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    • 83. 发明申请
    • ON-CHIP SAMPLE PREPARATION FOR WHOLE BLOOD ANALYSIS
    • 用于全血分析的片上样品制备
    • US20090152215A1
    • 2009-06-18
    • US12327204
    • 2008-12-03
    • Chong H. AhnAniruddha PuntambekarAlok JainJungyoup Han
    • Chong H. AhnAniruddha PuntambekarAlok JainJungyoup Han
    • B01D45/00
    • B01D45/00B01D21/283B01L3/502746B01L3/502753B01L3/502761B01L3/502784B01L2200/0668B01L2200/146B01L2300/0816B01L2300/0861B01L2400/0487B01L2400/084B01L2400/086G01N33/491
    • A novel filter-less separation technique for separating suspended particles from a solution is disclosed. More specifically, an on-chip bioparticle separator is disclosed, which relies on the differential force exerted by application of a series of high magnitude, short duration pressure pulses on bioparticles in suspension within microchannels, resulting in separation of suspended bioparticles. The filter-less separation technique is inherently suited to μTAS (Micro Total Analysis System) since it exploits uniquely microscale phenomena to achieve separation. The on-chip bioparticle separator can be easily integrated with a disposable biochip, can be fabricated using low-cost, rapid manufacturing techniques, and can provide high performance for separation of bioparticles without the use of specialized or expensive equipment. Embodiments of the present invention address a significant challenge in the development of disposable microfluidic biochips, specifically, providing a reliable solution for separating bioparticles in a microfluidic system that may be immediately applied for a variety of microfluidic biochip applications.
    • 公开了一种用于从溶液中分离悬浮颗粒的新型无滤膜分离技术。 更具体地,公开了片上生物颗粒分离器,其依赖于通过在微通道内的悬浮液中的生物颗粒上施加一系列高幅度,短持续时间的压力脉冲而施加的差分力,导致悬浮的生物颗粒的分离。 无过滤器分离技术固有地适用于muTAS(微总体分析系统),因为它利用独特的微观现象来实现分离。 片上生物颗粒分离器可以容易地与一次性生物芯片集成,可以使用低成本,快速的制造技术制造,并且可以提供高性能用于分离生物颗粒而不使用专门的或昂贵的设备。 本发明的实施方案解决了一次性微流体生物芯片开发中的重大挑战,具体地说,为微流体系统中分离生物颗粒提供了可靠的解决方案,微流体系统可立即应用于各种微流体生物芯片应用。
    • 84. 发明授权
    • Gas-liquid impingement separators
    • 气液冲击分离器
    • US07537627B2
    • 2009-05-26
    • US11155756
    • 2005-06-17
    • Paul K. Scherrer
    • Paul K. Scherrer
    • B01D45/00
    • B01D45/08
    • A gas liquid separator adapted to be inserted into a conduit is disclosed. The gas-liquid separator includes downward sloping vanes and optionally, one or more return channels. The vanes may have an opening along the length thereof, and a bottom lip to channel accumulated liquid to the conduit wall or to sloped return channels. If the conduit is not sloped such that the captured droplets are returned to the originating vessel, sloped return channel/channels are used to return the captured droplets to the vessel from which the gas stream originated. With a central return channel, the vanes can be attached directly to the channel with the resulting assembly having a fishbone shape. When a central return channel is not used, the vanes can be attached to a central plate or spine with the resulting spine-vanes assembly again having a fishbone shape. The separation enhancers can be used in a variety of conduit configurations. Furthermore, a plurality of separation enhancers can be utilized in an exhaust gas conduit to increase the removal efficiency.
    • 公开了一种适于插入导管中的气液分离器。 气液分离器包括向下的倾斜叶片和可选的一个或多个返回通道。 叶片可以具有沿其长度的开口,以及底部唇缘,用于将积聚的液体引导到导管壁或倾斜返回通道。 如果导管没有倾斜,使得捕获的液滴返回到起始容器,则使用倾斜的返回通道/通道将捕获的液滴返回到产生气流的容器。 利用中央返回通道,叶片可以直接附接到通道,所得到的组件具有鱼骨形状。 当不使用中央返回通道时,叶片可以附接到中心板或脊柱,所得到的脊柱叶片组件再次具有鱼骨形状。 分离增强剂可用于各种导管结构。 此外,可以在排气管道中使用多个分离增强剂以提高去除效率。
    • 85. 发明授权
    • Gas-liquid separator for a fuel cell system onboard a vehicle
    • 用于车辆上的燃料电池系统的气液分离器
    • US07537626B2
    • 2009-05-26
    • US11251172
    • 2005-10-14
    • Kuri KasuyaOsamu Ichikawa
    • Kuri KasuyaOsamu Ichikawa
    • B01D45/00B01D50/00F02B25/06B01J7/00
    • H01M8/0662B01D45/06
    • A gas-liquid separator for a fuel cell system onboard a vehicle includes an upper chamber, a lower chamber, a plate for separating the upper and lower chambers, a pipe for circulating the exhaust gas and connecting holes bored in the plate. The upper chamber receives exhaust gas from the fuel cell system to separate water contained in the exhaust gas. The lower chamber has a portion for discharging the water which is separated by the upper chamber. The pipe, which is attached to the upper chamber, has fluid communication with an inside of the upper chamber. The connecting holes provide fluid communication between the upper and lower chambers. The connecting holes are positioned off a center of the plate so that the connecting holes lie apart from the pipe.
    • 用于车辆上的燃料电池系统的气液分离器包括上室,下室,用于分离上下室的板,用于使废气循环的管和在板中钻孔的连接孔。 上部室从燃料电池系统接收废气以分离废气中所含的水。 下室具有用于排出由上室隔开的水的部分。 连接到上部腔室的管道与上部腔室的内部具有流体连通。 连接孔提供上部和下部腔室之间的流体连通。 连接孔位于板的中心,使得连接孔与管道分开。
    • 86. 发明授权
    • Centrifugal separator and method for separating heavy and light matter in a substance
    • 离心分离器和物质中重物质分离方法
    • US07527587B2
    • 2009-05-05
    • US11736025
    • 2007-04-17
    • Henry J. Laughlin
    • Henry J. Laughlin
    • B04B5/10B01D21/26B01D43/00B01D45/00B04B1/00B04B1/04
    • B04B1/00B04B5/10B04B11/02
    • A centrifugal separator includes devices for light matter extraction and for heavy matter extraction. Each embodiment provides for a plurality, e.g., two or more stacked or layered chambers, and connected to a central compartment of the chambers is a rotating drive shaft. In the light matter extraction, a central conduit feeds fluid input into the lower chamber. An upper portion of the lower chamber communicates with the lower portion of a mid chamber via a port formed in a plate dividing the chambers. The upper portion of the mid chamber communicates with the lower portion of an upper chamber via a port formed in a plate dividing the chambers. The chambers can be fixably connected to one another. In the heavy matter extraction an initial feed conduit feeds fluid into the upper chamber.
    • 离心分离器包括用于轻物质提取和重物质提取的装置。 每个实施例提供多个例如两个或更多个堆叠或分层的室,并且连接到室的中央室是旋转的驱动轴。 在光质提取中,中心导管将输入的液体输入下腔室。 下室的上部通过形成在分隔室的板中的端口与中间室的下部连通。 中间室的上部通过形成在分隔室的板中的端口与上室的下部连通。 腔室可以彼此固定连接。 在重物质提取中,初始进料管将流体送入上室。
    • 89. 发明授权
    • Rotary pulse type filter dust collector
    • 旋转式过滤除尘器
    • US07404833B2
    • 2008-07-29
    • US10552839
    • 2004-05-21
    • Chang Un Lee
    • Chang Un Lee
    • B01D39/00B01D45/00B01D41/00
    • B01D46/02B01D46/0058B01D46/0069
    • The present invention discloses a rotary pulse type filter dust collector, which can maintain excellent de-dusting efficiency of a low pressure pulse type filter dust collector, reduce the number of required components in order to reduce manufacturing costs, maintenance fees, and lower defect factors to provide higher reliability. The dust collector includes: a dust collector body, a number of filter bags, a moving compressed air tank, nozzles, diaphragm valves, mechanical 3-way valves, protrusions, a reduction motor and a mechanical device for driving the compressed air tank, and an inverter controller.
    • 本发明公开了一种旋转式脉冲式过滤除尘器,能够保持低压脉冲式过滤除尘器的除尘效果优异,减少了所需部件的数量,以降低制造成本,维护费用和降低缺陷因素 提供更高的可靠性。 集尘器包括:集尘器主体,多个过滤袋,移动的压缩空气罐,喷嘴,隔膜阀,机械三通阀,突起,还原电机和用于驱动压缩空气罐的机械装置,以及 逆变器控制器。