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    • 92. 发明申请
    • METHOD FOR HYDRAULICALLY SEPARATING CARBON AND CLASSIFYING COAL COMBUSTION ASH
    • 碳氢化合物分级方法及分类煤炭燃烧方法
    • WO2007145642A1
    • 2007-12-21
    • PCT/US2006/025742
    • 2006-06-29
    • UNIVERSITY OF KENTUCKY RESEARCH FOUNDATIONROBL, Thomas, L.GROPPO, John
    • ROBL, Thomas, L.GROPPO, John
    • B03B5/62B03B5/60B01D21/00
    • B03B5/62B03B5/60
    • A method for selective separation of particles from a particle-containing material includes preparing a slurry of the particle-containing material and a dispersant, passing the slurry through a hydraulic classifier in a first direction, establishing a particle flow in a direction that is different from the first direction, and recovering particles having a mean particle size of about 2- 7 μm. The flow of particles defines a cross-current flow relative to the slurry feed direction. The method further includes providing the classifier with an interior divider assembly defining at least one inclined channel. The divider assembly typically includes a plurality of substantially parallel dividers separating the classifier into multiple channels having a substantially equal internal volume. A hydraulic classifier for separating particles having a mean particle size of from about 2-7 μm in accordance with the present method is provided also.
    • 从含颗粒材料中选择性分离颗粒的方法包括制备含颗粒的材料和分散剂的浆料,使浆料沿第一方向通过液压分级器,从而沿不同于 第一方向,以及回收平均粒径为约2-7μm的颗粒。 颗粒的流动定义了相对于浆料进料方向的交叉流动。 该方法还包括为分类器提供限定至少一个倾斜通道的内部分隔器组件。 分隔器组件通常包括将分级器分离成具有基本相等的内部体积的多个通道的多个基本上平行的分隔件。 还提供了用于根据本方法分离平均粒径为约2-7μm的颗粒的液压分级机。
    • 97. 发明专利
    • CONTINUOUS SORTING-PIPE CLASSIFIER
    • JPH0231845A
    • 1990-02-01
    • JP18011888
    • 1988-07-19
    • HONDA MUNETAKA
    • HONDA MUNETAKA
    • B65G53/30B03B5/60B03B5/62
    • PURPOSE:To continuously and precisely classify fine powder in a wet state with a simple structure and to increase the throughput of the title classifier by classifying the fine powder at the intermediate part of the classifier by the difference between the settling velocity of the particles and the ascending velocity of a liq. CONSTITUTION:A slurry feed pipe 1 and a liq. feed pipe 2 are connected to the main body at the lower part of the classifier, a fine-particle recovery pipe 3 is connected to the outermost cylinder 5 at the uppermost part, and a coarse- particle recovery pipe 4 is connected to an inner cylinder 7 at the lowermost part. The diameter of the outermost cylinder 5 is larger than that at the lower part, the lower part is conically contracted, the intermediate cylinder 6 is set coaxially with the outermost cylinder 5, the diameter of the outermost cylinder 5 is increased from the position of the tip 8, and the lower part of the intermediate cylinder 6 is conically contracted. In addition, the inner cylinder 7 is set coaxially with the outermost cylinder 5 and intermediate cylinder 6, and the lower part is conically contracted. By such a constitution, the particle concn. in the classifying zone can be kept constant, and the classified products with steady classification can be stably obtained.