Method for separating rich ore particles from agglomerates which contain said rich ore particles of value and magnetizable particles attached thereto, especially Fe3O4
    2.
    发明授权
    Method for separating rich ore particles from agglomerates which contain said rich ore particles of value and magnetizable particles attached thereto, especially Fe3O4 失效
    从富集矿石颗粒的附着物,特别是Fe 3 O 4的附聚物分离富矿粒子的方法

    公开(公告)号:US08640876B2

    公开(公告)日:2014-02-04

    申请号:US13119109

    申请日:2009-07-22

    申请人: Vladimir Danov

    发明人: Vladimir Danov

    IPC分类号: B03B9/06

    摘要: In a method for separating rich ore particles from agglomerates which contain said rich ore particles and magnetizable particles attached thereto, especially Fe3O4, in the course of a process for obtaining rich ore from crude ore, in which agglomerates the rich ore particle and the magnetizable particle are bonded by organic molecular chains, the agglomerates are contained in a suspension containing a carrier fluid and are broken up by an input of mechanical energy so that an agent contained in the suspension and decomposing the exposed, hydrophobic molecular chains can act upon the molecular chains. The Fe-containing oxide components are separated from the suspension in a magnetic separation process.

    摘要翻译: 在从富集矿石中获得富矿石的过程中,含有富矿石颗粒和可磁化颗粒,特别是Fe 3 O 4的附聚物的富矿矿石分离方法,其中富集矿石颗粒和可磁化颗粒 通过有机分子链结合,附聚物包含在含有载体流体的悬浮液中,并通过机械能的输入分解,使得包含在悬浮液中并分解暴露的疏水性分子链的试剂可以作用于分子链 。 在磁力分离过程中将含Fe的氧化物组分与悬浮液分离。

    Travelling Field Reactor and Method for Separating Magnetizable Particles From a Liquid
    3.
    发明申请
    Travelling Field Reactor and Method for Separating Magnetizable Particles From a Liquid 审中-公开
    旅行场反应器和从液体中分离可磁化颗粒的方法

    公开(公告)号:US20130087505A1

    公开(公告)日:2013-04-11

    申请号:US13702682

    申请日:2011-05-05

    IPC分类号: B03C1/253

    摘要: A travelling field reactor and a method for separating magnetizable particles from a liquid using said travelling field reactor are disclosed. The travelling field reactor may include a tubular reactor, the outer circumference of which is provided with at least one magnet for producing a travelling field and through the interior of which the liquid flows. A displacement element may be located in the interior of the tubular reactor, said element admitting a liquid into the interior of the tubular reactor, which mixes with the liquid flowing in the reactor.

    摘要翻译: 公开了一种行驶场反应器和使用所述行进电抗器从液体中分离可磁化颗粒的方法。 行进反应堆可以包括管状反应器,其外圆周设置有至少一个磁体,用于产生行进区域并且通过其流动的内部。 位移元件可以位于管状反应器的内部,所述元件允许液体进入管状反应器的内部,该管状反应器与在反应器中流动的液体混合。

    METHOD AND DEVICE FOR DETERMINING THE FLOW RATE OF MAGNETIC OR FERROMAGNETIC PARTICLES AND USE OF SAID METHOD AND DEVICE
    4.
    发明申请
    METHOD AND DEVICE FOR DETERMINING THE FLOW RATE OF MAGNETIC OR FERROMAGNETIC PARTICLES AND USE OF SAID METHOD AND DEVICE 审中-公开
    用于确定磁性或非磁性颗粒的流速的方法和装置以及使用方法和装置的方法和装置

    公开(公告)号:US20130085687A1

    公开(公告)日:2013-04-04

    申请号:US13702730

    申请日:2011-04-11

    IPC分类号: G01P5/08 G06F19/00

    摘要: A method and a device for determining the flow rate of magnetic or ferromagnetic particles in a suspension that flows through control chambers are provided. The magnetic flux F1 is measured as a function of time t using a measuring coil that surrounds a first control chamber, the magnetic flux representing a measurement, at a particular time, of the quantity of magnetic particles contained in the suspension. In a second control chamber, at a predetermined distance d from the first control chamber, the magnetic flux F2 is measured as a function of time t using a second measuring coil that surrounds the second control chamber and the measurements F1 (t) and F2 (t) are compared to produce a temporal distance Δt which is used together with the predetermined distance d to calculate the flow rate. The method and device can be used, for example, in an ore mining installation.

    摘要翻译: 提供一种用于确定流过控制室的悬浮液中的磁性或铁磁颗粒的流速的方法和装置。 使用围绕第一控制室的测量线圈测量磁通量F1,该磁通量表示在特定时间测量悬浮液中所含的磁性颗粒的量的磁通量。 在第二控制室中,在距离第一控制室的预定距离d处,使用围绕第二控制室的第二测量线圈和测量F1(t)和F2(...)测量磁通量F2作为时间t的函数, t)进行比较以产生与预定距离d一起使用的时间距离Dgr t,以计算流量。 该方法和装置可以用于例如矿石装置中。

    METHOD FOR SEPARATING RICH ORE PARTICLES FROM AGGLOMERATES WHICH CONTAIN SAID RICH ORE PARTICLES OF VALUE AND MAGNETIZABLE PARTICLES ATTACHED THERETO, ESPECIALLY FE3O4
    5.
    发明申请
    METHOD FOR SEPARATING RICH ORE PARTICLES FROM AGGLOMERATES WHICH CONTAIN SAID RICH ORE PARTICLES OF VALUE AND MAGNETIZABLE PARTICLES ATTACHED THERETO, ESPECIALLY FE3O4 失效
    分离含有大量ORE颗粒的方法,所述颗粒含有与其连接的价值和可磁化颗粒的稀有颗粒,特别是FE3O4

    公开(公告)号:US20110171113A1

    公开(公告)日:2011-07-14

    申请号:US13119109

    申请日:2009-07-22

    申请人: Vladimir Danov

    发明人: Vladimir Danov

    IPC分类号: C01G3/12 B01J8/00 B01J19/00

    摘要: In a method for separating rich ore particles from agglomerates which contain said rich ore particles and magnetizable particles attached thereto, especially Fe3O4, in the course of a process for obtaining rich ore from crude ore, in which agglomerates the rich ore particle and the magnetizable particle are bonded by organic molecular chains, the agglomerates are contained in a suspension containing a carrier fluid and are broken up by an input of mechanical energy so that an agent contained in the suspension and decomposing the exposed, hydrophobic molecular chains can act upon the molecular chains. The Fe-containing oxide components are separated from the suspension in a magnetic separation process.

    摘要翻译: 在从富集矿石中获得富矿石的过程中,含有富矿石颗粒和可磁化颗粒,特别是Fe 3 O 4的附聚物的富矿矿石分离方法,其中富集矿石颗粒和可磁化颗粒 通过有机分子链结合,附聚物包含在含有载体流体的悬浮液中,并通过机械能的输入分解,使得包含在悬浮液中并分解暴露的疏水性分子链的试剂可以作用于分子链 。 在磁力分离过程中将含Fe的氧化物组分与悬浮液分离。

    Assembly and method for separating magnetisable particles from a liquid
    7.
    发明授权
    Assembly and method for separating magnetisable particles from a liquid 有权
    从液体中分离可磁化颗粒的装配和方法

    公开(公告)号:US09028699B2

    公开(公告)日:2015-05-12

    申请号:US13702794

    申请日:2011-04-11

    IPC分类号: C02F1/48 B03C1/033 B03C1/28

    摘要: An assembly for separating magnetisable particles from a liquid may include a tubular reactor through which the liquid can flow and which includes a first region with at least one permanent magnet and a second region with at least one electromagnet. The first and the second region are arranged one behind the other along a longitudinal axis of the tubular reactor.

    摘要翻译: 用于从液体中分离可磁化颗粒的组件可以包括管状反应器,液体可以通过该反应器流动,并且其包括具有至少一个永磁体的第一区域和具有至少一个电磁体的第二区域。 第一和第二区域沿管状反应器的纵向轴线彼此排列。

    Vessel propulsion system for watercraft
    8.
    发明授权
    Vessel propulsion system for watercraft 失效
    船舶船舶推进系统

    公开(公告)号:US08517785B2

    公开(公告)日:2013-08-27

    申请号:US13062835

    申请日:2009-07-17

    IPC分类号: B63H21/14

    CPC分类号: B63H21/17 B63H1/14 B63H21/383

    摘要: A ship propulsion system for watercraft contains at least one propeller, by which a drive force can be created for the watercraft. The ship propulsion further contains an electric motor, the rotor of which is directly mechanically coupled to the at least one propeller via a shaft such that the at least one propeller may be brought into a respective rotating movement by a rotation of the rotor. In order to cool the rotor of the electric motor a thermosiphon is disposed in the shaft, and the propeller serves as a heat sink for a working medium of the thermosiphon.

    摘要翻译: 船舶的船舶推进系统至少包含一个螺旋桨,通过该螺旋桨可以为船舶产生驱动力。 船舶推进还包括电动机,其转子通过轴直接机械联接到至少一个螺旋桨,使得至少一个螺旋桨可以通过转子的旋转而进入相应的旋转运动。 为了冷却电动机的转子,热虹吸管设置在轴中,并且螺旋桨用作热虹吸管的工作介质的散热器。

    MAGNETIC SEPARATION OF NONFERROUS METAL ORES BY MEANS OF MULTI-STAGE CONDITIONING
    10.
    发明申请
    MAGNETIC SEPARATION OF NONFERROUS METAL ORES BY MEANS OF MULTI-STAGE CONDITIONING 有权
    通过多阶段调节的非金属矿的磁分离

    公开(公告)号:US20110303773A1

    公开(公告)日:2011-12-15

    申请号:US13203579

    申请日:2010-03-03

    IPC分类号: B02C23/08 B03C1/015

    CPC分类号: B03C1/015

    摘要: The present invention relates to a process for separating at least one first material from a mixture comprising this at least one first material and at least one second material, which comprises at least the following steps: (A) contacting of the mixture comprising at least one first material and at least one second material with at least one surface-active substance, if appropriate in the presence of at least one dispersion medium, with the surface-active substance binding to the at least one first material, (B) if appropriate, addition of at least one dispersion medium to the mixture obtained in step (A) in order to obtain a dispersion, (C) treatment of the dispersion from step (A) or (B) with at least one hydrophobic magnetic particle so that the at least one first material to which the at least one surface-active substance is bound and the at least one magnetic particle agglomerate, (D) separation of the agglomerate from step (C) from the mixture by application of a magnetic field in order to obtain the agglomerate and a mixture M1 depleted in agglomerate, and repetition of the steps (A) to (D).

    摘要翻译: 本发明涉及从包含至少一种第一材料和至少一种第二材料的混合物中分离出至少一种第一材料的方法,该至少一种第二材料至少包括以下步骤:(A)将包含至少一种 第一材料和至少一种具有至少一种表面活性物质的第二材料,如果合适,在至少一种分散介质的存在下,表面活性物质与至少一种第一材料结合,(B)如果合适, 向步骤(A)中获得的混合物中加入至少一种分散介质以获得分散体,(C)用至少一种疏水磁性颗粒处理来自步骤(A)或(B)的分散体,使得 所述至少一种表面活性物质与所述至少一种表面活性物质结合的至少一种第一材料和所述至少一种磁性颗粒附聚物,(D)通过施加磁场从所述混合物中分离所述附聚物与步骤(C) 以获得附聚物和耗尽附聚物的混合物M1,以及重复步骤(A)至(D)。