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    • 21. 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
    • 22. 发明专利
    • Ionizer system and local ventilation system
    • 离子系统和局部通风系统
    • JP2011054491A
    • 2011-03-17
    • JP2009203948
    • 2009-09-03
    • Techno Ryowa Ltd株式会社テクノ菱和
    • SUZUKI MASANORIMATSUDA TAKASHI
    • H05F3/04H01T19/04H01T23/00
    • PROBLEM TO BE SOLVED: To provide an ionizer system having an excellent energy-saving function.
      SOLUTION: An air-assist type ionizer 1 and an air supplying pipe 2 supplying air to an air chamber 11 of the ionizer are provided. The air supplying pipe 2 is equipped with a flowmeter 3, a flow-control valve 4, a reducing valve 5, and an electromagnetic valve 30. And, a detecting sensor 31 such as an photoelectric sensor is mounted at a prescribed place to detect whether there exists an operator or a charged body as a treatment object or not. A control device 32 is arranged to open/close the electromagnetic valve 30 based on a detection signal sent from the detecting sensor 31. Such an ionizer system is provided at each work bench or each work room, and the air supplying pipes 2 of a plurality of the ionizer systems are connected to a compressor or to an air-pump 6.
      COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供具有优异的节能功能的电离器系统。 解决方案:提供将空气供给到电离器的空气室11的空气辅助型离子发生器1和空气供给管2。 空气供给管2配备有流量计3,流量控制阀4,减压阀5以及电磁阀30.另外,将光电传感器等检测传感器31安装在规定的位置,检测是否 存在作为处理对象的操作者或带电体。 控制装置32被设置为基于从检测传感器31发送的检测信号来打开/关闭电磁阀30.这种离子发生器系统设置在每个工作台或每个工作室,多个空气供给管2 的离子发生器系统连接到压缩机或气泵6.版权所有(C)2011,JPO&INPIT
    • 23. 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
    • 24. 发明专利
    • Sheath air type ionizer
    • SHEATH AIR TYPE IONIZER
    • JP2006236763A
    • 2006-09-07
    • JP2005049092
    • 2005-02-24
    • Techno Ryowa Ltd株式会社テクノ菱和
    • SUZUKI MASANORIMATSUHASHI HIDEAKISATO TOMOKATSU
    • H05F3/04H01T19/04H01T23/00
    • PROBLEM TO BE SOLVED: To provide a sheath air type ionizer capable of sending ionized flow far to a distance while maintaining a sheath air effect.
      SOLUTION: A plurality of corona electrodes 11 are provided in this sheath air type ionizer 10, a high voltage generator 12 is connected to each of the corona electrodes 11, and each corona electrode 11 is disposed in the inside of a sheath air nozzle 13. An assist air nozzle 13 is concentrically provided on the periphery of the sheath air nozzle 13, and high purity N
      2 gas is supplied to the sheath air nozzle 13 as sheath air through a valve 16 for a sheath air supply passage 15 and the sheath air, and clean dry air is supplied to the assist air nozzle 14 as assist air through a valve 18 for an assist air supply passage 17 and the assist air.
      COPYRIGHT: (C)2006,JPO&NCIPI
    • 要解决的问题:提供一种能够在保持护套空气效果的同时将电离流远离一定距离的护套空气型电离器。 解决方案:在该护套空气型电离器10中设置多个电晕电极11,将高电压发生器12连接到每个电晕电极11,并且每个电晕电极11设置在护套空气的内部 喷嘴13.辅助空气喷嘴13同心地设置在护套空气喷嘴13的周围,高纯度N SB 2气体作为鞘气通过阀16供给到鞘空气喷嘴13,用于 护套空气供给通道15和护套空气,并且干净的干燥空气作为辅助空气通过辅助空气供应通道17的辅助空气和辅助空气供给到辅助空气喷嘴14。 版权所有(C)2006,JPO&NCIPI
    • 25. 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
    • 27. 发明专利
    • Air cleaner
    • 空气净化器
    • JP2010269259A
    • 2010-12-02
    • JP2009123887
    • 2009-05-22
    • 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
    • B03C3/16A61L2/04A61L9/16A61L9/22B03C3/02B03C3/40B03C3/41B03C3/53
    • PROBLEM TO BE SOLVED: To provide an air cleaner which can prevent the growth of bacteria and fungi to prevent rescattering of fine particles to which the bacteria have been adhered and spores of the fungi. SOLUTION: A wetted wall column 2 structured so as to form a wetted wall by oil is grounded and disposed inside a cylindrical chamber 1 forming a capture portion, and a discharge wire 4 is disposed at a position facing the wetted wall. Air to be treated is supplied into the chamber 1 so as to come into contact with the wetted wall, and a high voltage is applied to the discharge wire 4 to generate low temperature plasma between it and the wetted wall column 2, whereby the fine particles to which the bacteria have been adhered and the spores of the fungi are charged to be captured in the oil flowing down the wetted wall by Coulomb forces. Subsequently the oil capturing the fine particles in the capture portion is introduced into a chamber 20 forming a separation/sterilization portion, and the oil capturing the fine particles is heated and sterilized by a heater 22 and the fine particles captured in the oil are separated and removed. COPYRIGHT: (C)2011,JPO&INPIT
    • 要解决的问题:提供一种空气净化器,其可以防止细菌和真菌的生长,以防止细菌粘附的细颗粒和真菌孢子的再结晶。 解决方案:通过油形成润湿壁的润湿壁柱2接地并设置在形成捕获部分的圆柱形室1内,并且放电线4设置在面向湿壁的位置。 待处理的空气被供给到室1中以与湿壁接触,并且高压被施加到放电丝4,以在其与润湿的壁柱2之间产生低温等离子体,由此微粒 细菌已被粘附到其上,并且真菌的孢子被装载在通过库仑力沿着湿壁流下的油中捕获。 随后将捕获部分中的微粒捕获的油引入到形成分离/灭菌部分的室20中,并且通过加热器22对捕获微粒的油进行加热灭菌,将捕获在油中的微粒分离, 除去。 版权所有(C)2011,JPO&INPIT
    • 28. 发明专利
    • Discharge electrode for ionizer
    • 离子放电电极
    • JP2010170937A
    • 2010-08-05
    • JP2009014154
    • 2009-01-26
    • Techno Ryowa Ltd株式会社テクノ菱和
    • SUZUKI MASANORISATO TOMOKATSUMATSUDA TAKASHI
    • H05F3/04H01T19/04H01T23/00
    • PROBLEM TO BE SOLVED: To provide a discharge electrode for an ionizer, capable of preventing a fine metal particle from being scattered, and capable of enhancing stability of ion generation.
      SOLUTION: Surface layer metal 2 is laminated on a tip part surface of base material metal 1 constituting a needle electrode. metal having 100 W/mK or more of thermal conductivity is preferably used as the base material metal 1, and metal having a work function larger than a work function of the base material metal 1, and having 1,000°C or more of melting point, is preferably used as the surface layer metal 2. For example, tungsten (W) and a tungsten alloy (Th-W alloy, La-W alloy) are used preferably as the base material metal 1, nickel (Ni) is most preferably used as the surface layer metal 2, and platinum (Pt), gold (Au), palladium (Pd) and the like are preferably used as the surface layer metal 2.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:提供一种能够防止金属微粒分散并能够提高离子发生稳定性的电离器用放电电极。 解决方案:表面层金属2层压在构成针状电极的基材金属1的末端部分表面上。 优选使用具有100W / mK以上导热性的金属作为基材金属1,功函数大于母材金属1的功函数,并且具有1000℃以上的熔点的金属, 优选使用表面金属2.例如,优选使用钨(W)和钨合金(Th-W合金,La-W合金)作为基材金属1,最优选使用镍(Ni) 作为表层金属2,优选使用铂(Pt),金(Au),钯(Pd)等作为表层金属2.版权所有(C)2010,JPO&INPIT
    • 29. 发明专利
    • Air conditioner with oil mist removal function
    • 具有油雾去除功能的空调器
    • JP2009183807A
    • 2009-08-20
    • JP2008023209
    • 2008-02-01
    • Aisin Kiko Co LtdTechno Ryowa Ltdアイシン機工株式会社株式会社テクノ菱和
    • AKENAGA HOSHICHIROSUZUKI MASANORIWASHIMI MASASHI
    • B03C3/40B03C3/41B03C3/47F24F3/16
    • PROBLEM TO BE SOLVED: To provide an air conditioner with an oil mist removal function, which prevents oil mist from depositing on a discharge electrode (oil mist charged part) and a grounding electrode (oil mist collection part) to make the maintenance easy, and at the same time, can maintain an excellent charge efficiency and collection performance for a long time, and which is also applicable to an indoor circulating type. SOLUTION: The air conditioner is provided with an air induction part 20 in which air containing oil mist is introduced, a charging part 30 in which oil mist is charged with air ions by the flowing of air containing oil mist so as to cross with the ion flow field formed by the discharge electrode 31 and the counter electrode 32, and a collection part 40 installed at the downstream side of the charging part 30 and collecting oil mist charged by the charged part 30 with a coil 42 increasing the electric field intensity of the circumference by sandwiching both sides with a positive and a negative high-voltage screens 41a, 41b, in a casing 13 provided with an air-intake and an air discharge mouth. COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种具有除油功能的空调器,其防止油雾沉积在放电电极(油雾充电部分)和接地电极(油雾收集部分)上以进行维护 容易,同时可以长时间保持良好的充电效率和收集性能,也适用于室内循环型。 解决方案:空气调节器设置有引入含有油雾的空气的空气引导部20,通过含有油雾的空气的流动使油雾与空气离子一起充满油的充电部30, 由放电电极31和对电极32形成的离子流场以及安装在充电部30的下游侧的收集部40,并且通过增加电场的线圈42收集由充电部30充电的油雾 在设置有进气口和排气口的壳体13中将正面和负极高压屏幕41a,41b夹在两边的周边强度。 版权所有(C)2009,JPO&INPIT
    • 30. 发明专利
    • Low slough-off sheath air type ionizer
    • 低滑雪风空气式离子
    • JP2009170148A
    • 2009-07-30
    • JP2008004352
    • 2008-01-11
    • Techno Ryowa Ltd株式会社テクノ菱和
    • SUZUKI MASANORI
    • H05F3/04H01T19/04H01T23/00
    • PROBLEM TO BE SOLVED: To provide a low slough-off sheath air type ionizer which can rectify a flow of sheath air blown from a nozzle and can reduce a required sheath air volume.
      SOLUTION: A cross-sectional shape of the ionizer body is made to become a streamline. In a sheath air nozzle, a top end portion of a corona electrode is arranged to be embedded inside the nozzle to a predetermined distance from a top end of the nozzle, a running distance L of the sheath air or a maximum length of a straight line passage of the sheath air reaching an outlet of the nozzle is four times longer than an inside diameter di of the nozzle, and an equivalent diameter De=di-do of a double circle tube portion, formed by a nozzle inside diameter di and an outer diameter do of the corona electrode, is ϕ3-1 mm. A sheath air velocity of the double circle tube portion (v is ≥1 m/s) is set up so that a Reynolds number Re of the double circle tube portion may become ≤400.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种可以整流从喷嘴吹出的鞘空气的流动的低脱皮护套空气型离子发生器,并且可以减少所需的护套空气体积。 解决方案:使离子发生器主体的横截面形状成为流线。 在护套空气喷嘴中,电晕电极的顶端部分布置成从喷嘴的顶端到喷嘴内部预定距离,护套空气的行进距离L或直线的最大长度 到达喷嘴出口的护套空气的通过比喷嘴的内径di长四倍,并且由喷嘴内径di和外径形成的双圆管部分的当量直径De = di-do 电晕电极的直径为φ3-1mm。 双圈管部分的皮层空气速度(v为≥1m/ s)被设定为使得双圆管部分的雷诺数Re可以变为≤400。 版权所有(C)2009,JPO&INPIT