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    • 5. 发明申请
    • CERAMIC PLASMA REACTOR AND REACTION APPARATUS
    • 陶瓷等离子体反应器和反应装置
    • US20090179545A1
    • 2009-07-16
    • US12351210
    • 2009-01-09
    • Michio TAKAHASHIHiroshi MIZUNOMasaaki MASUDA
    • Michio TAKAHASHIHiroshi MIZUNOMasaaki MASUDA
    • H05H1/24
    • H05H1/2406H05H2001/2418H05H2001/2437
    • The ceramic plasma reactor includes: a plurality of unit electrodes each of which comprises a plate-shaped ceramic dielectric body 4 and a conductive film 3 embedded in the ceramic dielectric body superimposing them each other with a gap which works as a discharge portion 11, and preferably being formed by sandwiching one unit electrode 2b having no through holes 15 by two unit electrodes having plural through holes 2a there between. A partition wall plate 9 is provided by facing one of unit electrodes on a side opposite to the gap and being held by a holding member 7 at a predetermined distance so as to form there between a gas introducing-circulating portion 21 for introducing and circulating gas in the through-holes 15 so as to send gas introduced to the gap between the unit electrodes as a discharge portion by applying a voltage thereto to generate plasma.
    • 陶瓷等离子体反应器包括:多个单元电极,每个单元电极包括板状陶瓷电介质体4和嵌入在陶瓷电介质体中的导电膜3,该导电膜3以作为排出部11的间隙彼此重叠,并且 优选通过在其间具有多个通孔2a的两个单位电极夹住不具有通孔15的一个单位电极2b来形成。 分隔壁板9通过面对与间隙相反的一侧的单元电极中的一个并由保持构件7以预定距离保持,以在其间形成用于引入和循环气体的气体引入循环部分21 在通孔15中,通过向其施加电压而将通过施加电压而引入到单元电极之间的间隙的气体作为放电部分产生等离子体。
    • 6. 发明申请
    • CERAMICS HEAT EXCHANGER AND PRODUCTION METHOD THEREOF
    • 陶瓷热交换器及其生产方法
    • US20100270011A1
    • 2010-10-28
    • US12763296
    • 2010-04-20
    • Michio TAKAHASHIHiroshi Mizuno
    • Michio TAKAHASHIHiroshi Mizuno
    • F28D1/00B21D53/02
    • F28F7/02F01N2240/02F28D7/0025F28D21/0003F28F21/04Y10T29/4935
    • In a heat exchange element 1, first fluid circulation portions 5 having a honeycomb structure having a plurality of cells separated by ceramic partition walls 4, extending through in an axial direction from one end face 2 to the other end face 2, and allowing a heated medium as a first fluid to flow therethrough and second fluid circulation portions 6 being separated by ceramic partition walls 4, extending in the direction perpendicular to the axial direction, allowing a second fluid to flow therethrough, transferring heat to a medium to be heated as the second fluid are alternately formed as a unit. The cells 3 on the first fluid circulation portion 5 side are smaller than the cells 3 on the second fluid circulation portion 6 side, and the partition walls have a density of 0.5 to 5 g/cm3 and a thermal conductivity of 10 to 300 W/mK.
    • 在热交换元件1中,具有蜂窝结构体的第一流体循环部5具有由陶瓷隔壁4隔开的多个单元,从轴承方向从一个端面2向另一端面2延伸, 介质作为流过其中的第一流体,第二流体循环部分6被陶瓷分隔壁4分开,陶瓷隔壁4沿垂直于轴向的方向延伸,允许第二流体流过其中,将热量传递到待加热介质 第二流体交替地形成为一个单元。 第一流体循环部5侧的气室3比第​​二流体循环部6侧的气室3小,分隔壁的密度为0.5〜5g / cm 3,导热率为10〜300W / mK
    • 7. 发明申请
    • PLASMA REACTOR AND PLASMA REACTION APPARATUS
    • 等离子体反应器和等离子体反应装置
    • US20090208387A1
    • 2009-08-20
    • US12368701
    • 2009-02-10
    • Masaaki MASUDAMichio TAKAHASHIHiroshi MIZUNO
    • Masaaki MASUDAMichio TAKAHASHIHiroshi MIZUNO
    • B01J19/08
    • H05H1/2406H05H2001/2418H05H2001/2437H05H2245/1215
    • A plasma reactor includes a plasma reaction section that includes a pair of tabular electrodes facing each other arranged with an opening and generates plasma in a discharge section between the pair of tabular electrodes upon application of a voltage between the pair of tabular electrodes so that a first gas that passes through the discharge section is made to undergo a reaction, each of the pair of tabular electrodes including a ceramic dielectric and a conductor buried in the ceramic dielectric, and a heat-supplying gas circulation section that is stacked adjacently to the plasma reaction section and is integrally formed with the plasma reaction section, the heat-supplying gas circulation section applying heat of a second gas that passes through to the plasma reaction section to promote the reaction of the first gas.
    • 等离子体反应器包括等离子体反应部分,其包括一对布置有开口的彼此面对的平板电极,并且在一对平板状电极之间施加电压之后的放电部分中产生等离子体,使得第一 使通过排出部的气体进行反应,所述一对片状电极中的每一个包括陶瓷电介质和埋在陶瓷电介质中的导体,以及与等离子体反应相邻的供热气体循环部 并且与等离子体反应部一体形成,供热气体循环部分将通过第二气体的热量施加到等离子体反应部分以促进第一气体的反应。