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    • 1. 发明专利
    • Apparatus and method for decomposition treatment of sulfur hexafluoride
    • 硫化氢分解处理装置及方法
    • JP2013066855A
    • 2013-04-18
    • JP2011207767
    • 2011-09-22
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社Mhi Oceanics Co Ltdエムエイチアイオーシャニクス株式会社
    • URESHINO AYAKOTSUKAHARA CHISATOIKUTA ATSUSHIKUZUSHIMA FUMITOFUKUZUMI TADATSUGU
    • B01J8/08B01J8/02C01B17/74C01G49/10
    • PROBLEM TO BE SOLVED: To provide an apparatus and a method for decomposition of sulfur hexafluoride which enable convenient and reliable decomposition and detoxification of sulfur fluoride.SOLUTION: The apparatus includes a sulfur hexafluoride storage tank 12 storing sulfur hexafluoride 11, a supply tank 14 supplying a hydrolyzing agent 13 of a metal, e.g. iron, a hydrolysis section 15 packed with the hydrolyzing agent 13 to allow hydrolysis, a liquid recovery section 18 and a solid recovery section 19 recovering liquid products 16 and solid products 17, respectively, produced by the hydrolysis, a heater 20 serving as a heating means for heating the hydrolysis section 15 externally, a sulfur hexafluoride (SF) gas feed line Lfeeding sulfur hexafluoride (SF) 11 to the hydrolyzing agent 13 in the hydrolysis section 15 and a steam supply means 22 for supplying high-temperature steam 21 into the hydrolysis section 15. The sulfur hexafluoride 11 is hydrolyzed for detoxification treatment in the hydrolysis section 15.
    • 要解决的问题:提供一种分解六氟化硫的装置和方法,其能够方便可靠地分解和解毒氟化硫。 解决方案:该装置包括储存六氟化硫11的六氟化硫储存罐12,供应金属的水解剂13的供应罐14,例如水。 铁,用水解剂13填充以水解的水解部分15,液体回收部分18和固体回收部分19,分别回收通过水解产生的液体产物16和固体产物17,加热器20用作加热 用于在外部加热水解部分15的装置,六氟化硫(SF 6 )供气管线L 1 水解部分15中的水解剂13和用于将高温蒸汽21供应到水解部分15中的蒸汽供应装置22中。将六氟化硫11水解 在水解部分15中进行解毒处理。版权所有(C)2013,JPO&INPIT
    • 4. 发明专利
    • Dehydration treatment apparatus and method for water content oil
    • 脱水处理装置和水含量油的方法
    • JP2012130862A
    • 2012-07-12
    • JP2010285191
    • 2010-12-21
    • Mhi Oceanics Co LtdMitsubishi Heavy Ind Ltdエムエイチアイオーシャニクス株式会社三菱重工業株式会社
    • URESHINO AYAKOTSUKAHARA CHISATOIKUTA ATSUSHIKUZUSHIMA FUMITOFUKUZUMI TADATSUGU
    • B01D17/00B01D17/035B01D17/09C10G33/06
    • PROBLEM TO BE SOLVED: To provide dehydration treatment apparatus and method for water content oil, which can efficiently treat water from oil containing a large amount of water.SOLUTION: The dehydration treatment apparatus 10A for water content oil includes: an oil/water separator 12 which after introducing water content oil 11, leaves the water content oil 11 to separate the water content oil 11 into oil 11A and water 11B; a dehydrator 13 which separately charges the oil 11A portion separated by the oil/water separator 12 and performs dehydration treatment; and a bubble generation means 15 for generating bubbles 14 in the oil 11A charged to the dehydrator 13, wherein oil and water can be separated from each other by leaving treatment of the oil/water separator 12, and then by removing water (dissolved water) dissolved only in the oil by the dehydrator 13, the dehydration time required for removing water from oil containing a large amount of water can be shortened.
    • 要解决的问题:提供含水油的脱水处理装置和方法,其可以有效地处理含有大量水的油的水。 解决方案:含水油的脱水处理装置10A包括:油/水分离器12,其在引入含水油11之后离开含水油11以将含水油11分离成油11A和水11B; 脱水器13,其分别对由油/水分离器12分离的油11A部分进行充电并进行脱水处理; 以及用于在装入脱水器13的油11A中产生气泡14的气泡产生装置15,其中油和水可以通过处理油/水分离器12而彼此分离,然后通过除去水(溶解水) 通过脱水器13仅溶解在油中,可以缩短从含有大量水的油中除去水所需的脱水时间。 版权所有(C)2012,JPO&INPIT
    • 7. 发明专利
    • Apparatus and method for removing foreign matter in oil
    • 在油中除去外来物质的装置和方法
    • JP2011136299A
    • 2011-07-14
    • JP2009298896
    • 2009-12-28
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • MANIWA SHIGENOBUTSUKAHARA CHISATOTAKEDA KAZUHIRONOZAKI AKIHIROURESHINO AYAKO
    • B01D17/038B01D17/00C10M175/00
    • PROBLEM TO BE SOLVED: To provide an apparatus and method for removing foreign matter in oil for continuously and stably removing moisture in lubricant oil. SOLUTION: The foreign matter removing apparatus in the oil includes: an inner cylinder 12 and an outer cylinder 13 filled with a predetermined amount of oil 11 containing moisture W; a feed path 15 and a discharge path 16 feeding and discharging the oil containing the moisture W into the inner cylinder 12 and outer cylinder 13; and a rotation means integrally rotating the inner cylinder 12 and outer cylinder 13. The inner cylinder 12 is composed of a double-layered structure having a fixed cylinder having slit holes 14 and a sliding cylinder having slit holes 14 at the same positions as those of the slit holes 14. When axially sliding the sliding cylinder, the slit holes 14 of the fixed cylinder coincide with the slit holes 14 of the sliding cylinder to make the outer cylinder communicate with the inner cylinder. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种用于除去油中异物的装置和方法,以连续且稳定地除去润滑油中的水分。 解决方案:油中的异物去除装置包括:内筒12和外筒13,其装有预定量的含有水分W的油11; 进给路径15和排出路径16,将含有水分W的油进给到外筒13; 以及使内筒12和外筒13一体旋转的旋转装置。内筒12由具有狭缝孔14的固定筒体和具有与第一筒体12和外筒13的相同位置的狭缝孔14的滑动筒构成的双层结构构成 狭缝孔14.当滑动气缸轴向滑动时,固定气缸的狭缝孔14与滑动气缸的狭缝孔14重合,使外筒与内筒连通。 版权所有(C)2011,JPO&INPIT
    • 8. 发明专利
    • Rotating machine
    • 旋转机
    • JP2014118916A
    • 2014-06-30
    • JP2012276161
    • 2012-12-18
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • IWAKIRI KENICHIROFUKABORI TAKUYAURESHINO AYAKOMIYATA YASUYUKI
    • F04D29/66F04D29/54
    • PROBLEM TO BE SOLVED: To further surely suppress a rotating stall, and to enlarge a working area.SOLUTION: This rotating machine comprises: a cylindrical casing 20; a rotating shaft 10 rotatably arranged in the casing 20; a plurality of vanes 12 which are arranged in a flow passage 29 between the rotating shaft 10 and the casing 20 in the circumferential direction around the rotating shaft 10; and a suppression part 40A which is arranged at the internal peripheral face 20a of the casing 20 or the external peripheral face of the rotating shaft 10 at the upstream side of the flow direction of a fluid in the flow passage 29 rather than front edges 12a of the vanes 12 so as to be relatively rotatable with respect to the vanes 12, and suppresses the growth of a swirl formed in the vicinity of the front edges 12a of the vanes 12.
    • 要解决的问题:进一步确保抑制旋转失速并扩大工作区域。解决方案:该旋转机器包括:圆柱形壳体20; 可旋转地布置在壳体20中的旋转轴10; 多个叶片12,其围绕旋转轴10配置在旋转轴10和壳体20之间的周向上的流路29中; 以及抑制部40A,其设置在流路29的流体的流动方向的上游侧的壳体20的内周面20a或旋转轴10的外周面,而不是流路 叶片12相对于叶片12相对旋转,并且抑制在叶片12的前缘12a附近形成的涡流的生长。
    • 9. 发明专利
    • Device and method for measuring gas component in gas
    • 用于测量气体中气体成分的装置和方法
    • JP2011112546A
    • 2011-06-09
    • JP2009270105
    • 2009-11-27
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • DOBASHI SHINSAKUTSUKAHARA CHISATONOZAKI AKIHIROURESHINO AYAKO
    • G01N21/65G01N21/63
    • PROBLEM TO BE SOLVED: To provide a device and a method for measuring a gas component in gas capable of measuring the gas component in the measuring object gas stably for a long period in one-time gas measurement. SOLUTION: The device for measuring the gas component in the gas for measuring the gas component in the measuring object gas from Raman scattered light and plasma emission generated by laser light with which the measuring object gas is irradiated includes a laser device 13 for irradiating the measuring object gas 11 with first laser light 12, a wavelength converter 15 for converting the wavelength of the first laser light 12 into second laser light 14, a photodetector 17 for measuring the Raman scattered light 16 generated by irradiation with the converted second laser light 14, a laser delay line 18 of the first laser light 12 for delaying the first laser light 12; and the photodetector 17 for measuring the plasma emission 19 generated by irradiation with the delayed first laser light 12. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种能够在一次气体测量中长时间稳定地测量测量对象气体中的气体成分的气体中的气体成分的测量装置和方法。 解决方案:用于测量用于测量来自拉曼散射光的测量对象气体中的气体成分的气体中的气体成分的测量装置,其中照射测量对象气体的激光产生的等离子体发射包括:激光装置13,其用于 用第一激光12照射测量对象气体11,将第一激光12的波长转换成第二激光14的波长转换器15,用于测量通过转换的第二激光照射产生的拉曼散射光16的光电检测器17 光14,用于延迟第一激光12的第一激光12的激光延迟线18; 以及用于测量由延迟的第一激光12照射产生的等离子体发射19的光电检测器17.版权所有(C)2011,JPO&INPIT
    • 10. 发明专利
    • Hydrogen fluoride-containing gas detector, hydrogen fluoride-containing gas treatment apparatus and hydrogen fluoride-containing gas detection method
    • 含氢氟化物气体检测器,含氟化物气体处理装置和含氟氟化物气体检测方法
    • JP2011106861A
    • 2011-06-02
    • JP2009259820
    • 2009-11-13
    • Mitsubishi Heavy Ind Ltd三菱重工業株式会社
    • URESHINO AYAKOTSUKAHARA CHISATODOBASHI SHINSAKU
    • G01N27/02B01D53/68H01L21/3065
    • PROBLEM TO BE SOLVED: To provide a hydrogen fluoride-containing gas detector capable of beforehand detecting a state before a hydrogen fluoride adsorbent is broken, a hydrogen fluoride-containing gas treatment apparatus, and a hydrogen fluoride-containing gas detecting method. SOLUTION: The HF-containing gas detector 14A includes the insulating part 21 provided in piping 12, the first conductive part 24 provided in the piping 12, the second conductive part 25 provided to the first conductive part 24 through the insulating part 21 and the ammeter 23 connected between the first conductive part 24 and the second conductive part 25 and the insulating part 21 is provided between the first and second conductive parts 24 and 25. Four slits 26 are provided to the second conductive part 25 at a predetermined interval. When the insulating part 21 is deteriorated by the exposure to the HF-containing gas to form a pore, electrical continuity is produced between the first and second conductive parts 24 and 25 to be detected by the ammeter 23. The advance detection of the breakthrough of the adsorbent 15 is performed by preliminarily calculating the timewise correlation related to the breakthrough of the adsorbent 15 and the deterioration of the insulating part 21. COPYRIGHT: (C)2011,JPO&INPIT
    • 待解决的问题:提供一种能够预先检测氟化氢吸附剂破裂前的状态的含氟化氢气体检测器,含氟化氢气体处理装置和含氟化氢气体检测方法。 解决方案:含HF的气体检测器14A包括设置在管道12中的绝缘部分21,设置在管道12中的第一导电部分24,通过绝缘部分21设置到​​第一导电部分24的第二导电部分25 并且连接在第一导电部件24与第二导电部件25之间的电流计23和绝缘部件21设置在第一和第二导电部件24和25之间。四个狭缝26以预定的间隔设置到第二导电部件25 。 当通过暴露于含HF气体以形成孔而使绝缘部21劣化时,在第一和第二导电部24和25之间产生电连续性,以由电流表23检测。提前检测突破的突破 通过预先计算与吸附剂15的穿透有关的时间相关性和绝缘部21的劣化来进行吸附剂15.(C)2011,JPO&INPIT