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    • 62. 发明专利
    • Magnetic filter apparatus
    • 磁性过滤器
    • JPS5980311A
    • 1984-05-09
    • JP18974682
    • 1982-10-28
    • Daido Steel Co LtdMitsubishi Heavy Ind Ltd
    • YAMAUCHI TOORUSHIOJI NORIOSUGATA KIYOSHIHIRATA TOSHIOYANO JIYUNICHI
    • B01D35/06B03C1/025B03C1/032
    • B03C1/032B03C1/025
    • PURPOSE:To make the collection efficiency of the magnetic component in raw water constant and to reduce operation cost, by a method wherein a water quality sensing apparatus is provided to the outflow pipe of treated purified water and the introducing amount of raw water and the magnetic field output of a filter medium are controlled on the basis of the sensing result. CONSTITUTION:Raw water is introduced into a magnetic filter 1 from an inflow pipe 9 and discharged from an outflow pipe 12 as treated purified water while the magnetic components in raw water are collected by a filter medium. A water quality sensor 13 is provided to the outflow pipe 12 and the treated purified water is checked in said sensor 13 while the value thereof is transmitted to a control apparatus 10. When a large amount of magnetic components are contained in the purified water, the opening degree throttling is ordered to the opening and closing valve of the inflow pipe 9 from the control apparatus 10 to reduce the introducing amount of raw water. At the same time, output increasing order is issued to a current converter 14 and the magnetic field of an exciting coil 7 is increased. In addition, when the magnetic components are reduced to a predetermined value or less, the opening degree of the valve 11 is widened while the output of the current converter 14 is attenuated and the increase of the raw water introducing amount and the attenuation of the magnetic field are carried out to increase operational efficiency.
    • 目的:为了使原水中的磁性成分的收集效率恒定,降低运行成本,通过将处理后的净化水的流出管和水的导入量和磁性的水质检测装置 基于感测结果来控制过滤介质的场输出。 构成:将原水从流入管9引入到磁性过滤器1中,并从作为经处理的净化水的流出管12排出,同时通过过滤介质收集原水中的磁性成分。 在流出管12上设置有水质传感器13,在该传感器13检查处理过的净化水,同时将其传送给控制装置10.当净化水中含有大量的磁性成分时, 从控制装置10将开度节流排列到流入管9的开闭阀,以减少原水的引入量。 同时,向电流转换器14发出输出增加的次数,增加励磁线圈7的磁场。 此外,当磁性部件减小到预定值以下时,阀11的开度变宽,同时电流转换器14的输出衰减,原水引入量的增加和磁性的衰减 进行现场以提高运行效率。
    • 63. 发明专利
    • Separation of magnetic component and nonmagnetic component
    • 磁性元件和非磁性元件的分离
    • JPS5929015A
    • 1984-02-16
    • JP14086082
    • 1982-08-11
    • Daido Steel Co LtdMitsubishi Heavy Ind Ltd
    • YANO JIYUNICHIYAMAUCHI TOORUSHIOJI NORIOSUGATA KIYOSHIHIRATA TOSHIO
    • B01D35/06B03C1/025B03C1/032
    • PURPOSE: To separate and recover a magnetic component and a nonmagnetic one, by treating a magnetic floc containing both of magnetic and nonmagnetic components by a magnetic filtering device.
      CONSTITUTION: An organic nonmagnetic component contained in industrial waste water is formed into a magnetic floc with the aid of magnetite and a flocculant, and the magnetic floc is captured by a filter medium 5 by passing the waste water through the inside of a magnetic filter 1 equipped with the filter medium 5 consisting of fine wire rods of magnetic material and an exciting coil 7. Next, after releasing a magnetic field by interrupting the supply of electric power to the exciting coil 7 and introducing the captured floc to a backwashing tank 15, the magnetic floc is separated into a magnetic component and an organic nonmagnetic component by bubbling pressurized air introduced from a tank 14. This liquid is fed into the magnetic filter 1 again, and the magnetite being the magnetic component and the nonmagnetic organic component are perfectly separated by the filter 1 by supplying the electric power to the coil 7 and giving ultrasonic vibration to the liquid, then the separated components are respectively recovered according to the uses.
      COPYRIGHT: (C)1984,JPO&Japio
    • 目的:通过磁性过滤装置处理含有磁性和非磁性成分的磁性絮体,分离和回收磁性部件和非磁性部件。 构成:通过磁铁矿和絮凝剂将工业废水中含有的有机非磁性成分形成为磁性絮体,通过使废水通过磁性过滤器1的内部,由过滤介质5捕获磁絮凝物 配备有由磁性材料的细线材和励磁线圈7组成的过滤介质5.接下来,在通过中断向励磁线圈7供给电力而释放磁场并将捕获的絮状物引入回洗槽15之后, 通过鼓泡从罐14引入的加压空气将磁絮片分离成磁性成分和有机非磁性成分。再次将该液体送入磁性过滤器1中,作为磁性成分的磁铁矿和非磁性有机成分完全分离 通过向线圈7供给电力并且向液体提供超声波振动的过滤器1,然后分离组合物 根据用途分别收回。
    • 64. 发明专利
    • Filter apparatus
    • 过滤器
    • JPS5919510A
    • 1984-02-01
    • JP12735982
    • 1982-07-21
    • Daido Steel Co LtdMitsubishi Heavy Ind Ltd
    • YAMAUCHI TOORUSHIOJI NORIOSUGATA KIYOSHIHIRATA TOSHIOYANO JIYUNICHI
    • B01D35/06B03C1/025B03C1/034
    • PURPOSE: To make it possible to simultaneously treat plural kinds of raw waters having different quatities, by a method wherein a case having a filter element mounted therein is divided into plural independent cases and a magnet common to each cases is arranged.
      CONSTITUTION: A filter element comprising pole pieces 6 holding filter media 5 therebetween from the upper and the lower side thereof is mounted in an inside case 9 having a raw water inflow pipe 10 and an outflow pipe 11 mounted to the lower and the upper parts thereof. To the outside of the inside case 9, an outside case 12 is provided in one body thereto and a filter element comprising filter media 5a held between pole pieces 6a is also mounted in the outside case 12. To the outside of the outside case 12, a magnet 7 magnetizing these filter media 5, 5a is further provided and a return frame 8 is arranged to the outside of said magnet. Magnetic force exerting on the filter media 5, 5a can be adjusted by changing the thicknesses of the pole pieces 6, 6a.
      COPYRIGHT: (C)1984,JPO&Japio
    • 目的:通过将其中安装有过滤元件的壳体分成多个独立壳体和每种情况共用的磁体的方法,可以同时处理具有不同数量的多种原水。 构成:包括从其上侧和下侧将过滤介质5保持在其间的极片6的过滤元件安装在具有安装在其下部和上部的原水流入管10和流出管11的内部壳体9中 。 在内壳体9的外侧,外壳体12设置在一体中,并且包括保持在磁极片6a之间的过滤介质5a的过滤元件也安装在外壳体12中。在外壳体12的外部, 进一步设置磁化这些过滤介质5,5a的磁体7,并且将返回框架8设置在所述磁体的外部。 可以通过改变极靴6,7a的厚度来调节施加在过滤介质5,5a上的磁力。
    • 65. 发明专利
    • Separation of magnetic component and non-magnetic component
    • 磁性元件和非磁性元件的分离
    • JPS5912723A
    • 1984-01-23
    • JP12238382
    • 1982-07-14
    • Daido Steel Co LtdMitsubishi Heavy Ind Ltd
    • YANO JIYUNICHIANDOU NOBORUKOIKE TAKASHIYAMAUCHI TOORUSHIOJI NORIOSUGATA KIYOSHIHIRATA TOSHIO
    • B01D35/06B03C1/025B03C1/032
    • B03C1/032
    • PURPOSE:To separate magnetic flocs to recover the magnetic component and the non-magnetic component thereof, by a method wherein a current is supplied to an exciting coil to carry out backwashing and the supply of a current is subsequently cut off to carry out backwashing. CONSTITUTION:At the time of backwashing, a current is supplied to an exciting coil 7 to form a magnetic field and, in this state, backwashing water in a backwashing water pressure tank 12 is passed through a magnetic filter 1 from the outflow port 3 thereof by compressed air from an air tank 14 or the supply of water is cut off and this operation is repeated. By this manipulation, magnetic flocs collected by filter media 5 are separated into a non-magnetic component and a magnetic component and the latter remains in the filter media 5 while the non-magnetic component is collected by a non-magnetic component recovery pit 15 along with backwashing water. In the next step, the supply of a current to the exciting coil 7 is cut off and backwashing water is introduced into the magnetic filter 1 from an inflow port 3 to collect the magnetic component remaining in the filter media 5 as a backwashing slurry containing said magnetic component by a magnetic component recovery pit 15a.
    • 目的:为了分离磁絮体以回收磁性成分及其非磁性成分,通过将电流供给到励磁线圈进行反冲洗并随后切断电流供应以进行回洗的方法。 构成:在回洗时,向励磁线圈7供给电流以形成磁场,在这种状态下,反冲洗水压罐12中的反冲洗水从其流出口3通过磁性过滤器1 通过来自空气罐14的压缩空气或水的供应被切断,并且重复该操作。 通过这种操作,由过滤介质5收集的磁性絮凝物被分离为非磁性部件和磁性部件,并且后者保留在过滤介质5中,而非磁性部件由非磁性部件回收凹坑15沿着 用反冲洗水。 在接下来的步骤中,切断向励磁线圈7供给电流,反冲洗水从流入口3引入磁性过滤器1,收集残留在过滤介质5中的磁性成分,作为含有上述 磁性成分由磁性成分回收坑15a形成。
    • 66. 发明专利
    • Separation of magnetic component and nonmagnetic component
    • 磁性元件和非磁性元件的分离
    • JPS5910317A
    • 1984-01-19
    • JP11817482
    • 1982-07-07
    • Daido Steel Co LtdMitsubishi Heavy Ind Ltd
    • OOTA MASAHIROANDOU NOBORUYAMAUCHI TOORUSHIOJI NORIOSUGATA KIYOSHIHIRATA TOSHIO
    • B01D35/06B03C1/025B03C1/032
    • B03C1/032
    • PURPOSE:To improve separation efficiency and to obtain a high purity magnetic component, by applying a specific pretreatment to a back-washing slurry including magnetic floc, and passing the treated slurry through a magnetic filter, and separating the captured magnetic floc into a magnetic component and a nonmagnetic one. CONSTITUTION:A stage of high speed agitation or air agitation is applied as a pretreatment, to a backwashsing slurry C including magnetic floc, and then is flowed through a pipe line 10 by a pump 11 to capture a magnetic component by a filter media 5 of a magnetic filter 1. The magnetic floc included in the backwashing slurry is already separated by the pretreatment, and the magnetic component captured by the media 5 is taken out as a backwashing water D by passing a pressurized air in an air tank 14 through a pressurizing tank 12 for the backwashing water for the purpose of backwashing the media 5. Further, the magnetic component settled still in a settling tank 23 is recovered.
    • 目的:为了提高分离效率和获得高纯度磁性成分,通过对包含磁性絮凝物的反洗浆料进行特定的预处理,并使处理后的浆料通过磁性过滤器,并将捕获的磁絮凝物分离成磁性成分 和非磁性的。 构成:将高速搅拌或空气搅拌的阶段作为预处理施加到包括磁性絮凝物的回洗浆料C中,然后通过泵11流过管线10,以通过过滤介质5捕获磁性成分 磁性过滤器1.通过预处理已经分离回洗浆液中包含的磁絮凝物,并且通过将空气罐14中的加压空气通过加压的空气,将由介质5捕获的磁性成分作为反冲洗水D取出 用于反冲洗水的反冲洗水的罐12用于回洗洗涤介质5.此外,还原在静置在沉淀槽23中的磁性成分被回收。
    • 67. 发明专利
    • Treatment of red tide
    • 红潮处理
    • JPS594489A
    • 1984-01-11
    • JP10982682
    • 1982-06-28
    • Mitsubishi Heavy Ind LtdUnyusho Daisan Kowan Kensetsu Kyokucho
    • FUJII KIICHIROUYAMAUCHI TOORUSHIOJI NORIOSUGATA KIYOSHI
    • B01D35/06B03C1/01B03C1/025C02F1/36C02F1/48
    • B03C1/01
    • PURPOSE:To separate and recover efficiently red tide planktons and fine particles of a ferromagnetic material, by applying an ultrasonic wave to the concd. matter of the red tide planktons and the fine particles of the ferromagnetic material then passing the water through a magnetic filter and recovering both separately. CONSTITUTION:Raw water contg. red tide planktons is put into a stirring tank, where fine particles of a ferromagnetic material such as magnetite are added thereto under thorough stirring to form the fine particulate materials which are entangled with each other. Such particulate materials are captured with a settling device or the like and are introduced as a granular slurry into a dispersion column under application of an ultrasonic wave, where the fine particles of the ferromagnetic material and the fine particles of the red tide planktons are dispersed separately. The slurry is introduced through an inflow port 25 into a magnetic filter 17, where only the fine particles of the ferromagnetic material are captured with magnetized filter media 32, and the slurry having a high content of the red tide planktons is flowed out through an outflow port 26.
    • 目的:通过向混凝土施加超声波,以有效地分离和回收红潮浮游生物和铁磁材料的细颗粒。 红潮浮游物的物质和铁磁材料的细颗粒然后将水通过磁性过滤器并分别回收。 构成:原水 将红潮浮游物放入搅拌槽中,在充分搅拌下向其中加入铁磁性物质如磁铁矿的微粒,形成彼此缠结的细颗粒材料。 这样的颗粒材料用沉降装置等捕获,并且在施加超声波的情况下作为颗粒状浆料引入分散塔中,其中铁磁材料的细颗粒和红潮浮游生物的细颗粒分开分散 。 浆料通过流入口25引入到磁性过滤器17中,其中只有铁磁材料的细颗粒被磁化的过滤介质32捕获,并且具有高含量的红潮浮游生物的浆料通过流出物流出 港口26。