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    • 1. 发明专利
    • Apparatus for treating wastewater
    • 废水处理设备
    • JP2013034945A
    • 2013-02-21
    • JP2011173214
    • 2011-08-08
    • Techno Ryowa Ltd株式会社テクノ菱和Toyohashi Univ Of Technology国立大学法人豊橋技術科学大学
    • MIZUNO AKIRASUZUKI MASANORISATO TOMOKATSU
    • C02F1/48C02F1/78
    • PROBLEM TO BE SOLVED: To provide an apparatus for treating wastewater which has high decomposing treatment efficiency of organic matter.SOLUTION: The apparatus 10 for treating wastewater is provided with a wet wall column 12 and a discharge wire 13. The wet wall column 12 is constituted of a cylinder which has open both ends and an inside diameter of 10 to 25 mm and wastewater is made to flow down along the inner wall surface of the cylinder from its upper end to its lower end to form a liquid film. The discharge wire is inserted inside the cylinder so as to pass the central axis of the cylinder in a longitudinal direction and the discharge wire and the wet wall column constitute an electrode pair. Radicals produced by plasma discharge generated between the wet wall column 12 and the discharge wire 13 are absorbed by the liquid film and decompose the organic matter in the wastewater.
    • 待解决的问题:提供一种处理有机物分解效率高的废水的设备。 解决方案:用于处理废水的装置10设置有湿壁柱12和排出线13.湿壁柱12由具有开口两端和内径为10至25mm的圆筒构成, 使废水从其上端到其下端沿着圆筒的内壁表面向下流动以形成液膜。 放电线插入圆筒内,使其沿纵向方向通过圆筒的中心轴线,放电线和湿壁柱构成电极对。 在湿壁柱12和放电丝13之间产生的等离子体放电产生的自由基被液膜吸收并分解废水中的有机物质。 版权所有(C)2013,JPO&INPIT
    • 2. 发明专利
    • System for measuring growth of plant, method for controlling the system, and program for controlling the system
    • 用于测量植物生长的系统,用于控制系统的方法和用于控制系统的程序
    • JP2010263794A
    • 2010-11-25
    • JP2009115208
    • 2009-05-12
    • Techno Ryowa LtdToyohashi Univ Of Technology国立大学法人豊橋技術科学大学株式会社テクノ菱和
    • MIZUNO AKIRAMIZUNO TAMAEMATSUHASHI HIDEAKISUZUKI MASANORIMATSUDA TAKASHI
    • A01G7/00
    • PROBLEM TO BE SOLVED: To provide a system for measuring the growth of plants with which the growth condition of plants mass-produced in a plant factory or the like is objectively and quantitatively measured by a simple and easy method: to provide a method for controlling the growth condition of plants: and to provide a program for controlling the growth condition of plants.
      SOLUTION: The system for measuring the growth of plants is structured as follows: a sheet-like first electric conductor 11 is set up on the surface of cultivation culture medium 4 in an insulated condition by being superimposed on the upper layer of a sheet-like insulating material 13; the first electric conductor 11 comprises a conductive sheet, conductive film, metal net or the like; the insulating material 13 comprises an insulating sheet such as a plastic sheet, or an insulating film; a direct-current power source 15 is connected to the first conductor 11 and the tip end of the first conductor is grounded; a low voltage at around 10 V is applied onto the first conductor 11 via the power source 15; an ammeter 16 is connected to a second conductor 12, and the tip end of the second conductor is grounded; and the ammeter 16 comprises an electrometer with which minute electric current flowing between the second conductor 12 and a grounding wire can be detected.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种用于测量植物生长的系统,其通过简单和容易的方法客观地和定量地测量植物工厂等大规模生产的植物的生长条件:提供 控制植物生长状况的方法:提供控制植物生长状况的程序。 解决方案:用于测量植物生长的系统的结构如下:通过叠加在培养培养基4的上层上的绝缘条件下将片状第一导电体11设置在培养培养基4的表面上 片状绝缘材料13; 第一电导体11包括导电片,导电膜,金属网等; 绝缘材料13包括诸如塑料片的绝缘片或绝缘膜; 直流电源15连接到第一导体11,并且第一导体的末端接地; 大约10V的低电压经由电源15施加到第一导体11上; 电流表16连接到第二导体12,并且第二导体的尖端接地; 并且电流表16包括可以检测在第二导体12和接地线之间流动的微小电流的静电计。 版权所有(C)2011,JPO&INPIT
    • 3. 发明专利
    • Volatile organic matter removal system
    • 有挥发性有机物去除系统
    • JP2008229472A
    • 2008-10-02
    • JP2007071883
    • 2007-03-20
    • Techno Ryowa LtdToyohashi Univ Of Technology国立大学法人豊橋技術科学大学株式会社テクノ菱和
    • MIZUNO AKIRAMATSUHASHI HIDEAKISUZUKI MASANORIMATSUDA TAKASHI
    • B01D53/72B01D53/34B01D53/77
    • Y02A50/235
    • PROBLEM TO BE SOLVED: To provide a volatile organic matter removal system which is excellent in usefulness and economical efficiency. SOLUTION: A VOC absorption chamber 1 is installed indoor, and a VOC discharge chamber 2 is installed outdoor. Silicone oil 3a, 3b is accommodated in both chambers. An air to be treated supply duct 11, first oil circulation piping 12, and a treated air supply duct 13 are installed in the absorption chamber 1, and the inside of the absorption chamber 1 can be conditioned to a predetermined pressurized state by a pressurizing fan 14 installed in the air to be treated supply duct 11. An air or inert gas supply duct 21, second oil circulation piping 22, and treated air discharge duct 23 are installed in the discharge chamber 2, and the inside of the discharge chamber 2 can be conditioned to a predetermined vacuum state by a vacuum fan 14 installed in the treated air discharge duct 23. When a partial vapor pressure around the silicone oil is high, the oil absorbs VOC, and when low, it discharges the VOC. By using this action of the oil, the absorption and discharge of the VOC are carried out. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种挥发性有机物去除系统,其有用性和经济性优异。 解决方案:将VOC吸收室1安装在室内,将VOC排出室2安装在室外。 硅油3a,3b容纳在两个室中。 待吸收空气供给管道11,第一油循环管道12和处理过的空气供应管道13安装在吸收室1中,吸收室1的内部可以通过加压风扇调节到预定的加压状态 14被安装在被处理空气供给管道11中。空气或惰性气体供应管道21,第二油循环管道22和经处理的排气管道23安装在排出室2中,并且排出室2的内部 通过安装在经处理的空气排放管道23中的真空风扇14调节到预定的真空状态。当硅油周围的部分蒸汽压高时,油吸收VOC,并且当其低时排出VOC。 通过使用油的这种作用,进行VOC的吸收和排出。 版权所有(C)2009,JPO&INPIT
    • 4. 发明专利
    • Charged particle transfer ionizer using ion nucleus condensation by adiabatic expansion
    • 使用离子核聚变通过自发扩散的带电粒子转移离子
    • JP2009146595A
    • 2009-07-02
    • JP2007319703
    • 2007-12-11
    • Techno Ryowa LtdToyohashi Univ Of Technology国立大学法人豊橋技術科学大学株式会社テクノ菱和
    • MIZUNO AKIRASUZUKI MASANORIMATSUDA TAKASHIMATSUHASHI HIDEAKI
    • H01T23/00F24F7/06H05F3/06
    • PROBLEM TO BE SOLVED: To provided a charged particle transfer type ionizer using ion nucleus condensation by an adiabatic expansion which has a simple structure and in which ionized air can stably be transferred over a long distance. SOLUTION: The charged particle transfer ionizer is provided with an irradiation window 11 on a side wall portion on an upper side of a chamber 10, a radiation ray shielding cover 12 on an outer side of the side wall portion inside of which an ionizing source 20 is arranged, and air in the chamber is ionized by radiation ray from the irradiation window. Further, a charged particle generating nozzle 30 is arranged inside the chamber 10, and positive/negative ions are introduced inside the charged particle generating nozzle 30, and humidified air and compressed air are supplied and steam under a super-saturation condition is condensed in the nozzle on the positive/negative ions as nucleuses to generate positive and negative fine mists. Then, a mixture of the positive and negative ions and the positive and negative fine mists are sprayed to a charged body being a destaticizing target through a tube. COPYRIGHT: (C)2009,JPO&INPIT
    • 解决的问题:提供一种带有离子核冷凝的带电粒子转移型离子发生器,其通过绝热膨胀而具有简单的结构,其中电离空气能够长期稳定地转移。 解决方案:带电粒子转移离子发生器在室10的上侧的侧壁部分设置有辐射窗口11,在侧壁部分的外侧的辐射线屏蔽盖12上, 电离源20被布置,室内的空气被来自照射窗的辐射线电离。 此外,在室10的内部配置有带电粒子生成用喷嘴30,在带电粒子产生喷嘴30的内部引入正/负离子,供给加湿空气和压缩空气,超饱和条件下的蒸汽在 喷嘴在正/负离子上作为核产生正负阴极细雾。 然后,将正离子和负离子以及正,负微细混合物通过管喷射到作为去静电靶的带电体。 版权所有(C)2009,JPO&INPIT
    • 5. 发明专利
    • Attaching type soft x-ray detector using electrostatic repulsive force
    • 使用静电传播力连接类型的软X射线探测器
    • JP2005172431A
    • 2005-06-30
    • JP2003408137
    • 2003-12-05
    • Techno Ryowa Ltd株式会社テクノ菱和
    • MIZUNO AKIRAMATSUHASHI HIDEAKISUZUKI MASANORIIMAI SEIICHISATO TOMOKATSU
    • G01T1/14G01T7/00
    • PROBLEM TO BE SOLVED: To provide a small-sized and inexpensive attaching type soft X-ray detector carried easily by a worker or the like.
      SOLUTION: A soft X-ray transmitting film is arranged in an opening part formed on a side face of a cylindrical transparent resin chamber, a metal charge plate is arranged in a bottom part of the chamber via an insulator, a conductive ball with a surface of the ball comprising a dielectric member made conductive is sealed inside the chamber, a stopper for regulating motion of the conductive ball is arranged between the charge plate and an upper face inside of the chamber, the charge plate is charged in the polarity same to that of the conductive ball before the detector is attached, the conductive ball is thereby floated along the stopper, and the conductive ball is moved downwards in response to an exposure amount of the soft X-ray, after the detector is attached.
      COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供由工人等容易地携带的小型廉价的附着型软X射线检测器。 解决方案:软的X射线透射膜布置在形成在圆柱形透明树脂室的侧面上的开口部分中,金属充电板通过绝缘体布置在腔室的底部,导电球 其中包括导电的电介质构件的表面被密封在腔室内,用于调节导电球的运动的止动件设置在充电板和腔室的上表面之间,充电板被充电为极性 与检测器附接前的导电球相同,导电球因此沿着止动器浮动,并且导电球在安装检测器之后响应于软X射线的曝光量而向下移动。 版权所有(C)2005,JPO&NCIPI
    • 6. 发明专利
    • System for removing volatile organic compound
    • 去除挥发性有机化合物的系统
    • JP2012055849A
    • 2012-03-22
    • JP2010202829
    • 2010-09-10
    • Techno Ryowa LtdToyohashi Univ Of Technology国立大学法人豊橋技術科学大学株式会社テクノ菱和
    • MIZUNO AKIRASUZUKI MASANORISATO TOMOKATSU
    • B01D53/44B01D53/14B01D53/34B01D53/77
    • Y02A50/235
    • PROBLEM TO BE SOLVED: To provide a system for removing volatile organic compound, which excels in usefulness and cost effectiveness.SOLUTION: The system includes a VOC adsorption part, VOC discharge part and VOC recovery part, and is configured so that oil for VOC adsorption circulates between the adsorption part and the discharge part. A porous body 2 with a numerous number of open fine holes is provided in a chamber 1, and oil is atomized or dripped from above by means of an oil distributor 5 to form an oil film on the porous body 2. The inside of the chamber 1 is made a pressurized state, air containing VOC is supplied to be brought into contact with the oil film, and the VOC is adsorbed and removed. The oil with the VOC adsorbed in the adsorption part is introduced into the discharge part, the inside of the VOC discharging chamber 20 is made a decompressed state and the VOC adsorbed in the oil is discharged.
    • 要解决的问题:提供一种除去有用性和成本效益优异的挥发性有机化合物的除去系统。 解决方案:该系统包括一个VOC吸附部分,VOC排放部分和VOC回收部分,并被配置为使VOC吸附油在吸附部分和排出部分之间循环。 在室1中设置有多个开孔的多孔体2,通过油分配器5将油从上方喷雾或滴落,在多孔体2上形成油膜。室内 1被制成加压状态,供给包含VOC的空气以与油膜接触,并且VOC被吸附和去除。 将吸附在吸附部上的VOC的油引入排出部,使VOC排出室20的内部成为减压状态,吸附在油中的VOC被排出。 版权所有(C)2012,JPO&INPIT
    • 7. 发明专利
    • System for removing volatile organic compound by low temperature plasma and oil
    • 通过低温等离子体和油除去挥发性有机化合物的系统
    • JP2009207987A
    • 2009-09-17
    • JP2008052915
    • 2008-03-04
    • Techno Ryowa LtdToyohashi Univ Of Technology国立大学法人豊橋技術科学大学株式会社テクノ菱和
    • MIZUNO AKIRATAKASHIMA KAZUNORISUZUMURA KEIKAWABATA KENSHIROMATSUHASHI HIDEAKISUZUKI MASANORIMATSUDA TAKASHI
    • B01D53/44B01D53/14B01D53/77B03C3/38
    • Y02A50/235
    • PROBLEM TO BE SOLVED: To provide a system for removing a volatile organic compound by low temperature plasma and oil and excellent in usefulness and an economic property. SOLUTION: The system comprises a VOC adsorption part, a VOC release part, and a VOC recovery part and is so configured as to circulate an oil for VOC adsorption between the VOC adsorption part and the VOC release part. In the inside of a chamber 1 for VOC adsorption composing the VOC adsorption part, a wet wall tower 2 so composed as to form a wet wall with an oil is installed while being grounded and a discharge wire 3 is installed in the center of the chamber and air containing VOC is supplied to the inside of the wet wall tower 2 while the inside of the chamber 1 for VOC adsorption is kept in pressurized state and at the same time high voltage is applied to the discharge wire 3, so that low temperature plasma is generated between the grounded wet wall tower 2 and the discharge wire 2. The oil in which VOC is adsorbed in the VOC adsorption part is introduced into the VOC release part and the inside of a chamber 20 for VOC discharge is kept in a pressure-reduced state to discharge VOC adsorbed in the oil. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种通过低温等离子体和油除去挥发性有机化合物的系统,其有用性和经济性优良。 解决方案:该系统包括VOC吸附部分,VOC释放部分和VOC回收部分,并且被配置为在VOC吸附部分和VOC释放部分之间循环用于VOC吸附的油。 在构成VOC吸附部的用于VOC吸附的室1的内部,在被接地的同时安装如下构成以形成具有油的湿壁的湿壁塔2,并且将放电丝3安装在室的中心 将含有VOC的空气供给到湿壁塔2的内部,同时用于VOC吸附的室1的内部保持加压状态,同时向放电丝3施加高电压,使得低温等离子体 在接地的湿壁塔2和放电线2之间产生。将VOC吸附在VOC吸附部分中的油引入VOC释放部分,并且用于VOC放电的室20的内部保持压力 - 降低状态以排出吸附在油中的VOC。 版权所有(C)2009,JPO&INPIT
    • 8. 发明专利
    • Ultrasonic atomization type dust-free ionizer, and ultrasonic atomization type static elimination or dust elimination system
    • 超声波成型型无尘离子机和超声波原型静电消除或除尘系统
    • JP2005071899A
    • 2005-03-17
    • JP2003302378
    • 2003-08-27
    • Techno Ryowa Ltd株式会社テクノ菱和
    • MIZUNO AKIRAMATSUHASHI HIDEAKISUZUKI MASANORISUGATA DAISUKEYO HOGUNSATO TOMOKATSU
    • F24F6/12B03C3/00B05B17/06F24F7/00H01T23/00H05F3/00
    • Y02B30/80
    • PROBLEM TO BE SOLVED: To provide an ultrasonic atomization type dust-free ionizer capable of generating charged mist of large charged particles by simultaneously executing generation of minute mist and charging thereof by using an ultrasonic atomization phenomenon. SOLUTION: Water having conductivity below 30-50 μS/cm is stored in a chamber 1 with an ultrasonic oscillator 2 mounted on its bottom part. An ion-carrying gas intake 9 is formed in a side surface part of the chamber 1, so that an ion-carrying gas G comprising air or non-reactive gas can be supplied to the inside of the chamber 1. To the ultrasonic oscillator 2, a control device 3 for controlling its oscillation is connected; one end of an electric cable 4 is immersed in the water stored in the chamber 1; and the other end of the electric cable 4 led to the outside of the chamber 1 is grounded. A nozzle 5 is formed at the upper end of the chamber 1, and the charged particles generated in the chamber 1 are sprayed to a charged body S of a static elimination object through the nozzle 5. COPYRIGHT: (C)2005,JPO&NCIPI
    • 要解决的问题:提供一种能够通过同时执行微小雾的产生并通过使用超声波雾化现象进行充电来产生大的带电粒子的带电雾的超声波雾化型无尘电离器。 导电率低于30-50μS/ cm的水储存在室1中,超声波振荡器2安装在其底部。 在室1的侧面部形成有离子携带气体吸入口9,能够向室1的内部供给包含空气或非反应性气体的离子传送气体G.向超声波振荡器2 连接用于控制其振荡的控制装置3; 将电缆4的一端浸入存储在室1中的水中; 引导到室1的外部的电缆4的另一端接地。 在室1的上端形成有喷嘴5,并且通过喷嘴5将在室1中产生的带电粒子喷射到静电消除物体的带电体S.(C)2005, JPO&NCIPI
    • 9. 发明专利
    • System for removing volatile organic compound
    • 去除挥发性有机化合物的系统
    • JP2011218326A
    • 2011-11-04
    • JP2010092814
    • 2010-04-14
    • Techno Ryowa LtdToyohashi Univ Of Technology国立大学法人豊橋技術科学大学株式会社テクノ菱和
    • MIZUNO AKIRATAKASHIMA KAZUNORISUZUKI MASANORISATO TOMOKATSU
    • B01D53/18B01D53/14B01D53/44B01D53/72B01D53/77
    • Y02A50/235
    • PROBLEM TO BE SOLVED: To provide a system for removing volatile organic compounds which is excellent in usefulness and cost effectiveness.SOLUTION: The system for removing volatile organic compounds includes a VOC adsorption part, a VOC release part and a VOC recovery part and is configured so that oil for adsorbing a VOC is circulated between the VOC adsorption part and the VOC release part. Rotary disks 2 each of which has a plurality of holes are arranged in a chamber 1 so as to be fixed to a rotary shaft 3 of a motor at predetermined intervals to be rotated by the motor 4. An oil supply pipe 12 for supplying the oil for adsorbing the VOC to the upper side of each rotary disk 2 is arranged on the side wall of the chamber 1, and the oil for adsorbing the VOC is sprayed or dropped on the rotated rotary disk 2, thereby forming an oil film on each of the plurality of holes 2c formed on the rotary disk 2. The inside of the chamber 1 is pressurized and kept in a pressurized state to supply air including the VOC, and brought into contact with the oil film to adsorb/remove the VOC. The oil, on which the VOC is adsorbed in the VOC adsorption part is introduced into the VOC release part, and the inside of a chamber 20 for releasing the VOC is pressure-reduced and kept in a pressure-reduced state to release the VOC adsorbed on the oil.
    • 要解决的问题:提供一种除去有用性和成本效益优异的挥发性有机化合物的系统。 解决方案:用于除去挥发性有机化合物的系统包括VOC吸附部分,VOC释放部分和VOC回收部分,并且被配置为使得吸附VOC的油在VOC吸附部分和VOC释放部分之间循环。 具有多个孔的旋转盘2布置在腔室1中,以预定的间隔固定到马达的旋转轴3,以由马达4旋转。供油管12,用于供应油 用于将VOC吸附到每个旋转盘2的上侧布置在室1的侧壁上,并且用于吸附VOC的油被喷射或落在旋转的旋转盘2上,从而在每个旋转盘2上形成油膜 形成在旋转盘2上的多个孔2c。室1的内部被加压并保持在加压状态以供应包括VOC的空气,并与油膜接触以吸附/去除VOC。 VOC吸附在VOC吸附部分的油被引入到VOC释放部分中,用于释放VOC的室20的内部被压力降低并保持在减压状态以释放吸附的VOC 在油上 版权所有(C)2012,JPO&INPIT