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    • 54. 发明公开
    • LOW DENSITY POLYETHYLENE (LDPE) TUBULAR REACTOR FOR PEROXIDE INITIATOR INJECTION
    • 用于过氧化物引发剂注射的低密度聚乙烯(LDPE)管式反应器
    • EP2393587A1
    • 2011-12-14
    • EP10704273.1
    • 2010-02-04
    • Dow Global Technologies Inc.
    • BERBEE, OttoKEATING, JohnHOMMERSOM, GerritMORSE, LarryZSCHOCH, Werner
    • B01J19/26B01J4/00
    • The present invention provides an injection nozzle for mixing an initiator with a process fluid. Then injection nozzle comprises a body comprising an inlet port, and outlet port, and an injector inlet; a process fluid flow passage; an initiator flow fluid passage; and a stylus. The process fluid flow passage comprises a constricting portion and an expanding portion to help improve transport and mixing. The injection nozzle is useful for injecting a fluid into another fluid at elevated temperatures and pressures, and for maximizing mixing of the fluids.
    • 一种用于将引发剂与过程流体混合的引发剂注射喷嘴,包括:主体,该主体包括用于接收过程流体的入口端口,出口端口和用于接收引发剂的注入器入口; 工艺流体流动通道,工艺流体通过所述工艺流体流动通道沿着中央处理流动轴线在入口端口和出口端口之间横穿,还包括按顺序的收缩部分,喉部和扩展部分;引发器流体流动通道, 启动器沿着喷射器中心竖直轴线在喷射器入口和喷射器出口之间横过,其中引发器流体流动通道与收缩部分中的过程流体流动通道相交; 触针至少部分地容纳引发剂流体流动通道并且还包括形成引发剂流体流动通道的注射器出口的成形的注射器尖端; 其中喷射器出口位于过程流体流动通道的收缩部分中并且在喉部上游通过沿着中央处理流动轴线确定的水平偏移; 并且喷射器出口通过沿着喷射器中心垂直轴线确定的垂直偏移定位在中心处理流动轴线的外面
    • 57. 发明授权
    • VERFAHREN UND VORRICHTUNG ZUM VERDAMPFEN EINES FLUIDES
    • 方法和装置蒸发流体
    • EP2150691B1
    • 2011-04-06
    • EP08759837.1
    • 2008-05-21
    • Emitec Gesellschaft für Emissionstechnologie mbH
    • HIRTH, PeterBRÜCK, Rolf
    • F01N3/20B01J19/26
    • F01N3/2066F01N3/36F01N2240/40F01N2610/02F01N2610/06F01N2610/10F01N2610/14Y02A50/2325Y02T10/24
    • The method according to the invention for evaporating a predeterminable volume of a fluid comprises the following steps: a) successive addition of at least one first partial volume at a first volume adding rate (17) and at least one predeterminable second partial volume that is different from the first partial volume, at a second volume adding rate (17) to a supply line (3); b) at least partial evaporating of the partial volumes such that a vapor film is formed between the partial volumes and a wall of the supply line (3); c) conveying the partial volumes through the supply line (3) to an evaporator surface (5); and d) applying the partial volumes to a region of the evaporator surface (5), the position of which is varied as a function of at least one of the following parameters: i) the mass of the corresponding partial volume and ii) the volume adding rate (17) of the corresponding partial volume. The method according to the invention and the device (1) according to the invention advantageously permit an evaporation of a fluid, particularly of a urea/water solution, in a manner that is as effective as possible. The utilization of the highest possible proportion of evaporator surfaces is achieved by the mass and/or volume addition rate-dependent distribution of the impingement surfaces on the evaporator surface (5). For this purpose, a heating strategy is advantageously employed in the region of the supply line (3) that ensures that the Leidenfrost effect occurs when the individual partial volumes are added. In this manner, a distribution that is as even as possible can be achieved using a corresponding configuration of the geometry of the evaporator channel (4).