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    • 1. 发明授权
    • Optimized electrically heated exhaust gas treatment system
    • 优化电加热废气处理系统
    • US08863506B2
    • 2014-10-21
    • US12908229
    • 2010-10-20
    • Karthik RamanathanSe H. Oh
    • Karthik RamanathanSe H. Oh
    • F01N3/10F01N3/00F01N3/20
    • F01N3/2013Y02T10/26
    • A method of sizing a light-off core supporting a fixed quantity of a light-off catalyst for an exhaust gas treatment system having an electric heater upstream of the light-off catalyst for heating the exhaust gas includes measuring the cumulative hydrocarbon or carbon monoxide emissions leaving the exhaust gas treatment system for multiple volumetric sizes of the light-off core in accordance with a heating strategy. Alternatively, a model of the treatment system may be used to predict the cumulative hydrocarbon or carbon monoxide emissions. The method further includes selecting the volumetric size of the light-off core that is associated with the lowest cumulative hydrocarbon or carbon monoxide emissions level from the measured or predicted hydrocarbon or carbon monoxide emissions when the exhaust gas is heated in accordance with the heating strategy. The heating strategy may include pre-crank heating, post-crank heating, or a combination of pre-crank heating and post crank heating.
    • 一种将负载有固定量的用于废气处理系统的熄灭催化剂的起火芯的尺寸调整方法,该排气处理系统具有用于加热废气的起燃催化剂上游的电加热器,包括测量累积的烃或一氧化碳排放量 根据加热策略离开废气处理系统用于多个体积尺寸的灭灯芯。 或者,可以使用处理系统的模型来预测累积的碳氢化合物或一氧化碳排放。 该方法还包括根据加热策略选择当排气被加热时从测量或预测的碳氢化合物或一氧化碳排放中与最低累积碳氢化合物或一氧化碳排放水平相关联的关闭核心的体积尺寸。 加热策略可以包括曲轴前加热,曲柄后加热或预曲柄加热和曲柄后加热的组合。
    • 2. 发明申请
    • METHOD OF SIZING A HEATING CORE OF AN EXHAUST HEATER FOR AN EXHAUST TREATMENT SYSTEM OF A VEHICLE
    • 一种用于车辆排气处理系统的排气加热器的加热芯的方法
    • US20120102922A1
    • 2012-05-03
    • US12915640
    • 2010-10-29
    • Karthik RamanathanSe H. Oh
    • Karthik RamanathanSe H. Oh
    • F01N3/00B23Q17/00
    • F01N3/2013F01N2240/16Y02A50/2322Y02T10/26Y10T29/49771
    • A method of sizing a heating core of an exhaust heater for an exhaust gas treatment system includes measuring the cumulative hydrocarbon or carbon monoxide emissions from the exhaust gas for multiple volumetric sizes of the heating core when heated in accordance with a heating strategy. Alternatively, a model of the treatment system may be used to predict the cumulative hydrocarbon or carbon monoxide emissions. The method further includes selecting the volumetric size of the heating core that is associated with the lowest cumulative hydrocarbon or carbon monoxide emissions level from the measured or predicted hydrocarbon or carbon monoxide emissions when the exhaust gas is heated in accordance with the heating strategy. The heating strategy may include pre-crank heating, or a combination of pre-crank heating and post-crank heating.
    • 用于排气处理系统的排气加热器的加热芯的尺寸的方法包括:根据加热策略加热时,测量来自加热芯的多个体积尺寸的排气中的累积烃或一氧化碳排放。 或者,可以使用处理系统的模型来预测累积的碳氢化合物或一氧化碳排放。 该方法还包括根据加热策略来选择当排气被加热时从测量或预测的碳氢化合物或一氧化碳排放中与最低累积碳氢化合物或一氧化碳排放水平相关联的加热芯体的体积尺寸。 加热策略可以包括曲轴前加热或预曲柄加热和后曲柄加热的组合。
    • 4. 发明申请
    • OPTIMIZED ELECTRICALLY HEATED EXHAUST GAS TREATMENT SYSTEM
    • 优化电加热排气处理系统
    • US20120096834A1
    • 2012-04-26
    • US12908229
    • 2010-10-20
    • Karthik RamanathanSe H. Oh
    • Karthik RamanathanSe H. Oh
    • F01N3/00
    • F01N3/2013Y02T10/26
    • A method of sizing a light-off core supporting a fixed quantity of a light-off catalyst for an exhaust gas treatment system having an electric heater upstream of the light-off catalyst for heating the exhaust gas includes measuring the cumulative hydrocarbon or carbon monoxide emissions leaving the exhaust gas treatment system for multiple volumetric sizes of the light-off core in accordance with a heating strategy. Alternatively, a model of the treatment system may be used to predict the cumulative hydrocarbon or carbon monoxide emissions. The method further includes selecting the volumetric size of the light-off core that is associated with the lowest cumulative hydrocarbon or carbon monoxide emissions level from the measured or predicted hydrocarbon or carbon monoxide emissions when the exhaust gas is heated in accordance with the heating strategy. The heating strategy may include pre-crank heating, post-crank heating, or a combination of pre-crank heating and post crank heating.
    • 一种将负载有固定量的用于废气处理系统的熄灭催化剂的起火芯的尺寸调整方法,该排气处理系统具有用于加热废气的起燃催化剂上游的电加热器,包括测量累积的烃或一氧化碳排放量 根据加热策略离开废气处理系统用于多个体积尺寸的灭灯芯。 或者,可以使用处理系统的模型来预测累积的碳氢化合物或一氧化碳排放。 该方法还包括根据加热策略选择当排气被加热时从测量或预测的碳氢化合物或一氧化碳排放中与最低累积碳氢化合物或一氧化碳排放水平相关联的关闭核心的体积尺寸。 加热策略可以包括曲轴前加热,曲柄后加热或预曲柄加热和曲柄后加热的组合。
    • 6. 发明授权
    • Method for reducing CO and HC emissions
    • 减少CO和HC排放的方法
    • US4222236A
    • 1980-09-16
    • US916953
    • 1978-06-19
    • Louis HegedusSe H. OhKenneth Baron
    • Louis HegedusSe H. OhKenneth Baron
    • F01N3/18F02B75/02F02M1/00F02M1/10F01N3/10
    • F02M1/00F01N3/18F02M1/10F02B2075/027
    • A method for decreasing CO and HC emissions in a vehicle exhaust stream during the period of engine warm-up following the start of engine operation, in which the A/F mixture to the engine is pulsed by first using a mixture which is leaner than that otherwise used thus reducing the CO and HC content of the exhaust stream exiting the engine to an amount below that of the CO and HC otherwise present and then using an A/F mixture which is richer than such lean mixture and is substantially that otherwise used thus increasing the amount of CO and HC in the vehicle exhaust stream to substantially the amount otherwise present, passing the pulsed exhaust stream through a catalytic converter adapted to oxidize the CO and HC constituents, and repeating this pulsing continuously through the period of engine warm-up and at a rate sufficient to achieve increased catalytic conversion of CO and HC over that obtained without pulsing, the rate being also sufficiently rapid so as to preclude engine-stall. A preferred system for practicing the method involves apparatus for the repeated opening of the choke plate of the engine carburetor during the period when the choke plate is not full-open.
    • 一种用于在发动机运转开始之后的发动机预热期间减少车辆废气流中的CO和HC排放的方法,其中通过首先使用比发动机运行更精细的混合物将发动机的A / F混合物脉冲 否则使用,因此将离开发动机的废气流的CO和HC含量降低到低于CO和HC的CO的量,然后使用比这种稀混合物更丰富的A / F混合物,并且基本上由此另外使用 将车辆排气流中的CO和HC的量增加到基本上以其他​​方式存在的量,使脉冲排气流通过适于氧化CO和HC成分的催化转化器,并在发动机预热期间连续地重复该脉冲 并且以足以实现比没有脉冲的获得的CO和HC的增加的催化转化的速率,速率也足够快以便排除发动机失速 。 用于实施该方法的优选系统涉及在扼流板未完全打开的期间重复打开发动机化油器的阻风板的装置。
    • 9. 发明授权
    • Plasma reactor having regions of active and passive electric field
    • 具有主动和被动电场区域的等离子体反应器
    • US07060231B2
    • 2006-06-13
    • US10269235
    • 2002-10-11
    • Byong K. ChoSe H. OhSteven J. Schmieg
    • Byong K. ChoSe H. OhSteven J. Schmieg
    • B01J19/08C01B21/00
    • F01N3/0892B01D53/323B01D53/9431F01N2240/28F01N2240/30F23J15/02F23J2215/10H05H1/2406H05H2001/2418H05H2001/2437H05H2245/1215
    • A plasma reactor for automotive exhaust gas applications which efficiently promotes diffusion, mass transfer and chemical reaction processes of atoms, ions and radicals, in that the ground (outer) electrode has an axially discrete pattern which provides alternating regions of active and passive electric field along the axial direction of the plasma reactor. As the exhaust gas passes axially along the plasma reactor, each active region produces plasma atoms, ions and radicals, which then have time to react with the NOx over the course of the adjacent passive region. In this manner, successive active regions produce copious atoms, radicals and ions, and the adjacent passive regions provide time for these radicals and ions to react with the NOx and hydrocarbons before the next active region is encountered by the moving stream of exhaust gas, thereby enhancing the performance of the plasma reactor.
    • 用于汽车废气应用的等离子体反应器,其有效促进原子,离子和自由基的扩散,传质和化学反应过程,因为接地(外)电极具有轴向离散的图案,其提供有源和无源电场的交替区域 等离子体反应器的轴向。 当废气沿着等离子体反应器轴向通过时,每个有源区产生等离子体原子,离子和自由基,然后它们在相邻被动区域的过程中有时间与NO x反应。 以这种方式,连续的活性区域产生大量的原子,自由基和离子,并且相邻的被动区域在下一活性区域被遇到之前为这些基团和离子与NO x和烃反应提供时间 移动的废气流,从而提高等离子体反应器的性能。