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    • 4. 发明公开
    • METHOD FOR MANUFACTURING FILLER AND FILLER
    • VERFAHREN ZUR HERSTELLUNG EINESFÜLLSTOFFSUNDFÜLLSTOFF
    • EP3127605A1
    • 2017-02-08
    • EP15773307.2
    • 2015-03-24
    • IHI Corporation
    • ISO, YoshiyukiHUANG, JianSAGA, MarikoMATSUNO, ShinsukeUCHIDA, HiroyukiFUJIWARA, NaokiTAKANO, KenjiTOKUDA, Kenji
    • B01J19/32B01D53/18B01D53/62B01D53/78
    • A method of manufacturing packing includes: a main condition determination step (Step 1) of determining types of a gas and a liquid which are brought into gas-liquid contact and a main plate (11) to be used; a numerical analysis step (Step 2) of calculating a relationship between a contact angle (θs) and a liquid film length ratio (Lw/Lt); a rib arrangement determination step (Step 3) of determining the arrangement (intervals) of a rib (12); a rib condition determination step (Step 4) of determining rib conditions; a rib property determination step (Step 5) of calculating the minimum value (Lrmin) of the flow direction length of the rib (12) satisfying the contact angle (θs) and a strength requirement; a minimum value condition confirmation step (Step 6) of confirming whether or not a liquid film length (Lw (θs)) is greater than the minimum value (Lrmin) ; and a rib length determination step (Step 7) of determining the flow direction length (Lr) of the rib (12) within a range from the minimum value (Lrmin) to the liquid film length (Lw (θ)).
    • 制造包装的方法包括:确定气液接触的气体和液体的类型的主要条件确定步骤(步骤1)和要使用的主板(11); 计算接触角(¸s)与液膜长度比(Lw / Lt)之间的关系的数值分析步骤(步骤2); 确定肋(12)的布置(间隔)的肋布置确定步骤(步骤3); 确定肋条件的肋条件确定步骤(步骤4); 计算满足接触角(¸s)的肋(12)的流动方向长度的最小值(Lrmin)和强度要求的肋特性确定步骤(步骤5); 确定液膜长度(Lw(¸s))是否大于最小值(Lrmin)的最小值条件确认步骤(步骤6); 以及在从最小值(Lrmin)到液膜长度(Lw(¸))的范围内确定肋(12)的流向长度(Lr)的肋长度确定步骤(步骤7)。
    • 9. 发明公开
    • CARBON DIOXIDE RECOVERY METHOD AND RECOVERY DEVICE
    • 俄克拉何马州州立大学
    • EP2842617A1
    • 2015-03-04
    • EP12875484.3
    • 2012-10-12
    • IHI Corporation
    • NAKAMURA, ShikoYAMANAKA, YasuroTAKANO, KenjiOKUNO, Shinya
    • B01D53/14B01D53/62C01B31/20
    • B01D53/62B01D53/1406B01D53/1425B01D53/1475B01D53/96B01D2258/0283C01B32/50Y02C10/04Y02C10/06Y02P20/152Y02P20/57
    • The carbon dioxide recovery method and apparatus are capable of reducing energy for regenerating the absorbing liquid and operating cost. An absorption column has first and second absorbing sections that a gas is supplied through the first absorbing section to the second absorbing section and the absorbing liquid absorbs carbon dioxide. A regeneration column regenerating the absorbing liquid has first and second regenerating sections. The first regenerating section has an external heating implement and the second regenerating section is heated by the gas discharged from the first regeneration section. Circulation mechanism has a circulation system circulating the absorbing liquid between the second absorbing section and the first regenerating section, and a branch path branched from the circulation system. A part of the absorbing liquid circulating the circulation system flows from the second absorbing section through the first absorbing section and the second regenerating section successively to the first regenerating section.
    • 二氧化碳回收方法和装置能够减少再生吸收液体的能量和运行成本。 吸收塔具有第一吸收部和第二吸收部,通过第一吸收部向第二吸收部供给气体,吸收液吸收二氧化碳。 再生吸收液体的再生塔具有第一再生部和第二再生部。 第一再生部具有外部加热装置,第二再生部由从第一再生部排出的气体加热。 循环机构具有使第二吸收部和第一再生部之间的吸收液循环的循环系统和从循环系统分支的分支路径。 循环循环系统的吸收液的一部分从第二吸收部经过第一吸收部和第二再生部依次流向第一再生部。