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    • 5. 发明申请
    • Exhaust gas processing method and exhaust gas processing system
    • 废气处理方法和废气处理系统
    • US20070000236A1
    • 2007-01-04
    • US10569841
    • 2004-08-26
    • Kenta NaitoSatoru SenbayashiJunichi KasaiAkira Mizuno
    • Kenta NaitoSatoru SenbayashiJunichi KasaiAkira Mizuno
    • F01N3/00
    • F01N3/021B03C3/06B03C3/155B03C3/41B03C3/49B03C3/62B03C3/64B03C2201/04B03C2201/08B03C2201/12B03C2201/30F01N3/01Y02T10/20
    • An exhaust gas processing method and an exhaust gas processing system for controlling the spatial density distribution of particulate matter in exhaust gas by utilizing corona discharge in exhaust gas containing floating particulate matter such as diesel engine exhaust gas to form a relatively particulate matter-rich area and a relatively particulate matter-lean area, and diving exhaust gas particulates to the former and the latter. An exhaust gas processing system (10) provided with a high-voltage electrode (12) and a low-voltage electrode (11), wherein exhaust gas G is allowed to flow between the facing high-voltage electrode (12) and low-voltage electrode (11), and a high voltage is applied to between the counter electrodes to generate corona discharge in the exhaust gas G, whereby floating particulate matter (20) in the exhaust gas G is charged, the spatial density distribution of the floating particulate matter in the exhaust gas is controlled by an electrostatic force between the counter electrodes, and the exhaust gas G is divided into a high-concentration exhaust gas Gb in the vicinity of the low-voltage electrode where a particulate matter concentration is relatively high and a low-concentration exhaust gas Ga in the vicinity of the high-voltage electrode where a particulate matter concentration is relatively low.
    • 一种废气处理方法和废气处理系统,用于通过利用包含诸如柴油发动机废气的浮动颗粒物的废气中的电晕放电来控制废气中的颗粒物质的空间密度分布,以形成相对颗粒物质丰富的区域, 相对颗粒物质贫乏的区域,潜水废气颗粒到前者和后者。 一种设置有高压电极(12)和低压电极(11)的废气处理系统(10),其中允许废气G在相对的高压电极(12)和低压电极 电极(11),并且在对置电极之间施加高电压以在废气G中产生电晕放电,由此对排气G中的浮动颗粒物质(20)进行充电,浮动颗粒物质的空间密度分布 在排气中由对置电极之间的静电力控制,并且废气G被分成低浓度电极附近的高浓度排气Gb,其中颗粒物浓度较高,低 浓度排出气体Ga在高压电极附近,其中颗粒物质浓度相对较低。
    • 6. 发明申请
    • Particulate matter removal apparatus
    • 颗粒物去除装置
    • US20080066621A1
    • 2008-03-20
    • US11896889
    • 2007-09-06
    • Kenta NaitoSatoru SenbayashiYuichi Hamada
    • Kenta NaitoSatoru SenbayashiYuichi Hamada
    • B01D41/00B03C3/01
    • B01D46/0063F01N3/01F01N3/0226F01N3/0275F01N2240/04F01N2290/02F01N2390/02
    • A filter is made with heat-insulating ceramic fibers, and where the filter is increased in pressure loss due to particulate matter captured after filtration of exhaust gas, gas flow is blocked, a heating element is used to heat the surface of the filter, thereby burning and removing particulate matter. The filter is of heat insulating properties, by which a heat insulating material is arranged near the particulate matter capturing face of the filter, and the heating element is incorporated between the surface of the filter and the heat insulating material. The filter can be regenerated at a higher heating efficiency in a smaller quantity of thermal energy. The heat insulating material is also used as a filter, by which the apparatus can be made more compact. A charging element is arranged upstream of the filter material, by which the filter material is increased in particulate matter capturing performance, thereby suppressing the rate of increase in the pressure loss and improving heating efficiency of particulate matter.
    • 过滤器由绝热陶瓷纤维制成,并且由于排气过滤后捕获的颗粒物质,过滤器的压力损失增加,气体流动被阻塞,加热元件用于加热过滤器的表面,由此 燃烧和除去颗粒物。 该过滤器具有绝热性,隔热材料配置在过滤器的颗粒物捕获面附近,并且加热元件被结合在过滤器的表面和隔热材料之间。 过滤器可以在更少的热能的较高加热效率下再生。 绝热材料也用作过滤器,通过该过滤器,可以使该设备更加紧凑。 在过滤材料的上游配置有充电元件,通过该充电元件使过滤材料的颗粒物质捕获性能提高,从而抑制压力损失增加的速度,提高颗粒物质的加热效率。