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    • 1. 发明授权
    • Method and apparatus for desolvating flowing liquid
    • US08695813B2
    • 2014-04-15
    • US12312890
    • 2007-12-08
    • William W. CarsonSidney Bourne
    • William W. CarsonSidney Bourne
    • G01N30/12G01N35/10B01D15/08B01D45/12H01J49/00
    • B01D1/222B01D1/0094B01D1/16B01D19/0026B01D19/0052B01D19/0057G01N30/84G01N2030/743G01N2030/8494Y10T436/111666Y10T436/255Y10T436/25875
    • Methods and apparatus for desolvating flowing liquid streams while retaining temporal resolution of dissolved substrates are disclosed. A novel small-scale self-regulating spray dryer preserves temporal resolution while desolvating a liquid chromatography eluent stream and depositing the solute onto an optical surface for infrared spectrographic analysis. The liquid eluent is pumped through a heated nebulizer to create a high-speed jet of solute containing liquid and solvent vapor. This jet is directed circumferentially inside a hot cylindrical cavity. Centrifugal force causes the larger liquid droplets to travel along the outer diameter of the cavity. The cavity surface is heated to cause the droplets to film boil. Film boiling reduces droplet contact with the cavity surface thereby retaining the solute in the droplets. The solute temperature is limited by controlling the pressure into which the solvent evaporates from the droplets. When the droplets are sufficiently small, Stokes drag from the exiting solvent vapor carries the droplets out through the center of the cylindrical cavity. After exiting, the superheated solvent vapor further dries the droplets. Solvent vapor is removed by condensation onto a cooled surface. A freezing point reducing agent may be added to improve removal of solvent condensate. Stokes drag from a non-condensable gas maintains the dried droplets in suspension. This suspension travels through an orifice that focuses the impaction of the dried droplets onto the optical surface for infrared analysis. The deposition surface is in an evacuated chamber and is temperature controlled to freeze liquid solutes yet allowing sublimation of residual solvent.
    • 5. 发明申请
    • Combined Pumping And Separating Machine For The Oil Circuit Of A Turbojet
    • 涡轮喷油器油路组合抽油机
    • US20100162889A1
    • 2010-07-01
    • US12643388
    • 2009-12-21
    • Albert CornetNicolas Raimarckers
    • Albert CornetNicolas Raimarckers
    • B01D19/02
    • F04D7/045B01D19/0026B01D19/0052B01D19/0063F04D31/00
    • The present invention relates to a combined machine for pumping and separating into two distinct and purified phases a two-phase liquid/gas mixture or fluid, preferably oil/air, entering the machine, comprising means for the suction, pumping and partial separation of the two-phase fluid, means for drying and extracting the separated gas and means for degassing and forcing back the separated liquid, comprising at least three physically separated stages (A,B,C) intended to be activated by a means that is internal or external to the machine, and built into a single casing: a first stage (A), equipped with an intake for the two-phase fluid, in which the two-phase fluid is sucked, pumped and partially separated into two distinct phases, one phase being mainly liquid and the other being mainly gaseous; a second stage (B), comprising two zones: a first zone in which the mainly liquid phase extracted from the first stage (A) is degassed, and a second zone in which the mainly gaseous phase extracted from the first stage (A) is dried, equipped with a first outlet for the dried gas; a third stage (C), in which the degassed liquid is forced back and pressurised, equipped with a second outlet for the degassed liquid.
    • 本发明涉及一种用于泵送和分离成两个不同和纯化阶段的组合机器,两相液体/气体混合物或流体,优选是进入机器的油/空气,包括用于吸入,泵送和部分分离的装置 两相流体,用于干燥和提取分离出的气体的装置和用于对分离的液体进行脱气和强制回收的装置,包括至少三个物理上分离的级(A,B,C),其通过内部或外部的方式被激活 并装入一个单一的外壳中:第一阶段(A),配备两相流体的进气口,其中两相流体被吸入,泵送并部分分离成两个不同的相,一相 主要是液体,另一种主要是气态的; 第二阶段(B),包括两个区域:从第一阶段(A)提取的主要液相的第一区域被脱气,以及从第一阶段(A)提取的主要气相的第二区域是 干燥,装有干燥气体的第一出口; 第三阶段(C),其中脱气的液体被强制返回和加压,装备有用于脱气液体的第二出口。