原水以上流方式通过浮动过滤介质层以过滤原水; 在过滤步骤之后,排出过滤罐中的水以向下流方式反冲洗浮动过滤介质层; 在反冲洗步骤之后,将替代水供应到过滤罐以替换过滤罐中的一部分水; 并且在取代步骤之后,将气体喷射到浮动过滤介质层以对准浮动过滤介质。 过滤系统适用于执行操作方法。
    • 57. 发明专利
    • Manhole floating-preventive structure and method for designing the same
    • 人造浮体预防结构及其设计方法
    • JP2011127374A
    • 2011-06-30
    • JP2009288572
    • 2009-12-21
    • Hanex Co Ltd株式会社ハネックス
    • OHIRA SATOSHI
    • E02D29/12
    • PROBLEM TO BE SOLVED: To provide a manhole floating-preventive structure that can prevent floating of a manhole, and a method for designing the manhole floating-preventive structure.
      SOLUTION: The manhole floating-preventive structure includes a floating-preventive annular body 14 disposed at the outer peripheral part of the manhole 1 formed of a cylindrical pipe, and having a predetermined weight, and a metal plate 12 connecting the floating-preventive annular body 14 to the manhole 1. The annular body 14 has an outside tapered surface 14b and an inside tapered surface 14c on both sides of an upward projecting part 14a, and when buoyancy acting on the manhole 1 acts on the annular body 14 through the metal plate 12, the lift of the manhole 1 fixed through the metal plate 12 is prevented by pressing the annular body 14 by soil pressure applied to the outside tapered surface 14b and the inside tapered surface 14c.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种能够防止人孔漂浮的人孔浮动防护结构,以及设计人孔浮动结构的方法。 解决方案:人孔浮动防护结构包括设置在由圆柱形管形成并且具有预定重量的人孔1的外周部分处的浮动环形体14和金属板12, 预防环形体14到人孔1.环形体14在向上突出部14a的两侧具有外侧锥形表面14b和内部锥形表面14c,并且当作用在人孔1上的浮力作用在环形体14上时 金属板12通过施加在外侧锥形表面14b和内部锥形表面14c上的土壤压力来压住环形体14来防止通过金属板12固定的人孔1的升程。 版权所有(C)2011,JPO&INPIT
    • 58. 发明专利
    • Liquid treatment apparatus
    • 液体处理设备
    • JP2011020052A
    • 2011-02-03
    • JP2009167384
    • 2009-07-16
    • Hanex Co Ltd株式会社ハネックス
    • SENBA FUJIOOHIRA SATOSHISHIOTANI TAKUOTSUNODA ATSUSHINIHEI HIDEAKI
    • C02F1/62B01D29/44C02F1/42C02F1/64
    • PROBLEM TO BE SOLVED: To solve the problem of solid separation in a heavy metal treatment apparatus using porous concrete.
      SOLUTION: The heavy metal treatment apparatus 1 includes; a pretreatment tank 2 for separating the solid contained in a liquid flowing thereinto; and a heavy metal treatment tank 3 for separating heavy metals contained in the liquid flowing out of the pretreatment tank 2. The pretreatment tank 2 includes: a partition plate 25 for partitioning the inside of the pretreatment tank into an inflow chamber 5 and an outflow chamber 6; an inflow part 5a formed in the inflow chamber 5; and an outflow part 6a formed in the outflow chamber 6. Guidance parts 9, 9a for turning over the liquid to form a whirling current vertically are arranged in the inflow chamber 5. A screen 8 is arranged on the partition plate 25 along the side face of the whirling current. The heavy metal treatment tank 3 includes a supply chamber 11 and a discharge chamber 12 partitioned by a porous concrete body 10. A supply part 11a formed in the supply chamber 11 communicates with the outflow part 6a and a discharge part 12a is formed in the discharge chamber 12. When the liquid is discharged from the supply chamber side to the discharge chamber side through the porous concrete body, the heavy metals included in the liquid is separated.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了解决使用多孔混凝土的重金属处理装置中的固体分离问题。 解决方案:重金属处理装置1包括: 用于分离在其中流动的液体中所含的固体的预处理槽2; 以及用于分离从预处理槽2流出的液体中所含的重金属的重金属处理槽3.预处理槽2包括:分隔板25,用于将预处理槽的内部分隔成流入室5和流出室 6; 形成在流入室5中的流入部5a; 以及形成在流出室6中的流出部分6a,用于在流入室5中垂直转动液体以形成旋转电流的引导部分9,9a。屏板8沿着侧面 的旋转电流。 重金属处理槽3包括由多孔混凝土体10隔开的供给室11和排出室12.在供给室11中形成的供给部11a与流出部6a连通,在排出部形成有排出部12a 当液体通过多孔混凝土体从供给室侧排出到排出室侧时,包含在液体中的重金属被分离。 版权所有(C)2011,JPO&INPIT
    • 59. 发明专利
    • Separation device and separation method
    • 分离装置和分离方法
    • JP2009220096A
    • 2009-10-01
    • JP2008257981
    • 2008-10-03
    • Hanex Co Ltd株式会社ハネックス
    • SENBA FUJIOOHIRA SATOSHISHIOTANI TAKUOTSUNODA ATSUSHI
    • B01D29/00B01D29/01B01D29/44E03F5/14
    • E03F5/14B01D29/03B01D29/31B01D29/445B01D29/906B01D2201/02
    • PROBLEM TO BE SOLVED: To solve problems of a setting space and pipe connection in a separation device. SOLUTION: A separator 1 for separating solids contained in flow-in liquid includes a separation tank 2, a partition panel 5 for partitioning the interior of the separation tank 2 into an inflow chamber 3 and an outflow chamber 4, a screen 8 provided in the partition panel 5, an inflow section 6 formed in the inflow chamber 3, and a discharge section 7 formed in the outflow chamber 4, wherein guide sections 9, 10, 10a for forming a vertical swirling flow in the inflow chamber 3 by reversing the liquid flow from the inflow section 6 are provided in the inflow chamber 3, and the screen 8 is arranged along the side face of the swirling flow thus formed. COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:解决分离装置中的设置空间和管道连接的问题。 解决方案:用于分离流入液体中所含的固体的分离器1包括分离槽2,用于将分离罐2的内部分隔成流入室3和流出室4的分隔板5,筛网8 设置在分隔板5中,形成在流入室3中的流入部分6和形成在流出室4中的排出部分7,其中引导部分9,10,10a用于在流入室3中形成垂直回旋流,通过 在流入室3中设置有从流入部分6逆流的液体流动,并且屏幕8沿着如此形成的旋流的侧面布置。 版权所有(C)2010,JPO&INPIT
    • 60. 发明专利
    • Separation device
    • 分离装置
    • JP2009220088A
    • 2009-10-01
    • JP2008070693
    • 2008-03-19
    • Hanex Co Ltd株式会社ハネックス
    • SENBA FUJIOOHIRA SATOSHISHIOTANI TAKUOTSUNODA ATSUSHI
    • B01D29/00E03F5/14
    • PROBLEM TO BE SOLVED: To provide a separation device efficiently generating a swirling flow in a separation tank in spite of the simple structure, and allowing a feed pipe of liquid like wastewater to connect, in a vertical direction, to a peripheral wall of the separation tank.
      SOLUTION: The separation device 1 separating solid matter contained in flow-in liquid is provided with the separation tank 2, a partition plate 5 vertically partitioning the inside of the tank 2 into an in-flow chamber 3 and an out-flow chamber 4 and provided with a plate-like screen 8, a feed part 6 formed in the in-flow chamber 3, and a discharge part 7 formed in the out-flow chamber 4. The partition plate 5 is tiltedly disposed in relation to the flow-in direction of liquid horizontally flowing in from the feed part 6, the tilted angle being set to generate a horizontal swirling flow to the flow-in liquid.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:尽管结构简单,提供了在分离罐中有效地产生旋流的分离装置,并且允许像废水这样的液体的进料管在垂直方向上连接到周壁 的分离罐。 解决方案:分离装置1分离流入液体中所含的固体物质,设置有分离槽2,将罐2的内部垂直分隔成流入室3的分隔板5和流出室 室4,并且设置有板状筛8,形成在流入室3中的进料部6和形成在流出室4中的排出部7.分隔板5相对于 从进料部分6水平流入的液体的流入方向,倾斜角被设定为产生到流入液体的水平旋转流。 版权所有(C)2010,JPO&INPIT