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    • 3. 发明专利
    • Method of mass transfer, regularly packing and mass transfer apparatus for small liquid load
    • 大容量传输方法,小型液体负荷的定量包装和大量传送装置
    • JP2012130911A
    • 2012-07-12
    • JP2011279220
    • 2011-12-21
    • Sulzer Chemtech Agスルザー ケムテック アクチェンゲゼルシャフト
    • WICKI WERNERDUSS MARKUSAUSNER ILJA
    • B01J19/32
    • B01D47/14B01D3/14B01J19/32B01J2219/3221B01J2219/32213B01J2219/32227B01J2219/32258B01J2219/32262B01J2219/32416B01J2219/32441B01J2219/32483B01J2219/32491B01J2219/3325Y10S261/72
    • PROBLEM TO BE SOLVED: To provide a method of mass transfer, a regularly packing for performing the method of mass transfer, and a mass transfer apparatus for performing the method of mass transfer.SOLUTION: The method of mass transfer includes the steps of supplying a first fluid and a second fluid into the mass transfer apparatus, wherein the mass transfer apparatus includes a vessel which has a head region, a base region and a mass transfer region, wherein the first fluid is brought into contact with the second fluid at least in the mass transfer region, wherein the mass transfer region is arranged between the head region and the base region and the mass transfer region includes the regularly packing which includes a plurality of neighboring layers of fabric which includes fiber strands of a non-metallic material. The mass transfer apparatus is operated at a fluid load of at most 3 m/m/h. The fabric of the regularly packing includes fiber strands of the non-metallic material which are formed as weft threads, wherein the weft threads have a yarn count of at least 100 g/1,000 m and the weft threads include at least 20 yarns/25.4 mm.
    • 要解决的问题:提供质量传递方法,用于执行传质方法的规则包装和用于执行传质方法的传质装置。 解决方案:质量传递的方法包括将第一流体和第二流体供应到传质装置中的步骤,其中传质装置包括具有头部区域,基底区域和传质区域的容器 其中所述第一流体至少在所述传质区域中与所述第二流体接触,其中所述传质区域布置在所述头部区域和所述基部区域之间,并且所述传质区域包括所述规则填料,所述规则填料包括多个 相邻的织物层包括非金属材料的纤维束。 质量传送装置以至多3米的流体载荷运行。 =“POST”> 2 / h。 规则填料的织物包括形成为纬纱的非金属材料的纤维束,其中纬纱的纱线数至少为100g / 1000m,纬纱包括至少20根/ 25.4mm 。 版权所有(C)2012,JPO&INPIT
    • 4. 发明专利
    • Multistage countercurrent crystallization apparatus
    • JP4707025B2
    • 2011-06-22
    • JP2002125734
    • 2002-04-26
    • ズルツァー・ヒェミテヒ・アーゲーSulzer Chemtech AG
    • ハルベ・アンネ・ジャンセン
    • B01D9/02B01D9/00
    • B01D9/0013B01D9/0059Y10T117/10
    • The invention relates to a multi-stage counter-current crystallization apparatus for crystallizing and subsequently separating a component in pure form from a solution, comprising a first concentration stage built up in part of: means for supplying the solution; first crystallization means, consisting of a heat exchanger of the scraped surface type for forming crystals in the solution; a first crystallization vessel for further growth of the crystals formed by the first crystallization means so as to obtain a first crystal suspension mixture containing larger crystals; first separating means for separating the larger crystals from the first crystal suspension mixture so as to obtain a first concentrated mother liquor solution; and at least one second concentration stage built up in part of: means for supplying the first concentrated mother liquor solution; second crystallization means consisting of a heat exchanger of the scraped surface type for forming crystals in the first concentrated mother liquor solution; a second crystallization vessel for further growth of the crystals formed by the second crystallization means; and means for returning crystals from the second crystallization vessel to the first crystallization vessel, wherein the crystal-growing vessel of at least one concentration stage is provided with a bypass conduit arranged outside the crystal-growing vessel for circulating the crystal suspension mixture that is present in the crystal-growing vessel, and wherein filter means are present in the bypass conduit for extracting at least part of the mother liquor solution from the crystal suspension mixture.
    • 6. 发明专利
    • Multiple downcomer tray
    • 多功能托盘
    • JP2009255080A
    • 2009-11-05
    • JP2009096167
    • 2009-04-10
    • Sulzer Chemtech Agズルツァー・ケムテック・アーゲー
    • GRIEPSMA BARTELE
    • B01D3/22B01D3/32
    • B01D3/18B01D3/163B01D3/20B01D3/22B01D3/32B01D3/326
    • PROBLEM TO BE SOLVED: To provide a multiple downcomer high-capability tray increasing a mass transfer area.
      SOLUTION: A multiple downcomer tray (1) for a mass transfer column (2) includes a mass transfer area (4) and a plurality of downcomers (3) for collecting and discharging a fluid from the tray (1), wherein each of the downcomers is molded as a channel (9), and the channel is delimited by a pair of lateral sidewalls (21, 22) and end walls (23, 24). The end wall of each downcomer can be attachable to an extension element (5), and the downcomer (3) and the extension element (5) together extend from first column wall support means (6) to second column wall support means (7).
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供多个降液管高性能托盘,增加传质面积。 解决方案:用于传质塔(2)的多个下导管托盘(1)包括传质区域(4)和用于从托盘(1)收集和排出流体的多个降液管(3),其中 每个下降管被模制成通道(9),并且通道由一对侧壁(21,22)和端壁(23,24)限定。 每个降液管的端壁可以附接到延伸元件(5),并且降液管(3)和延伸元件(5)一起从第一柱壁支撑装置(6)延伸到第二柱壁支撑装置(7) 。 版权所有(C)2010,JPO&INPIT
    • 7. 发明专利
    • INFLOW DEVICE FOR FLUID FED TANGENTIALLY TO TARGET DEVICE
    • JP2008030034A
    • 2008-02-14
    • JP2007194217
    • 2007-07-26
    • SULZER CHEMTECH AG
    • MUGGLI FELIXSCHAEFFER PIERREGHELFI LORENZO
    • B01D45/12
    • PROBLEM TO BE SOLVED: To achieve an excellent feed of fluid by arranging pieces of diffuser-like conduit around a target device such as a column to cause a fluid to flow in tangentially to the column. SOLUTION: An inflow device (1) for feeding the fluid (3) tangentially to the target device (2) causes the fluid to flow through the pieces of horn-like conduit (10) along the circumference (20) of the target device and then flow into a whirling flow (30). The whirling flow turns around an axis adjacent to the axis (210) of the target device. The axis coincides with the primary direction (200) of the flowing fluid. The discharge zone (13) of the pieces of the fluid determines the intermediate flow direction of the fluid spread along the circumference and inclined to the primary direction (200), and an intermediate zone (200) or an inlet zone (11) and the intermediate zone (11) and the discharge zone are all constituted in a diffuser type. The peripheral zone of the individual zones laid in the interior of the target device and constituted as adjacent diffusers in the circumference is extended along half the circumference, preferably, one-thirds of the circumference. COPYRIGHT: (C)2008,JPO&INPIT
    • 8. 发明专利
    • Static mixer
    • 静态混合器
    • JP2007307551A
    • 2007-11-29
    • JP2007128225
    • 2007-05-14
    • Sulzer Chemtech Agスルザー ケムテック アクチェンゲゼルシャフト
    • SUHNER MARCEL
    • B01F5/00B01D53/94B01J19/24C10L3/06F01N3/24F01N3/28F28D7/16
    • B01F5/0643
    • PROBLEM TO BE SOLVED: To provide a mixing element mixing and conveying multiphase fluid flow, and keeping uniform dispersion of fluid. SOLUTION: The mixing element 12 installed in a fluid-conducting means 1 includes an inlet opening 9 for at least two components having a first cross-section arranged substantially normal to the main direction of flow 11 in the inlet opening 9, and an outlet opening 10 for a mixture having a second cross-section arranged substantially normal to the main direction of flow 11 in the outlet opening 10, with the mixing element 12 having a cross-section which increases substantially continuously from the first cross-section to the second cross-section. Flow-dividing layers 2, 3, 4 are arranged in the mixing element such that a precise fitting of the mixing element 12 into the substantially continuously expanding fluid-conducting means 1 is made possible. The static mixer having the mixing element 12 of this type is in particular used in natural gas processing, in automotive construction and in chemical reaction technology. COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供混合和输送多相流体流动并保持流体均匀分散的混合元件。 解决方案:安装在流体传导装置1中的混合元件12包括用于至少两个部件的入口开口9,该入口开口9具有基本上垂直于入口开口9中的主要流动方向11的第一横截面,以及 用于混合物的出口10,其具有在出口10中基本上垂直于主流动方向11布置的第二横截面,其中混合元件12的横截面从第一横截面到 第二个横截面。 分流层2,3,4布置在混合元件中,使得混合元件12精确地配合到基本上连续膨胀的导流装置1中成为可能。 具有这种混合元件12的静态混合器特别用于天然气加工,汽车结构和化学反应技术中。 版权所有(C)2008,JPO&INPIT
    • 9. 发明专利
    • Distributor for sending out two liquids in a pair to two or more feed regions in reactor or column
    • 分配器发送两个液体到两个或更多的进料区域在反应器或列
    • JP2007196226A
    • 2007-08-09
    • JP2007013680
    • 2007-01-24
    • Sulzer Chemtech Agスルザー ケムテック アクチェンゲゼルシャフト
    • BACHMANN CHRISTIAN GOTTLIEBFEHR EMIL
    • B01J14/00
    • B01D3/008B01J4/001B01J14/00B01J2219/00245B01J2219/32B01J2219/3322
    • PROBLEM TO BE SOLVED: To provide a distributor for separately sending out in a pair of two liquids of a reactant to be fed to a reactor or a column to two or more feed regions with the density of at least 50 per m
      2 .
      SOLUTION: The distributor 1 receives the two liquids from a pair of main flow paths 101, 102 respectively in a pair 10 of adjacent secondary flow paths 11, 12. The pair 10 includes two side parts 31, 32 which are folded at each external edge 4 and each inner edge 5 and a partition wall 30. The bases 34, 34' of the secondary flow paths are in contact with these side parts and extend along each external edge 4 and each inner edge 5 between flow path ends. These sides are respectively joined to end strippers 35, 35' at each inner edge and are fastened along with a lower end stripper 36 of the partition wall 30. Outlet holes 21, 22 are positioned in the bases in the feed regions 9 or in an area near the bases of the side parts and the liquids are sent out in a pair from the outlet holes. The supply ratio of the two liquids is varied by changing the cross-sectional ratio of both the secondary flow paths.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:为了提供一种分配器,用于分别在待加料到反应器或塔的两个液体的两个或更多个进料区中分开发送,密度为至少50 / SP> 2 。 解决方案:分配器1分别在一对相邻的二次流动路径11,12的一对10中接收来自一对主流路101,102的两个液体。该对10包括两个侧部31,32, 每个外部边缘4和每个内部边缘5以及分隔壁30.二级流动路径的基部34,34'与这些侧部部分接触并且沿着每个外部边缘4和每个内部边缘5在流动路径端部之间延伸。 这些侧面分别在每个内边缘处与端部剥离器35,35'连接并且与分隔壁30的下端剥离器36一起被紧固。出口孔21,22定位在进料区9中的基部中 侧面部分附近的区域和液体从出口孔一对送出。 通过改变两个二次流动路径的横截面比来改变两种液体的供给比。 版权所有(C)2007,JPO&INPIT
    • 10. 发明专利
    • Static degassing apparatus for polymer-containing liquid
    • 用于含聚合物液体的静态脱水装置
    • JP2007186694A
    • 2007-07-26
    • JP2006342013
    • 2006-12-20
    • Sulzer Chemtech Agスルザー ケムテック アクチェンゲゼルシャフト
    • STREIFF FELIX A
    • C08J3/02B01D19/00
    • B01D3/06B01D19/0047
    • PROBLEM TO BE SOLVED: To provide an apparatus for volatilizing volatile components from a polymer solution. SOLUTION: The static degassing apparatus 1 plays the role of treating a polymer-containing liquid 7 to degas the polymers. This apparatus 1 has the following mechanism and construction: Volatile components are separated from the polymers as a result of expanding the liquid space by pressure in a vessel 10. An exhaust pump 3 for the polymers subjected to degassing treatment is located at the bottom of a waste liquid area. An extractive line 4 for gases 8 comprising the volatile components and at least one phase separatory chamber 2 are set up in the upper areas 11 and 12 of the vessel 10, wherein the chamber 2 includes an inlet 20 for a to-be-treated liquid, an lower opening 210 of a polymer exhaust area, and one or more upper openings 220 of a gas exhaust area. COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供一种从聚合物溶液挥发挥发性组分的装置。 解决方案:静电脱气装置1起到处理含聚合物的液体7以使聚合物脱气的作用。 该装置1具有以下机构和结构:挥发性组分与聚合物分离,这是由于容器10中的压力使液体空间膨胀。经脱气处理的聚合物的排气泵3位于 废液面积。 用于包含挥发性成分的气体8和至少一个相分离室2的萃取线4设置在容器10的上部区域11和12中,其中室2包括用于被处理液体的入口20 ,聚合物排气区域的下开口210和排气区域的一个或多个上开口220。 版权所有(C)2007,JPO&INPIT