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    • 22. 发明申请
    • APPARATUS AND METHOD FOR FILTERING LIQUIDS, PARTICULARLY ORGANIC LIQUIDS
    • 用于过滤液体,特别有机液体的装置和方法
    • US20120132595A1
    • 2012-05-31
    • US13388823
    • 2009-09-18
    • Luca Bornia
    • Luca Bornia
    • B01D29/88
    • B01D63/16B01D61/22B01D65/02B01D2311/14B01D2311/16B01D2313/18B01D2313/48B01D2315/02B01D2321/04B01D2321/30C12H1/063
    • The present invention refers to an apparatus and a method for filtering liquid products, particularly wine. The apparatus includes a filtration bell (5) provided with filtering means (6) and connected to an inflow circuit (13) and a first outlet circuit (14) of the retentate, and to a second outlet circuit (18) of the filtered liquid. The apparatus also includes:—a monitoring and control unit (21);—a first and second sensing means (22,23) suitable for detecting the value of a first pressure PT1 in the first outlet circuit (18) and of a second pressure PT2 in the second outlet circuit (18);—flow rate detection means (17) for detecting the value of a first flow rate FIT in the second outlet circuit (18); value means (15,16) arranged in the second circuit (18) downstream of the second sensing means (23). The monitoring and control unit (21) includes means to control the closure of said valve means (15,16) and to start a process of backwashing said filtering means (6).
    • 本发明涉及一种用于过滤液体产品,特别是葡萄酒的装置和方法。 该装置包括一个过滤钟(5),该过滤钟(5)设有过滤装置(6),并连接到流入回路(13)和第一出口回路(14),以及第二出口回路(18) 。 该装置还包括:监测和控制单元(21); - 适于检测第一出口回路(18)中的第一压力PT1的值和第二压力的第一和第二感测装置(22,23) PT2; - 用于检测第二出口回路(18)中的第一流量FIT的值的流量检测装置(17); 布置在第二电路(18)中的第二感测装置(23)下游的数值装置(15,16)。 监测和控制单元(21)包括控制所述阀装置(15,16)的关闭并启动反冲洗所述过滤装置(6)的过程的装置。
    • 28. 发明申请
    • Energy management system for membrane separation device
    • 膜分离装置能量管理系统
    • US20090049983A1
    • 2009-02-26
    • US11892361
    • 2007-08-22
    • John E. Thelen
    • John E. Thelen
    • B01D46/44B01D53/30
    • B01D63/02B01D53/268B01D2311/16B01D2311/246B01D2313/18B01D2313/90
    • An energy management system for a membrane separation device, including: a membrane having permeate and non-permeate portions; a membrane housing which encases said membrane; a feed fluid inlet conduit; a purge inlet conduit; a non-permeate product fluid outlet conduit; and, a purge outlet conduit, configured to carry purge fluid out of the membrane dryer; at least one purge inlet flow control valve connected to said purge inlet conduit, a sensor configured to measure the contaminant level of fluids exiting the purge outlet conduit; and, a controller receiving an output signal from the sensor and transmitting a valve control signal to the at least one purge inlet flow control valve.
    • 一种用于膜分离装置的能量管理系统,包括:具有渗透物和非渗透部分的膜; 包围所述膜的膜壳体; 进料流体入口管道; 吹扫入口管道; 非渗透产品流体出口导管; 以及净化出口导管,其构造成将清洗流体携带离开所述膜干燥器; 至少一个净化入口流量控制阀,连接到所述吹扫入口管道;传感器,被配置为测量离开吹扫出口导管的流体的污染物水平; 以及控制器,接收来自所述传感器的输出信号并将阀门控制信号发送到所述至少一个净化入口流量控制阀。
    • 29. 发明申请
    • Reduced Backwash Volume Process
    • 减少反冲洗体积过程
    • US20080257822A1
    • 2008-10-23
    • US12096279
    • 2006-12-11
    • Warren Thomas Johnson
    • Warren Thomas Johnson
    • B01D65/02
    • B01D65/02B01D61/22B01D2311/16B01D2321/04B01D2321/12B01D2321/185
    • A method of backwashing a membrane filtration module, where the module includes one or more membranes located in a feed-containing vessel. The membranes having a permeable wall which is subjected to a filtration operation wherein feed liquid containing contaminant matter is applied to one side of the membrane wall and filtrate is withdrawn from the other side of the membrane wall. The method includes the steps of suspending the filtration operation; aerating the membrane surface with gas bubbles to dislodge fouling materials therefrom; recommencing the filtration operation while suspending the flow of feed liquid to the feed-containing vessel for a predetermined period; again suspending the filtration operation; performing a liquid backwash of the membrane wall to dislodge fouling materials therefrom; removing at least some of the liquid containing the dislodged contaminant matter from the feed-containing vessel; and then recommencing the filtration operation.
    • 一种反洗膜过滤模块的方法,其中模块包括位于含进料容器中的一个或多个膜。 膜具有可渗透的壁,其进行过滤操作,其中将含有污染物质的进料液施加到膜壁的一侧,滤液从膜壁的另一侧排出。 该方法包括暂停过滤操作的步骤; 用气泡对膜表面进行充气以从其中去除污垢物质; 重新进行过滤操作,同时将进料液体流入含饲料容器预定的时间; 再次暂停过滤操作; 执行膜壁的液体反冲洗以从其中去除污垢材料; 从含饲料容器中除去含有脱落的污染物质的至少一些液体; 然后重新进行过滤操作。
    • 30. 发明授权
    • Stationary capillary electrophoresis system
    • 固定毛细管电泳系统
    • US07341652B2
    • 2008-03-11
    • US10601181
    • 2003-06-20
    • George E. Barringer, Jr.
    • George E. Barringer, Jr.
    • G01N27/447
    • G01N35/1097B01D61/14B01D61/142B01D61/16B01D61/18B01D2311/04G01N27/44704Y10T436/25375B01D2311/12B01D2311/16B01D2311/2603
    • A system and method for capillary electrophoresis are provided for analyzing a macromolecule prepared from a complex liquid mixture. In particular applications, methods and apparatus are provided for separating and analyzing a solution containing a denatured macromolecule by employing a stationary capillary electrophoresis apparatus. An apparatus for capillary electrophoresis includes an inlet chamber and a capillary electrophoresis column. One end of the column is fixed at the interior of the inlet chamber. The column has a length of at least about 20 centimeters. Also included is a liquid source adapted for automatic control. The liquid source supplies a liquid sample through an input valve into the inlet chamber so that the sample is in fluid communication with the end of the column. A method for capillary electrophoresis includes automatically supplying the liquid sample to the apparatus.
    • 提供毛细管电泳的系统和方法,用于分析由复合液体混合物制备的大分子。 特别是应用中,提供了一种使用固定式毛细管电泳装置分离和分析含有变性大分子的溶液的方法和装置。 毛细管电泳装置包括入口室和毛细管电泳柱。 塔的一端固定在入口室的内部。 该柱具有至少约20厘米的长度。 还包括适用于自动控制的液体源。 液体源通过输入阀将液体样品提供到入口室中,使得样品与柱的端部流体连通。 毛细管电泳的方法包括将液体样品自动供应给设备。