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    • 1. 发明公开
    • NITROGEN OXIDE DECOMPOSING ELEMENT AND NITROGEN OXIDE DECOMPOSING APPARATUS INCLUDING THE SAME
    • STICKSTOFFOXIDZERSETZUNGSELEMENT UND DIESES ENTHALTENDE STICKSTOFFOXIDZERSETZUNGSVORRICHTUNGHUNG
    • EP1607132A4
    • 2006-10-04
    • EP03809439
    • 2003-09-26
    • MITSUBISHI ELECTRIC CORPMACHIDA MASATO
    • MACHIDA MASATOYAMAUCHI SHIROKIMURA MINORUYAMAJI SHIGERU
    • B01D53/22B01D53/32B01D53/56B01D53/94
    • B01D53/56B01D53/326
    • A nitrogen oxide decomposing element capable of processing at relatively low temperature without the use of materials whose influence on environment and human health as an oxidizer or catalyst is feared; and a nitrogen oxide decomposing apparatus including the same. In particular, nitrogen oxide decomposing element (1) comprising conductive solid electrolyte film (2) capable of selective permeation of hydrogen ion; first electrode layer (3) composed of an electron conductive substrate and a catalyst capable of accelerating anodic oxidation; second electrode layer (4) composed of an electron conductive substrate and a catalyst capable of accelerating cathodic reduction; and platinum group catalyst (6) carried on porous metal oxide (5) and disposed adjacent to the second electrode layer (4). Further, there is provided a nitrogen oxide decomposing apparatus of low power consumption, comprising nitrogen oxide sensor (14) disposed in the vicinity of the platinum group catalyst (6) carried on porous metal oxide (5); and power source/control unit (15) capable of controlling the intensity and passage time of current flowing between the first electrode layer (3) and the second electrode layer (4) in conformity with the concentration of nitrogen oxide detected by the nitrogen oxide sensor (14) so as to attain effective utilization of electrical energy.
    • 担心在不使用对环境和人体健康有影响的材料作为氧化剂或催化剂的情况下能够在较低温度下处理的氮氧化物分解元素; 以及包含其的氮氧化物分解装置。 特别是,含有能选择性透过氢离子的导电性固体电解质膜(2)的氮氧化物分解元件(1) 由电子传导性基体和能够加速阳极氧化的催化剂构成的第一电极层(3) 由电子传导性基体和能够加速阴极还原的催化剂构成的第二电极层(4) 和承载在多孔金属氧化物(5)上并与第二电极层(4)相邻设置的铂族催化剂(6)。 此外,提供一种低功耗的氮氧化物分解装置,包括设置在多孔金属氧化物(5)上承载的铂族催化剂(6)附近的氮氧化物传感器(14); 和电源/控制单元(15),其能够根据由氮氧化物传感器检测的氮氧化物的浓度来控制在第一电极层(3)和第二电极层(4)之间流动的电流的强度和通过时间 (14)以实现电能的有效利用。
    • 8. 发明专利
    • Nitrogen oxide treatment apparatus
    • 氮氧化物处理设备
    • JP2005013807A
    • 2005-01-20
    • JP2003179532
    • 2003-06-24
    • Mitsubishi Electric Corp三菱電機株式会社
    • YAMAUCHI SHIROKIMURA HIDEYAMAJI SHIGERUASANO HIDEAKI
    • B01D53/56B01D53/81B01J20/34
    • PROBLEM TO BE SOLVED: To provide a nitrogen oxide treatment apparatus wherein the operation efficiency of an ozone supply device and the treatment efficiency of nitrogen oxide are enhanced as compared with a conventional technique. SOLUTION: An NO-containing gas to be treated is supplied to an ozone treatment device 5 through a sensitive part 12 and the respective concentrations of NO and NO x other than NO in the gas to be treated are measured by an NO concentration measuring instrument 1 during the supply to the ozone treatment device 5. The amount of ozone necessary for oxidizing NO in the gas to be treated to NO 2 or the like is calculated according to the input from the NO concentration measuring instrument 1 in an ozone amount control unit 4, and the calculation result is inputted to an ozone supply device 3. The gas to be treated subjected to oxidation treatment by ozone supplied from the ozone supply device 3 enters an adsorbing device 6 and NO 2 or the like therein is adsorbed in an adsorbing device 6. An adsorbent having adsorbed NO 2 or the like is subjected to desorption treatment in a desorbing device 7 and the desorbed gas is dissolved in water or the like in a gas-liquid contact device 8 and removed. COPYRIGHT: (C)2005,JPO&NCIPI
    • 解决问题的方法:与现有技术相比,提供了臭氧供给装置的运转效率和氮氧化物的处理效率提高的氮氧化物处理装置。 解决方案:将待处理的含NO气体通过敏感部分12提供给臭氧处理装置5,并将气体中除NO之外的NO和NO x 各自的浓度提供给 在向臭氧处理装置5的供给期间,通过NO浓度测定装置1测定处理。将待处理气体中的NO氧化为NO 2 等所需的臭氧量根据 到臭氧量控制单元4中的NO浓度测量仪1的输入,并将计算结果输入到臭氧供给装置3.经臭氧供给装置3供给的臭氧氧化处理的待处理气体进入 吸附装置6和NO SB2等吸附在吸附装置6中。吸附有NO SB SB等的吸附剂在解吸附中进行解吸处理 装置7和解吸气体以气体溶解在水等中 uid接触装置8并移除。 版权所有(C)2005,JPO&NCIPI