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    • 101. 发明申请
    • METHOD AND DEVICE FOR ENRICHING A LIQUID WITH OXYGEN
    • 用于增加含氧的液体的方法和装置
    • US20140291258A1
    • 2014-10-02
    • US14114263
    • 2012-04-27
    • Uwe Wuerdig
    • Uwe Wuerdig
    • C02F1/74
    • C02F1/74B01F3/04503B01F3/04985B01F3/2223B01F5/0421B01F5/043B01F2003/04872C02F1/20C02F1/68C02F1/727C02F3/1294C02F2101/203C02F2103/06C02F2301/046F04F5/04F04F5/467Y02W10/15
    • The invention relates to a solution for enriching a liquid with oxygen. For this purpose, oxygen from the ambient air is introduced into the liquid by means of an injector and is partially dissolved in it. The liquid which leaves the injector, and which is laden with dissolved and undissolved gas components of the air, is then introduced into at least one degassing unit (2), which is connected downstream to the injector, for the removal of undissolved gas components that form bubbles in the liquid. According to the invention, the injector involves a multiple injector having at least two injector chambers (11, 12, 13, 14). In the degassing unit (2), undissolved oxygen is first separated from the liquid through an intense vortexing of the liquid, and then is once again introduced into the liquid in an injector chamber (13, 14), by aspirating it out as part of a gas-liquid mixture via a return line (18, 18′) of a multiple injector (1), this line connecting the at least one degassing unit (2) to an intake port (6′, 6″) of the related injector chamber (13, 14). The undissolved, difficultly soluble gas components of the air, i.e., undissolved nitrogen in particular, are discharged via a gas discharge valve of the degassing unit (2).
    • 本发明涉及用氧浓缩液体的溶液。 为此,通过注射器将来自环境空气的氧气引入液体中并部分地溶解在其中。 离开注射器并且充满溶解和未溶解的空气的气体组分的液体然后被引入至少一个与喷射器下游连接的脱气单元(2)中,以除去未溶解的气体组分, 在液体中形成气泡。 根据本发明,喷射器包括具有至少两个喷射室(11,12,13,14)的多喷射器。 在脱气单元(2)中,首先通过强烈的液体涡流将未溶解的氧气与液体分离,然后在喷射器室(13,14)中再次引入液体中,通过将其作为 经由多个喷射器(1)的返回管线(18,18')的气液混合物,该线将至少一个脱气单元(2)连接到相关喷射器(1)的进气口(6',6“) 室(13,14)。 特别是未溶解的气体成分,即未溶解的氮气,经脱气装置(2)的排气阀排出。
    • 102. 发明申请
    • JET PUMP APPARATUS
    • 喷射泵装置
    • US20130343919A1
    • 2013-12-26
    • US13919770
    • 2013-06-17
    • Bernard Francis SAMPSONRobert John HARVEY
    • Bernard Francis SAMPSONRobert John HARVEY
    • F04F5/18
    • F04F5/18B01F3/02B01F5/0418B01F5/0421B01F5/0428B64D13/00F04F5/466
    • A jet pump apparatus for mixing a higher pressure gas and a lower pressure gas, includes an inlet section, an outlet section, a diffuser section and a mixing section. Inlet section includes a higher pressure inlet and a lower pressure inlet. Mixing section includes a plurality of separated mixing chambers. The diffuser section includes diffusers for receiving mixed gases from the mixing chambers. The outlet section receives mixed gases from the diffuser section and conveys those gases to an outlet. The inlet section includes a higher pressure inlet which receives higher pressure gas, and a lower pressure gas inlet which receives lower pressure gas. Each of the mixing chambers has a primary nozzle for introducing primarily higher pressure gas from to a respective mixing chamber, and a secondary inlet for introducing primarily lower pressure gas to each of the mixing chambers.
    • 用于混合高压气体和低压气体的喷射泵装置包括入口部分,出口部分,扩散部分和混合部分。 入口部分包括较高压力入口和较低压力入口。 混合部分包括多个分离的混合室。 扩散器部分包括用于从混合室接收混合气体的扩散器。 出口部分接收来自扩散器部分的混合气体并将这些气体输送到出口。 入口部分包括接收较高压气体的较高压力入口和接收较低压气体的低压气体入口。 每个混合室具有用于将主要较高压力的气体引入相应混合室的主喷嘴和用于将主要较低压气体引入每个混合室的次级入口。
    • 103. 发明授权
    • Ballast water treatment equipment, a ballast water detoxifying treatment system using the same, and a method for treating the ballast water
    • 压载水处理设备,使用该镇流器的压载水解毒处理系统,以及处理压载水的方法
    • US08557122B2
    • 2013-10-15
    • US12677032
    • 2010-03-05
    • Akihiro KijimaYasuaki KohamaMasae SuzukiIkuo ChibaKouji OnoderaKeiki KanoKouichirou KannoTakayuki ItoYoshinobu YashimaToshihiko Abe
    • Akihiro KijimaYasuaki KohamaMasae SuzukiIkuo ChibaKouji OnoderaKeiki KanoKouichirou KannoTakayuki ItoYoshinobu YashimaToshihiko Abe
    • C02F1/76B01F15/00
    • B01F3/0446B01F5/0068B01F5/0421B01F13/0001B01F13/0003C02F1/006C02F1/4674C02F1/50C02F1/76C02F2103/008C02F2301/024C02F2301/026C02F2301/066C02F2303/18
    • The present invention provides ballast water treatment equipment which can decompose fungicide included in ballast water and reduce the amount of use of fungicide adsorbing material by passing through the ballast water.The ballast water treatment equipment for supplying ballast water to a ballast tank through a fungicide adding device, comprises: a shear flow generator put in an intake pipe from an intake opening to the ballast tank, and receiving ballast water from a high pressure pump; and a swirl flow generator connected to downstream of the swirl flow generator with a connecting pipe; wherein the shear flow generator has one or more venturi tubes with recesses arranged in parallel; each the venturi tube with recess comprises an inlet side cross-sectional area reducing part gradually decreasing sectional area along a flow direction; an outlet side cross-sectional area enlarging part put in downstream of the inlet side cross-sectional area reducing part, and increasing cross-sectional area along the flow direction; a throat put between the inlet side cross-sectional area reducing part and the outlet side cross-sectional area enlarging part; and a shear flow generating recess opening to the throat; wherein the swirl flow generator has a cylinder being aslant connected the connecting pipe of the shear flow generator to its outer lateral surface; and a diffuser pipe having an inner circumference surface increasing cross-sectional area along the flow direction and connected to the fungicide adding device through an intake pipe.
    • 本发明提供了能够分解压载水中包含的杀真菌剂并通过压载水减少杀菌剂吸附材料的使用量的压载水处理设备。 压载水处理设备,用于通过杀真菌剂添加装置向压载舱提供压载水,该压载水处理设备包括:剪切流发生器,其从入口开口至压载舱放入进气管,并从高压泵接收压载水; 以及旋流产生器,其连接到具有连接管的涡流发生器的下游; 其中所述剪切流发生器具有一个或多个文丘里管,所述文丘里管具有平行布置的凹部; 每个具有凹槽的文丘里管包括沿流动方向逐渐减小截面积的入口侧横截面积减小部分; 位于入口侧截面减小部的下游侧的出口侧截面积扩大部,沿着流动方向增大截面积; 入口侧截面积减少部和出口侧截面积扩大部之间的喉部; 以及向喉部开口的剪切流产生凹部; 其中所述涡流发生器具有将所述剪切流发生器的连接管与所述剪切流发生器的连接管连接到其外侧表面的气缸; 以及扩散管,其具有沿着流动方向的内周表面增加的横截面积并通过进气管连接到杀真菌剂添加装置。
    • 104. 发明授权
    • Device for a reactor and method for distributing a multi-phase mixture in a reactor
    • 用于反应器的装置和在反应器中分配多相混合物的方法
    • US07820120B2
    • 2010-10-26
    • US12002769
    • 2007-12-19
    • Abdenour Kemoun
    • Abdenour Kemoun
    • B01J19/00
    • B01F3/0446B01F5/0421B01F5/0428B01J4/002B01J19/246
    • An up-flow reactor includes a reaction chamber, and a distributor device disposed in the reaction chamber for distributing a multi-phase mixture therein. The distributor device includes a first pipe adapted for conducting a gas phase, and including first discharge ports, a second pipe adapted for conducting a slurry or a liquid phase, and including second discharge ports, and a plurality of nozzles. Each nozzle communicates a pair of the first and second discharge ports with a venturi outlet of the nozzle, such that pressurized gas phase from the first discharge port passing through the venturi outlet creates a negative pressure for drawing-in the slurry or the liquid phase to be mixed with the gas phase in the venturi outlet.
    • 上流式反应器包括反应室和设置在反应室中用于在其中分配多相混合物的分配器装置。 分配器装置包括适于导入气相的第一管,包括第一排出口,适于导入浆液或液相的第二管,以及包括第二排出口和多个喷嘴。 每个喷嘴将一对第一和第二排出口与喷嘴的文氏管出口连通,使得通过文氏管出口的来自第一排出口的加压气相产生用于将浆料或液相吸入的负压 与文氏管出口中的气相混合。
    • 105. 发明申请
    • Micro ejector static mixer for combining and homogenizing fluids
    • 用于组合和均质流体的微型喷射器静态混合器
    • US20070160890A1
    • 2007-07-12
    • US11327869
    • 2006-01-09
    • Bernhard Fischer
    • Bernhard Fischer
    • H01M8/04H01M8/06B01F5/06
    • H01M8/04097B01F5/0421B01F5/0428B01F5/0682B01F5/0688H01M8/0625H01M8/0662H01M2008/1293
    • A static mixer including first, second, and third chambers arranged in flow sequence. Nozzles extend from the first chamber through the second chamber to matching orifices in a wall between the second and third chambers. A first fluid to be is forced through the nozzles, and a second fluid is entered into the second chamber. As the first fluid exits the nozzles, a Bernoulli aspiration effect is created at the nozzle outlet, entraining second fluid from the second chamber. The fluids are turbulently mixed, providing a homogeneous fluid mixture in the third chamber. Fluid pressure in the second chamber may be less than the pressure in either the first or third chambers. The mixer is especially useful in a solid oxide fuel cell system. A plurality of small individual Bernoulli aspirators may be packaged in a small mixer housing, providing excellent mixing with little pressure drop through the apparatus.
    • 一种静态混合器,其包括以顺序排列的第一,第二和第三室。 喷嘴从第一室通过第二室延伸到第二和第三室之间的壁中的匹配孔。 被迫的第一流体被迫通过喷嘴,并且第二流体进入第二室。 当第一流体离开喷嘴时,在喷嘴出口处产生伯努利抽吸效应,从第二腔室夹带第二流体。 液体被湍流混合,在第三室中提供均匀的流体混合物。 第二室中的流体压力可以小于第一或第三室中的压力。 混合器在固体氧化物燃料电池系统中特别有用。 多个小型单个伯努利抽吸器可以包装在小型混合器壳体中,通过该装置提供极好的混合,几乎没有压降。