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    • 1. 发明授权
    • Process for the beneficiation of ores by means of hydrophobic surfaces
    • 通过疏水表面选矿的方法
    • US08408395B2
    • 2013-04-02
    • US12669383
    • 2008-07-08
    • Imme DomkeAlexej MichailovskiHartmut Hibst
    • Imme DomkeAlexej MichailovskiHartmut Hibst
    • B03B1/00
    • C22B1/00B03C1/01B03C1/30B03C2201/20B03D1/10C22B15/0002C22B15/0008
    • A process for separating at least one hydrophobic material from a mixture comprising this at least one hydrophobic material and at least one hydrophilic material, which comprises the steps: (A) preparation of a slurry or dispersion of the mixture to be treated in at least one suitable dispersion medium, (B) contacting of the slurry or dispersion from step (A) with at least one solid, hydrophobic surface to bind the at least one hydrophobic material to be separated off to this, (C) removal of the at least one solid, hydrophobic surface to which the at least one hydrophobic material is bound from step (B) from the slurry or dispersion in which the at least one hydrophilic material is comprised and (D) separation of the at least one hydrophobic material from the solid, hydrophobic surface.
    • 一种从包含这种至少一种疏水材料和至少一种亲水材料的混合物中分离出至少一种疏水性材料的方法,其包括以下步骤:(A)在待处理的混合物的浆液或分散体中制备至少一种 (B)将来自步骤(A)的浆料或分散体与至少一个固体疏水表面接触,以将待分离的至少一种疏水性材料结合到其中,(C)除去至少一种 所述至少一种疏水性材料与步骤(B)从其中包含所述至少一种亲水性材料的浆料或分散体结合到其上的固体疏水性表面和(D)至少一种疏水性材料与所述固体分离, 疏水表面。
    • 2. 发明申请
    • METHOD OF INCREASING THE EFFICIENCY IN AN ORE SEPARATION PROCESS BY MEANS OF HYDROPHOBIC MAGNETIC PARTICLES BY TARGETED INPUT OF MECHANICAL ENERGY
    • 通过指定的机械能量输入增加疏水磁性颗粒在ORE分离过程中的效率的方法
    • US20120228413A1
    • 2012-09-13
    • US13509413
    • 2010-11-10
    • Reinhold RiegerAlexej MichailovskiImme Domke
    • Reinhold RiegerAlexej MichailovskiImme Domke
    • B03C1/32B02C23/18B03C1/01
    • B03C1/01B03C1/32B03C2201/18
    • 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 the following steps (A) contacting of the mixture comprising at least one first material and at least one second material with at least one magnetic particle in the presence of at least one dispersion medium so that the at least one first material and the at least one magnetic particle agglomerate, (B) if appropriate, addition of further dispersion medium to the dispersion obtained in step (A), (C) separation of the agglomerate from step (A) or (B) from the mixture by application of a magnetic field, (D) and dissociation of the agglomerate separated off in step (C) in order to obtain the at least one first material and the at least one magnetic particle separately, with an energy input of at least 10 kW/m3 being introduced into the dispersion in step (A).
    • 本发明涉及从包含该至少一种第一材料和至少一种第二材料的混合物中分离至少一种第一材料的方法,其包括以下步骤(A)使包含至少一种第一材料和 至少一种第二材料,在至少一种分散介质的存在下具有至少一个磁性颗粒,使得所述至少一种第一材料和所述至少一种磁性颗粒聚集,(B)如果合适的话,向其中添加另外的分散介质 在步骤(A)中获得的分散体,(C)通过施加磁场从混合物中分离步骤(A)或(B)的附聚物,(D)和在步骤(C)中分离出的附聚物的解离在 以便在步骤(A)中将至少10kW / m 3的能量输入引入分散体中以分别获得至少一种第一材料和至少一种磁性颗粒。
    • 4. 发明申请
    • MAGNETIC SEPARATION OF NONFERROUS METAL ORES BY MEANS OF MULTI-STAGE CONDITIONING
    • 通过多阶段调节的非金属矿的磁分离
    • US20110303773A1
    • 2011-12-15
    • US13203579
    • 2010-03-03
    • Imme DomkeAlexej MichailovskiNorbert MrongaWerner HartmannWolfgang KrieglsteinVladimir Danov
    • Imme DomkeAlexej MichailovskiNorbert MrongaWerner HartmannWolfgang KrieglsteinVladimir Danov
    • B02C23/08B03C1/015
    • B03C1/015
    • 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).
    • 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)。
    • 6. 发明授权
    • Method of increasing the efficiency in an ore separation process by means of hydrophobic magnetic particles by targeted input of mechanical energy
    • 通过目标输入机械能通过疏水磁性颗粒提高矿石分离过程效率的方法
    • US08486270B2
    • 2013-07-16
    • US13509413
    • 2010-11-10
    • Reinhold RiegerAlexej MichailovskiImme Domke
    • Reinhold RiegerAlexej MichailovskiImme Domke
    • B02C23/18B03C1/01G03C1/32
    • B03C1/01B03C1/32B03C2201/18
    • 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 the following steps (A) contacting of the mixture comprising at least one first material and at least one second material with at least one magnetic particle in the presence of at least one dispersion medium so that the at least one first material and the at least one magnetic particle agglomerate, (B) if appropriate, addition of further dispersion medium to the dispersion obtained in step (A), (C) separation of the agglomerate from step (A) or (B) from the mixture by application of a magnetic field, (D) and dissociation of the agglomerate separated off in step (C) in order to obtain the at least one first material and the at least one magnetic particle separately, with an energy input of at least 10 kW/m3 being introduced into the dispersion in step (A).
    • 本发明涉及从包含该至少一种第一材料和至少一种第二材料的混合物中分离至少一种第一材料的方法,其包括以下步骤(A)使包含至少一种第一材料和 至少一种第二材料,在至少一种分散介质的存在下具有至少一个磁性颗粒,使得所述至少一种第一材料和所述至少一种磁性颗粒聚集,(B)如果合适的话,向其中添加另外的分散介质 在步骤(A)中获得的分散体,(C)通过施加磁场从混合物中分离步骤(A)或(B)的附聚物,(D)和在步骤(C)中分离出的附聚物的解离在 以便在步骤(A)中将至少10kW / m 3的能量输入引入分散体中以分别获得至少一种第一材料和至少一种磁性颗粒。
    • 8. 发明授权
    • Selective materials separation using modified magnetic particles
    • 使用改性磁性颗粒的选择性材料分离
    • US08377311B2
    • 2013-02-19
    • US13054713
    • 2009-07-15
    • Imme DomkeAlexej MichailovskiNorbert MrongaHartmut HibstJuergen TropschSusanne Stutz
    • Imme DomkeAlexej MichailovskiNorbert MrongaHartmut HibstJuergen TropschSusanne Stutz
    • B03C1/005
    • H01F1/44B03C1/015B82Y25/00H01F1/0045
    • The present invention relates to a process of the invention 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 the steps: (A) Contacting of at least one magnetic particle and at least one bifunctional molecule or an adduct of the two with the mixture comprising the at least one first material and at least one second material so that an adduct is formed from the at least one magnetic particle, the bifunctional compound of the general formula (I) and the at least one first material, (B) suspension of the adduct obtained in step (A) in a suitable suspension medium, (C) separation of the adduct present in the suspension from step (B) from the suspension by application of a magnetic field, (D) if appropriate, dissociation of the adduct separated off in step (C) in order to obtain the at least one first material. a corresponding adduct and the use of such an adduct for the separation of mixtures of materials.
    • 本发明涉及一种本发明的方法,用于从包含该至少一种第一材料和至少一种第二材料的混合物中分离至少一种第一材料,其包括以下步骤:(A)接触至少一种磁性颗粒和 至少一种双功能分子或两者的加合物与混合物包含至少一种第一材料和至少一种第二材料,使得加合物由至少一个磁性颗粒形成,通式(I)的双官能化合物 )和所述至少一种第一材料,(B)步骤(A)中获得的加合物的悬浮液在合适的悬浮介质中,(C)通过施用将来自步骤(B)的悬浮液中存在的加合物与悬浮液 (D)如果合适,在步骤(C)中分离的加合物的解离以获得至少一种第一材料。 相应的加合物和这种加合物用于分离材料混合物的用途。