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    • 2. 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。
    • 5. 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。
    • 10. 发明授权
    • Method for continuous magnetic ore separation and/or dressing and related system
    • 连续磁选矿和/或修整方法及相关系统
    • US08584862B2
    • 2013-11-19
    • US13392504
    • 2010-05-31
    • Vladimir DanovImme DomkeBernd GromollWerner HartmannWolfgang KrieglsteinAlexej MichailovskiNorbert MrongaReinhold Rieger
    • Vladimir DanovImme DomkeBernd GromollWerner HartmannWolfgang KrieglsteinAlexej MichailovskiNorbert MrongaReinhold Rieger
    • B03C1/00
    • B03C1/015B03C1/01B03C2201/18
    • A method for magnetic ore separation and/or dressing is provided, in which metalliferous recoverable materials are separated from conveyed metalliferous ore rock. The method may include producing a pulp including metalliferous recoverable material, executing a hydrophobizing reaction of recoverable material in the pulp, synthesizing a hydrophobized, magnetizable material in liquid suspension and adding this suspension to the pulp, causing an agglomeration reaction between hydrophobized magnetizable material and hydrophobized recoverable material to form magnetizable agglomerates in the pulp, separating the magnetizable agglomerates from the pulp, mixing separation products containing the agglomerates with a non-polar liquid insoluble in water and decomposing the agglomerates in the non-polar liquid into magnetizable material and recoverable material, separating the magnetizable material from the recoverable material, and removing moisture from the separation portion containing the recoverable material of the second separation stage to synthesize the recoverable material.
    • 提供了一种用于磁选矿分离和/或敷料的方法,其中含金属可回收材料与输送的含金矿石岩石分离。 该方法可以包括生产包含含金属可回收材料的纸浆,执行纸浆中可回收材料的疏水化反应,在液体悬浮液中合成疏水化的可磁化材料,并将该悬浮液加入到纸浆中,引起疏水化可磁化材料与疏水化的可磁化材料之间的聚集反应 在纸浆中形成可磁化团聚物,将可磁化团聚体与纸浆分离,将含有附聚物的分离产物与不溶于水的非极性液体混合,并将非极性液体中的附聚物分解成可磁化材料和可回收材料, 从可回收材料中分离可磁化材料,并从含有第二分离阶段的可回收材料的分离部分除去水分,以合成可回收材料。