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    • 12. 发明专利
    • Membrane device
    • 膜装置
    • JP2009066556A
    • 2009-04-02
    • JP2007239985
    • 2007-09-14
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社
    • SAITO MASAHIROYAMAZAKI TOSHISUKESATO HIROSHIOGURA SATOSHI
    • B01D65/00B01D63/08B01D65/06C02F1/44C02F1/46C23F13/00
    • PROBLEM TO BE SOLVED: To provide a membrane device capable of assuring a smooth flow of a treatment liquid and realizing a reduction of costs by avoiding the deformation of a treatment liquid passage by a tightening pressure even if a membrane supporting plate and a lid are made of an inexpensive general purpose resin. SOLUTION: The membrane device 1 comprises a plurality of membrane modules 10 juxtaposed and each formed by arranging a planar membrane 102 on one side or both sides of a membrane supporting member 101. A treatment liquid discharge passage 103 is provided on at least one end side of the membrane supporting member 101. The sections of the treatment liquid discharge passages 103 of the membrane modules 10 are pressed inward from the direction perpendicular to the juxtaposing direction of the membrane modules, and the membrane modules 10 are fixed. The membrane supporting member 101 is molded from a general purpose resin. The treatment liquid discharge passage 103 is provided with a reinforcement member 16 for securing the cross-sectional area of the passage and an electric corrosion inhibiting means. COPYRIGHT: (C)2009,JPO&INPIT
    • 解决的问题:提供一种膜装置,其能够确保处理液的平稳流动,并且通过避免处理液通道由于紧固压力的变形而实现成本的降低,即使膜支撑板和 盖由廉价的通用树脂制成。 解决方案:膜装置1包括并排的多个膜组件10,每个膜组件10均布置在膜支撑构件101的一侧或两侧上的平面膜102。至少设置处理液排出通道103 膜支撑构件101的一端侧。膜组件10的处理液排出通道103的部分从垂直于膜组件并置方向的方向向内压,膜组件10固定。 膜支撑构件101由通用树脂模制。 处理液排出通道103设置有用于固定通道的横截面积的加强构件16和电腐蚀抑制装置。 版权所有(C)2009,JPO&INPIT
    • 13. 发明专利
    • Membrane monitoring method and membrane monitoring system
    • 膜监测方法和膜监测系统
    • JP2008241365A
    • 2008-10-09
    • JP2007080156
    • 2007-03-26
    • Mitsui Eng & Shipbuild Co Ltd三井造船株式会社
    • SAITO MASAHIROYAMAZAKI TOSHISUKESATO HIROSHIOGURA SATOSHI
    • G01M3/00B01D65/10
    • PROBLEM TO BE SOLVED: To provide a membrane monitoring method and membrane monitoring system capable of detecting the minute defect of the membrane such as a pin hole by chemically discriminating the existence of defect.
      SOLUTION: A part of filtered liquid filtered by the membrane 2 for filtering the liquid to be processed is extracted, dissolved component is separated from the extracted filtered liquid by making vaporize the dissolved components, and the volatile compound concentration in the separated dissolved components is detected by the detector 10 for gas detection, thereby the existence of the defect of the membrane 2 is determined by discriminating whether the concentration of the volatile compound exceeded the concentration specified by the performance of the membrane 2 or not.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种膜检测方法和膜监测系统,其能够通过化学鉴别缺陷的存在来检测诸如针孔的膜的微小缺陷。 解决方案:提取通过膜2过滤用于过滤待处理液体的一部分过滤液体,通过使溶解的组分汽化,将溶解的组分与提取的过滤液体分离,并将分离的溶解的挥发性化合物浓度 由检测器10检测组分以进行气体检测,从而通过判断挥发性化合物的浓度是否超过由膜2的性能指定的浓度来确定膜2的缺陷的存在。 版权所有(C)2009,JPO&INPIT
    • 14. 发明专利
    • Operation control device for filtration device and operation control method for filtration device
    • 用于过滤装置的操作控制装置和用于过滤装置的操作控制方法
    • JP2008126216A
    • 2008-06-05
    • JP2006317790
    • 2006-11-24
    • Mitsui Eng & Shipbuild Co LtdSuido Kiko Kaisha LtdToray Ind Inc三井造船株式会社東レ株式会社水道機工株式会社
    • SAITO MASAHIROYAMAZAKI TOSHISUKETAKEMURA NOBORUUEKI SHUJIKADOMOTO YUKIROUSATO HIROSHITANAKA SUKEYUKIKASAKURA KAZUMASAHASHIMOTO NOBUYUKINAKAHIGASHI KENJI
    • B01D37/04B01D29/11B01D29/13B01D29/50B01D29/66
    • PROBLEM TO BE SOLVED: To provide an operation control device for filtration devices which easily detects a state of filter cloth and controls a filtration operation and a backwashing operation under adequate operating conditions in accordance with the state of the filter cloth, and also provide an operation control method for a filtration device.
      SOLUTION: A filtration device alternately conducts; a filtration-operating motion which filtrates, with filter cloth, raw water in a filtration room of a filtration tank, which is partitioned into a filtrate room and the filtration room via the filter cloth, collects the water in the filtrate room, and discharges the water; and a backwashing-operating motion which makes a washing liquid introduced into the filtrate room pass through the filter cloth, collects the water in the filtration room and discharges the water. In this case, a plurality of operating modes, which are different in one or more operating conditions selected from filtration time, backwashing time, a filtration rate and a washing rate, are preliminarily set, and the image of the surface of the filter cloth is picked up to detect a color, and the color is compared with preliminarily stored color sample data, which indicate the color of the surface of the filter cloth, to detect a restoration degree of the filter cloth after the backwashing operation is finished. Then, after the filtration-operating motion and the backwashing-operating motion are controlled in accordance with an operating mode initially set from among the plurality of operating modes, the operating mode is reset based on the result of the detection of the restoration degree.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种过滤装置的操作控制装置,其能够根据滤布的状态在足够的操作条件下容易地检测滤布的状态并控制过滤操作和反冲洗操作,并且还 提供过滤装置的操作控制方法。

      解决方案:过滤装置交替进行; 过滤操作运动通过滤布将过滤槽的过滤室中的原水经由滤布滤布分隔成滤液室和过滤室,收集滤液室内的水,并排出 水; 以及引入到滤液室的洗涤液通过滤布的反冲洗操作运动,收集过滤室内的水并排出水。 在这种情况下,预先设定从过滤时间,反冲洗时间,过滤速度和洗涤速度中选择的一个或多个操作条件不同的多种操作模式,并且滤布表面的图像为 拾取以检测颜色,并将颜色与表示滤布表面的颜色的预先存储的颜色样本数据进行比较,以检测反冲洗操作结束后的滤布的恢复程度。 然后,根据从多个操作模式中最初设定的操作模式来控制过滤操作运动和反冲洗操作运动之后,基于恢复度的检测结果来复位操作模式。 版权所有(C)2008,JPO&INPIT

    • 15. 发明专利
    • Operation control device for filtration device and operation control method for filtration device
    • 用于过滤装置的操作控制装置和用于过滤装置的操作控制方法
    • JP2008126215A
    • 2008-06-05
    • JP2006317789
    • 2006-11-24
    • Mitsui Eng & Shipbuild Co LtdSuido Kiko Kaisha LtdToray Ind Inc三井造船株式会社東レ株式会社水道機工株式会社
    • SAITO MASAHIROYAMAZAKI TOSHISUKETAKEMURA NOBORUUEKI SHUJIKADOMOTO YUKIROUSATO HIROSHITANAKA SUKEYUKIKASAKURA KAZUMASAHASHIMOTO NOBUYUKINAKAHIGASHI KENJI
    • B01D37/04B01D29/13B01D29/50B01D29/60B01D29/66
    • PROBLEM TO BE SOLVED: To provide an operation control device for filtration devices which easily detects a state of filter cloth and controls a filtration operation and a backwashing operation under adequate operating conditions in accordance with the state of the filter cloth, and also provide an operation control method for filtration devices.
      SOLUTION: The operation control device for filtration devices alternately conducts; a filtration-operating motion which filtrates raw water introduced into a filtration room of a filtration tank, which is partitioned into a filtrate room and the filtration room via filter cloth, collects the water in the filtrate room, and discharges the filtrate outside the filtration tank; and a backwashing-operating motion which makes a washing liquid introduced into the filtrate room pass through the filter cloth, collects the water in the filtration room, and discharges the water from the filtration room. In this case, a plurality of operating modes, which are different in one or more operating conditions selected from filtration time, backwashing time, a filtration rate and a washing rate, are preliminarily set, and a restoration degree of the filter cloth is detected based on a difference in pressure between a pressure in the filtration room after the bachwashing operation is finished and a pressure in the filtrate room. Then, after the filtration-operating motion and the backwashing-operating motion are controlled in accordance with an operating mode initially set from among the plurality of operating modes, the operating mode is reset based on the result of the detection of the restoration degree.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种过滤装置的操作控制装置,其能够根据滤布的状态在足够的操作条件下容易地检测滤布的状态并控制过滤操作和反冲洗操作,并且还 提供过滤装置的操作控制方法。

      解决方案:过滤装置的操作控制装置交替进行; 将通过滤布分隔成滤液室和过滤室的过滤室的原料水进行过滤的过滤操作运动收集滤液室中的水,并将滤液排出过滤罐外部 ; 以及引入到滤液室中的洗涤液通过滤布的反冲洗操作运动,收集过滤室中的水,并从过滤室排出水。 在这种情况下,预先设定从过滤时间,回洗时间,过滤速度和洗涤速度中选择的一个或多个操作条件不同的多种操作模式,并且基于检测滤布的恢复程度 在洗涤操作结束后的过滤室中的压力与滤液室中的压力之间的压力差。 然后,根据从多个操作模式中最初设定的操作模式来控制过滤操作运动和反冲洗操作运动之后,基于恢复度的检测结果来复位操作模式。 版权所有(C)2008,JPO&INPIT

    • 16. 发明专利
    • Filtration apparatus
    • 过滤装置
    • JP2008114192A
    • 2008-05-22
    • JP2006302152
    • 2006-11-07
    • Mitsui Eng & Shipbuild Co LtdSuido Kiko Kaisha LtdToray Ind Inc三井造船株式会社東レ株式会社水道機工株式会社
    • SAITO MASAHIROYAMAZAKI TOSHISUKETAKEMURA NOBORUUEKI SHUJIKADOMOTO YUKIROUSATO HIROSHITANAKA SUKEYUKIKASAKURA KAZUMASAHASHIMOTO NOBUYUKINAKAHIGASHI KENJI
    • B01D29/13B01D29/11B01D29/50B01D29/66
    • PROBLEM TO BE SOLVED: To provide a filtration apparatus capable of performing the uniform filtration by causing a uniform pressure loss at the upper part and lower part of a filter cylinder, of reducing a washing time and an amount of washing water by uniformly generating clogging in a filter cloth at the upper part and lower part of the filter cylinder, to obtain a large amount of filtrate.
      SOLUTION: In this filtration apparatus, a filter tank 1 is demarcated into a filtrate chamber 103 and a filter chamber 102 with a partition plate 2, and a lot of filter cylinders 3 consisting of porous cylindrical support bodies 300 having upper openings 302 and bag-like filter cloths 301 covering outer peripheries of the support bodies 300 are suspendedly disposed in the filter chamber 102. Raw water introduced into the filter chamber 102 to flow upward in the filter chamber 102 is filtered by the filter cloth 301 to be filtrated and collected in the filtrate chamber 103 while rising in the filter cylinder 3. The support body 300 is a mesh-like body, and has openings of the mesh of the mesh-like body formed getting larger from a side near the partition plate 2 toward a distant side.
      COPYRIGHT: (C)2008,JPO&INPIT
    • 要解决的问题:提供一种能够通过在过滤筒的上部和下部产生均匀的压力损失来进行均匀过滤的过滤装置,通过均匀地减少洗涤时间和洗涤水的量 在过滤筒的上部和下部的滤布上产生堵塞,得到大量的滤液。 解决方案:在该过滤装置中,将滤池1划分为具有隔板2的滤液室103和过滤室102,以及由具有上开口302的多孔圆筒形支撑体300组成的大量滤筒3 并且覆盖支撑体300的外周的袋状过滤布301悬挂地设置在过滤室102中。被引入到过滤室102中的原水在过滤室102中向上流动,被过滤布301过滤 并且在滤筒3内上升的同时收集在滤液室103中。支撑体300是网状体,网状体的网状开口从分隔板2的一侧朝向 一个遥远的一面。 版权所有(C)2008,JPO&INPIT
    • 20. 发明专利
    • Gas hydrate storage facility
    • 气体储存设施
    • JP2011027144A
    • 2011-02-10
    • JP2009171402
    • 2009-07-22
    • Mitsui Eng & Shipbuild Co LtdOsaka Univ三井造船株式会社国立大学法人大阪大学
    • MIMACHI HIROKOTAKAHASHI MASAHIROIWASAKI TORUOGAKI KAZUNARISATO HIROSHISUGAWARA TAKESHI
    • F17C11/00C07B63/02C07C7/20C07C9/04C10L3/06F17C13/02
    • PROBLEM TO BE SOLVED: To provide a gas hydrate storage facility with high economic efficiency, by setting a storage temperature of gas hydrate higher than ever to reduce low-temperature resistance required for material constituting the storage facility and thereby to reduce the facility cost. SOLUTION: The gas hydrate storage facility is formed by using at least one kind of material L with low-temperature resistance in the lowest temperature to which the gas hydrate storage facility is exposed and at least one kind of material H with low-temperature resistance in a temperature higher than that of the material L. The gas hydrate storage facility is used for storing the gas hydrate having a peak temperature T corresponding to high self-preservation effect within a temperature range higher than -20°C and lower than 0°C. The storage temperature is set to be around the peak temperature T. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:为了提供高效率的天然气水合物储存设备,通过将天然气水合物的储存温度设置为比以往更高,以降低构成储存设备的材料所需的低温阻力,从而减少设备 成本。 解决方案:天然气水合物储存设备是通过在气体水合物储存设备暴露的最低温度下使用至少一种具有低温电阻的材料L形成的,以及至少一种材料H, 在高于材料L的温度下的耐温性。天然气水合物储存设备用于在高于-20℃且低于-20℃的温度范围内存储具有高自保护效果的具有峰值温度T的气体水合物 0℃。 储存温度设定在峰值温度T附近。版权所有(C)2011,JPO&INPIT