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    • 1. 发明专利
    • State monitor device
    • 状态监视器
    • JP2005265687A
    • 2005-09-29
    • JP2004080279
    • 2004-03-19
    • Kurita Water Ind Ltd栗田工業株式会社
    • NOMURA MAKOTO
    • G01F23/28B01D21/30C02F3/12G01N29/02G01S15/88H04R17/00
    • Y02W10/15
    • PROBLEM TO BE SOLVED: To provide state monitor device so constituted as to effectively put an ultrasonic sensor used for measuring a sludge interface to practical use to grasp the state of air bubbles or floating sludge during measurement. SOLUTION: An ultrasonic sensor for transmitting ultrasonic waves to the bottom surface of a tank to be measured and receiving the reflected waves thereof is provided, and the receiving timing of the reflected waves due to the ultrasonic sensor and the wave receiving intensity thereof are detected, and a change in the detected intensity of the reflected waves with the elapse of time and a change in the receiving timing with the elapse of time are analyzed to monitor the states of air bubbles and sludge. Especially, a component high in the rising speed of the reflected wave is detected as air bubbles and a component low in a rising speed is detected as rising sludge. Alternatively, a component gradually increased in a rising speed is detected as air bubbles and a component almost constant in the rising speed is detected as rising sludge. The component gradually increased in intensity is detected as rising sludge and a component almost constant in the intensity of a reflected wave is detected as rising sludge. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供如下构造的状态监视装置,以有效地将用于测量污泥界面的超声波传感器实际用于掌握测量期间气泡或漂浮污泥的状态。 解决方案:提供一种超声波传感器,用于将超声波发送到待测量的罐的底表面并接收其反射波,并且由超声波传感器引起的反射波的接收定时及其受光强度 并且分析随着时间的流逝和随着时间的流逝改变接收时间的反射波的检测强度的变化,以监测气泡和污泥的状态。 特别地,检测到反射波上升速度高的部件为气泡,检测到上升速度低的部件作为上升污泥。 或者,检测到以上升速度逐渐增加的成分,作为气泡,检测到上升速度几乎恒定的成分作为上升污泥。 检测到成分浓度逐渐增加的污泥,反射波强度几乎不变的成分被检测为污泥。 版权所有(C)2005,JPO&NCIPI
    • 2. 发明专利
    • Living matter sludge monitoring device
    • JP2004317350A
    • 2004-11-11
    • JP2003112782
    • 2003-04-17
    • Kurita Water Ind Ltd栗田工業株式会社
    • NOMURA MAKOTOSAWADA SHIGEKINAGAO NOBUAKI
    • G01N29/02C02F3/12G01N15/06G01N21/59
    • Y02W10/15
    • PROBLEM TO BE SOLVED: To provide a living matter sludge monitoring device capable of measuring and monitoring automatically and continuously the existence state of the living matter sludge in a water purification device using the living matter sludge. SOLUTION: This device comprises a sensor for outputting a detection signal corresponding to the concentration of living matter sludge slurry in water to be measured stirred uniformly, an operation means for acquiring at least one data of a means for determining average data determined by averaging the level of the detection signal outputted from the sensor at prescribed time intervals, a means for determining amplification data shown by the difference between the maximum value and the minimum value of the detection signal, a means for determining signal data of an envelope acquired by taking out the envelope of the detection signal, and a means for determining the amplification data of the signal of the envelope shown by the difference between the maximum value and the minimum value of the signal of the envelope, and a determination part for determining the state of the living matter sludge in the water to be measured from the data determined by the operation means. COPYRIGHT: (C)2005,JPO&NCIPI
    • 4. 发明专利
    • Desalted water making system and desalted water making method
    • 脱水制水系统及脱盐水制法
    • JP2003039073A
    • 2003-02-12
    • JP2001232438
    • 2001-07-31
    • Kurita Water Ind Ltd栗田工業株式会社
    • ODA NOBUHIRONOMURA MAKOTOMATSUSHITA NOBUHIRO
    • B01D19/00C02F1/20C02F1/46
    • PROBLEM TO BE SOLVED: To provide a desalted water making system capable of keeping desalting capacity high over a long period of time and easy to make desalted water, and a desalted water making method using the same.
      SOLUTION: The desalted water making system equipped with a desalted water making apparatus, which has an anode and a cathode, the dielectric arranged between both electrodes in a state electrically insulated from both electrodes and a desalting chamber having both electrodes and the dielectric arranged therein and having an inlet of water to be treated and an outlet of treated water, and a degassing device provided on the upstream side of the desalted water making apparatus to remove dissolved oxygen. In the desalted water making method using the desalted water making system, dissolved oxygen in water to be treated is removed by the degassing device and, thereafter, desalted water is made using the desalted water making apparatus.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:提供一种能够长时间保持脱盐能力并容易脱盐的脱盐水制造系统,以及使用其的脱盐水制造方法。 解决方案:脱盐制水系统配备有具有阳极和阴极的脱盐水制造装置,在两个电极之间以与两个电极电绝缘的状态和具有两个电极的脱盐室和布置在其中的电介质的脱盐室配置电介质, 具有被处理水的入口和处理水的出口,以及设置在脱盐水制造装置的上游侧以除去溶解氧的脱气装置。 在使用脱盐制水系统的脱盐水制造方法中,通过脱气装置除去被处理水中的溶解氧,然后使用脱盐水制造装置进行脱盐水。
    • 5. 发明专利
    • In-tank monitor
    • 内部监控
    • JP2011047761A
    • 2011-03-10
    • JP2009195650
    • 2009-08-26
    • Kurita Water Ind Ltd栗田工業株式会社
    • NOMURA MAKOTO
    • G01F23/00B01D21/30G09F9/00
    • PROBLEM TO BE SOLVED: To provide an in-tank monitor excellent in water resistance. SOLUTION: An in-tank monitor 1 includes a waterproof case 2, an in-tank monitor body 3 installed in the waterproof case 2, and waterproof connectors 11-17 for inputs and outputs provided on the back of the waterproof case 2. An interface level meter is composed of the monitor body 3 and an ultrasonic sensor connected to the body. The ultrasonic sensor is installed in the water inside a solid/liquid separation tank, and is connected to the monitor body 3 through lead wires and the connector 16. Power is suppliable to the monitor body 3 through the connector 17 and power cables. A memory can output data to the outside through signal cables and the connector 15. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供具有优异耐水性的罐内监视器。 箱内监视器1包括防水壳体2,安装在防水​​壳体2中的舱内监视器主体3和设置在防水壳体2背面的输入和输出的防水连接器11-17 接口电平表由监视器主体3和连接到主体的超声波传感器构成。 超声波传感器安装在固体/液体分离罐内的水中,并通过引线和连接器16连接到监视器主体3.电源可通过连接器17和电力电缆提供给监视器主体3。 存储器可以通过信号电缆和连接器15向外部输出数据。版权所有(C)2011,JPO&INPIT
    • 6. 发明专利
    • Detection method of interface level, and management method of solid-liquid separation tank
    • 界面水平检测方法,固液分离罐管理方法
    • JP2011047760A
    • 2011-03-10
    • JP2009195649
    • 2009-08-26
    • Kurita Water Ind Ltd栗田工業株式会社
    • NOMURA MAKOTO
    • G01N29/02B01D21/30G01B17/00G01N29/00
    • PROBLEM TO BE SOLVED: To provide a method not for detecting only an interface between a sludge accumulation layer and a supernatant water phase but capable of detecting also an interface between each layer in the sludge accumulation layer, and to provide a management method of a solid-liquid separation tank using the method.
      SOLUTION: Sludge sediments gradually in the solid-liquid separation tank 20 to form the sludge accumulation layer. In the sludge accumulation layer, a free sedimentation layer is formed on the uppermost part, and a coagulating sedimentation layer, a consolidation sedimentation layer and a concentration layer are formed successively on the lower side. An interface level meter for detecting the interface between each layer is used, and reception signal intensities are read at five times or more in 1-60 seconds, and the average value is used as the reception signal intensity. The interface between each layer is determined by using the data.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种不仅仅检测污泥积聚层和上清水相之间的界面但也能够检测污泥积聚层中的各层之间的界面的方法,并且提供管理方法 的固液分离罐。 解决方案:在固液分离槽20中逐渐沉淀污泥,形成污泥积聚层。 在污泥积聚层中,最上部形成有自由沉积层,下侧依次形成凝结沉降层,固结沉降层和浓缩层。 使用用于检测各层之间的接口的接口电平表,并且在1-60秒内读取5次以上的接收信号强度,并将平均值用作接收信号强度。 通过使用数据确定每个层之间的接口。 版权所有(C)2011,JPO&INPIT
    • 8. 发明专利
    • Data calibration method and calibration data providing method
    • 数据校准方法和校准数据提供方法
    • JP2005265686A
    • 2005-09-29
    • JP2004080278
    • 2004-03-19
    • Kurita Water Ind Ltd栗田工業株式会社
    • NOMURA MAKOTO
    • G01N15/06G01N1/00
    • PROBLEM TO BE SOLVED: To provide a calibration method of a measuring instrument for calculating a measured value, which is converted to the output value of a sensor according to the coefficient of conversion determined corresponding to the properties of an object to be measured so as to go up to the sampling time of the object to be measured calculating the coefficient of conversion, and a calibration data providing method.
      SOLUTION: In the measuring instrument equipped with a sensor for measuring the characteristics of the object to be measured and an operation means for calculating the measured value determined by converting the output value of the sensor according to the coefficient of conversion calculated to the properties of the object to be measured, the object to be measured is sampled to be subjected to the analysis of properties and at least two values of the output value of the sensor at the point of time of sampling, the coefficient of conversion and the output value are stored and the measured value on and after the sampling point of time is calculated according to the new coefficient of conversion corresponding to the properties of the object to be measured at the sampling point of time of the object to be measured on the basis of the analytic result of properties.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种用于计算测量值的测量仪器的校准方法,其根据与待测对象的性质确定的转换系数转换为传感器的输出值 以达到要测量的对象的采样时间计算转换系数,以及校准数据提供方法。 < P>解决方案:在配备有用于测量被测量物体的特性的传感器的测量仪器中,以及用于计算通过将传感器的输出值转换为计算出的转换系数而计算的测量值的操作装置 要测量的对象的属性,对要测量的对象进行采样以进行属性分析,并且在采样时刻的传感器的输出值,转换系数和输出的至少两个值 存储值,并且根据在待测对象的采样点根据待测量对象的特性对应的新的转换系数来计算采样时间点之后和之后的测量值,基于 属性的分析结果。 版权所有(C)2005,JPO&NCIPI
    • 9. 发明专利
    • Stain removing method
    • 不锈钢去除方法
    • JP2005265608A
    • 2005-09-29
    • JP2004078595
    • 2004-03-18
    • Kurita Water Ind Ltd栗田工業株式会社
    • NOMURA MAKOTO
    • G01N15/06B08B3/02G01N21/15G01N21/49
    • PROBLEM TO BE SOLVED: To provide a stain removing method which enables the effective removal of the stain bonded to a sensor immersed in water to be measured to always keep a high measuring precision.
      SOLUTION: In washing off the stain of a concentration sensor for receiving at least one of a transmitted light transmitted through water to be measured of light applied into water to be measured from a floodlight part, scattered light scattered by a suspension contained in the water to be measured and reflected light reflected by the suspension, a gas-liquid mixed stream, wherein washing water and air are mixed, is introduced into the space between the floodlight part and a light detecting part to remove the stain bonded to the concentration sensor.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种除污方法,其能够有效地去除与待测量的水中浸渍的传感器结合的污渍,从而始终保持高的测量精度。 解决方案:在清洗浓度传感器的污迹时,将从被投射到待测量的水中的被测光的透射光中的至少一种透射到由泛光灯部分测量的水中的至少一种, 被测量的水和由悬浮液反射的反射光,其中洗涤水和空气混合的气液混合流被引入到泛光灯部分和光检测部分之间的空间中,以去除与浓度相关的污渍 传感器。 版权所有(C)2005,JPO&NCIPI
    • 10. 发明专利
    • Treating method for foaming scum
    • 用于发射SCUM的处理方法
    • JP2005230588A
    • 2005-09-02
    • JP2004039207
    • 2004-02-17
    • Kurita Water Ind Ltd栗田工業株式会社
    • NOMURA MAKOTO
    • C02F3/12C02F1/40C02F11/12
    • Y02W10/15
    • PROBLEM TO BE SOLVED: To provide a treating method for foaming scum by which the foaming scum can be easily liquefied and treated without requiring addition of large-scale equipment concerned with a water cleaning function and without using chemicals, or the like. SOLUTION: As the treating method for the foaming scum, in activated sludge treatment which cleans impurities in water by using aerobic bacteria, the foaming scum 11 produced by activity of actinomycetes is moved to another vessel 12 and physical force (fall of the vessel 12, application of vibration and application of shock by blow) is applied to the vessel 12 from the outside to defoam and liquefy the foaming scum 11 in the vessel 12. Then, liquefied sludge is blended with sludge to be discharged as excess sludge outside a system and obtained sludge mixture is subjected to thickening dehydration by a dehydrator 15 and is treated as industrial waste (dehydrated cake). COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种泡沫浮渣的处理方法,通过该方法可以容易地使起泡浮渣液化和处理,而不需要添加涉及水清洗功能的大型设备,并且不使用化学品等。 解决方案:作为泡沫浮渣的处理方法,在通过使用需氧细菌清洗水中的杂质的活性污泥处理中,由放线菌的活性产生的起泡浮渣11移动到另一个容器12和物理力 容器12,通过吹塑施加振动和施加冲击)从外部施加到容器12上,以消除和液化容器12中的起泡浮渣11.然后将液化污泥与污泥混合以作为过量的污泥排出 将系统和所获得的污泥混合物通过脱水器15进行增稠脱水,并被处理为工业废物(脱水饼)。 版权所有(C)2005,JPO&NCIPI