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    • 5. 发明授权
    • Air purification system and method using an ultrasonic wave
    • 空气净化系统及使用超声波的方法
    • US08845785B2
    • 2014-09-30
    • US13262898
    • 2010-11-26
    • Takahisa Kusuura
    • Takahisa Kusuura
    • B03C3/16
    • B01D47/066B01D47/05B01D49/00B01D49/006B01D53/265B01D2247/102B01D2247/107F24F3/1603F24F2003/1617F24F2006/125Y02A50/21Y02B30/80
    • An air purification system comprises a chamber having an air inlet and an air outlet, a plurality of flexible wires hanging from a ceiling of the chamber, a spray mechanism configured to spray droplets in the chamber, and a sound wave generator configured to generate a standing sound wave in the chamber. During operation of the air purification system, the plurality of flexible wires are elastically deformed by the standing sound wave generated by the sound wave generator such that portions of the plurality of flexible wires converge at nodes of the sound wave, and also the droplets move to the nodes of the standing sound wave, while trapping particles in the air during the movement to the nodes. The droplets collide against and are adsorbed to the plurality of flexible wires at the nodes of the sound wave.
    • 空气净化系统包括具有空气入口和空气出口的腔室,从腔室的天花板悬挂的多个柔性线,构造成在腔室中喷射液滴的喷射机构,以及被配置为产生站立的声波发生器 声波在房间里。 在空气净化系统的运转过程中,由声波发生器产生的立体声波使多根柔性线弹性变形,使得多根柔性线的一部分会聚在声波的节点处,并且液滴移动到 站立声波的节点,同时在运动过程中将颗粒捕获到空气中。 液滴在声波的节点处碰撞并吸附到多根柔性线。
    • 7. 发明申请
    • TAR REMOVAL DEVICE
    • TAR拆卸装置
    • US20140017140A1
    • 2014-01-16
    • US14007433
    • 2012-03-28
    • Toshiyuki Suda
    • Toshiyuki Suda
    • B01D49/00
    • B01D49/00C10J3/482C10J3/56C10J2300/093C10J2300/0976C10J2300/0993C10J2300/1637C10J2300/1807C10J2300/1853C10K1/26C10K1/30C10K3/003F23C10/002F23C10/10
    • A tar removal device removes tar contained in a gasification gas (9) generated in a gasification furnace of a two-towered gasifier having a combustion furnace (43) heating a heating medium (A) and the gasification furnace (47) introducing the heating medium (A) heated in the combustion furnace to perform gasification of a starting material (48).The tar removal device includes a tar separation unit (2) that introduces the gasification gas from the gasification furnace to fluidize the circulating particles (B) so as to adhere the tar in the gasification gas to the circulating particles, and a tar combustion unit (3) that introduces the circulating particles to which the tar is adhered at the tar separation unit, fluidizes the circulating particles using air (15) so as to burn the tar adhered to the circulating particles, supplies the combustion gas (16) in which the tar is burnt to the combustion furnace as a gas for combustion, and returns the circulating particles from which the tar is burnt and removed to the combustion furnace.
    • 焦油去除装置除去在具有加热加热介质(A)的燃烧炉(43)和引入加热介质(A)的气化炉(47)的两塔式气化炉的气化炉中产生的气化气体(9) (A)在燃烧炉中加热以进行原料(48)的气化。 焦油去除装置包括从气化炉引入气化气体以使循环颗粒(B)流态化以将气化气体中的焦油附着到循环颗粒的焦油分离单元(2),以及焦油燃烧单元 3)在焦油分离单元处引入焦油附着的循环颗粒,使用空气(15)使循环颗粒流化,以便燃烧附着在循环颗粒上的焦油,供给燃烧气体(16),其中 焦油作为燃烧气体燃烧到燃烧炉,并将从焦油被燃烧和除去的循环颗粒返回到燃烧炉中。
    • 8. 发明授权
    • Method and apparatus for particle agglomeration
    • 颗粒聚集的方法和装置
    • US06872238B1
    • 2005-03-29
    • US10129170
    • 2000-11-10
    • Rodney John Truce
    • Rodney John Truce
    • B01D51/02B01D49/00B03C3/00B03C3/017B03C3/41B03C3/66B03C3/82B03C3/013B03C3/36
    • B03C3/0175B01D49/00B03C3/12B03C3/38B03C3/41B03C2201/04
    • Fine particles of dust and other pollutants in gas streams are agglomerated to form larger particles which are more easily filtered in downstream processing. In one embodiment, particles in successive portions of the gas stream are charged with opposite polarity, and the gas stream is introduced into an Evasé portion (12) to slow it down. Particles of different sizes have differential deceleration and therefore mix generally in the direction of flow, leading to agglomeration of oppositely-charged particles. In another embodiment, a gas stream is divided into substreams in respective parallel passages, and the particles in adjacent passages are charged to opposite polarity. Deflectors at the downstream end of the passages cause substreams of particles of opposite polarity to mix, with resultant agglomeration of oppositely charged particles.
    • 气流中的微粒尘埃和其他污染物聚集形成较大的颗粒,在下游处理中更容易过滤。 在一个实施例中,气流的连续部分中的颗粒以相反的极性充电,并且气流被引入到Evasé部分(12)中以使其减慢。 不同尺寸的颗粒具有差的减速度,因此通常在流动方向上混合,导致带相反的颗粒的聚集。 在另一个实施方案中,气流在相应的平行通道中分成子流,相邻通道中的颗粒被充入相反的极性。 在通道的下游端的偏转器导致相反极性的颗粒的子流混合,从而产生相反带电的颗粒的聚集。
    • 9. 发明授权
    • Apparatus and method for reduction of gases emitted from a cooling tower
    • 用于减少从冷却塔排出的气体的装置和方法
    • US06852147B2
    • 2005-02-08
    • US10118700
    • 2002-04-10
    • Larry B. Tinguee, Jr.
    • Larry B. Tinguee, Jr.
    • B01D49/00F28C1/16B01D47/00
    • B01D49/00F28C1/16Y10S165/90Y10S261/11
    • A gas reduction apparatus 12 is provided for reducing the amount of gas 15 emitted from a cooling tower 10 into the atmosphere. The apparatus 12 in accordance with the principles of this invention includes a first air conduit 13 which collects the gas 15 and chemical particles therein released from the cooling tower 10 before they are released into the atmosphere. The conduit 13 then provides a path for the gas 15 and chemical particles formed therein to flow to a liquefier 16. The liquefier 16 converts the gas 15 to a liquid 17. A filter 32 is coupled adjacent the liquefier 16 to separate the chemical particles released into the liquefier from the liquid 17 formed in the liquefier. The liquid 17 is then directed through an outlet conduit 34 to a cooling tower reservoir 36 where it finds itself back into the cooling tower 10.
    • 气体还原装置12用于减少从冷却塔10排放到大气中的气体量15。 根据本发明的原理的装置12包括第一空气管道13,其在其被释放到大气中之前收集从冷却塔10释放的气体15和其中的化学颗粒。 导管13随后提供用于气体15和其中形成的化学颗粒流动到液化器16的路径。液化器16将气体15转化为液体17.过滤器32与液化器16相邻以分离释放的化学颗粒 从形成在液化器中的液体17进入液化器。 然后将液体17引导通过出口导管34到达冷却塔储存器36,在此冷却塔储存器36自身返回到冷却塔10中。