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    • 3. 发明专利
    • Exhaust gas cleaning device
    • 排气清洁装置
    • JP2013233504A
    • 2013-11-21
    • JP2012107159
    • 2012-05-09
    • Kri Inc株式会社KriRitsumeikan学校法人立命館
    • YOSHIHARA FUKUZENSHINODA KOMATSUDA TOSHIHIKO
    • B01D53/56B01D53/74B01J20/04F01N3/01F01N3/02F01N3/023F01N3/035F01N3/08F01N3/10
    • PROBLEM TO BE SOLVED: To provide a cleaning device which eliminates NOx from an exhaust gas and also eliminates nitrogen oxides (NOx) and fine particles (PM) from the exhaust gas at the same time.SOLUTION: An exhaust gas cleaning device includes a first porous electrode formed on one surface of a porous solid electrolyte having oxygen ion conductivity and a second porous electrode formed on the other surface of the same. The exhaust gas cleaning device allows an exhaust gas to pass therethrough, and the exhaust gas passing through the device is cleaned by applying a voltage to the electrodes on both surfaces. The first electrode on the exhaust gas inflow side is an anode, and the second electrode on the exhaust gas outflow side is a cathode. The first electrode contains a gadolinia-added ceria (GDC) and a conductor, and the second electrode contains a gadolinia-added ceria (GDC), a conductor, and an NOx occluding material. The first electrode and/or the second electrode is sloped so that the concentration of the conductor becomes lower toward the solid electrolyte.
    • 要解决的问题:提供一种从废气中除去NOx的清洗装置,并且同时从废气中除去氮氧化物(NOx)和微粒(PM)。解决方案:一种排气净化装置,包括:第一 形成在具有氧离子传导性的多孔固体电解质的一个表面上的多孔电极和形成在其另一表面上的第二多孔电极。 废气净化装置允许废气通过,并且通过向两个表面上的电极施加电压来清洁通过装置的废气。 废气流入侧的第一电极为阳极,排气流出侧的第二电极为阴极。 第一电极含有添加氧化钆(GDC)和导体,第二电极含有添加氧化钆的氧化铈(GDC),导体和NOx吸留材料。 第一电极和/或第二电极是倾斜的,使得导体的浓度朝向固体电解质变低。
    • 6. 发明专利
    • Combustion analysis method, combustion analyzer and computer program
    • 燃烧分析方法,燃烧分析仪和计算机程序
    • JP2010038410A
    • 2010-02-18
    • JP2008200129
    • 2008-08-01
    • Ritsumeikan学校法人立命館
    • FUKUMOTO KAZUMASAOGAMI YOSHIFUMIYOSHIHARA FUKUZEN
    • F23N5/00
    • PROBLEM TO BE SOLVED: To prevent deterioration of calculation accuracy in a nonequilibrium combustion state while using the chemical equilibrium method.
      SOLUTION: A combustion analysis method for numerical analysis of combustion includes: a first step of calculating generation amount of one or a plurality of first chemical species which is part of chemical species related to combustion of an analysis target in accordance with the algorithm based on the chemical equilibrium method; a second step of calculating reaction velocity by the combustion of one or plurality of second chemical species which is the other part of the chemical species related to the combustion in accordance with the algorithm based on the reaction kinetics; and a third step of calculating generation amount of the second chemical species by substituting the reaction velocity calculated in the second step to the conservation formula of the second chemical species.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了防止在使用化学平衡方法的非平衡燃烧状态下的计算精度的劣化。 解决方案:燃烧数值分析的燃烧分析方法包括:第一步骤,根据算法计算作为分析目标燃烧相关化学物质的一个或多个第一化学物质的产生量 基于化学平衡法; 通过根据基于反应动力学的算法,通过燃烧作为与燃烧相关的化学物质的其他部分的一种或多种第二化学物质来计算反应速度的第二步骤; 以及第三步骤,通过将第二步计算的反应速度代入第二化学物质的守恒公式来计算第二化学物质的产生量。 版权所有(C)2010,JPO&INPIT
    • 7. 发明专利
    • Analysis device
    • 分析装置
    • JP2009209833A
    • 2009-09-17
    • JP2008055028
    • 2008-03-05
    • Horiba LtdRitsumeikan学校法人立命館株式会社堀場製作所
    • IIDA SACHIHIROKO TOSHINORINAKANISHI YASUFUMIYOSHIHARA FUKUZENASANO ICHIROINOUE KO
    • F01N3/02B01D39/14B01D46/42B01D53/86B01D53/94F01N3/08F01N9/00
    • Y02T10/47
    • PROBLEM TO BE SOLVED: To provide a self-regenerating type gas purification device capable of efficient reproduction and using an electrochemical method.
      SOLUTION: The electrochemical-type gas purification device 100 using a purification member 1 composed of solid electrolyte is provided with an impedance measuring circuit 4 for measuring an impedance related value which is a value related to impedance in the width direction of the purification member 1, and a control circuit 5 which starts reproduction treatment of the purification member 1 by turning on a current impression circuit 3 when the impedance related value measured by the impedance measuring circuit 4 exceeds the upper limit set beforehand, and terminates the reproduction treatment of the purification member 1 by turning off the current impression circuit 3 when the measured impedance falls below the lower limit set beforehand.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供能够有效再现并使用电化学方法的自再生型气体净化装置。 解决方案:使用由固体电解质构成的净化部件1的电化学型气体净化装置100设置有阻抗测定电路4,该阻抗测定电路4测定与净化宽度方向的阻抗有关的阻抗相关值 以及控制电路5,当由阻抗测量电路4测量的阻抗相关值超过预先设定的上限时,通过打开电流压印电路3开始对净化部件1进行再生处理,并终止再生处理 净化部件1通过当测量的阻抗下降到预先设定的下限以下时关闭当前压印电路3。 版权所有(C)2009,JPO&INPIT
    • 10. 发明专利
    • PRODUCTION OF FINE PARTICLE
    • JPH10137618A
    • 1998-05-26
    • JP30306596
    • 1996-11-14
    • RITSUMEIKANTAKAHASHI KINZOKU KK
    • YOSHIHARA FUKUZENTANAKA DOUSHICHINAKAGAWA ZENICHINISHIMURA SEIJI
    • B02C19/06
    • PROBLEM TO BE SOLVED: To continuously and efficiently produce fine particle with a prescribed particle size or smaller by jetting a liquid with high pressure into a slurry-state liquid in which an object to be crushed is suspended. SOLUTION: A jetting hole 2 is opened in a container 1 in which a slurry state liquid is to be poured and a liquid 4 supplied from a pressure generating source 3 such as a pump is jetted to the slurry-state liquid. The particle in the slurry-state liquid is crushed by shearing force in a jet current shearing layer induced by jetting the liquid 4 at high pressure and also by impact pressure due to cavitation generated in the slurry-state liquid in the container 1. Since the volume of the liquid in the container 1 increases by continuous supply of the liquid 4 in such a manner, the supply of the liquid 4 is stopped in a stage that a prescribed amount of supply is completed and the resultant fine particle which is a crushed product in the slurry-state liquid in the container is taken out. In order to take out the fine particle, a method of sorting by a sorter or evaporating the liquid is employed and the remaining particle is taken out.