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    • 41. 发明专利
    • Apparatus for treating exhaust gas
    • 用于处理排气的装置
    • JP2005013928A
    • 2005-01-20
    • JP2003184312
    • 2003-06-27
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • KURITA KOICHIOKAI TAKASHIOZORA HIROYUKIKOBAYASHI KAZUTO
    • B01D53/56B01D53/74B01J19/08
    • PROBLEM TO BE SOLVED: To provide an apparatus for treating exhaust gas, the power consumption required to denitration of which is made small so that the cost of the apparatus itself can be reduced. SOLUTION: This apparatus is provided with an insulator-made reaction vessel 27 having an exhaust gas inlet 18 at one end and an exhaust gas outlet 19 at the other end, a plate-shaped electrode 13 which is arranged in the vessel 27 and has a surface 13a formed along the flow direction of exhaust gas G, at least one comblike electrode 14 which is formed by arranging acicular electrodes 20 in a row and arranged in the vessel 27 on at least one plane almost perpendicular to the flow direction of the gas G and the tip part of which is opposed to the surface 13a of the electrode 13 and a high-voltage DC power source 17 for supplying an electric current between the electrodes 13 and 14. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:为了提供一种处理废气的装置,使其脱硝所需的功率消耗较小,从而可以降低装置本身的成本。 解决方案:该设备设置有绝缘体制造的反应容器27,其在一端具有排气入口18,另一端具有排气出口19,布置在容器27中的板状电极13 并且具有沿着排气G的流动方向形成的表面13a,至少一个梳状电极14,其通过将针状电极20排成一列并且布置在容器27中的至少一个平面上而形成,所述至少一个平面几乎垂直于流动方向 气体G和其顶端部分与电极13的表面13a相对,以及用于在电极13和14之间提供电流的高压直流电源17。(C)2005, JPO&NCIPI
    • 46. 发明专利
    • System for producing ammonia and methanol
    • 生产氨水和甲醇的方法
    • JP2014015341A
    • 2014-01-30
    • JP2012152113
    • 2012-07-06
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • SAKURAI MIKIYATANAKA YUKIOOZORA HIROYUKI
    • C01C1/04C01B3/36C01B3/56C07B61/00C07C1/12C07C9/04C07C29/151C07C31/04C07C273/04C07C275/00
    • PROBLEM TO BE SOLVED: To provide a system for producing ammonia and methanol, which is capable of improving the production efficiency of ammonia and methanol while suppressing an increase in the production cost of both ammonia and methanol.SOLUTION: A system 10 for producing ammonia and methanol includes: a reforming device 11 for reforming hydrocarbons in natural gas 21 to form a reformed gas 22 containing CO and CO; a CO shift-reaction device 12 for converting CO in the reformed gas 22 into COto form a shift gas 31 containing CO; a hydrogen separation device 13 for separating a portion of Hfrom the reformed gas 22; a carbon dioxide removing device 14 for removing COin the shift gas 31; a methanation device 15 for converting COin a COremoving gas 33 into methane; an ammonia synthesis column 17 for producing ammonia 37; and a methanol synthesis column 18 for synthesizing methanol by using Hseparated in the hydrogen separation device 13 and COseparated in the carbon dioxide removing device 14 as raw materials.
    • 要解决的问题:提供一种氨和甲醇的生产系统,其能够提高氨和甲醇的生产效率,同时抑制氨和甲醇的生产成本的增加。解决方案:用于生产氨和甲烷的系统10 甲醇包括:重整装置11,用于重整天然气21中的烃,形成含有CO和CO的重整气体22; CO转化反应装置12,用于将重整气体22中的CO转化成CO,形成含有CO的转移气体31; 用于从重整气体22中分离H的一部分的氢分离装置13; 用于去除换挡气体31的CO 2的二氧化碳去除装置14; 用于将CO去除气体33的COin转化为甲烷的甲烷化装置15; 用于生产氨的氨合成塔17; 以及甲醇合成塔18,其通过使用分离在氢分离装置13中的CO和二氧化碳去除装置14中分离的CO作为原料合成甲醇。
    • 47. 发明专利
    • Dewatering system
    • 脱水系统
    • JP2013176726A
    • 2013-09-09
    • JP2012041807
    • 2012-02-28
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • SEIKI YOSHIOOZORA HIROYUKITANAKA YUKIOHIRAYAMA HARUAKI
    • B01D61/36C07C51/43C07C51/44C07C53/08
    • PROBLEM TO BE SOLVED: To provide a dewatering system capable of achieving the compactification of a system.SOLUTION: A dewatering system includes: a liquefier 12 that condenses a to-be-processed fluid 11; a booster 14 for boosting an ordinary pressure liquid 13 obtained by the liquefier 12; an evaporator 16 for evaporating a high pressure liquid 15 boosted by the booster 14; and a water separation film apparatus 20 that separates water 18 from a vaporized material 17 evaporated by the evaporator 16 to form a dehydration product 19. Thus, the pressure difference is increased by liquefying once, boosting and then distilling the to-be-processed fluid. This results in achieving the compactification of the water separation membrane device.
    • 要解决的问题:提供一种能够实现系统紧凑化的脱水系统。解决方案:脱水系统包括:冷凝被处理流体11的液化器12; 用于升压由液化器12获得的常压液体13的增压器14; 蒸发器16,用于蒸发由增压器14升压的高压液体15; 以及水分离膜装置20,其将水18与由蒸发器16蒸发的蒸发材料17分离以形成脱水产物19.因此,通过液化一次,增压然后蒸馏待处理的流体来增加压力差 。 这导致水分离膜装置的压实。
    • 48. 发明专利
    • Dehydration system and dehydration method
    • 脱水系统和脱水方法
    • JP2013034969A
    • 2013-02-21
    • JP2011175009
    • 2011-08-10
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • TANAKA YUKIOOZORA HIROYUKINAGANO HAJIMEHIRAYAMA HARUAKI
    • B01D65/00B01D61/36C07C29/76C07C31/08
    • C07C29/76B01D61/368B01D65/02B01D2321/18B01D2321/32C07C31/08
    • PROBLEM TO BE SOLVED: To provide a dehydration system and a dehydration method that carry out regeneration of water separation membranes while the whole system is in operation, and are made such that the required number of the water separation membranes is reduced.SOLUTION: The dehydration system includes at least one water separation membrane unit 10 in operation and is configured such that for the at least one water separation membrane unit 10 in operation, at least one water separation membrane unit 20 not in operation can be installed. Heated gas for regeneration is supplied to a flow path 22 for a fluid to be treated with a water separation membrane 21 composing the water separation membrane unit 20 not in operation, and while the dehydration system is in operation, the water separation membrane 21 can be regenerated by the heated gas for regeneration passing through the water separation membrane 21.
    • 要解决的问题:提供一种在整个系统运行时进行水分离膜的再生的脱水系统和脱水方法,并且使得所需数量的水分离膜减少。 解决方案:脱水系统包括至少一个操作中的水分离膜单元10,并且构造成使得对于至少一个水分离膜单元10在操作中,至少一个不工作的水分离膜单元20可以是 已安装。 用于再生的加热气体被供给到构成水分离膜单元20的水分离膜21的待处理流体的流路22,而在脱水系统运行时,水分离膜21可以是 通过被加热的气体再生通过水分离膜21进行再生。版权所有(C)2013,JPO&INPIT
    • 49. 发明专利
    • Membrane vessel for dehydrator
    • 用于脱水器的薄膜容器
    • JP2012061442A
    • 2012-03-29
    • JP2010209228
    • 2010-09-17
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • TANAKA YUKIOTACHIBANA SHINYAOZORA HIROYUKIOGINO SHINJIHIRAYAMA HARUAKI
    • B01D63/00B01D63/06
    • B01D63/00B01D61/366B01D61/368B01D63/066B01D65/00B01D2313/08B01D2313/086B01D2313/20
    • PROBLEM TO BE SOLVED: To provide a membrane vessel, by which the flow velocity of a fluid to be processed is increased in the membrane vessel to be used for a dehydrator and thus sufficient performance of water separation can be obtained.SOLUTION: The present invention is a membrane vessel 6 to be used for a dehydrator 1. The membrane vessel 6 includes: a casing 10 having a fluid inlet 14 into which a fluid to be processed flows, and a fluid outlet 16 from which the fluid to be processed flows; and a membrane vessel body 9 having a plurality of flow channels 11 disposed in parallel in the direction in which the fluid to be processed flows. The plurality of flow channels 11 are provided with a most upstream portion 11A that is connected to the fluid inlet 14, and a most downstream portion 11C that is connected to the fluid outlet 16. Turn-back sections 15 and 17 for turning back the direction of flow of the fluid to be processed in the opposite direction are disposed between the most upstream portion 11A and the most downstream portion 11C such that the fluid to be processed that has flowed into the fluid inlet 14 flows through the most upstream portion 11A to the most downstream portion 11C via the turn-back sections 15 and 17.
    • 要解决的问题:提供一种膜容器,通过该膜容器,在用于脱水机的膜容器中待处理流体的流速增加,从而可以获得足够的水分离性能。 解决方案:本发明是用于脱水机1的膜容器6.膜容器6包括:壳体10,其具有流体入口14,待处理流体流入该流体入口14,以及流体出口16, 待处理的流体流动; 以及膜容器主体9,其具有沿着待处理流体流动方向平行设置的多个流路11。 多个流动通道11设置有连接到流体入口14的最上游部分11A和连接到流体出口16的最下游部分11C。用于回转方向的回转部分15和17 在最上游部分11A和最下游部分11C之间设置待加工流体相反方向的流动,使得流入流体入口14的待处理流体流过最上游部分11A流到 最下游部分11C经由折回部分15和17.版权所有(C)2012,JPO&INPIT
    • 50. 发明专利
    • Dehydrating apparatus
    • 脱水装置
    • JP2009165994A
    • 2009-07-30
    • JP2008009092
    • 2008-01-18
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • YUKIMOTO ATSUHIROOZORA HIROYUKISEIKI YOSHIOHIRAYAMA HARUAKITANAKA YUKIOKASHIWAGI HIDEOINOUE YUBUN
    • B01D61/36B01D61/58C07C29/76C07C31/08
    • B01D61/362B01D61/58B01D2313/24B01D2317/022C07C29/76C07C31/08
    • PROBLEM TO BE SOLVED: To provide a dehydrating apparatus of low costs with avoiding excessive increase of the size of the appratus while keeping the suction efficiency at a desired level by a suction means. SOLUTION: The dehydrating apparatus 100 for separating water from a liquid to be treated 13 is equipped with at least two water-separating membrane units 1a and 1b in series in the flow direction of the liquid to be treated 13. The upstream water-separating membrane unit 1a of the water-separating membrane units 1a and 1b is connected to a suction means 7 that suctions a gas containing moisture via a condenser 4. While the moisture in the gas is condensed and separated in the condenser 4, the gas that is sucked from the condenser 4 by the suction means 7 is sent to at least one condenser 8 installed downstream from the condenser 4. The moisture in the gas is condensed and separated in the downstream condenser 8. The water-separating membrane unit 1b installed downstream from the water-separating membrane unit 1a is connected to a steam ejector 3. The moisture in the gas that passes through the steam ejector 3 is condensed and separated in the condenser 4. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种低成本的脱水装置,以避免吸附装置的吸入效率保持在期望水平的同时,大大减小装置的尺寸。 解决方案:用于从待处理液体13中分离水的脱水装置100在待处理液体13的流动方向上串联设置有至少两个水分离膜单元1a和1b。上游水 分离膜单元1a和1b的隔膜单元1a连接到抽吸装置7,抽吸装置7通过冷凝器4吸入含有水分的气体。当气体中的水分在冷凝器4中冷凝和分离时,气体 通过抽吸装置7从冷凝器4吸入的至少一个冷凝器8被送到安装在冷凝器4下游的至少一个冷凝器8.气体中的水分在下游冷凝器8中被冷凝和分离。水分离膜单元1b安装 水分离膜单元1a的下游与蒸气喷射器3连接。通过蒸汽喷射器3的气体中的水分在冷凝器4中冷凝和分离。版权所有(C)2009,JPO&I NPIT