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    • 5. 发明公开
    • SYSTEM AND METHOD FOR SAFER VENTING OF HYDROGEN OR OTHER COMBUSTIBLE GASES
    • 用于保证氢气或其他可燃气体通风的系统和方法
    • EP3207311A1
    • 2017-08-23
    • EP15794362.2
    • 2015-10-06
    • Cameron Solutions, Inc.
    • FERNANDEZ, Luis, Eduardo Caires
    • F23N5/02F23N5/18F23N5/24
    • F16K24/04F23N5/022F23N5/18F23N5/242F23N2023/08
    • A system and process for intermittently venting combustible gas (c-gas) from a continuous source to the atmosphere are presented. The system includes a primary c-gas storage tank, at least one primary admission valve located upstream of the primary c-gas storage tank for regulating the flow of c-gas from the continuous source to the storage tank, a primary valve for atmospheric venting located downstream of the primary c-gas storage tank, and a primary PIC that opens the primary valve for atmospheric venting when pressure in the primary c-gas storage tank reaches a pre-determined PIC vent point. The system may include an auxiliary system to receive and vent c-gas while the primary admission valve is closed. The primary and auxiliary systems may also include an inert gas storage tank and inert gas valve for diluting the c-gas before it is vented to the atmosphere.
    • 介绍了从连续源向大气间歇性地排放可燃气体(c-气体)的系统和过程。 该系统包括主C气储罐,位于主C气储罐上游的至少一个主进气阀,用于调节从连续源到储罐的C气流,用于大气排放的主阀 位于主c-气储罐的下游;以及初级PIC,当主c-气储罐中的压力达到预定的PIC通气点时,主PIC打开主阀以进行大气排气。 该系统可以包括辅助系统以在主要进入阀关闭时接收和排出c-气体。 主要系统和辅助系统还可能包括惰性气体储罐和惰性气体阀门,用于在排放到大气中之前稀释c-气体。
    • 6. 发明公开
    • SALT REMOVAL AND TRANSPORT SYSTEM FOR USE IN A MONOETHYLENEGLYCOL (MEG) RECLAMATION PROCESS
    • 除盐和传输系统FOR USE IN一种回收单乙二醇(MEG)
    • EP3157892A1
    • 2017-04-26
    • EP15730017.9
    • 2015-06-05
    • Cameron Solutions, Inc.
    • SAMS, Gary W.LEE, Joseph Min-Hsiun
    • C07C29/80B01D11/02
    • C07C29/76B01D3/06B01D3/143B01D21/267C07C29/80C07C31/202
    • A system for, and method of, recovering salt from a rich mono ethylene glycol MEG stream includes a flash separator having a desanding hydrocyclone located in the hot MEG recycle loop of the flash separator; a first solids fluidization device located at the bottom end of the flash separator's brine column; a second desanding hydrocyclone arranged to receive a salt slurry stream created by the first solids fluidization device; and an accumulator located downstream of the second desanding hydrocyclone and having a second solids fluidization device located at its bottom end. Each solids fluidization device includes means for causing the motive fluid to exit the device in a swirling motion to fluidize the salt components contained in the resident fluid. The overflow from the second desanding hydrocyclone is the motive fluid for the brine column and a produced water, condensate water, or seawater stream is the motive fluid for the accumulator.
    • 一种用于系统及方法,从盐丰富单乙二醇MEG流中回收包括具有位于所述闪蒸分离器的热MEG再循环回路一个除砂旋流闪蒸分离器; 位于闪蒸分离器的盐水柱的底部处的第一固体流化装置; 布置成接收由所述第一固体流化设备创建的盐淤浆流的第二水力旋流除砂; 和蓄压器位于第二除砂水力旋流器的下游,并具有位于其底端的第二固体流化设备。 每个固体流化装置包括装置,用于使所述动力流体离开所述装置在涡旋运动以流化包含在所述居民液体中的盐组分。 从第二水力旋流器除砂溢出是用于盐水柱和产生的水,冷凝水,或海水流动力流体是蓄能器中的运动流体。