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    • 2. 发明申请
    • UTILIZATION OF WASTE HEAT USING FIBER SORBENT SYSTEM
    • 使用光纤吸收系统的废热利用
    • US20150059368A1
    • 2015-03-05
    • US14534647
    • 2014-11-06
    • Bhupender S. MinhasIan Alfred CodyMohsen Shahmirzadi Yeganeh
    • Bhupender S. MinhasIan Alfred CodyMohsen Shahmirzadi Yeganeh
    • F25B29/00
    • F25B29/006B01J20/165B01J20/18B01J20/28023B01J20/2803B01J20/3204B01J20/3265B01J20/327B01J20/3272B01J20/3293F25B17/08F25B37/00Y02A30/276
    • A method for creating work by adsorption end desorption of a working fluid on an fiber sorption system which has a plurality of tubular hollow fibers within a vessel which is connected to a work device. Each fiber is in the form of a tubular, elongated body composed of a sorbent material capable of adsorbing a working fluid such as carbon dioxide. The fibers have an inner surface adjacent the hollow interior and an outer surface, one of which has a coating layer which is impermeable to both a working fluid and thermal fluid. The system is operated by passing a thermal cooling fluid in contact with the fibers to cool the fibers and passing the working fluid over the fibers in contact with the surface of the cooled fibers which does not have the coating layer so that the working fluid is adsorbed on the fibers, the adsorbed working fluid is then desorbed from the fibers by passing a thermal heating fluid in contact with the fibers to heat the fibers; the pressurized, desorbed working fluid is then passed to a work device connected to the vessel.
    • 一种用于通过在工作装置连接的容器内具有多个管状中空纤维的纤维吸附系统上的工作流体的吸附端解吸来产生工作的方法。 每根纤维都是由能够吸附诸如二氧化碳的工作流体的吸附剂材料组成的管状细长体的形式。 纤维具有邻近中空内部的内表面和外表面,其中之一具有对工作流体和热流体不渗透的涂层。 该系统通过使与热纤维接触的热冷却流体进行操作,以冷却纤维并将工作流体通过纤维以与没有涂层的冷却纤维的表面接触,使得工作流体被吸附 在纤维上,吸附的工作流体然后通过与热纤维接触的热加热流体从纤维中解吸,以加热纤维; 加压解吸的工作流体然后被传递到连接到容器的工作装置。
    • 8. 发明授权
    • Multiphase mixing device with staged gas introduction
    • 多相混合装置,分段气体引入
    • US07052654B2
    • 2006-05-30
    • US10358760
    • 2003-02-05
    • Neil K. McDougaldSherri L. BoydGregory P. Muldowney
    • Neil K. McDougaldSherri L. BoydGregory P. Muldowney
    • B01J10/00B01J8/02
    • C10G49/002B01J8/0492B01J2208/00849
    • The present invention comprises a mixing system that provides improved mixing of quench gas and process fluids in a height constrained interbed space while not increasing pressure drop. In particular, the device improves the effectiveness of an existing mixing volume in mixing the gas phase of two-phase systems. The mixing system includes a horizontal collection tray, a mixing chamber positioned below the collection tray, at least one passageway extending through the collection tray into the mixing chamber, and a vapor slipstream passageway extending through the collection tray into the mixing chamber for directing a vapor slipstream from above the collection tray into the mixing chamber. The mixing chamber and the collection tray define a two-phase mixing volume. The passageway conducts fluid containing at least some vapor from above the collection tray into the mixing chamber. The mixing chamber preferably includes at least one outlet opening for the downward passage of fluid. The vapor slipstream passageway, optionally, comprises a plurality of inlets arranged to impart rotational movement to the vapor phase at a location within the mixing chamber where the vapor phase has substantially expended the kinetic energy of its initial entry into the mixing chamber. As a result of providing at least one additional passageway for a vapor slipstream, and optionally, including one or more baffles as described above, significant re-acceleration of the vapor phase is achieved in the mixing chamber resulting in improvements in mixing efficiency of both the vapor and liquid phases.
    • 本发明包括一种混合系统,其在高度受限的间隔空间中提供淬火气体和工艺流体的改进混合,同时不增加压降。 特别地,该装置提高了混合两相系统的气相时的现有混合体积的有效性。 混合系统包括水平收集托盘,位于收集托盘下方的混合室,至少一个通过收集托盘延伸到混合室中的通道,以及延伸穿过收集托盘进入混合室的蒸气滑流通道,用于引导蒸气 从收集盘上方滑入混合室。 混合室和收集盘限定两相混合体积。 通道将含有至少一些蒸汽的流体从收集盘的上方导入混合室。 混合室优选地包括用于流体向下通过的至少一个出口。 蒸汽滑流通道可选地包括多个入口,其布置成在混合室内的位置处赋予气相旋转运动,其中气相基本上消耗了其初始进入混合室的动能。 作为为蒸气滑流提供至少一个附加通道并且任选地包括如上所述的一个或多个挡板的结果,在混合室中实现了气相的显着再加速,从而提高了两者的混合效率 气相和液相。