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    • 6. 发明申请
    • Abrasion Resistant Controlled Cavitation Reactor
    • 耐磨控制气蚀反应器
    • US20160325255A1
    • 2016-11-10
    • US15148410
    • 2016-05-06
    • Hydro Dynamics, Inc.
    • Derek E. ParkerC. Glenn BondsDouglas G. MancoskyDaniel A. ArmsteadKelly Hudson
    • B01J8/16B01F11/02B01J19/00
    • B01J8/16B01F3/1221B01F7/00816B01F13/1016B01F13/1022B01J8/222B01J19/008B01J2208/00867B01J2208/00893
    • A controlled cavitation reactor is disclosed that is particularly suited to the treatment of abrasive fluids and slurries with a minimum of erosion and mechanical failure caused by abrasion. The reactor includes a generally cylindrical housing having a peripheral wall that extends between end plates. A rotor is rotatably disposed in the housing and has at least one outer peripheral surface spaced from the peripheral wall to define a cavitation zone therebetween. A plurality of bores extends through the peripheral surface of the rotor. The rotor may be formed with a central void zone between two lobes of the rotor with each lobe defining a separate cavitation zone with the peripheral wall of the housing. One or more inlet ports is arranged to introduce fluid to the housing tangentially and within one or more void zones. One or more exit ports is arranged to receive fluid from the housing tangentially within another void zone. As a result, fluid takes a spiral path into the housing, across the cavitation zone, and out of the housing. This greatly reduces sharp changes in direction and accordingly reduces abrasion and consequent damage.
    • 公开了一种受控的气蚀反应器,其特别适用于以磨损引起的最小侵蚀和机械故障来处理磨料流体和浆料。 反应器包括具有在端板之间延伸的周壁的大致圆柱形壳体。 转子可旋转地设置在壳体中并且具有与周壁间隔开的至少一个外周表面以在其间限定空化区。 多个孔延伸穿过转子的外围表面。 转子可以形成在转子的两个叶片之间的中心空隙区域,每个叶片限定与壳体的周壁分开的空穴区域。 一个或多个入口端口布置成将流体切向地并且在一个或多个空隙区域内引导到壳体。 一个或多个出口端口布置成在另一个空隙区域内切向地接收来自壳体的流体。 结果,流体沿着空化区域进入壳体的螺旋路径并且离开壳体。 这大大减少了方向的急剧变化,从而减少磨损和后果的损坏。
    • 10. 发明授权
    • Pyrolysis reactor
    • 热解反应器
    • US08585868B2
    • 2013-11-19
    • US12669727
    • 2008-07-19
    • Robertus Hendrikus VenderboschLambertus Van De BeldDaan AssinkElwin Gansekoele
    • Robertus Hendrikus VenderboschLambertus Van De BeldDaan AssinkElwin Gansekoele
    • C10B1/04C10B49/08
    • C10B49/16B01J8/003B01J8/005B01J8/008B01J8/087B01J8/10B01J2208/0038B01J2208/0084B01J2208/00867C10B53/02Y02E50/14Y02P20/145
    • A device for pyrolysing biomass comprises: a reactor space; a first feed for biomass material connecting to the upper zone thereof; a second feed for heated heat carrier material connecting to the upper side of the reactor space; a first discharge for pyrolysis gas connecting to the upper zone of the reactor space at a distance from the first feed; and a second discharge for solid material, for instance carbon and heat carrier material, connecting to the underside of the reactor space. A substantial separation between the discharge flows of pyrolysis gas and solid material takes place predominantly under the influence of gravitational force, without interposing of a cyclone. The reactor space is modeled such that the direct flow from the first feed and the second feed to the first discharge is blocked. A mechanical mixer is present in the reactor space for the purpose of mixing the flow of biomass material with the flow of preheated heat carrier material.
    • 用于热解生物质的装置包括:反应器空间; 连接到其上部区域的生物质材料的第一进料; 用于连接到反应器空间的上侧的加热的热载体材料的第二进料; 连接到与第一进料相距一定距离的反应器空间的上部区域的热解气体的第一次排放; 以及连接到反应器空间的下侧的固体材料(例如碳和热载体材料)的第二次放电。 热解气体和固体物质的排放流量之间的实际分离主要发生在重力的影响下,而不会插入旋风分离器。 反应器空间被建模成使得从第一进料和第二进料到第一排料的直接流动被阻断。 在反应器空间中存在机械混合器,用于将生物质材料的流动与预热的热载体材料的流动混合。