• Title/Summary/Keyword: Superposition discharge

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$NO_x$Removal by using Double Barrier Discharge (이중베리어방전을 이용한 $NO_x$ 제거)

  • Kim, Dong-Uk;Jeong, Yeong-Sik
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.49 no.1
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    • pp.37-43
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    • 2000
  • In this experimental study we proposed the double dielectric barrier discharge (DDBD) reactor to produce as high an electric field as possible. The experiment are conducted for applied voltage from 15 to 20[kV], $1~4[\ell/min]$ of gas flow rate and 120[Hz] and 240[Hz] of pulse rate. Superposition discharge(SPD) generated in DDBD which combined the surface discharge with the silence discharge was the most effective to reduce the $NO_x$. In the decomposition efficiency per watt, the low pulse rate gave better efficiency than the high pulse rate. However in DeNOx rate, the high pulse rate gave better performance than the low pulse rate. $NO_x$ removal rate and efficiency increased with increasing the applied voltage in all reactors.

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Fundamental Investigation Results on Ozone Generation Characteristics by Superimposed Discharge (중첩방전에 의한 오존생성 특성)

  • ;Chobei YAMABE
    • The Transactions of the Korean Institute of Electrical Engineers C
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    • v.52 no.2
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    • pp.91-97
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    • 2003
  • In addition to its strong oxidizing power, the ozone has definite advantages over other commercial oxidants, namely, no undesirable by- products or residues are formed. With growing interest in the improvement of the ozone production in the industrial fields, many types of ozonizer using the electrical discharges have been proposed for the higher efficiency and the higher Performance at atmospheric Pressure. Among them, a superposition of different type discharges has been proposed. Especially, since the improvement for the low efficiency of dc discharge and narrow gap of surface discharge is required, a do and an at voltage are applied to same reaction space (or volume) to increase energy density at the same space. An investigation was focused on the superposition with a dc (streamer) corona and 3 surface discharge. This paper describes the investigation results on fundamental ozone generation characteristics by this superimposed discharge.

The Characteristics of the Complex Discharge Type Ozonizer using Applied Voltage of a Inverse-Polarity and a Screw Type Electrode (역극성 전압인가와 나사형 전극을 이용한 복합방전형 오존발생기의 특성)

  • Song, Hyun-Jig
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.25 no.9
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    • pp.80-85
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    • 2011
  • In this paper, complex discharge type ozonizer with a screw type electrode has been designed and manufactured for environmental improvement using low power and high efficency ozoniazer. The complex discharge type ozonizer is equipped with three electrodes{central electrode(CE), internal electrode(IE) and external electrode(EE)}. Ozone of the complex discharge type ozonizer is generated by superposition of silent discharge and surface discharge in discharge space as a screw type CE and IE are respectively applied to AC high voltage of inverse-polarity has $180[^{\circ}]$ phase difference, EE is common electrode. In this time, when oxygen has been used as supplied gas, the maximum values of ozone concentration, ozone generation and ozone yield were obtained as 8,334[ppm], 3,249[mg/h] and 65.3[g/kwh].

A study on NOx removal in double barrier discharge reactor using pulse power supply (펄스방전을 사용한 이중베리어방전 반응기에 있어서 NOx 제거에 관한 연구)

  • 김동욱;김응복;정영식
    • Proceedings of the Korean Institute of Electrical and Electronic Material Engineers Conference
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    • 1999.11a
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    • pp.169-172
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    • 1999
  • In this experimental study we Proposed the double dielectric barrier discharge (DDBD) reactor to produce as high an electric field as possible. The experiment are conducted for applied voltage from 15 to 20[tV], flow gas rage at 2[1/min] and pulse rate at 120[pulses/s] and 240[pulses/s]. SPD connection of DDBD which combine the surface discharge with the silence discharge was most effective to reduce the NOx. In the decomposition efficiency per watt, the low pulse rate gave hotter efficiency than that of the high pulse rate. However in DeNOx rate, the high pulse rate gave better performance than that of the low pulse rate. NOx removal rate increased with increasing the applied voltage in all reactors.

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Improvement of Ozone Yield by a Multi-Discharge Type Ozonizer Using Super position of Silent Discharge Plasma (무성방전의 중첩을 이용한 다중방전형 오존발생기의 오존생성수율 개선)

  • Song, Hyun-Jig;Lee, Dong-Heon;Oh, Jin-Hoon;Park, Seong-Wook;Seo, Young-Taek
    • Proceedings of the KIEE Conference
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    • 2004.07e
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    • pp.88-91
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    • 2004
  • In order to improve ozone generation, we experimentally investigated the silent discharge plasma and ozone generation characteristics of a multi-discharge type ozonizer. Ozone in a multi-discharge type ozonizer is generated by superposition of a silent discharge plasma, which is simultaneously generated in separated discharge spaces. A multi-discharge type ozonizer is composed of three different kinds of superposed silent discharge type ozonizers, depending on the method of applying power to each electrode. We observed that the discharge period of the current pulse for a multi-discharge type ozonizer can be longer than that of silent discharge type ozonizer with two electrodes and one gap.Hence, ozone generation is improved up to 17185 ppm and 783 g/kwh for the superposed silent discharge type ozonizer for which an AC high voltages with a 180 phase difference were applied to the internal electrode and the external electrode, respectively, with the central electrode being ground

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Performance Characteristics of a Pin-to-Cylinder Superposed Discharge Type Ozonizer (SDO)

  • Md. Fayzur Rahman;Lee, Kwang-Sik
    • KIEE International Transactions on Electrophysics and Applications
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    • v.11C no.4
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    • pp.113-119
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    • 2001
  • This paper presents a model for a pin-to-cylinder discharge type ozonizer, which utilizes the superposition of surface discharge and corona discharge operation. By changing the gas flow rate, the discharge power and the number of SDO units, the characteristics of ozone concentration ( $O_{3con}$), ozone generation ( $O_{3g}$) and ozone yield ( $O_{3Y}$) were investigated. Using one SDO unit the maximum values of $O_{3con}$, $O_{3g}$ and $O_{3Y}$ were found as 8100[ppm], 1623[mg/h] and 213[g/kWh] respectively. With two SDO units the corresponding values were found as 12800[ppm], 2893[mg/h] and 248[g/kWh] respectively. Hence using two SDO units the efficiency was improved by 16[%].y 16[%].

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Ozone Generation Characteristics by according to the Coaxial Electrode Geometry (동축형 전극구조 변화시의 오존생성 특성)

  • 조국희;이홍식;이형호
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.14 no.2
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    • pp.68-74
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    • 2000
  • In this paper the concentration, yield and generation quantity of the ozone by the superposition discharge according to the coaxial electrodes geometry is described. In order to improve the ozone generation, a new type of ozonizer is proposed, where a silent discharge and a surface discharge are generated in the separated discharge spaces at the same time. To investigate the ozone generation dependency on electrode geometry, a few discharge tubes with different geometry were fabricated. In our experiment, the 60[Hz] one phase voltage is applied to the discharge tube which has three electrodes. And three kinds of discharges, two silent discharges and a surface discharge are superposed in the same space of the ozonizer. As a result, the followings are obvious. When two kinds of discharges are superposed under the condition using 3 electrode-3gap discharge tube, the maximum ozone efficiency is obtained.

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A Trial for Improvement of Energy Efficiency of Plasma Reactor by Superposing Two Heterogeneous Discharges - Characteristics of Surface and Corona Discharge Combined Plasma Reactor - (이종방전 중첩에 의한 방전 플라스마반응기의 효율개선의 시도 - 연면.직류코로나 방전 중첩형 반응기의 특성 -)

  • ;Mizuki Yamaguma
    • Journal of the Korean Society of Safety
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    • v.15 no.3
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    • pp.66-70
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    • 2000
  • In order to cope with environmental problems caused by harmful gases emitted from various industrial sources, a new technology which employs discharge plasma formed in ordinary atmospheric pressure has been intensively investigated in many industrialized nations. Although a plenty of useful outcomes and suggestions have been made public by scientists in this field, few commercial products which effectively decompose pollutant gases have appeared as yet. This is partly because that the energy efficiency of a most effective plasma reactor has not reached a satisfactory level in comparison with those of devices using conventional technologies. In an attempt to solve the problem mentioned above, we noticed to combine heterogeneous electrical discharges. This concepts is based on that each plasma reactor has its specific spatial region in which chemical reaction are active and by electrically affected with another reactor of different type, the activated region would increase - which may lead to cutting down the energy consumption. To prove this concept experimentally, two different discharge equipments, a plane ceramic-based surface discharge electrode and a corona electrode with tungsten needle may, are selected and combined to fabricate a hybrid plasma reactor. The results are summarized as follows; (1) Ozone concentration generated in the plasma region drastically increases when the positive corona discharge is added to the surface discharge. The rate of increase of ozone depends on the frequency of the surface discharge. The negative corona, however, does not contribute to the improvement of the ozone generation. (2) NO(nitrogen monoxide) decomposition rate also improves by simultaneously applying the surface and the positive corona discharges. The effect of the corona superposition is more evident when the level of the surface discharge is moderate. (3) By adjusting the corona level, the net energy efficiency during NO decomposition improves in comparison with the simple surface discharge reactor.

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Development of Ozone Generation Technology Using Gaseous Electrical Discharge for Environment Improvement (환경개선용 기체전기방전을 이용한 오존발생기술 개발)

  • 이동헌;송현직;구건효
    • Journal of the Korean Institute of Illuminating and Electrical Installation Engineers
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    • v.15 no.3
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    • pp.25-34
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    • 2001
  • In this paper, discharge lamp ozonizer(DLO) of a new discharge type using superposition of gaseous electrical discharge for environment improvement was designed and manufactured. DLO is equipped with 3 electrodes(central ground electrode of discharge lamp type internal high voltage electrode of mesh type and external high voltage electrode of spiral type), and it is composed of double gap(gap between discharge lamp and internal electrode, gap between discharge lamp and external electrode). Internal and external electrodes are respectively applied AC high voltage which has 180[$^{\circ}$] phase difference. Ozone is generated by overlaying of each silent discharge which is respectively came from two gaps. At the moment discharge characteristics and ozone generation characteristics of DLO were investigated in accordance with quantity of supplied gas, discharge power and the number of DLO. When ozone generated by DLO was in contact with NO gas, removal characteristics was excellent, so it confirmed that DLO could be used as air environment improvement facility.

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A Study on the High Voltage Superposition Circuit for Electrical Discharge Machine (방전가공기의 고전압 중첩회로 적용에 관한 연구)

  • An, Eun-Gyu;Park, Chan-Won
    • Proceedings of the KIEE Conference
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    • 2007.07a
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    • pp.1884-1885
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    • 2007
  • DC 80[V]의 주 전원에서의 방전 가공은 가공 시 서보계의 헌팅상태가 자주 발생되기 때문에 방전상태가 불안정 하였다. 본 연구에서는 DC 300[V]의 보조 전원을 주 전원과 중첩한 결과, 방전 개시 전압이 높게 됨으로써 서보계의 헌팅상태가 감소하여 방전이 매우 안정하게 되어 가공 능률을 향상하였다.

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