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    • 2. 发明授权
    • Method of separating carbonaceous coal from an aqueous coal slurry
    • 从含水煤浆中分离碳质煤的方法
    • US4758332A
    • 1988-07-19
    • US083355
    • 1987-08-10
    • Charles E. CapesKevin A. JonassonWilliam L. Thayer
    • Charles E. CapesKevin A. JonassonWilliam L. Thayer
    • B03B1/04B03B9/00B03D1/02B03B7/00
    • B03B1/04B03B9/005
    • In a method of agglomerating carbonaceous coal comprising first agglomerating impurity liberated carbonaceous coal, from an impurity liberated coal slurry, with agglomerating oil to form open structured, chain-like, micro-agglomerates and then forming relatively larger, less open structured more robust agglomerates from a portion of the slurry to provide a mixture of micro-agglomerates, relatively larger, more robust agglomerates, water and any inorganic impurities that may be present. The relatively larger, more robust agglomerates are screened and then the micro-agglomerates are separated using an aerating, skimmer tank leaving an inorganic impurity laden waste water. The micro-agglomerates are rendered buoyant by the aeration and are thus rendered separable from the inorganic laden waste water which may be further treated to remove the inorganic waste to provide water for recirculation.
    • 在包含第一附聚杂质的释放的碳质煤中,从杂质释放的煤浆中与附聚油形成开放的结构化的链状的微团聚体,然后形成相对较大,较不开放的结构更坚固的附聚物的方法, 一部分浆料提供微团聚物的混合物,相对较大,更坚固的附聚物,水和任何可能存在的无机杂质。 筛选相对较大,更坚固的附聚物,然后使用充气,分离器罐分离微团聚体,留下含有无机杂质的废水。 微团聚体通过通气使其浮起,因此与无机载体废水分离,可以进一步处理以除去无机废物以提供用于再循环的水。
    • 4. 发明授权
    • Liquid atomizing device with controlled atomization and spray dispersion
    • 具有受控雾化和喷雾分散的液体雾化装置
    • US5680993A
    • 1997-10-28
    • US464952
    • 1995-06-05
    • Thomas W. McCrackenKevin A. JonassonAdam J. Bennett
    • Thomas W. McCrackenKevin A. JonassonAdam J. Bennett
    • B05B7/00B05B7/04B05B7/08
    • B05B7/0815B05B7/045B05B7/0075Y10S239/07
    • An atomizing nozzle primarily designed for agricultural spraying has a narrow and controlled droplet size distribution and the ability to shape the spray into a solid cone or fan for evenly applying the spray to the crops. The nozzle is able to operate at low air delivery pressures, in the order of 10 to 30 in. of water column. A central air delivery bore communicates with an air manifold within a boom. Near the exit plane of the throat there is provided an inlet conduit connected to the liquid to be sprayed, the conduit being at right angles to the bore axis. An outlet nozzle from the conduit is positioned on the bore axis and has its exit plane upstream of the exit plane of the bore so that atomization of the liquid will take place within the central bore between the two exit planes. A pair of shaping nozzles are connected to secondary bores that in turn communicate with the manifold. The shaping nozzles are directed orthogonally to the central bore axis and to the inlet conduit and are located downstream of the exit plane of the central bore. The jets issuing from the shaping nozzles shape the cone-shaped spray into a generally fan-shaped configuration. Because the shaping jets are always at the same pressure as the atomization air the dispersion of the droplets exiting the nozzle will be consistent and the spray pattern will be constant over the operating pressure range of the apparatus.
    • 主要设计用于农业喷雾的雾化喷嘴具有窄的和受控的液滴尺寸分布,以及将喷雾成形为固体锥体或风扇以将喷雾均匀地施加到作物的能力。 喷嘴能够在10至30英寸水柱的低空气输送压力下操作。 中央空气输送孔与起重臂内的空气歧管连通。 在喉部的出口平面附近设有连接到待喷射液体的入口导管,导管与孔轴线成直角。 来自导管的出口喷嘴定位在孔轴线上并且其出口平面在孔的出口平面的上游,使得液体的雾化将发生在两个出射平面之间的中心孔内。 一对成型喷嘴连接到次级孔,继而与歧管连通。 成形喷嘴与中心孔轴线和入口管道正交地定向并且位于中心孔的出口平面的下游。 从成形喷嘴发出的喷嘴将锥形喷雾形成为通常扇形的构造。 由于成型射流总是处于与雾化空气相同的压力下,离开喷嘴的液滴的分散体将是一致的,并且喷射模式将在装置的操作压力范围内保持恒定。