ELECTRO-KINETIC AIR TRANSPORTER-CONDITIONER
    233.
    发明申请
    ELECTRO-KINETIC AIR TRANSPORTER-CONDITIONER 审中-公开
    电动空调输送机

    公开(公告)号:WO00025909A1

    公开(公告)日:2000-05-11

    申请号:PCT/US1999/026130

    申请日:1999-11-05

    Abstract: An electro-kinetic electro-static air conditioner (100) includes a self-contained ion generator that provides electro-kinetically moved air with ions and safe amounts of ozone. The ion generator includes a high voltage pulse generator whose output pulses are coupled between first and second electrode arrays (230 and 240). Preferably the first array (230) comprises one or more wire electrodes (232) spaced staggeringly apart from a second array (240) comprising hollow "U"-shaped electrodes (242). Preferably a ratio between effective area of an electrode in the second array (240) compared to effective area of an electrode in the first array (230) exceeds about 15:1 and preferably about 20:1. An electric field produced by the high voltage pulses between the arrays produces an electrostatic flow of ionized air containing safe amounts of ozone. A bias electrode, electrically coupled to the second array electrodes (242), affects net polarity of ions generated. The outflow of ionized air and ozone is thus conditioned. Output airflow may be sampled for ozone and/or ion content, and/or the local environment may be sampled for parameters such as temperature and humidity. Such sampling could then be fedback to the invention and used to regulate desired output airflow characteristics.

    Abstract translation: 电动静电空调(100)包括独立的离子发生器,其提供具有离子的电动移动空气和安全量的臭氧。 离子发生器包括高电压脉冲发生器,其输出脉冲耦合在第一和第二电极阵列(230和240)之间。 优选地,第一阵列(230)包括与包括中空“U”形电极(242)的第二阵列(240)间隔开的一个或多个线电极(232)。 优选地,与第一阵列(230)中的电极的有效面积相比,第二阵列(240)中的电极的有效面积之间的比例超过约15:1,优选地为约20:1。 由阵列之间的高电压脉冲产生的电场产生含有安全量的臭氧的电离空气的静电流。 电耦合到第二阵列电极(242)的偏置电极影响产生的离子的净极性。 电离空气和臭氧的流出因此被调节。 输出气流可以针对臭氧和/或离子含量进行采样,并且/或可以为诸如温度和湿度的参数采样局部环境。 然后可以将这种采样反馈到本发明,并用于调节所需的输出气流特性。

    중유를 사용하는 선박용 디젤 엔진의 배기 가스 처리 장치
    235.
    发明公开
    중유를 사용하는 선박용 디젤 엔진의 배기 가스 처리 장치 有权
    使用燃油的海洋柴油发动机排气处理装置

    公开(公告)号:KR1020160006742A

    公开(公告)日:2016-01-19

    申请号:KR1020157034894

    申请日:2014-04-25

    Abstract: 중유를사용하는선박용디젤엔진의배기가스내에포함되는 PM을효과적으로포집할수 있는높은 PM 포집률의선박용디젤엔진의배기가스처리장치의제공. 배기가스내에포함되는입자형물질을대전시키는방전전극, 및대전된입자형물질을포집하는집진전극으로이루어지는관형상포집부를가지며, 또한관형상포집부내에배치된방전전극으로이루어지는전기집진수단과, 관형상포집부로부터박리한입자형물질을포집하는집진수단을구비하고, 또한관형상포집부의하류측에입자형물질의저농도배기가스도출관과고농도배기가스도출부를설치하고, 고농도배기가스도출부에집진수단을설치한디젤엔진의배기가스처리장치에있어서, 방전전극및 집진전극으로이루어지는관형상포집부에, 축방향으로짧은치수이며직경이상이한관형상포집모듈을 1 내지복수조합하여구성하는것을특징으로한다.

    Abstract translation: 提供了一种具有高PM收集效率的船用柴油发动机的废气处理设备,其能够使用燃料油有效地收集船用柴油发动机废气中所含的PM。 排气处理设备包括:电沉淀装置,具有管状收集单元,该管状收集单元由用于装载废气中的颗粒物质的放电电极和用于收集填充的颗粒物质的沉淀电极组成,放电电极设置在管状集合体 单元; 用于收集从管状收集单元分离的颗粒物质的沉淀装置; 以及低浓度废气输送管和用于颗粒物质的高浓度排气输送部分,其设置在管状收集单元的下游侧,沉淀装置连接到高浓度废气输送部分,其中一个 或多个管状收集模块组合在由放电电极和沉淀电极形成的管状收集单元中,管状收集模块在轴向上具有短尺寸并且具有不同的直径。

    집진 필터 및 이를 구비하는 전기집진장치
    237.
    发明授权
    집진 필터 및 이를 구비하는 전기집진장치 有权
    集尘过滤器和电吸尘器

    公开(公告)号:KR100949455B1

    公开(公告)日:2010-03-29

    申请号:KR1020090046665

    申请日:2009-05-27

    Inventor: 전동현

    Abstract: PURPOSE: A dust collecting filter and an electric dust collecting apparatus including thereof are provided to improve purifying efficiency by adjusting the distance among emission cores not to have an overlapped emitting angle to a collecting electrode. CONSTITUTION: A dust collecting filter comprises the following: a dust collecting unit(110) including an upper plate with plural openings, a bottom plate with plural openings, and a cylindrical shaped collecting electrode interlinking the openings of the bottom plate and the upper plate; a discharge unit(120) including plural linear discharge electrodes arranged in the center of the collecting electrode, and plural horizontal bars supporting the discharge electrodes; and a connecting hole(130) formed on the collecting electrode and the upper plate to couple the collecting electrode and the discharge electrode while being insulated.

    Abstract translation: 目的:提供一种集尘过滤器及其包括的集尘装置,通过调节与收集电极不重叠的排放角度的排放核心之间的距离来提高净化效率。 构成:集尘过滤器包括:集尘单元(110),包括具有多个开口的上板,具有多个开口的底板,以及将底板和上板的开口连接的圆柱形收集电极; 放电单元(120),包括布置在集电电极的中心的多个线性放电电极和多个支撑放电电极的水平条; 以及形成在所述集电电极和所述上板上的连接孔,以在绝缘的同时耦合所述集电电极和所述放电电极。

    충진층 스크러버를 위한 강성의 전극 이온화
    238.
    发明公开
    충진층 스크러버를 위한 강성의 전극 이온화 失效
    用于包装床垫的刚性电极离子化

    公开(公告)号:KR1020080003190A

    公开(公告)日:2008-01-07

    申请号:KR1020067027348

    申请日:2006-04-11

    Inventor: 차벡,윌리엄

    Abstract: An ionizing particulate scrubber is provided for the removal of particulate from a gaseous exhaust stream, said scrubber comprising two sections: a charging section and a collection section. The charging or ionizing section comprises one or more cylindrical tubular ground chambers each with a rigid threaded rod electrode extending through the center thereof. A transformer/rectifier (T/R) is provided to supply high voltage DC power to the electrode such that the cylindrical tubular ground chambers act as the ground to enable a corona to form on the threaded rod electrode. As the gas stream passes through the current flowing from the electrode to the cylindrical tubular ground chambers walls, the particulate contained within the stream is electrostatically charged. The collection system comprises either a fixed or fluid bed packed section which is constantly irrigated from above. Ground rods in the packing and liquid sump allow the entire section to act as a grounded collector for the charged particulate. The gas stream and charged particulate are immediately sent from the charge section to the collection section of the system, and clean gas is then passed through an entrainment separator section to remove liquid droplets.

    Abstract translation: 提供电离颗粒洗涤器用于从气体排气流中除去颗粒,所述洗涤器包括两个部分:充电部分和收集部分。 充电或电离部分包括一个或多个圆柱形管状接地室,每个圆柱形管状接地室均具有延伸穿过其中心的刚性螺杆电极。 提供变压器/整流器(T / R)以向电极提供高压直流电力,使得圆柱形管状接地室用作接地,以便能够在螺杆电极上形成电晕。 当气流通过从电极流到圆柱形管状接地室壁的电流时,包含在流中的颗粒被静电充电。 收集系统包括从上方不断灌溉的固定或流化床包装部分。 填料和液槽中的接地棒使整个部分充当带电微粒的接地收集器。 气流和带电粒子立即从装料部分送到系统的收集部分,然后清洁气体通过夹带分离器部分以除去液滴。

    코로나방전을 이용한 초미립자 제조장치 및 그 방법
    239.
    发明公开
    코로나방전을 이용한 초미립자 제조장치 및 그 방법 失效
    用CORONA放电制造超细颗粒的装置及其方法

    公开(公告)号:KR1020050087619A

    公开(公告)日:2005-08-31

    申请号:KR1020040013535

    申请日:2004-02-27

    Applicant: 안강호

    Inventor: 안강호

    CPC classification number: B03C3/383 B01D19/0052 B03C3/12 B03C3/49 B03C2201/08

    Abstract: The present invention discloses an apparatus and method for manufacturing ultra-fine particles using corona discharge capable of manufacturing the ultra-fine particles nanometers in size from a reaction gas using the corona discharge. In the apparatus for manufacturing ultra-fine particles of the present invention, a reaction gas feeder supplies a nozzle with reaction gas, and the reaction gas is injected. When a power supply applies a high voltage to the nozzle, the corona discharge occurs at the nozzle. Thus, the injected reaction gas is dissolved, and a large number of ultra-fine particles are produced. Then, a collection plate collects the ultra-fine particles. In addition, a duct encloses the nozzle, so that a passage is formed between the nozzle and duct. Sheath gas supplied to the passage of the duct forms a gas curtain between the nozzle and the collection plate, so that the gas curtain leads the flow of the ultra-fine particles. If other reaction gas is supplied to the passage of the duct and heat energy is supplied thereto, the other reaction gas reacts thermochemically, so that a large number of other ultra-fine particles are produced. The ultra-fine particles produced by the corona discharge are coated with the other ultra-fine particles. If the corona discharge is generated while the ultra-fine particles and the other reaction gas are injected by another nozzle positioned downstream of the nozzle, the ultrafine particles are coated with the other ultra-fine particles produced from the other reaction gas.

    Abstract translation: 本发明公开了一种使用电晕放电制造超细颗粒的装置和方法,其能够使用电晕放电从使用反应气体制造尺寸的超细颗粒纳米。 在本发明的超细粒子的制造装置中,反应气体供给器向喷嘴供给反应气体,注入反应气体。 当电源对喷嘴施加高电压时,在喷嘴处发生电晕放电。 因此,注入的反应气体溶解,产生大量的超细粒子。 然后,收集板收集超细颗粒。 此外,管道封闭喷嘴,使得在喷嘴和管道之间形成通道。 供应到管道通道的护套气体在喷嘴和收集板之间形成气幕,使得气幕导致超细颗粒的流动。 如果向管道的通道供应其它反应气体并且向其供应热能,则其它反应气体热化学反应,从而产生大量其它超细颗粒。 由电晕放电产生的超细颗粒被其它超细颗粒涂覆。 如果通过位于喷嘴下游的另一个喷嘴喷射超细颗粒和其它反应气体,则产生电晕放电,则超细颗粒被其它反应气体产生的其它超细颗粒涂覆。

Patent Agency Ranking