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    • 2. 发明授权
    • Membrane magnetic separating apparatus
    • 膜磁分离装置
    • US06478955B1
    • 2002-11-12
    • US09703925
    • 2000-11-02
    • Norihide SahoHisashi IsogamiMinoru MoritaTadashi Sano
    • Norihide SahoHisashi IsogamiMinoru MoritaTadashi Sano
    • B01D3506
    • C02F1/48B03C1/14B03C1/30C02F1/5236C02F11/12C02F11/14
    • Water to be treated is passed through a membrane (net), magnetic floc positioned in a portion below a level of the water to be treated is deposited to a surface of the membrane, and the surface of the membrane with the magnetic floc deposited is moved to an atmospheric portion above the level of the water to be treated. In the atmospheric portion, excess water from the magnetic floc flows downward due to gravity to concentrate the magnetic floc. A permanent magnet is located near a position to which the membrane surface with the magnetic floc deposited thereon moves. There are further provided between the magnet and the membrane surface a moving body (shell) formed by a non-magnetic material, a spatula for scraping the magnetic floc from the moving body, and a sludge vessel in which a released magnetic floc is recovered.
    • 要处理的水通过膜(网),将位于待处理水平面以下的部分的磁性絮凝物沉积到膜的表面,并且使沉积的磁性絮状物的膜的表面移动 到高于待处理水的水平的大气部分。 在大气部分,来自磁絮状物的过量水由于重力而向下流动以集中磁絮凝物。 永磁体位于其上沉积有磁絮状物的膜表面移动的位置附近。 在磁体和膜表面之间还设置有由非磁性材料形成的移动体(壳体),用于从移动体刮取磁性絮状物的刮铲和回收释放的磁絮凝物的污泥容器。
    • 5. 发明授权
    • Magnetic purifying apparatus for purifying a fluid
    • 用于净化流体的磁化净化装置
    • US6093318A
    • 2000-07-25
    • US333980
    • 1999-06-16
    • Norihide SahoHisashi IsogamiMinoru MoritaFumitaka HandaKatsuhiko Asano
    • Norihide SahoHisashi IsogamiMinoru MoritaFumitaka HandaKatsuhiko Asano
    • B03C1/027B01D35/06B03C1/00
    • B03C1/027Y10S505/892
    • An improved apparatus for removing magnetic material from a flowing fluid such as water by magnetic separation has a single set of electromagnets which are used with a plurality of magnetic filters for continuous magnetic separation operation alternately without obstructing the flow of the fluid being processed. A high-gradient magnetic filter arrangement which passes through a magnetic field generated by the magnets is made up of at least two magnetic filters separated by a watertight partition. When the fluid being processed is flowing through one of the magnetic filters, the other filter is removed from the flow of the fluid into a magnetic filter housing which is separated from the fluid flow through the magnetic filter by means of partitions. Backwashing of this other magnetic filter is carried out while purification of the fluid being processed by the former magnetic filter continues uninterrupted. Dummy magnetic filters are provided at the outer ends of the magnetic filter arrangement so that whichever of the magnetic filters is removed from the flow of the fluid being processed, the filter matrices do not leave the magnetic field formed by the plurality of magnets, and consequently the magnetic filters can be moved in and out of the magnetic field with a minimal driving force.
    • 用于通过磁分离从流动的流体例如水中除去磁性材料的改进的装置具有单组电磁铁,其与多个用于连续磁选分离操作的磁性过滤器一起使用,而不会妨碍被处理流体的流动。 通过由磁体产生的磁场的高梯度磁性过滤器装置由至少两个由防水分隔件分离的磁性过滤器构成。 当被处理的流体流过磁滤器之一时,另一个过滤器从流体流中移除到磁过滤器壳体中,该磁过滤器壳体通过分隔件与通过磁过滤器的流体流分离。 这个另一个磁性过滤器的反冲洗是在由前一个磁性过滤器处理的流体的净化不间断地继续进行的。 在磁性过滤器装置的外端设置虚拟磁性过滤器,使得从被处理流体的流动中去除了任何磁性过滤器,滤波器矩阵不会离开由多个磁体形成的磁场,因此 磁性过滤器可以以最小的驱动力移入和移出磁场。
    • 6. 发明授权
    • Magnetic purification apparatus
    • 磁性净化装置
    • US6103113A
    • 2000-08-15
    • US18056
    • 1998-02-03
    • Norihide SahoHisashi IsogamiMinoru Morita
    • Norihide SahoHisashi IsogamiMinoru Morita
    • B03C1/035B03C1/0355B03C1/14C02F1/48B01D35/06B03C1/08
    • C02F1/488B03C1/035B03C1/0355B03C1/14
    • A purification apparatus includes a first flow path for introducing and discharging water and magnetic field generation means provided on a way of in the flow path for giving a magnetic field in the flow path. The introduced water includes magnetic substances. In the flow path in which the magnetic field generation means is disposed and in the magnetic field generated by the magnetic field generation means, a second flow path is provided in such a manner that the second flow path is guided toward the outside from a region in which a magnetic gradient is decreased. Further, there are provided means for moving the magnetic substances in the vicinity of the second flow path, magnetic substance sensing means provided in the flow path, and control means for controlling in response to a signal from the sensing means an amount of the magnetic substances which flow through the second flow path.
    • 净化装置包括用于引入和排出水的第一流动路径和设置在用于在流路中产生磁场的流动路径中的磁场产生装置。 引入的水包括磁性物质。 在其中设置磁场产生装置的流动路径中,并且在由磁场产生装置产生的磁场中,以第二流动路径的方式设置第二流动路径,使得第二流动路径从 磁梯度减小。 此外,提供了用于移动第二流路附近的磁性物质的装置,设置在流路中的磁性物质检测装置,以及用于根据来自感测装置的信号控制磁性物质的量的控制装置 其流过第二流动路径。
    • 9. 发明授权
    • Magnetic separation filtering and cleaning apparatus
    • 磁选过滤和清洗装置
    • US08002976B2
    • 2011-08-23
    • US12019674
    • 2008-01-25
    • Norihide SahoHisashi IsogamiAkira MochizukiTomoko Akiyama
    • Norihide SahoHisashi IsogamiAkira MochizukiTomoko Akiyama
    • B01D35/06B03C1/30C02F1/48
    • B03C1/12B03C1/30B03C2201/18C02F1/001C02F1/44C02F1/488C02F1/5236C02F1/56C02F1/66C02F2209/42
    • A magnetic separation filtering and cleaning apparatus for adding flocculant and magnetic powder to raw water containing pollutant particles to form magnetic floc in treated fluid and separating and removing the magnetic floc from the treated fluid, comprising: a magnetic field generation device being provided in a rotating body for suctioning the magnetic floc on a surface of the rotating body from the treated fluid containing the magnetic floc, a magnetic field rotating device for rotating the magnetic field generation device, a sludge recovery device for separating sludge including the magnetic floc mechanically from the surface of the rotating body of the magnetic field generation device; and a filtering device having a rotating net for filtering out the magnetic floc from the treated fluid including the magnetic floc and flowing down the treated fluid filtered through the rotating net.
    • 一种磁选分离过滤和清洗装置,用于将絮凝剂和磁粉加入含污染物颗粒的原水中以在处理过的流体中形成磁絮凝物,并从处理过的流体中分离和除去磁絮凝物,其特征在于包括:磁场产生装置, 用于从包含磁絮状物的处理液体旋转体的表面吸附磁絮体的主体,用于旋转磁场产生装置的磁场旋转装置,用于将包含磁絮凝物的污泥与表面机械分离的污泥回收装置 的磁场产生装置的旋转体; 以及过滤装置,其具有旋转网,用于从包括磁絮凝物的处理过的流体过滤掉磁絮凝物并向下流过经过旋转网过滤的处理过的流体。
    • 10. 发明申请
    • Magnetizing System and Superconducting Magnet to Be Magnetized Therewith
    • 磁化系统和超导磁体被磁化
    • US20090212890A1
    • 2009-08-27
    • US12353456
    • 2009-01-14
    • Norihide SahoHisashi IsogamiHiroyuki Tanaka
    • Norihide SahoHisashi IsogamiHiroyuki Tanaka
    • H01F6/00H01F13/00
    • H01F6/04H01F6/006H01F13/003
    • A magnet magnetizing system and a superconducting magnet to be magnetized, for magnetizing a superconducting magnet to be magnetized, comprises: a magnetizing magnetic field generating means for generating and distinguishing a static magnetic field; a cooling means having an electromotive motor within the static magnetic field, which is generated from the magnetizing magnet generating means; and a bulk superconductor to be magnetized, which is thermally connected with a low-temperature portion of the cooling means, wherein the magnetizing magnetic field generating means is made up with a magnetizing superconducting bulk magnet, building other magnetizing bulk superconductor therein, the bulk superconductor to be magnetized before magnetization thereof is inserted within a space of the static magnetic field, which is generated by the magnetizing superconducting bulk magnet magnetized, and the magnetic field of the magnetizing superconducting bulk magnet is distinguished by the means for cooling the bulk superconductor inserted, down to be equal or lower than superconducting temperature, thereby magnetizing the bulk superconductor to be magnetized.
    • 磁化磁化系统和被磁化的超导磁体,用于磁化待磁化的超导磁体,包括:磁化磁场产生装置,用于产生和区分静磁场; 具有在静磁场内的电动马达的冷却装置,其由磁化磁铁产生装置产生; 以及与所述冷却装置的低温部分热连接的被磁化的体超导体,其中所述磁化磁场产生装置由磁化超导体磁体,其中构建其它磁化体超导体构成,所述体超导体 在被磁化的磁化超导体磁体产生的静磁场的空间内被磁化之前被磁化,并且通过用于冷却插入的体超导体的装置区分磁化超导体磁体的磁场, 降低到等于或低于超导温度,从而磁化待超磁体的体超导体。