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    • 32. 发明申请
    • INSTALATION FOR SEPARATION OF EMULSION OF WATER AND HYDROCARBONS
    • 用于分离水和油的乳化的分析
    • WO2004060529A1
    • 2004-07-22
    • PCT/BG2003/000021
    • 2003-04-14
    • RESOURSE PLUS LTDSKRYABIN, SergeiLOBANOV, Viktor
    • SKRYABIN, SergeiLOBANOV, Viktor
    • B01D17/04
    • C10G33/06B01D17/0211B01D17/0214B01D17/042B01D17/045B01D17/10
    • The installation for separation of emulsion of water and hydrocarbons includes two columns (1,2), the lower parts of which are connected trough column (3) for balancing the currents of hydrocarbons and water in them. In the middle zone of the first column (1) an orifice (4) is located, under which a deaf tray (5) is located, so that in the upper part of the first column (1), an orifice (8)is located also. The deaf tray (5) is equipped with a bell overflow system, around the overflow pipe of which a serpentine (12) and a separating device (13) are located. At a certain height under the deaf tray (5), an orifice (11) is located, connected trough an overflow pipe with the middle zone of the second column (2). An analogical separating device (13) is located under the level of the overflow pipe, while the upper part of the second column (2), a system of at least one profiled filling (21) and at least one sieve-grid fractioning tray (23), is located. The top of second column (2) and that of balancing column (3) are connected to the middle zone of first column (1) through orifices (18, 19).
    • 用于分离水和烃的乳液的装置包括两个柱(1,2),其下部通过塔(3)连接,用于平衡其中的碳氢化合物和水的电流。 在第一列(1)的中间区域中,设有孔口(4),在该孔口(4)的下方设有聋牙盘(5),使得在第一列(1)的上部中,孔(8) 也位于。 聋人托盘(5)上装有一个钟形溢流系统,围绕着蛇形管(12)和分离装置(13)的溢流管。 在聋盘(5)下方的一定高度处,孔(11)定位成通过与第二塔(2)的中间区域的溢流管连接。 模拟分离装置(13)位于溢流管的下方,而第二塔(2)的上部,至少一个成型填充物(21)和至少一个筛网分级塔板( 23),位于。 第二列(2)的顶部和平衡柱(3)的顶部通过孔(18,19)连接到第一列(1)的中间区域。
    • 35. 发明申请
    • METHOD AND DEVICE FOR DEMULSIFYING AN OIL-CONTAINING AQUEOUS EMULSION
    • 方法和设备,用于分离AN含油水乳液
    • WO99029390A1
    • 1999-06-17
    • PCT/EP1998/007639
    • 1998-11-26
    • B01D17/02B01D17/05C10M175/04B01D17/04
    • C10M175/04B01D17/0214B01D17/042B01D17/044B01D17/047B01D17/085
    • According to the inventive method for demulsifying an oil-containing aqueous emulsion, said oil-containing aqueous emulsion is subjected to an increased pressure and an increased temperature for a certain length of time. Carbon dioxide is added, and the emulsion is then released. The demulsification takes place in an autoclave, an upwards travelling gas bubble stream of carbon dioxide being produced by an abrupt release of pressure. An oil-rich phase is separated off by said gas bubble stream and the remaining preclarified oil-stripped emulsion is then separated in a separator. The resulting aqueous fraction is separated into a retentate and water by means of ultrafiltration. A device for carrying out the inventive method has an autoclave, a separator and an ultrafiltration device. A device for feeding in fine bubbles of carbon dioxide is located in the base area of the autoclave.
    • 在裂解的含油,水乳液的方法,所述含油,水乳液带来了一定的时间来升高的压力和升高的温度下,与二氧化碳混合,并随后膨胀,其中,所述切割是在高压釜中进行,其中,由休克样压力释放 二氧化碳的气泡的向上气流产生,并且一个富油相是通过二氧化碳的气泡的向上的气体流,然后将澄清的预作为对油的贫乳剂在一个分离器中分离,并且其中随后通过超滤得到的水馏分分离 渗余物和水被分解。 用于实施该方法的装置,包括高压釜中,隔膜和超滤,其中所述高压釜的底部区域中,进料装置被布置为二氧化碳的细泡条目。
    • 36. 发明申请
    • APPLICATION OF MICROWAVE RADIATION IN A CENTRIFUGE FOR THE SEPARATION OF EMULSIONS AND DISPERSIONS
    • 微波辐射在分离乳化液和分散液中的应用
    • WO99006134A1
    • 1999-02-11
    • PCT/US1998/015832
    • 1998-07-29
    • B01D17/00H05B6/70H05B6/78B01D17/038B01D17/04H05B6/64
    • H05B6/802B01D17/00B01D17/0217B01D17/04B01D17/042H05B6/70H05B6/708
    • A method and apparatus for applying microwaves to a flowable material (17) within a centrifuge are disclosed. The simultaneous application of microwaves and centrifugation to the flowable material (17) rapidly separates immiscible components from emulsions and suspensions. Microwaves are guided along a waveguide (21) within the centrifuge. A meandering path for the waveguide (31) is chosen through the interior of the centrifuge. Gradual variation in the radial distance of the waveguide (31) from the axis (32) of the centrifuge produces a gradual filling of the cross section of the waveguide (31) along its length. Excellent microwave coupling and power deposition into the flowable material (17) results without containing the flowable material (17) behind a dielectric barrier. The invention may be used to separate any variable-density flowable material (17), or it may be used simply to rapidly heat a fluid. Numerous applications exist in the petroleum, chemical, and food-processing industries.
    • 公开了一种将微波应用于离心机内的可流动材料(17)的方法和装置。 将微波同时施加和离心分离到可流动材料(17)中,使不混溶的组分与乳液和悬浮液快速分离。 微波沿离心机内的波导(21)引导。 通过离心机的内部选择波导(31)的曲折路径。 波导(31)与离心机的轴线(32)的径向距离的逐渐变化产生波导(31)沿其长度的横截面的逐渐填充。 优异的微波耦合和功率沉积到可流动材料(17)中,而不会在电介质阻挡层后面包含可流动材料(17)。 本发明可以用于分离任何可变密度可流动材料(17),或者它可以简单地用于快速加热流体。 石油,化工和食品加工业存在许多应用。
    • 37. 发明申请
    • A CENTRIFUGE APPARATUS WITH TEMPERATURE CONTROL MEANS
    • 具有温度控制手段的离心装置
    • WO98030304A1
    • 1998-07-16
    • PCT/US1998/000251
    • 1998-01-08
    • A61K35/14B01D17/02B01D21/26B04B5/00B04B15/00B04B15/02G01K7/42G01N33/49B01D17/038
    • B04B15/02B01D17/0217B01D17/042B01D21/262B01D21/34B01D2221/10B04B2005/0485G01K7/42G01N33/491
    • An apparatus is adapted to centrifuge and furthermore automatically handle a container (10) for separating a component, such as fibrin monomer, from plasma. The container (10) comprises a cylindrical member (11) and a piston (25) displaceable therein and comprising a tubular piston rod (12), which extends through the top wall. The piston (25) divides the cylindrical member (11) into a first chamber positioned above said piston (25) between said piston and said top wall and a second chamber positioned below said piston (25). The apparatus comprises a supporting turntable (1) with means for releasably retaining the cylindrical member (11), said supporting turntable being connected to a first activating means (5) for rotating the supporting turntable (1) with the container (10) about the central axis thereof. The apparatus comprises furthermore a rotatably journalled piston activating mechanism (13, 15, 16) adapted to activate the piston by means of a second activating means (21). A heat-emitting device (26, 27) is provided opposite the position of the cylindrical member (11) in the apparatus.
    • 一种装置适于离心并且还可以自动处理用于将诸如纤维蛋白单体的组分与血浆分离的容器(10)。 容器(10)包括圆柱形构件(11)和可在其中移动的活塞(25),并且包括延伸穿过顶壁的管状活塞杆(12)。 活塞(25)将圆柱形部件(11)分成位于所述活塞和所述顶壁之间的位于所述活塞(25)上方的第一室中,以及位于所述活塞(25)下方的第二室。 该装置包括支撑转盘(1),该转盘具有用于可释放地保持圆柱形构件(11)的装置,所述支撑转台连接到第一启动装置(5),用于使支撑转盘(1)与容器(10)围绕 中心轴。 该装置还包括适于通过第二激活装置(21)致动活塞的可旋转轴颈的活塞致动机构(13,15,16)。 一个发热装置(26,27)设置成与该装置中圆柱形构件(11)的位置相对。