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    • 2. 发明专利
    • Exhaust treatment apparatus
    • 排气处理设备
    • JP2010022950A
    • 2010-02-04
    • JP2008188197
    • 2008-07-22
    • Mitsubishi Heavy Ind LtdMitsubishi Heavy Industries Environment & Chemical Engineering Co Ltd三菱重工業株式会社三菱重工環境・化学エンジニアリング株式会社
    • KUROMI YOSHIOKOJIMA KATSUHISAUEDA YASUTOSHIKATO MASAYAKAGAMI MORIO
    • B03C3/02B03C3/155B03C3/40B03C3/45B03C3/49F01N3/02
    • PROBLEM TO BE SOLVED: To provide an exhaust treatment apparatus that can reduce the pressure drop with respect to an ion wind stream having a directional component along an exhaust stream, can increase the amount of the penetrating ion wind at a given energy, and can promote the effects of collecting and agglomerating PM.
      SOLUTION: The exhaust treatment apparatus 50 includes a cylindrical outer shell 1, a dust collecting filter 2 having openings and consisting of a plurality of dust collecting electrodes and a dust collecting filter layer, disposed along the inner face of the outer shell 1, an exhaust passage 7 formed inside the dust collecting filter 2 through which PM-containing exhaust flows, and a discharge electrode 40 disposed in the exhaust passage 7 and for generating an ion wind 30 that induces and forms secondary flows between the discharge electrode 40 and the dust collecting filter 2 in the direction intersecting the exhaust stream at right angles upon applying a voltage thereonto, and is characterized in that the dust collecting electrodes and the dust collecting filter layer each are constituted of a plurality of fine wire threads 12, each being an integrated single layered structural body, extending in the direction of the exhaust stream, and disposed with a gap apart in the circumferential direction.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了提供一种排气处理装置,其能够相对于具有沿着排气流的方向分量的离子风流减小压降,可以增加在给定能量下的穿透离子风的量, 并可以促进收集和聚集PM的效果。 解决方案:排气处理装置50包括:圆筒形外壳1,具有开口的集尘过滤器2,由多个集尘电极和集尘过滤层组成,沿着外壳1的内表面 形成在集尘过滤器2的内部的排气通路7,通过该排气通路7设置有含PM排气流的排气通路7,以及配置在排气通路7内的放电电极40,并产生在放电电极40与放电电极40之间产生二次流的离子风30。 集尘过滤器2在向排气流方向交叉的方向上施加电压时,其特征在于,集尘电极和集尘过滤层各自由多根细线螺纹12构成,每根细线 集成的单层结构体,其沿排气流的方向延伸,并且以周向隔开间隔设置 n。方向 版权所有(C)2010,JPO&INPIT
    • 3. 发明专利
    • Exhaust treatment apparatus
    • 排气处理设备
    • JP2010022949A
    • 2010-02-04
    • JP2008188196
    • 2008-07-22
    • Mitsubishi Heavy Ind LtdMitsubishi Heavy Industries Environment & Chemical Engineering Co Ltd三菱重工業株式会社三菱重工環境・化学エンジニアリング株式会社
    • KUROMI YOSHIOKOJIMA KATSUHISAUEDA YASUTOSHIKATO MASAYAKAGAMI MORIO
    • B03C3/02B03C3/155B03C3/40B03C3/41B03C3/49F01N3/02
    • PROBLEM TO BE SOLVED: To provide an exhaust treatment apparatus that can be easily fabricated and assembled, has a uniform electric current density in every direction, generates a uniform ion wind flowing toward its dust collecting electrode, can prevent microparticles and dust contained in exhaust from slipping through, and can enhance particle collection efficiency and particle-number reduction rate.
      SOLUTION: The exhaust treatment apparatus 50 includes a cylindrical outer shell 1, a dust collecting filter 2 having openings and consisting of a plurality of dust collecting electrodes and a dust collecting filter layer, disposed along the inner face of the outer shell 1, an exhaust passage 7 formed inside the dust collecting filter 2, through which PM-containing exhaust flows, and a discharge electrode 40 disposed in the exhaust passage 7 and for generating an ion wind 30 that induces and forms secondary flows between the discharge electrode 40 and the dust collecting filter 2 in the direction intersecting the exhaust stream at right angles upon applying a voltage thereonto, characterized in that the discharge electrode 40 is equipped with a discharge member constituted of a plurality of disc-shaped or polygonal discharge plates 3, and the outer circumferential tip 3a of each of the discharge plates 3 is made to have an acute angle in a manner protruding toward the dust collecting filter 2.
      COPYRIGHT: (C)2010,JPO&INPIT
    • 要解决的问题:为了提供可以容易地制造和组装的排气处理装置,在各个方向上具有均匀的电流密度,产生朝向集尘电极流动的均匀的离子风,可以防止包含的微粒和灰尘 在排气中通过,可以提高颗粒收集效率和颗粒数减少率。 解决方案:排气处理装置50包括:圆筒形外壳1,具有开口的集尘过滤器2,由多个集尘电极和集尘过滤层组成,沿着外壳1的内表面 形成在集尘过滤器2内的排气通路7,含有PM的排气流过该排气通路7,以及设置在排气通路7中的放电电极40,并产生在放电电极40之间产生二次流的离子风30 和集尘过滤器2在向其上施加电压时在垂直方向上与排气流相交的方向上,其特征在于,放电电极40配备有由多个盘状或多边形排出板3构成的排出构件, 每个排出板3的外周端部3a以朝向集尘的方式突出的方式形成为锐角 过滤器2.版权所有(C)2010,JPO&INPIT
    • 4. 发明专利
    • Exhaust gas cleaner
    • 排气清洁剂
    • JP2009142808A
    • 2009-07-02
    • JP2008164347
    • 2008-06-24
    • Mhi Environment Engineering Co LtdMitsubishi Heavy Ind Ltd三菱重工業株式会社三菱重工環境エンジニアリング株式会社
    • TAMAI MASATOSHIUEDA YASUTOSHIKOJIMA KATSUHISAKAGAMI MORIOKATO MASAYA
    • B03C3/41B03C3/155B03C3/40B03C3/49F01N3/02
    • PROBLEM TO BE SOLVED: To provide an exhaust gas cleaner capable of preventing particulate substances from being deposited to an insulator inside an insulator chamber and a discharge electrode, or capable of removing the substances even deposited thereto.
      SOLUTION: The exhaust gas cleaner 1 includes: an outer shell 2 having a cylindrical shape; a dust collecting filter device 5 disposed inside the outer shell 2 and composed of a dust collecting electrode 3 and a dust collecting filter layer 4; a gas passage 6 provided inside the dust collecting filter device 5 and forming an exhaust channel containing the particulate substances; a discharge electrode 7 disposed at the center part of the outer shell 2 and extended in the axial direction of the outer shell 2, and generating ion wind in a space with the dust collecting electrode 3 of the dust collecting filter device 5 when a voltage is applied; the insulator chamber 9 extended upward of the outer shell 2 and internally arranging the insulator 11; and a discharge electrode supporting material 10 extended to the gas passage 6 through the inside the insulator chamber 9 and for supporting the discharge electrode 7. In the cleaner 1, below the insulator 11 of the insulator chamber 9, a discharge electrode supporting material 10 is provided with a discharge electrode 12 for insulator chamber for applying voltage.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 要解决的问题:提供一种能够防止颗粒物质沉积到绝缘体室和放电电极内的绝缘体上或能够除去甚至沉积在其上的物质的废气净化器。 排气净化器1包括:具有圆筒形状的外壳2; 设置在外壳2的内部,由集尘电极3和集尘过滤层4构成的集尘过滤装置5; 设置在集尘过滤装置5内的气体通道6,形成含有颗粒物质的排气通道; 设置在外壳2的中心部并沿外壳2的轴向延伸的放电电极7,当电压为电压时,与集尘滤波装置5的集尘电极3在空间中产生离子风 应用; 绝缘体室9从外壳2向上延伸并且内部布置绝缘体11; 以及放电电极支撑材料10,其通过绝缘体室9的内部延伸到气体通道6并用于支撑放电电极7.在清洁器1中,绝缘体室9的绝缘体11的下方,放电电极支撑材料10为 设置有用于施加电压的绝缘体室的放电电极12。 版权所有(C)2009,JPO&INPIT
    • 6. 发明专利
    • Exhaust emission control device
    • 排气排放控制装置
    • JP2009114872A
    • 2009-05-28
    • JP2007285693
    • 2007-11-02
    • Mhi Environment Engineering Co LtdMitsubishi Heavy Ind Ltd三菱重工業株式会社三菱重工環境エンジニアリング株式会社
    • TAMAI MASATOSHIUEDA YASUTOSHIKOJIMA KATSUHISAKATO MASAYAKAGAMI MORIO
    • F01N3/02B03C3/14B03C3/36B03C3/40B03C3/49
    • B03C3/06B03C3/15B03C3/361B03C3/41B03C3/49B03C2201/10B03C2201/30
    • PROBLEM TO BE SOLVED: To provide an exhaust emission control device with PM collection efficiency improved by shortening moving distance of PM in ion wind and exhaust gas toward a dust collection filter device from a needle shaped electric discharge electrode electric discharge part composing an electric discharge electrode.
      SOLUTION: The exhaust emission control device 50 is provided with the dust collection filter device 2 comprising a dust collection filter device 2 and a dust collection electrode arranged along an outer shell 1, an exhaust gas passage 7 formed inside of the dust collection filter device 2 and having exhaust gas containing PM flow therein, and an electric discharge electrode 40 installed in a direction crossing an exhaust gas passage 7 under a condition where mutual tips are separated and generating the ion wind 30 inducing and forming secondary flow in a direction perpendicular to the exhaust gas flow in a gap with the dust collection filter device 2 when voltage is applied. An exhaust gas swirl forming pipe 10 opening in a tangential direction to the exhaust gas passage 7 is provided on the outer shell 1 positioned at an upstream side of the electric discharge electrode 40.
      COPYRIGHT: (C)2009,JPO&INPIT
    • 解决问题的方案:提供一种废气排放控制装置,其具有通过缩短离子风和废气中的PM的移动距离朝着集尘过滤装置从由针状放电电极放电部组成的集尘效率提高 放电电极。 解决方案:废气排放控制装置50设置有集尘过滤装置2,该集尘过滤装置2包括集尘过滤装置2和沿着外壳1排列的集尘电极,形成在集尘器内部的排气通道7 过滤器装置2,并且具有含有PM流的废气,以及放电电极40,其在相互尖端分离的条件下沿与废气通道7交叉的方向安装,并产生离子风30,从而沿方向 当施加电压时,与灰尘收集过滤装置2的间隙垂直于废气流。 在位于放电电极40的上游侧的外壳1上设置有沿排气通道7的切线方向开口的废气涡旋形成管10.(C)2009,JPO&INPIT
    • 7. 发明专利
    • Apparatus for removing so3 component in exhaust gas
    • 用于去除排气中SO3组分的装置
    • JP2003001054A
    • 2003-01-07
    • JP2001188405
    • 2001-06-21
    • Asahi Glass Co LtdMitsubishi Heavy Ind Ltd三菱重工業株式会社旭硝子株式会社
    • KATO MASAYAKATAYAMA HIROYUKIYADA KATSUTOSHIHIRANO HACHIROMORI YOICHIYAMAMOTO KAZUYOSHI
    • F23J15/00B01D53/34B01D53/50B01D53/77B01D53/81
    • B01D53/502B01D2251/304B01D2251/606B01D2257/302
    • PROBLEM TO BE SOLVED: To remove SO
      3 in an exhaust gas without causing a significant increase in the operation cost.
      SOLUTION: The concentration of SO
      3 in the exhaust gas is reduced by providing a sodium carbonate supplying device 20 for supplying sodium carbonate to the exhaust gas at the outlet of a boiler 1, and a SO
      3 -separating device 10 is provided for separating and removing the SO
      3 component from the exhaust gas at the inlet of a wet type desulfurization device 7. In the SO
      3 separating device 10, a shell and tube type heat exchanger is provided, and the exhaust gas and water to be supplied to the boiler are passed through the shell side and the tube side, respectively, so as to cool the temperature of the exhaust gas to a temperature lower than the dew point of gaseous H
      2 SO
      4 . With the lowering of the temperature of the exhaust gas, the SO
      3 component in the exhaust gas reacts with moisture in the exhaust gas and forms the gaseous H
      2 SO
      4 , and further, the formed H
      2 SO
      4 gas condenses and sticks on the surface of the tube. The SO
      3 component can be removed from the exhaust gas by washing liquid H
      2 SO
      4 stuck on the tube with water. Thereby, the consumption of sodium carbonate is markedly reduced and the increase in the cost for operating a plant is prevented.
      COPYRIGHT: (C)2003,JPO
    • 要解决的问题:排除废气中的SO 3,而不会导致运行成本的显着增加。 解决方案:通过在锅炉1的出口处设置用于向排气中提供碳酸钠的碳酸钠供应装置20,排气中的SO 3浓度降低,并且提供SO 3分离装置10用于分离和除去 SO 3成分从湿式脱硫装置7的入口处的排气中排出。在SO 3分离装置10中,设置有壳管型热交换器,供给锅炉的废气和水通过 壳体侧和管侧,以将废气的温度降低到低于气态H 2 SO 4的露点的温度。 随着废气温度的降低,废气中的SO 3成分与废气中的水分反应,形成气态H 2 SO 4,此外,所形成的H 2 SO 4气体冷凝并粘附在管的表面上。 通过用水清洗粘在管上的H2 SO4液体可以将SO3组分从废气中除去。 因此,碳酸钠的消耗明显降低,并且防止了操作植物的成本的增加。