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    • 113. 发明授权
    • System for removing unwanted contaminates from gases
    • 从气体中除去不需要的污染物的系统
    • US08337604B1
    • 2012-12-25
    • US13191815
    • 2011-07-27
    • Jefferey St. AmantKenneth R. MathesonKeith Nathan
    • Jefferey St. AmantKenneth R. MathesonKeith Nathan
    • B01D53/14B01D47/02B01D47/00B01D47/14F02M17/28F02M29/04C10J1/10F24F3/14
    • B01D53/78B01D53/18B01D2259/124
    • A system for removing unwanted contaminates from gases using a scrubber, which comprises a housing, a reaction chamber having a liquid level, an inlet connected to a source containing gases to be scrubbed with a contamination concentration greater than zero ppb to saturation. A gas exit port connected to the housing is used for evacuating scrubbed gas and a sintered permeable membrane is disposed across the reaction chamber, which provides a reaction zone in the plurality of pores when gases to be scrubbed are introduced to the membrane on a first side while the membrane is immersed in the lean liquid; and a cleaned gas on a second side wherein the clean gas initially has a drop in contamination concentration of at least 99 percent and gradually decreasing to 70 percent as additional gases to be scrubbed are introduced to the plurality of pores without replacing the lean liquid.
    • 一种用于使用洗涤器从气体中除去不想要的污染物的系统,该洗涤器包括壳体,具有液位的反应室,连接到待污染浓度大于零ppb至待饱和的待洗涤气体的源的入口至饱和。 连接到壳体的气体出口用于排空洗涤气体,并且烧结的可渗透膜设置在反应室两侧,当在待洗涤的气体在第一侧被引入到膜时,该反应区提供多个孔中的反应区 同时将膜浸入稀液中; 以及在第二侧上清洁的气体,其中清洁气体最初具有至少99%的污染浓度下降并逐渐降低至70%,因为待洗涤的附加气体被引入到多个孔中而不更换贫液体。
    • 115. 发明申请
    • Impregnator
    • 浸渍机
    • US20100133708A1
    • 2010-06-03
    • US11989688
    • 2007-03-28
    • Georg Fischer
    • Georg Fischer
    • F02M17/28F16K21/00B67D1/04B01F3/04
    • B01F3/0446B01F3/04787B01F5/0451B01F5/0691B01F15/0433Y10T137/7837
    • An impregnator for mixing a nonaerated or only slightly aerated liquid (F) with gas (G), in particular for mixing a noneffervescent or only slightly effervescent beer precursor product, or a beer precursor product containing CO2, with CO2, includes a mixing cell, in particular tubular, which except for an incoming liquid inlet, an incoming gas inlet, and an outlet, is partitioned off from the surrounding, and at least one Impregnator body is disposed in the mixing cell in such a way that the flow through the mixing cell of the liquid (F) and gas (G) must necessarily take place through the impregnator body. Disposed in the mixing cell is at least one impregnator body, which includes a porous solid body, namely of a foam material, a sponge, a follow fiber module, or a sintered material.
    • 将用于将非沸腾或仅稍微充气的液体(F)与气体(G)混合的浸渍器,特别是用于混合无泡泡或仅微泡泡沫啤酒前体产物或含有CO 2的啤酒前体产物与CO 2的混合物, 特别是管道,除了进入的液体入口,进入的气体入口和出口,与周围分隔开,并且至少一个浸渍体被设置在混合室中,使得流过混合物 液体(F)和气体(G)的电池必须通过浸渍器体发生。 在混合室中设置有至少一个浸渍器体,其包括多孔固体,即泡沫材料,海绵,纤维模块或烧结材料。
    • 116. 发明申请
    • Contacting Systems and Methods and Uses Thereof
    • 联系系统及其方法和用途
    • US20080095681A1
    • 2008-04-24
    • US11791909
    • 2005-11-29
    • Donald KoenigSantosh Limaye
    • Donald KoenigSantosh Limaye
    • B01J35/04B01D39/00F02M17/28
    • B01D53/8671B01D1/305B01D19/0052B01D53/229B01D2257/104B01F5/0476
    • The present invention provides systems and methods for facilitating contact between a liquid and a fluid. Such systems and methods may allow efficient removal of components from the liquid without using undesirable reducing agents. In this regard, the disclosed embodiments provide for the purification of a liquid by passing the liquid and a fluid through a porous medium. The porous medium facilitates mixing of the liquid and the fluid. A partial pressure differential of the component between the liquid and the fluid facilitates the transfer of the component from the liquid to the fluid in the mixed liquid and fluid. One embodiment of the invention relates to a method of purifying a liquid. The method includes passing a liquid, such as a fuel, and a fluid, such as a non-reactive gas, through a porous medium, the liquid containing a component, such as oxygen gas, therein. The passing causes mixing of the liquid and the fluid and transfer of at least some of the component from the liquid to the fluid. The method also includes separating the liquid and the fluid, the separated fluid including at least some of the component. In addition, the present invention provides systems and methods for catalytically interacting one or more reactants and uses thereof, such as removing contaminants, or components, from or adding supplements to liquids. The contaminants may be undesirable components to be removed from a liquid, and supplements may be desired component or components to be added to the liquid, for example, each of which is referred to herein as “component”. The method for the catalytic conversion of a plurality of reactants to produce one or more products therefrom includes passing the plurality of reactants through a catalytically active porous medium, the passing causing mixing of the plurality of reactants and chemical conversion of one or more of the reactants, thereby producing one or more products therefrom.
    • 本发明提供用于促进液体和流体之间的接触的系统和方法。 这样的系统和方法可以允许有效地从液体中除去组分而不使用不需要的还原剂。 在这方面,所公开的实施例通过使液体和流体通过多孔介质来提供液体的净化。 多孔介质促进液体和流体的混合。 液体和流体之间的部件的分压有助于将组分从液体转移到混合液体和流体中的流体。 本发明的一个实施方案涉及一种纯化液体的方法。 该方法包括使诸如燃料的液体和诸如非反应性气体的流体通过多孔介质通入,其中含有诸如氧气的组分的液体。 通过导致液体和流体的混合并且将至少部分组分从液体转移到流体。 该方法还包括分离液体和流体,分离的流体包括至少部分组分。 此外,本发明提供用于催化相互作用一种或多种反应物及其用途的系统和方法,例如从液体中除去污染物或组分,或添加补充剂。 污染物可能是从液体中除去的不期望的组分,并且补充剂可以是待添加到液体中的所需组分或组分,例如其中每一种在本文中称为“组分”。 用于催化转化多种反应物以产生一种或多种产物的方法包括使多种反应物通过催化活性多孔介质,通过引起多种反应物的混合和一种或多种反应物的化学转化 从而从其产生一种或多种产品。
    • 118. 发明申请
    • Environmentally controlled enclosure for musical instruments
    • 用于乐器的环境控制外壳
    • US20070023940A1
    • 2007-02-01
    • US11450511
    • 2006-06-10
    • Charles Siess
    • Charles Siess
    • A24F25/00F02M17/28
    • G05D22/02
    • An environmentally controlled enclosure for a musical instrument that continuously monitors and increases and decreases humidity levels within the enclosure as needed to maintain a humidity level selected for the purpose of preserving the musical instrument stored therein. The enclosure is particularly useful in protecting and preserving musical instruments having one or more component parts made of wood, which is particularly sensitive to abrupt changes in humidity and to exposure to humidity extremes. The enclosure is provided with a sensor for monitoring humidity levels that is operably connected to a control unit for controlling the equipment for increasing and decreasing the humidity within the enclosure.
    • 一种用于乐器的环境受控的外壳,其可以根据需要连续地监视和降低外壳内的湿度水平,以保持为保存存储在其中的乐器的目的而选择的湿度水平。 外壳特别适用于保护和保存具有木材制成的一个或多个部件的乐器,该组件对湿度的突然变化和暴露于极端湿度特别敏感。 外壳设置有用于监测湿度水平的传感器,其可操作地连接到控制单元,用于控制设备以增加和减少外壳内的湿度。
    • 120. 发明授权
    • Carburettor metering systems
    • 化油器计量系统
    • US5673672A
    • 1997-10-07
    • US707412
    • 1996-09-04
    • John R. C. Pedersen
    • John R. C. Pedersen
    • F02M17/28F02B1/04F02B61/04F02B75/02F02B75/16F02M17/20F02M17/26F02M25/022F02M33/00F02M25/04
    • F02B61/045F02B75/16F02M17/20F02M17/26F02M33/00F02B1/04F02B2075/027
    • A carburettor metering system comprises a fuel evaporator 113 consisting of porous parallel plates 114 with their lower portions immersed in fuel 121, fuel metering means 122 for supplying fuel to the evaporator 113, and a laminar flow air restrictor 128 comprising a series of parallel plates 127 separated by spacers and defining narrow gaps between the plates 127. Such an arrangement enables a substantially constant air/fuel mixture strength to be obtained over a wide range of air flow rates in single cylinder engines. Furthermore the supply of mixture to the engine by way of an exit tube 126 may be controlled by a valve member 132 coupled to the engine governor so that the rate of flow of mixture varies in dependence on the load, and additionally so as to change the system between two modes of carburettor operation, namely lean operation, which is provided up to about three quarters load, and rich operation in which additional fuel is supplied to the evaporator 113.
    • 化油器计量系统包括由多孔平行板114组成的燃料蒸发器113,其下部浸在燃料121中,用于向蒸发器113供应燃料的燃料计量装置122以及包括一系列平行板127的层流空气限制器128 通过间隔件隔开并限定板127之间的窄间隙。这种布置使得能够在单缸发动机的宽范围的空气流速下获得基本恒定的空气/燃料混合物强度。 此外,通过出口管126向发动机提供混合物可以通过联接到发动机调速器的阀构件132来控制,使得混合物的流速根据负载而变化,并且另外改变 化油器操作的两种模式之间的系统,即提供高达约四分之三负载的稀薄操作,以及向蒸发器113供应附加燃料的丰富操作。