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    • 3. 发明授权
    • Process for wet high intensity magnetic separation with flux amplifying matrix
    • 湿式高强度磁选分离方法
    • US09579660B2
    • 2017-02-28
    • US13922971
    • 2013-06-20
    • MagGlobal, LLC
    • Larry J. Lehtinen
    • B03C1/00C22B3/22B03C1/032B03C1/30
    • B03C1/00B03C1/032B03C1/30B03C2201/18C22B3/22
    • A method, process or system for producing an iron oxide concentrate from a treatment slurry of a low grade mineral assemblage includes mixing a flocculant with the treatment slurry and dewatering the treatment slurry before passing the treatment slurry through a wet high intensity magnetic separator of a type that employs a flux amplifying matrix (i.e., a WHIMS-FAM device) and recovering an iron oxide concentrate fraction and a tailings fraction from the WHIMS-FAM device. Another method, process or system for producing an iron oxide concentrate includes passing the treatment slurry through a WHIMS-FAM device and recovering an iron oxide concentrate fraction slurry and a tailings fraction slurry from the WHIMS-FAM device; mixing a flocculant with the concentrate fraction slurry and dewatering the concentrate slurry to provide a thickened concentrate slurry before filtering the thickened concentrate slurry to provide a concentrate filter cake.
    • 从低级矿物组合的处理浆料中生产氧化铁浓缩物的方法,方法或系统包括将絮凝剂与处理浆料混合并使处理浆料脱水,然后使处理浆料通过湿式高强度磁选机 其使用通量放大矩阵(即,WHIMS-FAM器件)并从WHIMS-FAM器件回收氧化铁浓缩物部分和尾渣馏分。 用于生产氧化铁浓缩物的另一种方法,方法或系统包括使处理浆料通过WHIMS-FAM装置,并从WHIMS-FAM装置回收氧化铁浓缩物级分淤浆和尾矿级分淤浆; 将絮凝剂与浓缩物级浆料混合并使浓缩浆液脱水,以在过滤增稠的浓缩物浆料之前提供增稠的浓缩物浆料,以提供浓缩滤饼。
    • 8. 发明申请
    • DEVICE AND METHOD FOR RECOVERING MAGNETIC PARTICLES TRAPPED ON A MAGNETIC PLUG
    • 用于回收磁性片上的磁性颗粒的装置和方法
    • US20120204910A1
    • 2012-08-16
    • US13504277
    • 2010-10-22
    • Fabrice Colladon
    • Fabrice Colladon
    • B08B5/00
    • B03C1/284B03C1/032B03C1/286
    • A device for recovering magnetic particles trapped on a magnetic plug, which includes a supporting end and a magnetized element for retaining the magnetic particles in a liquid resulting from the wear of parts with which the liquid has been in contact, the recovery device including a magnetization device and an enclosure having an opening, the enclosure to receive the magnetic plug via the opening such that the magnetized element is located inside the enclosure and the supporting end is located outside the enclosure. The opening is sized such that the supporting end blocks the opening. The device also includes an injection nozzle to inject a gaseous fluid inside the enclosure, the nozzle being oriented such that the flow of gaseous fluid expels the magnetic particles retained on the magnetized element toward the bottom of the enclosure. The magnetization device traps the particles urged toward the bottom of the enclosure.
    • 一种用于回收被捕获在磁性塞子上的磁性颗粒的装置,该装置包括支撑端和用于将磁性颗粒保持在由液体已经接触的部件的磨损所导致的液体中的磁化元件,该恢复装置包括磁化 装置和具有开口的外壳,所述外壳经由所述开口接收所述磁性塞,使得所述磁化元件位于所述外壳内并且所述支撑端位于所述外壳外部。 开口的尺寸使得支撑端阻挡开口。 该装置还包括注射喷嘴以在壳体内注入气体流体,喷嘴被定向为​​使得气态流体流将保留在磁化元件上的磁性颗粒朝向外壳的底部排出。 磁化装置捕获朝外壳的底部被推动的颗粒。
    • 9. 发明授权
    • Filter device
    • 过滤装置
    • US07504032B2
    • 2009-03-17
    • US11812847
    • 2007-06-22
    • Minoru Tashiro
    • Minoru Tashiro
    • B03C1/02
    • B01D35/06B03C1/032B03C1/286B03C2201/18
    • A filter device has a filter tank into which a contaminated fluid is introduced, a magnetic ball filter medium using a large number of metal balls, magnets, and lift rods. The magnetic ball filter medium is formed of an aggregate of a large number of spherical metal balls of a magnetic material and is held in a filter medium storage portion in a manner such that the metal balls are movable relatively to one another. The magnets are movable between a first position and a second position. When in the first position, the magnets apply a magnetic field to the metal balls, thereby causing the metal balls magnetically to attract one another and so that the metal balls are fixed to one another. When in the second position, the magnetic attraction between the metal balls is canceled so that the metal balls are movable.
    • 过滤装置具有被引入污染流体的过滤罐,使用大量金属球,磁铁和提升杆的磁球过滤介质。 磁球过滤器介质由大量的磁性材料的球形金属球的聚集体形成,并且以使得金属球相对于彼此移动的方式被保持在过滤介质存储部中。 磁体可在第一位置和第二位置之间移动。 当处于第一位置时,磁体对金属球施加磁场,从而使金属球磁力相互吸引,使得金属球彼此固定。 当处于第二位置时,金属球之间的磁吸引力被消除,使得金属球是可移动的。
    • 10. 发明授权
    • Magnetic separation unit and water purification system
    • 磁选机和净水系统
    • US07371320B2
    • 2008-05-13
    • US11008193
    • 2004-12-10
    • Hiroaki YodaSatoshi YumotoMinoru Morita
    • Hiroaki YodaSatoshi YumotoMinoru Morita
    • C02F1/48
    • C02F1/488B03C1/01B03C1/032B03C1/0337B03C1/034B03C2201/18C02F1/001C02F1/5236C02F1/56C02F1/66C02F11/14C02F2301/046
    • A magnetic separation unit can prevent any magnetic flocs deposited on an inner wall of a water passing pipe from closing a water channel for stabilizing a magnetic separation performance and reduce cost by a small-diameter portion of the water passing pipe. The magnetic separation unit has an air-core solenoid type magnet provided around the water passing pipe guiding, from a lower side, treated water including magnetic flocs in which contaminants and magnetic particles are flocculated, a rotating disc type magnetic filter case provided above the air-core solenoid type magnet for attracting the magnetic flocs in the treated water supplied from the water passing pipe and flushing means for flushing the matrixes to which the magnetic flocs are attracted. The water passing pipe has a small-diameter pipe positioned in the air-core solenoid type magnet, and an enlarged pipe enlarged from the small-diameter pipe toward a water passing part of the rotating disc type magnetic filter case.
    • 磁分离单元可以防止沉积在水通过管的内壁上的任何磁性絮凝物关闭水通道以稳定磁分离性能,并且通过水通过管的小直径部分降低成本。 磁分离单元具有设置在水通过管周围的空心螺线管型磁体,从下侧引导包括污染物和磁性颗粒絮凝的磁性絮凝物的处理水,设置在空气上方的旋转盘型磁性过滤器壳体 用于吸引从通水管供给的处理水中的磁絮凝物的芯螺线管型磁体和用于冲洗磁絮凝物所吸收的基体的冲洗装置。 通水管具有位于空心螺线管型磁体中的小直径管,并且从小直径管朝向旋转盘型磁性过滤器壳体的水通过部分扩大的管。