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    • 172. 发明申请
    • RESIN CONTACTOR AND CONTAINMENT SYSTEM
    • 树脂接触器和容纳系统
    • US20090277834A1
    • 2009-11-12
    • US11721430
    • 2005-12-15
    • Gregory Mark VeroColin Bruce RitchieAbigail Holmquist
    • Gregory Mark VeroColin Bruce RitchieAbigail Holmquist
    • C02F1/42
    • B01J47/006B01J20/28009B01J47/016B01J47/10B01J49/00B03C1/286C02F1/42C02F1/488
    • The invention provides a method for contacting liquid with an ion exchange resin comprising introducing liquid into a process tank containing ion exchange resin at an inlet (2) and removing liquid that has been contacted with resin from the process tank at an outlet, the outlet being located above the inlet (2), the process tank including a resin containment region (7, 9) disposed between the inlet (2) and the outlet to impede the upward flow of the resin as it becomes entrained in the liquid flowing from the inlet to the outlet, and a contactor region for promoting contact between the resin and the liquid located below the containment region (7, 9), said containment region (7, 9) containing an array of settling members through which the liquid and resin upflow and which impede the flow of the resin to a sufficient extent that it is substantially contained within or below the containment region (7, 9). Apparatus for performing this method is also provided.
    • 本发明提供了一种使液体与离子交换树脂接触的方法,包括在入口(2)将含有离子交换树脂的液体引入到处理罐中,并且在出口处除去已经与处理罐接触树脂的液体,出口是 位于入口(2)上方,处理罐包括设置在入口(2)和出口之间的树脂容纳区域(7,9),以阻止树脂在从入口流出的液体中夹带时向上流动 以及用于促进树脂和位于容纳区域(7,9)下方的液体之间的接触的接触器区域,所述容纳区域包括沉降构件​​阵列,液体和树脂向上流动和 这阻碍了树脂的流动到足以使其基本上包含在容纳区域(7,9)内或下方的流动。 还提供了用于执行该方法的设备。
    • 173. 发明申请
    • APPARATUS FOR IMPROVING FUEL EFFICIENCY AND REDUCING EMISSIONS IN FOSSIL-FUEL BURNING ENGINES
    • 提高燃油效率和减少燃油燃烧发动机排放的装置
    • US20090277157A1
    • 2009-11-12
    • US12116495
    • 2008-05-07
    • Ken MartinLin Xiao
    • Ken MartinLin Xiao
    • F01N3/00
    • B03C1/286B03C1/0332B03C2201/18B03C2201/30F02M27/045F02M37/22
    • A system for realizing improved fuel efficiency and reduced fuel emissions in an internal combustion engine. The system comprises a nano-jet filter includes a fuel channeling chamber having a set of aligned magnetic members such that the flow of fuel passes through a magnetic field created by the set of aligned magnetic members. The system further comprises a nano-jet saver, having a chamber equipped with additional sets of magnets in order to magnetize larger fuel molecules and traverse hyper magnet gradients. The purpose of using a hyper magnetic field is to change conventional fuel into “nano” fuel. Having fuel particles with a smaller diameter, both better fuel efficiency and reduced emissions are achieved as the fuel burns more completely and more cleanly. With any fossil-fuel internal-combustion engine, an operator can expect to see a reduction in emissions to the environment, fuel savings, and better performance while using an apparatus that consumes no external energy.
    • 一种用于实现燃料效率提高和减少内燃机燃料排放的系统。 该系统包括纳米喷射过滤器,其包括具有一组对准的磁性构件的燃料通道腔,使得燃料流通过由该组对准的磁性构件产生的磁场。 该系统还包括纳米喷射保护器,其具有配备有额外的磁体组的室,以便磁化较大的燃料分子并穿过超磁体梯度。 使用超磁场的目的是将常规燃料改变为“纳米”燃料。 具有较小直径的燃料颗粒,当燃料更完全和更干净地燃烧时,实现更好的燃料效率和减少的排放。 使用任何化石燃料内燃机,运营商可以期望在使用不消耗外界能量的设备的同时,减少对环境的排放,节省燃料和提高性能。
    • 176. 发明授权
    • Apparatus and method for transferring samples from a source to a target
    • 将样本从源传送到目标的装置和方法
    • US07597520B2
    • 2009-10-06
    • US11311558
    • 2005-12-19
    • Hans-Jörg ZobelGerard William LeemanAmir PoratMoshe Gombinsky
    • Hans-Jörg ZobelGerard William LeemanAmir PoratMoshe Gombinsky
    • G01N37/497
    • G01N35/10B03C1/286G01N35/04
    • A transfer unit for transferring a sample from a source vessel to a target vessel. The transfer unit includes a transfer device having a pin tip with a central bore terminating at a bottom wall, an actuating element movably disposed in the pin tip bore, an actuator rod for moving the actuating element and a compensating device connected between the actuating element and the actuator rod. The actuator rod moves the actuating element between a first position adjacent the tip bottom wall and a second position away from the bottom wall. Movement of the actuating element causes a sample in proximity to the pin tip to be alternately collected and released from the pin tip. Such movement also defines a stroke length for the actuator rod, wherein the compensating device compensates for any variations in the actuator rod stroke length. The transfer unit further includes a tip ejector for removing the disposable tips from the transfer device and a tip loading station for applying the tips to the transfer device.
    • 用于将样品从源容器转移到目标容器的转移单元。 传送单元包括具有销末端的传送装置,其中心孔终止在底壁处,可移动地设置在销尖孔中的致动元件,用于移动致动元件的致动杆和连接在致动元件和 执行器杆。 致动器杆将致动元件移动到与尖端底壁相邻的第一位置和远离底壁的第二位置之间。 致动元件的运动导致靠近销尖的样品交替地从销尖收集和释放。 这种运动还限定了致动器杆的行程长度,其中补偿装置补偿致动器杆行程长度中的任何变化。 传送单元还包括用于从传送装置移除一次性尖端的尖端喷射器和用于将尖端施加到传送装置的尖端装载站。
    • 178. 发明授权
    • Filter device
    • 过滤装置
    • US07504032B2
    • 2009-03-17
    • US11812847
    • 2007-06-22
    • Minoru Tashiro
    • Minoru Tashiro
    • B03C1/02
    • B01D35/06B03C1/032B03C1/286B03C2201/18
    • A filter device has a filter tank into which a contaminated fluid is introduced, a magnetic ball filter medium using a large number of metal balls, magnets, and lift rods. The magnetic ball filter medium is formed of an aggregate of a large number of spherical metal balls of a magnetic material and is held in a filter medium storage portion in a manner such that the metal balls are movable relatively to one another. The magnets are movable between a first position and a second position. When in the first position, the magnets apply a magnetic field to the metal balls, thereby causing the metal balls magnetically to attract one another and so that the metal balls are fixed to one another. When in the second position, the magnetic attraction between the metal balls is canceled so that the metal balls are movable.
    • 过滤装置具有被引入污染流体的过滤罐,使用大量金属球,磁铁和提升杆的磁球过滤介质。 磁球过滤器介质由大量的磁性材料的球形金属球的聚集体形成,并且以使得金属球相对于彼此移动的方式被保持在过滤介质存储部中。 磁体可在第一位置和第二位置之间移动。 当处于第一位置时,磁体对金属球施加磁场,从而使金属球磁力相互吸引,使得金属球彼此固定。 当处于第二位置时,金属球之间的磁吸引力被消除,使得金属球是可移动的。
    • 180. 发明申请
    • Liquid Exchange Method, Ingredient Extraction Method Using the Same, Composite Container and Autoanalyzer
    • 液体交换方法,使用它的成分萃取方法,复合容器和自动分析仪
    • US20080277348A1
    • 2008-11-13
    • US11886188
    • 2006-05-22
    • Yuji Izumizawa
    • Yuji Izumizawa
    • B03C1/02G01N33/20
    • B03C1/286B01L3/502B01L2200/0647B01L2300/0803B01L2300/0809B01L2300/087B01L2400/043B03C1/284B03C2201/18G01N33/54333G01N35/0098
    • A liquid exchange method of exchanging liquids present around a magnetic substance is provided. The method serves to prevent a remaining liquid from transferring to a next step and a loss of the magnetic substance. Even when the liquid exchange method is applied to an autoanalyzer, the device structure will not be complicated. A vessel 11 in which a liquid 16 containing a magnetic substance 15, a vessel 12 containing a liquid 17, a magnetic substance move-mediating member 13 and also a magnet 18 are prepared. The magnet 18 is disposed at the exterior of the vessel 11, and the magnet 18 is moved to move the magnetic substance 15 on the inner wall face of the vessel 11 in order to take out the magnetic substance 15 from the magnetic substance containing liquid 16, to move the magnetic substance 15 from the inner wall face of the vessel 11 to the surface of the magnetic substance move-mediating member 13, and to move to the inner wall face of the other vessel 12 via the magnetic substance move-mediating member 13 so as to introduce the magnetic substance 15 into the liquid 17 in the vessel 12, thereby exchanging the liquids present around the magnetic substance 15.
    • 提供了一种交换存在于磁性物质周围的液体的液体交换方法。 该方法用于防止剩余液体转移到下一步骤和磁性物质的损失。 即使将液体交换方法应用于自动分析仪,装置结构也不复杂。 制备容器11,其中容纳有磁性物质15的液体16,容纳液体17的容器12,磁性物质移动介质构件13和磁体18。 磁体18设置在容器11的外部,磁体18被移动以将磁性物质15移动到容器11的内壁面上,以便从含磁性物质的液体16中取出磁性物质15 将磁性物质15从容器11的内壁面移动到磁性物质移动介质构件13的表面,并且经由磁性物质移动介质构件移动到另一容器12的内壁面 以便将磁性物质15引入容器12中的液体17中,从而交换存在于磁性物质15周围的液体。