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    • 4. 发明申请
    • APPARATUS FOR NITROGEN OXIDES REMOVAL BY OXIDATION WITH OZONE AND SCRUBBING OR ABSORBING THE REACTION PRODUCTS
    • 通过与臭氧氧化和擦洗或吸收反应产物来除去氮氧化物的装置
    • WO2017103554A1
    • 2017-06-22
    • PCT/GB2016/000216
    • 2016-12-13
    • FLUID TECHNOLOGIES (ENVIRONMENTAL) LIMITEDDAVIS, Howard PaulMISSIONS, David William
    • DAVIS, Howard PaulMISSIONS, David William
    • B01D53/56B01D53/75B01D53/79B01D47/10
    • B01D53/56B01D47/06B01D47/10B01D53/75B01D53/79B01D2247/04B01D2247/105B01D2251/104B01D2252/103B01D2257/402B01D2257/404B01D2258/012B01D2259/122B01D2259/4566Y02C20/10
    • The present invention provides an apparatus for the treatment of exhaust gas from diesel engine or other combustion type processes, the apparatus comprising liquid and Ozone gas injection means (2) and (3) respectively, for delivering the liquid and Ozone gas into a pressurised exhaust gas stream pipe (1) when the diesel engine or other type internal combustion processes are in use. The liquid and the Ozone gas commingle as the liquid is reduced to a spray of very fine droplets in order to capture sub micron particulate materials before entering a shortened reaction/contacting chamber (4) where the contents undergo a phase change before exiting and entering a gas liquid separator (5) where the liquid droplets are separated from the treated particulate materials, which are subjected to a scrubbing regime in a downstream scrubber (11) before exiting the apparatus through an exit pipe (7). When in use, the apparatus uses the diesel engine or other combustion type process pressure to create high velocities and Reynolds numbers in the shortened reaction/contacting chamber (4) in which NOx is rapidly mixed and reacted with the injected Ozone gas and converted through to N 2 O 5 and wherein the sub micron particulate materials, with condensed hydrocarbons, are simultaneously wetted and efficiently captured by the injected and finely sheared liquid droplets.
    • 本发明提供了一种用于处理来自柴油发动机或其他燃烧型过程的废气的设备,所述设备分别包括液体和臭氧气体注入装置(2)和(3),用于输送 液体和臭氧气体在柴油机或其它类型的内燃过程中使用时进入加压废气流管(1)。 液体和臭氧气体在液体被还原成非常细小液滴的喷雾时混合,以便在进入缩短的反应/接触室(4)之前捕获亚微米颗粒材料,其中内容物在离开和进入之前经历相变 气液分离器(5),其中液滴与经处理的颗粒材料分离,在经过出口管(7)离开设备之前,处理后的颗粒材料在下游洗涤器(11)中经受洗涤方案。 当使用时,该设备使用柴油机或其他燃烧型过程压力在缩​​短的反应/接触室(4)中产生高速度和雷诺数,其中NOx被快速混合并与注入的臭氧气体反应并转化成 并且其中具有凝聚烃的亚微米颗粒材料同时被润湿并且被注入的和精细剪切的液滴有效地捕获。
    • 7. 发明申请
    • SYSTEM UND VERFAHREN ZUR AUFBEREITUNG EINER WASCHFLÜSSIGKEIT
    • 系统和方法治疗洗涤液
    • WO2015185136A1
    • 2015-12-10
    • PCT/EP2014/061638
    • 2014-06-04
    • DR.-ING. K. BUSCH GMBH
    • REDMANN, Mark
    • B01D53/14C02F1/38
    • B01D53/1425B01D53/1487B01D2252/103B01D2252/2023B01D2252/2026C02F1/38C02F2103/18
    • Bei einem System und einem Verfahren zur Aufbereitung einer Waschflüssigkeit aus einem Wäscher für eine Kunststoffverarbeitungsanlage wird die Waschflüssigkeit aus einem Waschtank (2) in eine Zentrifugeneinheit (11) durch einen ersten Leitungsabschnitt (9) vom Waschtank (2) zur Zentrifugeneinheit (11) geleitet, wobei in dem Waschtank (2) ein Betriebsdruck p 0 anliegt. Beim Überleiten wird der Druck in der Waschflüssigkeit auf einen Druck p1, erhöht, der in der Zentrifugeneinheit (11) anliegt und höher ist als der Betriebsdruck p 0 . Mittels der Zentrifugeneinheit (11) werden Verunreinigungen aus der Waschflüssigkeit abgeschieden und die Waschflüssigkeit wird durch in einen zweiten Leitungsabschnitt (10) von der Zentrifugeneinheit (11) zum Waschtank (2) zurückgeleitet.
    • 在系统中且用于制备洗涤液体从洗涤器用于塑料加工设备的方法,从清洗槽(2)到离心单元(11)通过从所述清洗槽(2)到离心机单元的第一线部分(9)的清洗液(11)被传递, 其中,在所述洗涤桶(2)的操作压力P0是存在的。 一旦通过压力在洗涤液中的压力P1增加,这掌握在离心机组件(11)和比所述工作压力P0高。 通过离心单元(11)的装置被从清洗液体沉积的杂质和洗涤液在离心机组件(11)到(2)返回洗涤槽的第二线部分(10)承载。
    • 9. 发明申请
    • METHODS FOR THE CAPTURE AND RELEASE OF ACID GASES
    • 酸性气体的捕获和释放方法
    • WO2015092427A3
    • 2015-08-13
    • PCT/GB2014053786
    • 2014-12-19
    • CAPTURE LTD C
    • RAYNER CHRISTOPHER MARKBARNES DOUGLAS CAHALANEJAKAB GERGELYSCHOOLDERMAN CASPAR
    • B01D53/14B01D53/48B01D53/62B01D53/96
    • B01D53/1425B01D53/1456B01D53/1475B01D53/1493B01D53/48B01D53/62B01D53/96B01D2251/30B01D2251/302B01D2251/304B01D2251/306B01D2251/40B01D2251/80B01D2252/103B01D2252/20B01D2252/202B01D2252/2025B01D2252/2041B01D2252/20447B01D2252/20452B01D2252/20484B01D2252/20489B01D2252/2056B01D2252/504B01D2257/30B01D2257/504C10L3/104C10L2290/541Y02C10/04Y02C10/06Y02C20/20
    • In one aspect, the invention provides a method for the capture of at least one acid gas in a composition, the release of said gas from said composition, and the subsequent regeneration of said composition for re-use, said method comprising performing, in order, the steps of: (a) capturing the at least one acid gas by contacting said at least one gas with a capture composition comprising at least one salt of a carboxylic acid and at least one water-miscible non-aqueous solvent; (b) releasing said at least one acid gas by adding at least one protic solvent or agent to said composition; and (c) regenerating the capture composition by partial or complete removal of said added protic solvent or agent from said composition. Optionally, said capture composition comprising at least one salt of a carboxylic acid and at least one water-miscible non-aqueous solvent additionally comprises water or another protic solvent. In another aspect, the invention envisages a composition which additionally comprises at least one protic solvent or agent and release of the at least one acid gas is achieved solely by subjecting the composition to the application of heat or stripping with a stream of air. The method is typically applied to the capture and subsequent release of carbon dioxide, and offers a convenient and simple process which uses inexpensive consumables and offers significant advantages over the methods of the prior art.
    • 在一个方面,本发明提供了一种用于捕获组合物中的至少一种酸性气体,从所述组合物释放所述气体以及随后再生所述组合物以供再利用的方法,所述方法包括按顺序 步骤:(a)通过使所述至少一种气体与包含至少一种羧酸盐和至少一种水混溶性非水溶剂的捕获组合物接触来捕获所述至少一种酸性气体; (b)通过向所述组合物中加入至少一种质子溶剂或试剂来释放所述至少一种酸性气体; 和(c)通过从所述组合物中部分或完全除去所述添加的质子性溶剂或试剂来再生捕获组合物。 任选地,包含至少一种羧酸盐和至少一种与水可混溶的非水溶剂的所述捕获组合物另外包含水或另一种质子溶剂。 在另一方面,本发明设想了另外包含至少一种质子溶剂或试剂的组合物,并且仅通过使组合物施加热或用空气流汽提来实现至少一种酸性气体的释放。 该方法通常用于捕获和随后释放二氧化碳,并且提供了使用廉价的消耗品的方便和简单的方法,并且与现有技术的方法相比具有显着的优点。