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    • 77. 发明申请
    • Life support oxygen concentrator
    • 生命支持氧气浓缩器
    • US20030196550A1
    • 2003-10-23
    • US10358411
    • 2003-02-04
    • QuestAir Technologies Inc.
    • Bowie G. KeeferChristopher McLean
    • B01D053/02
    • B01D53/0476B01D53/047B01D53/053B01D53/06B01D2253/108B01D2256/12B01D2257/504B01D2259/40003B01D2259/40005B01D2259/40052B01D2259/40069B01D2259/40075B01D2259/4533B01D2259/4541C01B13/0259C01B2210/0046Y02C10/08Y02P20/152
    • Gas separation by pressure swing adsorption (PSA) and vacuum pressure swing adsorption (VPSA), to obtain a purified product gas of the less strongly adsorbed fraction of the feed gas mixture, is performed with an apparatus having a plurality of adsorbers. The adsorbers cooperate with first and second valve means in a rotary PSA module, with the PSA cycle characterized by multiple intermediate pressure levels between the higher and lower pressures of the PSA cycle. Gas flows enter or exit the PSA module at the intermediate pressure levels as well as the higher and lower pressure levels, under substantially steady conditions of flow and pressure. The PSA module comprises a rotor containing laminated sheet adsorbers and rotating within a stator, with ported valve faces between the rotor and stator to control the timing of the flows entering or exiting the adsorbers in the rotor. Feed gas is compressed prior to entry to the first valve means. Exhaust is passed either directly or through a vacuum pump to the atmosphere.
    • 用具有多个吸附器的装置进行通过变压吸附(PSA)和真空变压吸附(VPSA)的气体分离,以获得进料气体混合物的较弱吸附级分的纯化产物气体。 吸附器在旋转PSA模块中与第一和第二阀装置配合,PSA循环的特征在于PSA循环的较高和较低压力之间的多个中间压力水平。 在基本稳定的流量和压力条件下,气体流在中间压力水平以及较高和较低压力水平下进入或离开PSA模块。 PSA模块包括含有层压片吸附器并在定子内旋转的转子,其中转子和定子之间具有带孔的阀面,以控制进入或离开转子中的吸附器的流动时间。 进料气体在进入第一阀装置之前被压缩。 排气直接或通过真空泵通入大气。
    • 79. 发明授权
    • Portable air pollution control apparatus
    • 便携式空气污染控制装置
    • US06607573B1
    • 2003-08-19
    • US08795626
    • 1997-02-06
    • Ashok ChaurushiaSteve OdabashianArnold ComproniJorge Millan
    • Ashok ChaurushiaSteve OdabashianArnold ComproniJorge Millan
    • B01D3530
    • B01D53/0415B01D46/12B01D46/30B01D50/00B01D2253/102B01D2257/708B01D2258/0258B01D2259/4541
    • An air pollution control apparatus usable for capturing airborne pollutants present in a relatively confined environment. The apparatus is a portable airborne-pollutant capturing device movable to a site of pollutant origin and having at least one airborne-pollutant collector member, a vacuum system, and a filter system. The filter system can include one filter or more than one identical or different filters chosen for enhanced filtration capabilities in relation to pollutants present. Preferably, more than one type of filter can be accommodated simultaneously to thereby capture multiple pollutants. Fugitive particulate is captured by positioning the airborne-pollutant collector member proximate the activity causing pollution, and operating the collector member simultaneously with the polluting activity to thereby cause particulate to be captured by the filter system.
    • 一种用于捕获相对受限环境中存在的空气污染物的空气污染控制装置。 该装置是可移动到污染源地的便携式空气污染物捕集装置,并具有至少一个空气污染物收集器构件,真空系统和过滤系统。 过滤系统可以包括一个过滤器或多于一个相同或不同的过滤器,用于增强与现有污染物相关的过滤能力。 优选地,可以同时容纳多于一种类型的过滤器,从而捕获多种污染物。 通过将空气污染物收集器构件置于接近造成污染的活动附近捕获逸散性颗粒,并且与污染活动同时操作收集器构件,从而使颗粒物被过滤器系统捕获。
    • 80. 发明授权
    • Microelectromechanical gas concentrator
    • 微机电气体浓缩器
    • US06517610B1
    • 2003-02-11
    • US10014072
    • 2001-11-13
    • Paul R. de la Houssaye
    • Paul R. de la Houssaye
    • B01D5306
    • B01D53/06B01D2253/106B01D2256/12B01D2259/40098B01D2259/4533B01D2259/4541
    • A microelectromechanical gas concentrator is fabricated for extracting a gaseous component from a gas mixture. The gas concentrator consists of an adsorbent member that alternatively moves between two regions on a single substrate. When the adsorbent member is in the first region, it is allowed to adsorb the gaseous component. When the adsorbent member moves to the second region, it is exposed to radiant energy, causing it to desorb the gaseous component. As the adsorbent member moves alternatively between regions, the gaseous component is adsorbed by the adsorbent member in the first region and desorbed in the second region, resulting in a pumping action that concentrates the gaseous component from one region to the other.
    • 制造微机电气体浓缩器用于从气体混合物中提取气态成分。 气体浓缩器由在单个基底上的两个区域之间交替移动的吸附剂构成。 当吸附剂构件处于第一区域时,允许吸附气态成分。 当吸附剂构件移动到第二区域时,其暴露于辐射能,使其解吸气态组分。 当吸附剂构件在区域之间交替移动时,气体组分被第一区域中的吸附剂构件吸附并在第二区域中解吸,导致将气态组分从一个区域浓缩到另一个区域的泵送作用。