会员体验
专利管家(专利管理)
工作空间(专利管理)
风险监控(情报监控)
数据分析(专利分析)
侵权分析(诉讼无效)
联系我们
交流群
官方交流:
QQ群: 891211   
微信请扫码    >>>
现在联系顾问~
热词
    • 7. 发明授权
    • Two-stage separation process
    • 两阶段分离过程
    • US06190564B1
    • 2001-02-20
    • US09164557
    • 1998-10-01
    • Richard W. LehmannRussell G. Forbess
    • Richard W. LehmannRussell G. Forbess
    • C02F174
    • C02F11/086C02F1/74
    • A process is disclosed for producing an oxidized liquid effluent containing minimal dissolved gases therein, from a subcritical wet oxidation treatment system. The oxidation mixture exiting from the treatment system is separated into a first oxidized liquid effluent and a first gaseous phase as the mixture a first separator vessel operated at a relatively low superatmospheric pressure. Sufficient pressure is maintained in the first gaseous phase to provide the motive force for transport to further treatment or discharge. The first oxidized liquid effluent flows to a second separator vessel operated at essentially atmospheric pressure, where remaining dissolved gases separate from the first oxidized liquid effluent. The second gaseous phase is discharged and the second oxidized liquid effluent is suitable for storage or further treatment. Provision for adjusting the pH of the oxidized liquid effluent during the separation process is also disclosed.
    • 公开了一种从亚临界湿式氧化处理系统生产含有最少溶解气体的氧化液体流出物的方法。 从处理系统排出的氧化混合物被分离为第一氧化液体流出物和作为混合物的第一气相,第一分离器容器在相对低的超大气压力下操作。 在第一气相中保持足够的压力以提供用于运输以进一步处理或排放的动力。 第一氧化液体流出物流到在基本上大气压下操作的第二分离容器,其中剩余的溶解气体与第一氧化液体流出物分离。 排出第二气相,第二氧化液体流出物适于贮存或进一步处理。 还公开了在分离过程中调节氧化液体流出物的pH的规定。
    • 8. 发明授权
    • Hydraulic energy dissipator for wet oxidation process
    • 用于湿式氧化工艺的液压消声器
    • US5389264A
    • 1995-02-14
    • US089463
    • 1993-07-12
    • Richard W. LehmannMark A. Clark
    • Richard W. LehmannMark A. Clark
    • B01D19/00
    • B01D19/0036Y10T137/86324
    • This invention relates to a process and apparatus for dissipating the energy of a wet oxidation mixture after that stream traverses a pressure control valve. The depressurized stream is discharged into a phase separator vessel containing a gas phase and a liquid phase. The pressure control valve is positioned to discharge the oxidation mixture at a selected orientation below the surface level of the liquid phase in the vessel. This dissipates the energy of the mixture and prevents erosion of the phase separator vessel. The apparatus of the invention includes the separator vessel with gas and liquid phase exits, a control device for maintaining the liquid phase at the selected level in the vessel, a pressure control valve positioned at an aperture in the vessel for discharging the mixture below the surface level of the liquid phase in the vessel, and sealing device between the control valve and the separator vessel.
    • 本发明涉及一种在流过压力控制阀之后耗散湿氧化混合物的能量的方法和装置。 将减压流排出到含有气相和液相的相分离器容器中。 压力控制阀被定位成将氧化混合物以低于容器中液相表面水平的选定取向排出。 这消散了混合物的能量并防止相分离器容器的腐蚀。 本发明的装置包括具有气体和液相出口的分离器容器,用于将液相保持在容器中选定水平的控制装置,位于容器中的孔处的压力控制阀,用于将混合物排放到表面下方 容器中液相的水平,以及控制阀和分离器容器之间的密封装置。
    • 9. 发明授权
    • Wet oxidation of high strength liquors with high solids content
    • 高固含量高强度液体的湿氧化
    • US5651897A
    • 1997-07-29
    • US740174
    • 1996-10-28
    • Richard W. Lehmann
    • Richard W. Lehmann
    • C02F11/08C02F1/74
    • C02F11/08
    • Disclosed is a process for wet oxidation treatment of high strength liquor or wastewater to destroy a substantial portion of the pollutants and produce an effluent stream containing a high solids content for recovery or disposal. The liquor is treated by wet oxidation and separate vapor and liquid streams are removed from the wet oxidation reactor. The vapor stream is cooled and separated to give a liquid condensate phase and a gaseous phase. The liquid stream from the reactor is cooled and divided, with a portion of the liquid effluent sent to recovery or disposal, and a portion combined with the condensate phase. This low pollutant content stream is used to dilute the raw feed liquor and maintain a high solids concentration in the liquid effluent stream.
    • 公开了一种用于高强度液体或废水的湿氧化处理以破坏大部分污染物并产生含有高固体含量以用于回收或处置的流出物流的方法。 通过湿氧化处理液体,并从湿式氧化反应器中除去分离的蒸气和液体流。 将蒸气流冷却并分离,得到液体冷凝物相和气相。 来自反应器的液体物流被冷却并分离,一部分液体流出物被送至回收或处置,以及与冷凝物相结合的部分。 这种低污染物流用于稀释原料进料液体并在液体流出物流中保持高固体浓度。