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    • 31. 发明专利
    • Turbine facilities, heat recovery steam generator and water treatment method
    • 涡轮机设备,热回收蒸汽发生器和水处理方法
    • JP2007224820A
    • 2007-09-06
    • JP2006047115
    • 2006-02-23
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • TSUBAKISAKI SENICHIMOTAI KENJITAKEUCHI KAZUHISA
    • F01K9/00C02F1/20C02F1/42F01K23/10F22B37/52F22B37/56
    • Y02E20/16
    • PROBLEM TO BE SOLVED: To provide turbine facilities, a heat recovery steam generator and a water treatment method capable of maintaining a reference of conductivity in a system without influence in CO
      2 due to ammonia injection even if pH is kept at 9.5 or higher.
      SOLUTION: In the turbine facilities consists of a heat recovery steam generator 2 generating steam by heat from a heat source, a steam turbine 6 operated by steam of the heat recovery steam generator 2, a condenser 8 condensing exhaust gas of the steam turbine 8, and a water supply system feeding condensed water 50 condensed by the condenser 8 to the heat recovery steam generator 2 side via a condensed water line L0, an ammonia supplier 51 supplying any of ammonia gas or ammonia stock solution or ammonia diluent excluding CO2 to keep supply water in a drum of the heat recovery steam generator 2 pH 9.5 or higher and conductivity after passing through a cation ion exchange column at 0.3μS/cm or less is provided in the condensed water line L0 supplying the condensed water 50.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供涡轮设备,热回收蒸汽发生器和水处理方法,其能够在系统中保持导电性参考,而不影响CO 2 ,因为氨注入甚至 如果pH保持在9.5或更高。 解决方案:涡轮机设备由热回收蒸汽发生器2组成,该热回收蒸汽发生器2通过来自热源的热量产生蒸汽,由热回收蒸汽发生器2的蒸汽操作的蒸汽轮机6,冷凝器8,冷凝蒸汽的废气 涡轮机8和供给冷凝水50的供水系统,经由冷凝器8经由冷凝水管路L0向冷热回收蒸汽发生器2侧供给冷凝水50,供给氨气或氨储备液的氨供给装置51,除了二氧化碳 为了将热水回收蒸汽发生器2的鼓中的供水保持在pH9.5以上,在供给冷凝水50的冷凝水配管L0中设置通过0.3μS/ cm以下的阳离子交换柱的导电性。 P>版权所有(C)2007,JPO&INPIT
    • 33. 发明专利
    • Leakage detection device
    • 泄漏检测装置
    • JP2004144708A
    • 2004-05-20
    • JP2002312560
    • 2002-10-28
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • TAKEUCHI KAZUHISANAGAI MASAHIKOSAO TOSHIOMOTAI KENJIYAMAURA TSUYOTOSHI
    • G01N27/06G01M3/04G01M3/16G01M3/38
    • PROBLEM TO BE SOLVED: To provide a leakage detection device which specifies a leakage position of target equipment of leakage detection.
      SOLUTION: The leakage detection device includes a plurality of metallic wires 2A to 2H, 3A and 3B which are provided apart from each other under the target equipment 100 of leakage detection in a first direction which is parallel to one direction and a second direction which crosses the one direction and a leakage position specifying means 10 for specifying the leakage position of the target equipment based on a value of electric conductivity between the metallic wire 3A of the first direction and the metallic wire 2D of the second direction and the position where the metallic wires 3A and 2D cross at the time.
      COPYRIGHT: (C)2004,JPO
    • 要解决的问题:提供一种泄漏检测装置,其指定目标设备的泄漏检测的泄漏位置。 解决方案:泄漏检测装置包括在目标设备100下在与一个方向平行的第一方向上的泄漏检测下彼此分开设置的多条金属线2A至2H,3A和3B,第二 基于第一方向的金属线3A与第二方向的金属线2D之间的电导率的值来指定目标设备的泄漏位置的泄漏位置指定装置10以及位于第一方向的金属线2D之间的位置 金属线3A和2D在那里交叉。 版权所有(C)2004,JPO
    • 34. 发明专利
    • 淡水化装置及び淡水化方法、並びに淡水、塩及び有価物の併産方法
    • 脱盐装置和脱盐方法,以及生产新鲜水,盐和有价值材料的方法
    • JP2015029934A
    • 2015-02-16
    • JP2013159916
    • 2013-07-31
    • 三菱重工業株式会社Mitsubishi Heavy Ind Ltd
    • HORIZOE KOJITAKEUCHI KAZUHISAITO YOSHIAKIKAKIUE HIDEMASAIWAHASHI HIDEOTOKUNAGA KIICHI
    • C02F1/44B01D61/02B01D61/44B01D61/46B01D61/58C02F1/04C02F1/28C02F1/42C02F1/469C02F9/00
    • Y02A20/128Y02A20/131Y02A20/134
    • 【課題】電気透析部からの脱塩水中に含まれる多価イオンを除去すると共にホウ素を除去し、回収する有価物の純度を向上することができる淡水化装置及び淡水化方法、並びに淡水、塩及び有価物の併産方法を提供すること。【解決手段】供給される供給海水(原水)W中の塩分が除去された淡水W11と供給海水(原水)W中の塩分が濃縮された塩分濃縮水W12とを得る淡水化部12と、塩分濃縮水W12を電気透析し、濃縮かん水W13と希釈かん水W14とを得る電気透析部13と、希釈かん水W14中の残存イオンを有価物61として回収し、脱塩水W20とする反応晶析部23と、脱塩水W20中のホウ素を除去するホウ素除去部51と、ホウ素が除去されたホウ素除去液を、淡水化部12の入り口側の供給海水(原水)Wに循環水W21として循環する循環ラインL21とを備える。【選択図】図1
    • 要解决的问题:提供一种能够从电渗析装置除去脱盐水中所含的多价离子并除去硼并提高回收的有价值材料的纯度的脱盐装置和脱盐方法, 用于共同生产淡水,盐和有价值的材料的方法。解决方案:脱盐装置包括:用于获得所供给的进料海水(原水)W中的淡水Wwhose盐含量的脱盐单元12,以及盐 - 含水丰富水饲料海水(原水)W中的Wwhose盐含量已经丰富; 用于获得富含盐水的电渗析单元13和通过对含盐浓缩水W进行电渗析的稀释盐水W; 用于回收稀释的盐水中的残留离子的反应结晶单元23是获得脱盐水W的有价物质61; 用于除去淡化水W中的硼的除硼单元51; 以及再循环管线L,用于将去除硼的硼去除的液体再循环到作为再循环水W的脱盐单元12的入口侧的进料海水(原水)W。
    • 36. 发明专利
    • Desalination apparatus and desalination method
    • 脱盐装置和脱盐方法
    • JP2011110531A
    • 2011-06-09
    • JP2009271847
    • 2009-11-30
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • TAKEUCHI KAZUHISAITO YOSHIAKIKAKIUE HIDEMASAIWAHASHI HIDEOMATSUI KATSUNORITANAKA KENJI
    • C02F1/44B01D61/04B01D61/58C02F1/70
    • C02F1/441B01D61/025B01D61/04B01D61/10B01D61/12B01D2311/04C02F1/76C02F2209/06Y02A20/131B01D2311/2649B01D2311/12
    • PROBLEM TO BE SOLVED: To provide a desalination apparatus and a desalination method which smoothly and effectively carry out neutralization treatment using a reductant for raw water after chlorination treatment. SOLUTION: The desalination apparatus includes a pretreatment apparatus 13 having a pretreatment membrane 13a for filtering a turbid content in a raw water 11 added with a chlorine containing water 12, a reverse osmosis membrane apparatus 17 with a reverse osmosis membrane 16 which removes saline matter from filtrated water from the pretreatment apparatus 13 to produce permeated water, and a reductant injection apparatus 30 for neutralizing added chlorine in the preceding flowing side of the reverse osmosis membrane apparatus 17, wherein while the reductant injection apparatus 30 samples a part 14a of the filtrated water 14 to add an SBS (Sodium bisulfate soda) solution 18 for quantitative analysis, the apparatus determines a maximum changing part (an equivalent point) of oxidation reduction potential of the reductant and chlorine and a reductant addition concentration (Csm) for the equivalent point, and supplies the SBS solution 18 corresponding to the concentration into the filtrated water 14 to neutralize the chlorine. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种使用氯化处理后的原水用还原剂平稳有效地进行中和处理的脱盐装置和脱盐方法。 解决方案:脱盐装置包括:预处理装置13,其具有用于过滤加入含氯水12的原水11中的混浊成分的预处理膜13a,反渗透膜装置17,反渗透膜装置17除去 来自前处理装置13的过滤水的盐水成分以产生渗透水;以及用于中和反渗透膜装置17的前一流动侧的添加氯的还原剂注入装置30,其中当还原剂注入装置30对 过滤水14加入用于定量分析的SBS(硫酸氢钠苏打)溶液18,该装置确定还原剂和氯的氧化还原电位的最大变化部分(当量点)和还原剂加入浓度(Csm)为 并将浓度对应的SBS溶液18供给到过滤器中 用水14中和氯。 版权所有(C)2011,JPO&INPIT
    • 38. 发明专利
    • Spiral type seawater desalination apparatus
    • 螺旋式海水淡化装置
    • JP2010179264A
    • 2010-08-19
    • JP2009026627
    • 2009-02-06
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • ITO YOSHIAKITAKEUCHI KAZUHISAHORI TAKAYOSHITANAKA KENJIIWAHASHI HIDEO
    • C02F1/44B01D61/06B01D61/12B01D61/58B01D63/12
    • B01D63/12B01D61/022B01D61/025B01D61/06B01D61/12B01D2311/14B01D2311/16B01D2311/165B01D2313/18B01D2313/246B01D2317/022B01D2317/025B01D2319/022B01D2319/025C02F1/441C02F2103/08C02F2209/03C02F2303/10Y02A20/131Y02W10/30
    • PROBLEM TO BE SOLVED: To provide a spiral type seawater desalination apparatus capable of reducing output variations among reverse osmosis membrane elements loaded into a pressure vessel.
      SOLUTION: The seawater desalination apparatus includes the spiral type pressure vessel 15 loaded with a plurality of the reverse osmosis membrane elements 13-1 to 13-10 having a spiral type reverse osmosis membrane and connected to one another via a permeating water pipe 14, a raw water supply line for supplying raw water 11 to the pressure vessel, a concentrated water discharging line for discharging concentrated water 16, a plug 17 for closing the permeating water pipe 14 at the center of the connected reverse osmosis membrane elements 13-1 to 13-10, a forward permeating water line and a backward permeating water line for discharging out respectively forward permeating water 12-1 and backward permeating water 12-2 separated forward and backward in the permeating water pipe 14 closed by the plug 17, a pressure regulating valve 20 fixed in the raw water supply line for regulating the pressure of the supplied raw water, and a flow regulating valve 22 fixed in the forward permeating water line for regulating the pressure of the forward permeating water 12-1.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 解决的问题:提供能够减少装载到压力容器中的反渗透膜元件的输出变化的螺旋型海水淡化装置。 解决方案:海水淡化装置包括装有多个具有螺旋型反渗透膜的多个反渗透膜元件13-1至13-10的螺旋型压力容器15,并通过渗透水管道彼此连接 14是用于向压力容器供给原水11的原水供给管,用于排出浓缩水16的浓缩排水管16,将连接的反渗透膜元件13〜中心的渗透水管14封闭的塞17, 如图1至图13-10所示,在渗透水管14中由插头17封闭的分别向前和向后分离的向前渗透水12-1和后向渗透水12-2的向前渗透水线和后向渗透水管, 固定在原水供给管线中用于调节供给的原水的压力的压力调节阀20以及固定在正向渗透物w中的流量调节阀22 用于调节正向渗透水12-1的压力的直线。 版权所有(C)2010,JPO&INPIT
    • 39. 发明专利
    • Anti-fouling and corrosion protection device of structure contacting with seawater and anti-fouling and corrosion-proofing method
    • 用海水和防腐蚀和腐蚀保护方法接触的结构的防止和腐蚀保护装置
    • JP2007186933A
    • 2007-07-26
    • JP2006006616
    • 2006-01-13
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • FURUKAWA SEIJITAKEUCHI KAZUHISAKUROISHI TAKUJISAKIMURA MITSURUYAMASHITA YUTAKASHINOHARA MASATOMO
    • E02B5/00B63B59/04C02F1/00C02F1/46
    • PROBLEM TO BE SOLVED: To provide an anti-fouling and corrosion protection device of a structure contacting with seawater and capable of continuing the effect of anti-fouling and corrosion protection even if it is operated for a long period of time and continuing also the durability of the device for a long period of time and an anti-fouling and corrosion proofing method.
      SOLUTION: In the anti-fouling and corrosion protection contacting with seawater and protecting ocean creatures from being adhered to the wall surface of the structure by supplying a current based on a power connection pattern intermittently repeating one cycle setting a predetermined voltage and an applied time in a titanium membrane formed on the wall surface of the structure contacting with seawater through an insulating membrane, a potential sensor measuring the surface potential of the titanium membrane is provided, and the power connection pattern is renewed in real time based on a voltage value obtained by the potential sensor. Further, the fine adjustment of the power connection pattern can be made in real time based on measurement data obtained by a water quality monitor of seawater, a temperature sensor, a flow velocity sensor and a picture monitor.
      COPYRIGHT: (C)2007,JPO&INPIT
    • 要解决的问题:提供与海水接触的结构的防污和防腐蚀装置,并且即使长时间运行并且继续运行也能够继续防污和防腐蚀的效果 长时间使用设备的耐久性和防污防腐方法。 解决方案:在与海水接触的防污和防腐蚀保护中,通过以间歇地重复设定预定电压的一个循环的电力连接图案供应电流来保护海洋生物不被粘附到结构的壁表面,并且 在通过绝缘膜与形成在与海水接触的结构的壁表面上的钛膜中施加时间,提供测量钛膜的表面电位的电位传感器,并且基于电压实时更新电力连接图案 值由电位传感器获得。 此外,可以基于通过海水,温度传感器,流速传感器和图像监视器的水质监视器获得的测量数据实时地进行电力连接模式的微调。 版权所有(C)2007,JPO&INPIT