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    • 14. 发明授权
    • Refuse/oil removing device and refuse/oil recovery bag
    • 垃圾/除油装置和垃圾/油回收袋
    • US07815800B2
    • 2010-10-19
    • US10579728
    • 2004-11-19
    • Kiyoshi Komatsu
    • Kiyoshi Komatsu
    • B01D36/04B01D29/27
    • B01D17/00B01D17/0211B01D17/0214B01D17/08B01D21/0003B01D21/0012B01D21/003B01D21/0039B01D21/0042B01D21/0066B01D21/02B01D21/2405B01D21/2483B01D2221/02C02F1/40E03F5/16
    • A refuse/oil removing device and a refuse/oil recovery bag are provided which can remove refuse and oil contained in drainage discharged from a restaurant in a simple manner without contact with the refuse and oil. A support base of a support unit is disposed in the interior of a grease trap at a position higher than the water level. A recovery bag is attached to the support unit and plural layers of bag portions of the recovery bag are put on the support base. The bag portions are each formed of a material which permits the adhesion of oil thereto and a large number of water passing holes are formed in each of the bag portions. Drainage is introduced inside the innermost one of the plural layers of bag portions and is passed through the bag portions, allowing refuse and oil to adhere to the bag portions. In this way, the job of replacing the recovery bag can be simplified and the amount of oil accumulated within the grease trap can be decreased.
    • 提供垃圾/除油装置和垃圾/油回收袋,其可以以简单的方式去除从餐厅排出的排水中所含的垃圾和油,而不与垃圾和油接触。 支撑单元的支撑底座设置在高于水位的位置处的油脂捕集器的内部。 将回收袋安装到支撑单元上,将回收袋的多个袋部分放置在支撑基座上。 袋部各自由允许油粘附的材料形成,并且在每个袋部中形成有大量的水通孔。 排水被引入到多层袋部分的最内层之一中,并通过袋部分,允许垃圾和油粘附到袋部分上。 以这种方式,可以简化更换回收袋的工作,并且可以减少积聚在润滑槽内的油量。
    • 16. 发明授权
    • System and method for separating a fluid stream
    • 用于分离流体流的系统和方法
    • US07611635B2
    • 2009-11-03
    • US12158189
    • 2006-12-19
    • Jill Hui Chiun ChiengFrederick Jan Van Dijk
    • Jill Hui Chiun ChiengFrederick Jan Van Dijk
    • B01D17/032
    • E21B43/34B01D17/00B01D17/0208B01D17/0214B01D17/12
    • A system (1) for separating a fluid stream (2) comprising gas, a light liquid and a heavy liquid, the system comprising a separation vessel (5) that is arranged to define a downwardly extending separation space and comprises a downwardly sloping tube (8), the separation space having an inlet (10) for the fluid stream at a first height, an outlet (20) for heavy liquid at a second height below the first height, an outlet (30) for light liquid at a third height between the first and second heights, an outlet (70) for gas above all outlets for liquid, wherein a further outlet (51, 56) for light liquid is provided at a fourth height between the first and third heights, and wherein at least the outlet at the third height is provided with a control valve (33) that is operative to open and close in dependence of the type of liquid in the pipes at that level, and a method of separating a fluid stream comprising gas, a light liquid and a heavy liquid in such a system, wherein an indication of height of an interface between heavy and light liquid in the separation vessel is obtained and the control valve at the third outlet is operated in dependence on the height of the interface.
    • 1.一种用于分离包含气体,轻液体和重液体的流体流(2)的系统(1),所述系统包括分离容器(5),所述分离容器设置成限定向下延伸的分离空间,并包括向下倾斜的管 8),所述分离空间具有用于在第一高度处的流体流的入口(10),用于在第一高度以下的第二高度处的重液体的出口(20),用于在第三高度处的轻液体的出口(30) 在第一高度和第二高度之间的用于液体的所有出口上方的用于气体的出口(70),其中用于轻液体的另外的出口(51,56)设置在第一和第三高度之间的第四高度处,并且其中至少 在第三高度处的出口设置有控制阀(33),其根据在该水平面上的管道中的液体类型而可操作地打开和关闭;以及分离包含气体,轻液体和 这种系统中的重液体,其中指示他 获得分离容器中的重液体和轻质液体之间的界面,并且根据界面的高度操作第三出口处的控制阀。
    • 18. 发明授权
    • Filter apparatus and method with centrifugal separator for removing contaminants from a fluid
    • 用于从流体中去除污染物的离心分离器的过滤装置和方法
    • US07520996B2
    • 2009-04-21
    • US11488518
    • 2006-07-18
    • Milton Charles Van Noland
    • Milton Charles Van Noland
    • B04B1/02B04B1/10B04B9/06B01D21/26B01D33/15B01D33/01C02F1/38B01D35/00
    • C10M175/0058B01D17/00B01D17/0208B01D17/0217B01D17/10B01D36/001B01D36/04B01D36/045B04B5/005F01M2001/1035
    • The filter removes volatile, particulate and water-based contaminants from a fluid, such as lubricating oil, of a different density than the contaminants. The device has a cone shaped, jet-propelled, helical-spiral wiper rotor creating centrifugal forces that separate the volatile and heavier particulate matter. Ports in a base assembly facilitate removal of the separated contaminants. A settling tank with vertical grid filter minimizes turbulence for further separation of heavier particulate matter. A volatile tank with vertical grid filter and flow restrictor minimizes turbulence to allow volatiles to rise from the fluid. A filter tank filters out remaining particulate matter from the fluid. A combination of flow restrictors and baffles minimize cross-contamination, thereby maximizing purity of oil returned to the engine. The collection tanks are easily cleaned and reused. The compact design minimizes oil volume necessary for purification. Aluminum housing and by-pass design maximize engine oil cooling to enhance viscosity maintenance.
    • 该过滤器从与污染物密度不同的流体(例如润滑油)中去除挥发性,微粒和水基污染物。 该装置具有锥形的喷射推进的螺旋形螺旋刮水器转子,产生离心力,分离挥发性和较重的颗粒物质。 基座组件中的端口有助于去除分离的污染物。 具有垂直网格过滤器的沉降池可最大限度地减少湍流,进一步分离较重的颗粒物。 具有垂直网格过滤器和流量限制器的挥发性罐体使湍流最小化,使挥发物从流体上升。 过滤罐从流体中过滤剩余的颗粒物质。 限流器和挡板的组合使交叉污染最小化,从而使返回发动机的油的纯度最大化。 收集罐容易清洗和重复使用。 紧凑型设计可最大限度地减少净化所需的油量。 铝外壳和旁路设计最大限度地发挥机油冷却,增强粘度维持。
    • 19. 发明授权
    • Separator device
    • 分离器装置
    • US07485223B2
    • 2009-02-03
    • US11578804
    • 2005-04-15
    • Antonius Chartianus Johannes EijtArie Kluit
    • Antonius Chartianus Johannes EijtArie Kluit
    • C02F1/24B01D21/02B01D17/028
    • B01D21/10B01D17/00B01D17/0205B01D17/0211B01D17/0214B01D17/12B01D21/0018B01D21/0024B01D21/0051B01D21/0084B01D21/2433B01D21/2444B01D21/245B01D21/2488B01D21/34B03D1/028B03D1/1475B03D1/1481B03D1/247C02F1/24C02F2209/42
    • The invention relates to a separator device for separating a first liquid substance from a second substance, the two substances forming a mixture. The apparatus comprises a vessel with an inlet for receiving the mixture, a first outlet for discharge of a first fraction of the mixture, a second outlet for discharge of a second fraction of the mixture and a flow element. The flow element comprises a number of parallel tubular channels defining a flow path for the mixture, the channels having an gilet end for receiving the mixture and an outlet end for discharge of the first fraction, a length direction of the channels being inclined with respect to a horizontal direction, wherein in a transverse cross section through the flow element, the channels form a two-dimensional array of closed cells, each cell defining a boundary of a flow channel, the cells being arranged in at least two rows, each cell in a first row contacting with its perimeter a cell in the second row. The device comprises a return duct from a first outlet to the inlet via a gas mixing device.
    • 本发明涉及一种用于从第二物质分离第一液体物质的分离器装置,所述两种物质形成混合物。 该装置包括具有用于接收混合物的入口的容器,用于排出混合物的第一部分的第一出口,用于排出混合物的第二部分的第二出口和流动元件。 流动元件包括限定用于混合物的流动路径的多个平行管状通道,通道具有用于接收混合物的缓冲端和用于排出第一部分的出口端,通道的长度方向相对于 水平方向,其中在通过所述流动元件的横截面中,所述通道形成闭孔的二维阵列,每个单元限定流动通道的边界,所述单元被布置在至少两排中,每个单元格 第一排与其周边接触第二排中的一个单元格。 该装置包括通过气体混合装置从第一出口返回到入口的返回管道。
    • 20. 发明申请
    • Microfluidic Device for Inducing Separations by Freezing and Associated Method
    • 用于通过冷冻和相关方法诱导分离的微流体装置
    • US20080230490A1
    • 2008-09-25
    • US11690115
    • 2007-03-22
    • Richard P. Welle
    • Richard P. Welle
    • B01D17/00B01F3/00
    • B01D17/00B01D9/004B01D9/04B01L3/502769B01L2200/0631B01L2300/0887B01L2300/1822B01L2300/1827B01L2400/0677Y10T137/2196Y10T436/25375
    • A microfluidic device is provided for inducing the separation of constituent elements from a microfluidic sample by introducing phase changes in the microfluidic sample while contained in a microfluidic channel in the device. At least a portion of the microfluidic sample is frozen to cause fractional exclusion of the constituent element from the frozen portion of the microfluidic sample. Different portions of the microfluidic sample may be frozen in different sectors and at different times in order to cause movement in a desired direction of the separated constituent element. Portions of the microfluidic sample may be frozen in a sequential order of adjacent sectors within the microfluidic channel in order to cause sequential movement of the excluded constituent element toward one portion of the microfluidic channel. The frozen portion of the microfluidic sample is then thawed, wherein the separated constituent element remains substantially separated from the thawed, purified microfluidic sample.
    • 提供了一种微流体装置,用于通过在微流体样品中引入相变而将微量流体样品中的组分元素分离,同时包含在装置的微流体通道中。 将微流体样品的至少一部分冷冻以引起构成元件从微流体样品的冷冻部分的分级排除。 微流体样品的不同部分可以在不同的扇区中被冷冻,并且在不同的时间被冷冻以引起在所分离的构成元件的期望方向上的移动。 微流体样品的部分可以以微流体通道内的相邻扇区的顺序冷冻,以便排除构成元件朝着微流体通道的一部分顺序移动。 然后将微流体样品的冷冻部分解冻,其中分离的构成元件基本上与解冻的纯化的微流体样品分离。