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    • 2. 发明授权
    • Automatic oil-water separation and recovery system used on ships
    • 船用自动油水分离和回收系统
    • US08206585B2
    • 2012-06-26
    • US12517114
    • 2008-03-03
    • Xian Gan
    • Xian Gan
    • C02F1/40
    • B01D17/0208B01D17/10C02F1/001C02F1/006C02F1/40C02F2103/008Y10S210/05
    • An automatic oil-water separation and recovery device, which comprises a cylindrical tank, on the top of which exists an oil collector. The tank has an inflow pipe that links to a pre-separation regulating water distributor therein. The said water distributor is in the shape of an obconic bell mouth. At the lower part of the tank stands an outflow collector on which a bar-shaped oil-water separation unit is secured. The said outflow collector has an outlet. The said oil-water separation unit is made from stainless steel or plastic antipriming pipe firstly wrapped with unwoven cloth, and then taped with wires and outside the wires further wrapped with nonwoven cloth. All the cloth and wires are made of the same highly hydrophilic, oil-resistant material. The automatic oil-water separation and recovery devices described in this invention can be assembled together for separating and recovering ship-generated oily water. The assembled system works very well even though the oil content in the oily water fluctuates significantly. The average oil content in the treated water is about or lower than 5.0 m/L.
    • 一种自动油水分离和回收装置,包括一个圆筒形罐,其顶部存在一个集油器。 该罐具有连接到预分离调节水分配器的流入管。 所述水分配器形状为阴蒂的喇叭口。 在罐的下部设有一个流出收集器,其上固定有一个条形油水分离单元。 所述流出收集器具有出口。 所述油水分离单元由不锈钢或塑料防弹管制成,首先用无纺布包裹,然后用电线和电线外部进一步包裹无纺布。 所有的布和电线都是由相同的高亲水性,耐油材料制成。 本发明中描述的自动油水分离和回收装置可以组装在一起用于分离和回收船用油性水。 组装的系统即使在油水中的油含量显着变动也能很好地工作。 处理水中的平均含油量约为5.0m / L以下。
    • 3. 发明授权
    • Pleated single phase filter coalescer element and method
    • 褶皱单相过滤器聚结器元件及方法
    • US08114291B2
    • 2012-02-14
    • US13189652
    • 2011-07-25
    • Jason A. EllisRon J. Garrett
    • Jason A. EllisRon J. Garrett
    • B01D29/07B01D27/06B31F1/20B01D29/00B01D27/00
    • B01D36/003B01D39/1623B01D2239/065Y10S210/05Y10T29/49826
    • A filter coalescer element for oil based industrial fuels includes a rigid, porous support tube, and a hydrophobic drainage layer covering the outer surface of the same. A single phase, dual function combination water coalescer and particle filter pleat block is positioned in the support tube, and is formed from a multilayer material having a first porous support layer, a synthetic microfiber layer, a synthetic fiber media layer and a second porous support layer. As the fluid passes through the pleat block, solid particles are physically filtered therefrom, and water is coalesced into droplets which pass from the pleats directly through the support tube and directly into the drainage layer, where the droplets grow into a size sufficient that they fall under gravity to the bottom of the element for collection.
    • 用于油基工业燃料的过滤器聚结器元件包括刚性多孔支撑管和覆盖其的外表面的疏水排水层。 单相双功能组合水聚结器和颗粒过滤器褶皱块位于支撑管中,并且由具有第一多孔支撑层,合成超细纤维层,合成纤维介质层和第二多孔载体的多层材料形成 层。 当流体通过褶皱块时,固体颗粒被物理过滤,水被聚集成液滴,其从褶皱直接通过支撑管并直接进入排水层,其中液滴生长成足以使其下降的尺寸 在重力下将元件的底部收集。
    • 5. 发明授权
    • Multi-phase separation method
    • 多相分离法
    • US08080166B2
    • 2011-12-20
    • US12573773
    • 2009-10-05
    • Wayne W. Spani
    • Wayne W. Spani
    • C02F1/20
    • B01D45/02B01D1/16B01D1/305B01D3/10B01D5/0006B01D5/0054B01D5/006B01D17/045B01D21/0012B01D53/002B01D2257/704B01D2257/708C02F1/001C02F1/04C02F1/20C02F2101/322C02F2103/06C02F2301/063Y10S210/05
    • A multiphase separation system utilized to remove contaminants from fluids includes a pre-filtering module for filtering a contaminated fluid to provide a filtered contaminated fluid. A condenser module receives the filtered contaminated fluid and a contaminated gas phase for condensing the contaminated gas phase to a contaminated liquid. A phase reaction chamber converts the filtered contaminated fluid to a contaminated mist wherein the mist is subjected to a low energy, high vacuum environment for providing a first change of phase by separating into a contaminated gas phase and a liquid mist phase. The contaminated gas phase is carried out of the phase reaction chamber by a carrier air. A vacuum pump provides the low energy, high vacuum environment in the phase reaction chamber and delivers the contaminated gas phase to the condenser module for condensation providing a second change of phase.
    • 用于从流体中除去污染物的多相分离系统包括用于过滤污染流体以提供过滤的污染流体的预过滤模块。 冷凝器模块接收经过滤的污染流体和污染气相,用于将污染的气相冷凝至受污染的液体。 相反应室将过滤的污染流体转化为污染的雾,其中雾经受低能量,高真空环境,以通过分离成污染气相和液相相提供相位的第一变化。 被污染的气相通过载体空气从相位反应室中进行。 真空泵在相位反应室中提供低能量,高真空环境,并将污染的气相输送到冷凝器模块进行冷凝,提供相位的第二次变化。
    • 9. 发明申请
    • COALESCING ELEMENT
    • 燃烧元件
    • US20100219117A1
    • 2010-09-02
    • US12478799
    • 2009-06-05
    • Cheryl M. ReilandWalter H. Stone
    • Cheryl M. ReilandWalter H. Stone
    • B01D29/11B01D29/50B01D27/08
    • B01D36/005B01D27/08B01D27/148B01D36/006B01D2201/295B01D2201/34Y10S210/05
    • A filter element includes a cylindrical housing enclosing a ring-shaped filter media assembly. The media assembly includes inner and outer media rings, moveably supported relative to one another, to remove particulate matter and water from a fluid stream. The outer ring surrounds the inner ring and is sealed by a first seal to the housing. An end cap assembly at the upper end of the element includes an annular end cap piece attached to an upper end of the inner ring, a flat plate, and a threaded flange portion bounding the periphery of the plate. A second seal is provided between the upper end cap of the inner ring, and an upper end cap of the outer ring. The housing is secured to the media assembly by forming an open end of the housing around the flange portion.
    • 过滤元件包括包围环形过滤介质组件的圆柱形壳体。 介质组件包括相对于彼此可移动地支撑的内部和外部介质环,以从流体流中去除颗粒物质和水。 外环围绕内环,并通过第一密封件密封到壳体。 在元件上端的端盖组件包括一个安装在内圈上端的环形端盖件,一个平板,和一个限定板周边的螺纹法兰部分。 在内圈的上端盖和外圈的上端盖之间设置有第二密封件。 壳体通过围绕凸缘部分形成壳体的开口端而固定到介质组件。
    • 10. 发明授权
    • Method and apparatus for oil water separation
    • 油水分离方法和装置
    • US07635435B2
    • 2009-12-22
    • US10551520
    • 2003-04-01
    • Amine Benachenhou
    • Amine Benachenhou
    • B01D17/022B01D17/04
    • B01J20/26B01D17/0202B01D17/0208B01D17/0214B01D17/045B01J20/262Y10S210/05
    • A method and apparatus for separating immiscible liquids in a dispersion containing an aqueous liquid and at least one dispersed non-aqueous liquid by passing the dispersion through a series of absorbents, preferably polymeric. The direction of the flow through the absorbent is periodically changed. The period required before a change of the flow direction is established by the differential pressure. There is a gradual increase in the differential pressure across the absorbents which indicates a blockage due to viscous oil and/or solids. The product produced by the method and the apparatus of the invention is a polished non-aqueous phase and a polished aqueous phase both having low contaminant levels. In a preferred embodiment when solids are also present in the dispersion, a solids stream is also recovered.
    • 一种通过使分散体通过一系列吸收剂(优选聚合物)分离含有水性液体和至少一种分散的非水性液体的分散体中的不混溶液体的方法和装置。 流过吸收剂的流动方向周期性地改变。 在流动方向改变之前所需的时间是通过差压确定的。 吸收剂之间的差压逐渐增加,这表示由于粘性油和/或固体而导致的阻塞。 通过本发明的方法和设备生产的产品是抛光的非水相和抛光的水相,两者都具有低的污染物含量。 在优选的实施方案中,当固体也存在于分散体中时,也回收固体物流。