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    • 12. 发明专利
    • Method and device for recovering carbon dioxide
    • 用于回收二氧化碳的方法和装置
    • JP2012196603A
    • 2012-10-18
    • JP2011061028
    • 2011-03-18
    • Ihi Corp株式会社Ihi
    • OKUNO MASAYANAKAMURA NORITAKA
    • B01D53/62B01D53/14B01D53/34C01B32/50
    • Y02A50/2342Y02C10/06Y02P20/152
    • PROBLEM TO BE SOLVED: To provide a device and a method for recovering a carbon dioxide achieved in favorable recovery efficiency and improved thermal efficiency for the regeneration of an absorption liquid to enable cost reduction.SOLUTION: The device for recovering the carbon dioxide includes: an absorption tower making gas including the carbon dioxide come into contact with the absorption liquid under pressurization to make the absorption liquid absorb the carbon dioxide; a regeneration tower heating the absorption liquid absorbing the carbon dioxide to emit the carbon dioxide from the absorption liquid, and thus, regenerating the absorption liquid; and a steam supply system supplying steam to the regeneration tower to supplement steam included in recovery gas including the carbon dioxide and discharged from the regeneration tower.
    • 要解决的问题:提供一种用于回收二氧化碳的设备和方法,其具有良好的回收效率和改善吸收液体再生的热效率,从而能够降低成本。 解决方案:用于回收二氧化碳的装置包括:在加压下使包含二氧化碳的气体与吸收液接触的吸收塔使吸收液体吸收二氧化碳; 再生塔加热吸收二氧化碳的吸收液体,从吸收液体排出二氧化碳,再生吸收液体; 以及向所述再生塔供应蒸汽的蒸汽供应系统,以补充包括在包括二氧化碳的回收气体中并从所述再生塔排出的蒸汽。 版权所有(C)2013,JPO&INPIT
    • 13. 发明专利
    • Device and method for recovering carbon dioxide
    • 用于回收二氧化碳的装置和方法
    • JP2012076065A
    • 2012-04-19
    • JP2010226567
    • 2010-10-06
    • Ihi Corp株式会社Ihi
    • OKUNO MASAYANAKAMURA NORITAKA
    • B01D53/62B01D53/14C01B32/50
    • Y02A50/2342Y02C10/06Y02P20/152
    • PROBLEM TO BE SOLVED: To provide a device and method for recovering carbon dioxide capable of efficiently recovering carbon dioxide by ensuring wettability of an absorbing liquid while enjoying effect by a corrosion inhibitor.SOLUTION: An absorption tower 10 and a recovery tower 20 include filling materials 11, 21 each having a surface roughened, respectively, and perform recovery of carbon dioxide using an absorbing liquid containing a corrosion inhibitor. The roughening of the filling material is achieved by being previously brought into contact with an absorbing liquid without containing a corrosion inhibitor, and thereafter a corrosion inhibitor 40 is added in the absorbing liquid. The filling material exhibits excellent wettability with respect to the absorbing liquid containing a corrosion inhibitor.
    • 解决的问题:提供一种回收二氧化碳的装置和方法,其能够通过确保吸收液的润湿性而有效地回收二氧化碳,同时享受腐蚀抑制剂的作用。 解决方案:吸收塔10和回收塔20分别包括各自具有表面粗糙化的填充材料11,21,并且使用含有腐蚀抑制剂的吸收液体来回收二氧化碳。 填充材料的粗糙化是通过事先与吸收液体接触而不含有腐蚀抑制剂而实现的,然后在吸收液体中加入腐蚀抑制剂40。 相对于含有缓蚀剂的吸收液,填充材料表现出优异的润湿性。 版权所有(C)2012,JPO&INPIT
    • 14. 发明专利
    • Electrochemical machining apparatus
    • 电化学加工设备
    • JP2011230271A
    • 2011-11-17
    • JP2010105206
    • 2010-04-30
    • Ihi Corp株式会社Ihi
    • OKUNO MASAYAOHARA HIROAKI
    • B23H3/10
    • PROBLEM TO BE SOLVED: To perform an electrochemical machining more accurately than before at low cost.SOLUTION: An electrochemical machining apparatus includes: a processing machine body 1 for applying desired machining to a workpiece with an electrolytic solution; a sludge remover 7 for removing sludge from an used electrolytic solution X1 that is used by the processing machine body 1; and an electrolytic solution feeder for collecting an electrolytic solution X2 wherein the sludge is removed by the sludge remover 7 to cyclically feeding the electrolytic solution to the processing machine body 1. The sludge remover 7 includes: a hydraulic cyclone 2 for separating the sludge from the used electrolytic solution X1; a sludge concentrator 3 for concentrating the sludge discharged from the hydraulic cyclone 2 to obtain a concentrated sludge; and a discharging mechanism 4 for intermittently discharging the concentrated sludge to the outside.
    • 要解决的问题:以较低的成本比以前更准确地进行电化学加工。 解决方案:电化学加工装置包括:加工机体1,用于利用电解液对工件进行所需的加工; 用于从加工机体1使用的废电解液X1除去污泥的污泥去除器7; 以及用于收集电解液X2的电解液供给器,其中通过污泥去除器7除去污泥以将电解液循环给加工机体1.污泥去除器7包括:液压旋风分离器2,用于将污泥从 使用电解液X1; 用于浓缩从液压旋风分离器2排出的污泥获得浓缩污泥的污泥浓缩器3; 以及用于将浓缩污泥间歇地排出到外部的排出机构4。 版权所有(C)2012,JPO&INPIT
    • 15. 发明专利
    • Water-containing solid matter drying device
    • 含水固体干燥装置
    • JP2014105980A
    • 2014-06-09
    • JP2012261826
    • 2012-11-30
    • Ihi Corp株式会社Ihi
    • NISHIYAMA YUICHIMURAMOTO TOMOYAOKUNO MASAYAUENO TOSHIICHIROARAMAKI HIROSHI
    • F26B17/20C02F11/12F26B21/00
    • Y02P70/40
    • PROBLEM TO BE SOLVED: To provide a water-containing solid matter drying device for recovering energy.SOLUTION: A water-containing solid matter drying device includes: a first screw feeder 11 for recovering a sensible heat of water and thermal medium gas, and preheating a supplied water-containing solid matter with the recovered heat; a second screw feeder 12 for recovering a latent heat of water vapor, and heating the preheated water-containing solid matter with the recovered heat so that water contained in the water-containing solid matter is vaporized to form water vapor; a third screw feeder 13 for recovering the sensible heat of the solid matter supplied from the second screw feeder 12 with the thermal medium gas, and cooling the solid matter to provide a dried matter; a first compressor 14 for applying adiabatic compression to the water vapor supplied from the second screw feeder 12 to increase the temperature; and a second compressor 15 for applying adiabatic compression to the thermal medium gas supplied from the third screw feeder 13 to increase the temperature. The temperature-increased water vapor and thermal medium gas are used as a heat source to recover the heat to the water-containing solid matter.
    • 要解决的问题:提供一种用于回收能量的含水固体物质干燥装置。解决方案:含水固体物质干燥装置包括:第一螺旋进料器11,用于回收水和热介质气体的显热,并预热 提供含水固体物质,回收热量; 第二螺旋进料器12,用于回收水蒸气的潜热,并且用回收的热量加热预热的含水固体物质,使含水固体物质中的水被蒸发以形成水蒸汽; 第三螺旋进料器13,用于回收由第二螺旋进料器12供应的固体物质与热介质气体的显热,并冷却固体物质以提供干燥物质; 第一压缩机14,用于对从第二螺旋进料器12供应的水蒸气进行绝热压缩以增加温度; 以及用于对从第三螺旋进料器13供应的热介质气体进行绝热压缩以增加温度的第二压缩机15。 使用温度升高的水蒸汽和热介质气体作为热源来回收含水固体物质的热量。
    • 16. 发明专利
    • Method and device for recovery of carbon dioxide
    • 回收二氧化碳的方法和装置
    • JP2013094687A
    • 2013-05-20
    • JP2011236829
    • 2011-10-28
    • Ihi Corp株式会社Ihi
    • NAKAMURA NORITAKAYAMANAKA YASUAKIOKUNO MASAYA
    • B01D53/14B01D53/62C01B32/50
    • B01D53/62B01D53/1406B01D53/1425B01D53/1475B01D2252/204B01D2252/20484B01D2252/20489B01D2252/50B01D2258/0283Y02A50/2342Y02C10/06
    • PROBLEM TO BE SOLVED: To provide a method and a device for recovery of carbon dioxide which enable reduction of operation costs by reducing the energy required to regenerate the absorption liquid.SOLUTION: The carbon dioxide recovery device includes an adsorption tower causing carbon dioxide contained in a gas to be absorbed in the absorption liquid, a regeneration tower heating the absorption liquid to discharge and regenerate the carbon dioxide and a circulation system circulating the absorption liquid. The absorption tower has the first and the second absorption sections, and the gas is fed to the second absorption section through the first absorption section. The regeneration tower has the first and the second regeneration sections. The first regeneration section has an external heating means, and the second regeneration section is heated by the heat of the gas discharged from the first regeneration section. The circulation system has the first circulation passage circulating the absorption liquid between the first absorption section and the second regeneration section, and the second circulation passage circulating the absorption liquid between the second absorption section and the first regeneration section, and circulates the absorption liquid separately in the passages.
    • 解决的问题:提供二氧化碳回收方法和装置,通过减少再生吸收液体所需的能量来降低运行成本。 解决方案:二氧化碳回收装置包括使吸收液体中吸收的气体中所含的二氧化碳的吸附塔,加热吸收液体以再生二氧化碳的再生塔和使吸收循环的循环系统 液体。 吸收塔具有第一吸收部和第二吸收部,通过第一吸收部将气体供给到第二吸收部。 再生塔具有第一和第二再生段。 第一再生部分具有外部加热装置,并且第二再生部分被从第一再生部分排出的气体的热量加热。 循环系统具有使第一吸收部和第二再生部之间的吸收液循环的第一循环通路,第二循环通路使吸收液在第二吸收部与第一再生部之间循环,并将吸收液分别在 段落。 版权所有(C)2013,JPO&INPIT
    • 17. 发明专利
    • Electrochemical machining apparatus and electrochemical machining method
    • 电化学加工设备和电化学加工方法
    • JP2013086202A
    • 2013-05-13
    • JP2011227816
    • 2011-10-17
    • Ihi Corp株式会社Ihi
    • OKUNO MASAYA
    • B23H3/04B23H3/10
    • PROBLEM TO BE SOLVED: To provide an electrochemical machining apparatus and an electrochemical machining method by which both a plane portion and an edge are highly accurately machined.SOLUTION: The electrochemical machining apparatus includes: a pair of first electrodes 10A which are installed in such a manner that they face both faces of a plane-shaped metal to be machined fixed at a prescribed position and a distance to the surface of the metal to be machined is changeable; a first voltage application section 11A which applies a voltage between the metal to be machined as an anode and the first electrodes 10A as a cathode; a first sending section 16 which sends an electrolyte in such a manner that the electrolyte flows to a clearance between the first electrodes 10A and the metal to be machined applied with the voltage; a pair of second electrodes 10B which are installed in such a manner that they face ends of the metal to be machined having been machined by the application of the voltage by the first voltage application section 11A, and the distance to the edges of the fixed metal to be machined is changeable; a second voltage application section which applies a voltage between the metal to be machined as an anode and the second electrodes 10B as a cathode; and a second sending section 16 which sends an electrolyte in such a manner that the electrolyte flows between the second electrodes 10B and metal to be machined applied with the voltage.
    • 要解决的问题:提供一种电化学加工装置和电化学加工方法,通过该方法,平面部分和边缘都被高精度地加工。 解决方案:电化学加工装置包括:一对第一电极10A,其以与被加工的平面状金属的两面相对的方式安装,该平面状金属被固定在规定位置, 要加工的金属是可变的; 在作为阳极的被加工金属和作为阴极的第一电极10A之间施加电压的第一电压施加部11A; 第一发送部分16,其以电解质流动到第一电极10A和待加工金属之间的间隙的方式发送电解质,施加电压; 一对第二电极10B以与第一电压施加部11A施加电压而被加工的被加工金属的端部相对的方式安装,并且与固定金属的边缘的距离 被加工是可变的; 第二电压施加部,其在作为阳极的被加工金属和作为阴极的第二电极10B之间施加电压; 以及第二发送部分16,其以这样的方式发送电解质,使得电解质在第二电极10B和被加工的金属之间流过施加电压。 版权所有(C)2013,JPO&INPIT
    • 18. 发明专利
    • Seawater-desalinating system and method therefor
    • 海水脱盐系统及其方法
    • JP2012239969A
    • 2012-12-10
    • JP2011111452
    • 2011-05-18
    • Ihi Corp株式会社Ihi
    • MURAMOTO TOMOYANISHIYAMA YUICHIOKUNO MASAYANAKAMURA NORITAKA
    • C02F1/04B01D1/28
    • Y02A20/128
    • PROBLEM TO BE SOLVED: To provide a seawater-desalinating system which compresses desalinated distilled water not only to use it as a heat source for vaporizing seawater but also to effectively use it so as to preliminarily heat the seawater, and improves thermal efficiency as the whole system; and to provide a method therefor.SOLUTION: In the seawater-desalinating system and in the method therefor, a heat exchange between seawater and vapor compressed by a compressor (5) is made in an evaporator (4), and heat exchanges among the seawater, distilled water and condensed water are made by heat exchanging units (15) which are provided in a seawater-supplying flow channel (7), a distilled water returning flow channel (13) and a condensed water returning flow channel (14). In addition, a gas/liquid ratio measuring device (30) measures the gas/liquid ratio of the vapor to the condensed water of the distilled water which flows into the heat exchanging units, and a control device (20), which has a distilled water gas/liquid ratio adjusting part, adjusts the gas/liquid ratio which is measured by the gas/liquid ratio measuring device.
    • 要解决的问题:提供一种海水淡化系统,其将淡化蒸馏水压缩,不仅可以将其用作蒸发海水的热源,而且有效地利用它,以预热海水,并提高热效率 作为整个系统; 并提供一种方法。 解决方案:在海水淡化系统及其方法中,在蒸发器(4)中,由蒸发器(4)在海水和压缩机(5)压缩的蒸气之间进行热交换,并在海水,蒸馏水和 冷凝水由设置在海水供给流路(7),蒸馏水返回流路(13)和冷凝水返回流路(14)中的热交换单元(15)制成。 此外,气/液比测量装置(30)测量流入热交换单元的蒸馏水的蒸汽与冷凝水的气体/液体比,以及控制装置(20),其具有蒸馏 水气比调节部,调整由气/液比测定装置测定的气/液比。 版权所有(C)2013,JPO&INPIT
    • 19. 发明专利
    • Method and apparatus for recovering carbon dioxide
    • 回收二氧化碳的方法和装置
    • JP2012152704A
    • 2012-08-16
    • JP2011015125
    • 2011-01-27
    • Ihi Corp株式会社Ihi
    • NAKAMURA NORITAKAMURAMOTO TOMOYANISHIYAMA YUICHIOKUNO MASAYA
    • B01D53/62B01D53/14C01B32/50
    • B01D53/1425B01D53/1475Y02A50/2342Y02C10/06
    • PROBLEM TO BE SOLVED: To provide a method and an apparatus for recovering carbon dioxide which achieve reduction in energy to be supplied for regeneration of an absorbing liquid.SOLUTION: The apparatus for recovering carbon dioxide has: an absorption column which absorbs carbon dioxide by bringing carbon dioxide-containing gas into contact with the absorbing liquid; a regeneration column for regenerating the absorbing liquid which has absorbed carbon dioxide, by releasing carbon dioxide from the absorbing liquid; a circulation system for circulating the absorbing liquid so that the absorbing liquid returns to the absorption column from the absorption column via the regeneration column; and a steam supply system which uses at least one of the absorbing liquid that is returned to the absorption column and the absorbing liquid in the absorption column to generate steam that can be used as a heat source for regenerating the absorbing liquid and which supplies the steam to the regeneration column. Absorption of carbon dioxide and release/regeneration of carbon dioxide are repeated and high temperature steam is generated from the absorbing liquid that is returned to the absorption column and the absorbing liquid in the absorption column, and the steam is supplied to the regeneration column and is used as the heat source for regenerating the absorbing liquid.
    • 解决的问题:提供一种回收二氧化碳的方法和装置,其实现能够减少吸收液体再生的能量的降低。 解决方案:用于回收二氧化碳的装置具有:吸收塔,其通过使含二氧化碳的气体与吸收液接触而吸收二氧化碳; 再生塔,用于通过从吸收液中释放二氧化碳来再生吸收了二氧化碳的吸收液体; 循环系统,用于使吸收液体循环,使得吸收液体经由再生塔从吸收塔返回到吸收塔; 以及蒸汽供给系统,其使用返回到吸收塔的吸收液中的至少一种和吸收塔中的吸收液体产生可用作再生吸收液体的热源并提供蒸汽的蒸汽 到再生柱。 重复二氧化碳的吸收和二氧化碳的释放/再生,从返回到吸收塔的吸收液和吸收塔中的吸收液产生高温蒸汽,将蒸汽供给至再生塔, 用作再生吸收液体的热源。 版权所有(C)2012,JPO&INPIT
    • 20. 发明专利
    • Glycerol reformer and reforming method
    • GLYCEROL改性剂和改性方法
    • JP2010285320A
    • 2010-12-24
    • JP2009141108
    • 2009-06-12
    • Ihi Corp株式会社Ihi
    • OKUNO MASAYAHAMADA YUKITAKAOHARA HIROAKI
    • C01B3/32
    • PROBLEM TO BE SOLVED: To provide a glycerol reformer and reforming method which can treat by-produced glycerol of a biodiesel fuel at a low cost.
      SOLUTION: The glycerol reformer 1 comprises a neutralization reactor 4 in which an acid is added to a BDF(R) by-produced glycerol for neutralization; a refining section to refine the neutralized BDF(R) by-produced glycerol; a reforming reactor 15 in which the refined BDF(R) by-produced glycerol and a reaction gas containing at least steam are caused to be subjected to a reforming reaction to reform the glycerol; a gas refining device 18 to refine hydrogen from a gas after reforming produced after the reaction; and an exhaust gas introduction pipe 10 to introduce an exhausted gas exhausted from the gas refining device 18 to the neutralization reactor 4 as the acid.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 待解决的问题:提供可以低成本处理生物柴油的副产甘油的甘油重整器和重整方法。 解决方案:甘油重整器1包括中和反应器4,其中将酸加入到副产甘油的BDF(R)中进行中和; 精炼部分,以精制中和的BDF(R)副产甘油; 将精制BDF(R)副产物甘油和至少含有蒸汽的反应气体进行重整反应以重整甘油的重整反应器15; 气体精炼装置18,用于从反应后产生的重整后的气体中精炼氢气; 以及排气导入管10,其将从气体精制装置18排出的排出气体作为酸引入中和反应器4。 版权所有(C)2011,JPO&INPIT