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    • 4. 发明申请
    • Rotating surfaces for SDR
    • 旋转表面SDR
    • US20110309533A1
    • 2011-12-22
    • US13144341
    • 2009-12-11
    • Florian LiesenerZhizhong CaiJochen MezgerSilke FlakusSimone KlapdohrBurkhard WaltherHelmut MackTobias Austermann
    • Florian LiesenerZhizhong CaiJochen MezgerSilke FlakusSimone KlapdohrBurkhard WaltherHelmut MackTobias Austermann
    • C07G99/00B01J19/00
    • B01J19/02B01J19/0013B01J19/0073B01J19/1887B01J2219/00085B01J2219/00166B01J2219/00189
    • The proposed spinning disc reactor comprises substantially a horizontally rotatable, disc-like and thermostatable support element which has an outer reaction surface, feed means for feeding at least one reactant onto the reaction surface and internal structures for thermostating the reaction surface. In addition, it contains at least one separation apparatus for collecting and removing the reaction product from the reaction surface. The support element is characterized in particular in that it consists of two components a) and b) arranged horizontally one on top of the other and having substantially identical surface measures. These two components are connected to one another in an interlocking manner and tightly during the operating time and the lower component a) has, on its top facing the inner region of the support element, at least one substantially uninterrupted groove milled in over an extensive area and intended for receiving, conducting and discharging a heat-transfer fluid. In addition, it has at least two bores for feeding and discharging the heat-transfer fluid, at least one profiled seal encircling the outer surface region being arranged between the component a) and the component b). The two components a) and b) as a whole are reversibly connected to one another. As a result of such specific features, a simply designed reactor which is advantageous with respect to maintenance, is versatile and permits targeted control of the chemical reaction on its rotating surface is present.
    • 所提出的旋转圆盘反应器基本上包括具有外部反应表面的基本上水平可旋转的盘状和可热膨胀的支撑元件,用于将至少一种反应物进料到反应表面上的进料装置和用于恒温反应表面的内部结构。 此外,它还含有至少一种用于从反应表面收集和除去反应产物的分离装置。 支撑元件的特征在于,其特征在于,它由两个部件a)和b)组成,水平地布置在另一个之上并具有基本上相同的表面测量。 这两个部件在操作时间内以互锁的方式彼此连接并且紧密地连接,并且下部部件a)在其面向支撑元件的内部区域的顶部上具有在广泛区域上铣削的至少一个基本上不间断的凹槽 并且用于接收,导电和排出传热流体。 此外,它具有用于进给和排出传热流体的至少两个孔,至少一个环绕外部表面区域的成形密封件被布置在部件a)和部件b)之间。 两个组件a)和b)作为一个整体可逆地连接在一起。 由于这些具体特征,在维护方面有利的简单设计的反应器是通用的并且允许靶旋转表面上的化学反应的目标控制。
    • 7. 发明申请
    • METHOD AND DEVICE FOR THE TREATMENT OF SURFACES
    • 用于处理表面的方法和装置
    • US20100275950A1
    • 2010-11-04
    • US12741861
    • 2008-12-09
    • Helmut MackTobias AustermannMartin EbnerMichael LeckWolfgang Viöl
    • Helmut MackTobias AustermannMartin EbnerMichael LeckWolfgang Viöl
    • C03C23/00C23F1/08
    • H05H1/2406H05H2001/2412H05H2245/125
    • The invention relates to a device and a method for the treatment of surfaces with a plasma produced under atmospheric pressure. The device according to the invention is formed as a portable handheld unit and comprises a plasma nozzle (16) for producing a plasma jet (18), which comprises a nozzle opening (17) and at least one electrode and counter-electrode pair (27, 28) arranged upstream of the nozzle opening, the effective electrode surfaces of which pair of electrodes each have a dielectric coating (29, 30), the electrode (27) and the counter-electrode (28) defining between them a working space (34) in which a working gas can be at least partially ionized by means of a dielectric barrier gas discharge, a high-voltage generator (19, 20), which is electrically connected to the electrode and counter-electrode pair (27, 28), a feeding means (15), which produces a gas flow of the working gas from a working gas source into the working space (34) and through the nozzle opening (17), the working gas source being ambient air, and a mains-independent energy source (12) for supplying the high-voltage generator (19, 20) and the feeding means (19).
    • 本发明涉及用于在大气压下产生的等离子体处理表面的装置和方法。 根据本发明的装置形成为便携式手持单元,并且包括用于产生等离子体射流(18)的等离子体喷嘴(16),其包括喷嘴开口(17)和至少一个电极和对电极对(27 ,28)布置在所述喷嘴开口的上游,所述有效电极表面的一对电极各自具有电介质涂层(29,30),所述电极(27)和所述对电极(28)在它们之间限定工作空间 34),其中工作气体可以通过介电阻挡气体放电至少部分地离子化,电连接到电极和对电极对(27,28)的高压发生器(19,20) (15),其将工作气体从工作气体源产生气体流入工作空间(34)并通过喷嘴开口(17),工作气体源是环境空气,以及主干 - 用于供应高压发生器(19,20)的独立能量源(12) 和进给装置(19)。