振荡式行波磁场协同超声烟气脱硫净化分离装置

  • Inventors:
  • Assignees: 陕西师范大学
  • Publication Date: November 30, 2011
  • Publication Number: CN-102258939-A

Abstract

一种振荡式行波磁场协同超声烟气脱硫净化分离装置,在壳体的上端设有上盖,壳体外壁下部设有与壳体内下部布气盘相联通的烟气进管,壳体内布气盘10-3上装有磁性颗粒,壳体上右侧设有与壳体内相联通的烟气出管,穿出壳体外的脱硫剂进管上设有雾化喷头,壳体外的右侧下部设有与壳体内相联通的排渣阀门,在上盖上设有辐射面向下的功率超声换能器,功率超声换能器的辐射面上设有伸入到壳体内的径向超声辐射管,壳体外壁中部设有绕组,该绕组由6或12个通过三相电机正反转控制器与三相交流电源连接的设在线圈骨架上的线圈连接构成,在绕组外部设有铁芯。
The invention discloses an oscillating traveling wave magnetic field and ultrasonic combined flue gas desulfurization, purification and separation device. An upper cover is arranged on the upper end of a shell; a flue inlet pipe which is communicated with an air distribution disc arranged in the lower internal part of the shell is arranged on the lower part of the outer wall of the shell; the airdistribution disc 10-3 in the shell contains magnetic particles; a flue gas outlet pipe which is communicated with the inside of the shell is arranged on the right side of the shell; a desulfurizing agent pipe which runs through the shell to the outside is provided with an atomizing spray nozzle; a slag discharging valve which is communicated with the inside of the shell is arranged on the lower part of the right outside of the shell; a power ultrasonic transducer with a radiating face downward is arranged on the upper cover; the radiating face of the power ultrasonic transducer is provided with a radical ultrasonic radiation tube which extends into the shell; a winding is arranged in the middle of the outer wall of the shell; the winding is formed by connecting 6 or 12 coils which are connected with a three-phase alternating current power supply by a three-phase motor forward and reverse rotation controller and which is arranged on a coil skeleton; and an iron core is arranged outside a winding.

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Cited By (2)

    Publication numberPublication dateAssigneeTitle
    CN-102772999-ANovember 14, 2012陕西师范大学Flue gas denitration device for magnetic sound field synergetic oxidation-absorption method
    CN-102772999-BJuly 10, 2013陕西师范大学磁声场协同氧化-吸收法烟气脱硝装置