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    • 7. 发明申请
    • METHOD FOR CONTROLLING NOX CONCENTRATION IN EXHAUST GAS IN COMBUSTION FACILITY USING PULVERIZED COAL
    • 使用粉碎煤控制燃烧装置中排放气体中NO x浓度的方法
    • US20130298809A1
    • 2013-11-14
    • US13980993
    • 2012-01-16
    • Yoshinori TakayamaHirokazu Shima
    • Yoshinori TakayamaHirokazu Shima
    • F23C1/00
    • C04B2/108C04B7/364C04B7/4407F23B1/00F23C1/00F23J2215/10F23J2219/20F23K1/00F23K2201/501F23N1/002F23N5/003F23N2021/10
    • An object of the invention is to provide a method for controlling an NOx concentration in an exhaust gas in a combustion facility that uses a pulverized coal, which can easily control the NOx concentration in the exhaust gas to be discharged from a fuel facility that uses the pulverized coal as the fuel to or below a regulation value according to the Air Pollution Control Law and the like, and can also reduce an amount of a denitrifying agent or the like to be used, which is necessary for the control, by controlling the NOx concentration on the basis of the properties of the pulverized coal beforehand. The invention further includes: measuring a reaction velocity of each of chars corresponding to a plurality of types of pulverized coals beforehand; determining a relationship between the NOx concentration in the exhaust gas and the reaction velocity in advance; blending the plurality of the types of the pulverized coals so that the reaction velocity of the char becomes such a value as to correspond to a target NOx concentration or below, on the basis of the relationship; and supplying the blended pulverized coal to the combustion facility as the fuel of the combustion facility.
    • 本发明的目的是提供一种用于控制使用粉煤的燃烧设备中的废气中的NOx浓度的方法,该粉煤可以容易地控制排气中的NOx浓度从使用 作为燃料的粉煤按照“空气污染防治法”等规定值以下,也可以通过控制NOx来减少所需要的使用的脱氮剂等的量 预先根据粉煤的性质进行浓缩。 本发明还包括:预先测定与多种粉煤相对应的每种炭的反应速度; 预先确定废气中的NOx浓度与反应速度之间的关系; 混合多种类型的粉煤,使得炭的反应速度基于该关系变为与目标NOx浓度相应的值; 并将混合的粉煤作为燃烧设备的燃料供应到燃烧设备。
    • 8. 发明申请
    • MAGNETIC FIELD CONTROL METHOD AND MAGNETIC FIELD GENERATOR
    • 磁场控制方法和磁场发生器
    • US20090076324A1
    • 2009-03-19
    • US12296589
    • 2007-07-13
    • Yoshinori TakayamaMitsutoshi NatsumedaKentaro Horisaka
    • Yoshinori TakayamaMitsutoshi NatsumedaKentaro Horisaka
    • A61B1/00
    • A61B1/00158A61B34/70A61B34/73A61B2034/732
    • There is provided a magnetic field control method and a magnetic field generator which are capable of moving a local maximum point of magnetic field intensity on a predetermined plane easily to any given point within a predetermined area on the predetermined plane. A magnetic field generator 10 includes a pair of permanent magnets 16a, 16b provided axially of a predetermined axis A, with a gap G in between. The permanent magnet 16a is formed on a drive unit 14a in such a way that a center region 30a of a first main surface 26a is off the predetermined axis A. The permanent magnet 16b is formed on a drive unit 14b in such a way that a center region 30b of a first main surface 26b is off the predetermined axis A. The permanent magnet 16a revolves on a path R1 as a rotating member 24a rotates. The permanent magnet 16b revolves on a path R2 as a rotating member 24b rotates. A local maximum point M is moved on an X-Y plane by performing at least one of a first operation of revolving the permanent magnets 16a, 16b relatively to each other and a second operation of revolving the permanent magnets 16a, 16b in the same direction by the same angle.
    • 提供了一种磁场控制方法和磁场发生器,其能够将预定平面上的局部最大磁场强度点容易地移动到预定平面上的预定区域内的任何给定点。 磁场发生器10包括一对在预定轴线A轴向设置的永久磁铁16a,16b,间隙G在其间。 永磁体16a形成在驱动单元14a上,使得第一主表面26a的中心区域30a离开预定轴线A.永久磁铁16b形成在驱动单元14b上,使得 第一主表面26b的中心区域30b离开预定轴线A.当旋转构件24a旋转时,永磁体16a在路径R1上旋转。 当旋转构件24b旋转时,永磁体16b在路径R2上旋转。 通过执行相对于彼此旋转永磁体16a,16b的第一操作和使永磁体16a,16b沿相同方向旋转的第二操作中的至少一个,使局部最大点M在XY平面上移动 相同的角度