• 제목/요약/키워드: $SO_2$ Removal

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반건식 배연탈황법에 의한 연소 페가스 중 $SO_2$제거에 관한 연구 (A Study on $SO_2$Removal in Flue Gas by Semidry Flue Gas Desulfurization Method)

  • 송호철;이윤기;박진원
    • 한국대기환경학회지
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    • 제14권4호
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    • pp.273-280
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    • 1998
  • The investigation on the removal of 502 gas fro.In flue gas which causes serious air pollution was made by using a semi dry flue gas desulfurization method. Experiments were carried out as a function of process variables which would affect SO2 removal efficiency. Process variables inclilded SO2 inlet concentration, inlet temperature of simulated flue gas, sorbent weight fraction, and volume flow rate of sorbent slurry. In this study, used sorbent was Ca(OH), and simulated flue gas was prepared by mixing pure SO2 gas with air. Experimental conditions were varied at 140~18$0^{\circ}C$ of inlet temperature of the simulated flue gas, 500~2000ppm of inlet SO2 concentration, 0.4~1.0% of sorbent concentration, and 10~25 mL/min of flow rate of sorbent slurry. Among process variables, inlet concentration of SO2 was found to be the most significant factor to affect SO2 removal efficiency. The concentration of Ca(OH2) had a lower effect on SO2 removal than SO2 inlet concentration removal amount was 0.108, 0.141, 0.153 g SO2/g Ca(OH)2 respectively- As 200 mmol of HNO3 was added into slurry to improve removal efficiency, initial pH was maintained and solubility of slurry increased, so that removal efficiency elevated. Adding over 200 mmol of HNO3 into slurry caused removal efficiency lower. Therefore it could be concluded the optimum was 200 mmol of HNO3 input.

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SO2 제거를 위한 유전체 장벽 방전 - 광촉매 복합 공정에서의 입자 형성과 성장 (Particle Formation and Growth in Dielectric Barrier Discharge - Photocatalysts Hybrid Process for SO2 Removal)

  • 나소노바 안나;김동주;김교선
    • 산업기술연구
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    • 제30권A호
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    • pp.127-132
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    • 2010
  • We analyzed the effects of several process variables on the $SO_2$ removal and particle growth by the dielectric barrier discharge - photocatalysts hybrid process. In this process, $SO_2$ was converted into the ammonium sulfate ($(NH_4)_2SO_4$) particles. The size and crystallinity of ammonium sulfate particles were examined by using TEM and XRD analysis. The dielectric barrier discharge reactor consisted of two zones: the first is for plasma generation and the second is for ammonium sulfate particles formation and growth. The first zone of reactor was filled with glass beads as a dielectric material. To enhance $SO_2$ removal process, the $TiO_2$ photocatalysts were coated on glass beads by dip-coating method. As the voltage applied to the plasma reactor or the pulse frequency of applied voltage increases, the $SO_2$ removal efficiency increases. Also as the initial concentration of $SO_2$ decreases or as the residence time increases, the $SO_2$ removal efficiency increases. $(NH_4)_2SO_4$ particles continue to grow by particle coagulation and surface reaction, moving inside the reactor. Larger particles in site are produced according to the increase of residence time or $SO_2$ concentrations.

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펄스 코로나 방전 공정에서 탈질, 탈황 효율의 실험적 분석 (Experimental Analysis on the Desulfurizarion and Denitrification Efficiencies in Pulsed Corona Discharge Process)

  • 김성민;김교선
    • 산업기술연구
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    • 제23권A호
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    • pp.181-186
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    • 2003
  • In this study, we analyzed $NO_x$ and $SO_x$ removal efficiencies by a pulsed corona discharge process and investigated the effect of several process variables. The removal efficiencies of NO and $SO_2$ were measured changing the process variables of initial concentrations of NO, $H_2O$, and $NH_3$, $SO_2$, applied voltage, pulse frequency and residence time. As the applied voltage or the frequency of applied voltage or the residence time increases, the NO and $SO_2$ removal efficiencies increase. The NO and $SO_2$ removal efficiencies also increase by the addition of $O_2$ or $H_2O$, or by using the large diameter of the discharge electrode. The experimental results can be used as a basis to design the pulsed corona discharge process to remove $NO_x$, $SO_x$ and VOCs.

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저온 플라즈마와 광촉매에 의한 NO/SO2 제거 (Removal of NO/SO2 by the low temperature plasmas and photocatalysts)

  • 김동주;김교선
    • 산업기술연구
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    • 제26권A호
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    • pp.181-188
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    • 2006
  • In this study, we analyzed the effects of several process variables on the removal efficiencies of NO and $SO_2$ by the dielectric barrier discharge process combined with photocatalysts. The $TiO_2$ photocatalysts were coated onto the spherical-shaped glass beads as dielectric materials by the dip-coating method to analyze the effects of photodegradation reaction on the NO and $SO_2$ removal. As the voltage applied to the plasma reactor increases, or as the pulse frequency of applied voltage increases, the NO and $SO_2$ removal efficiencies increase. Also as the residence time increases, or as the initial concentration of NO decreases, the NO and $SO_2$ removal efficiencies increase. The higher the amount of $TiO_2$ particles coated onto the glass bead is, the larger the surface area of $TiO_2$ particles for the photodegradation reaction is and the NO and $SO_2$ are removed more quickly by the faster photodegradation reactions.

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유전체 장벽 방전-광촉매 복합공정에 의한 NO와 $SO_2$ 제거 (NO and $SO_2$ Removal by Dielectric Barrier Discharge-Photocatalysts Hybrid Process)

  • 김동주;;김교선
    • 청정기술
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    • 제13권2호
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    • pp.115-121
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    • 2007
  • 본 연구에서는 유전체 장벽 방전-광촉매 복합 공정에 의한 NO 및 $SO_2$ 제거를 실험적으로 분석하였다. 유전체 장벽 방전을 위해 유전체로서 유리구가 사용되었고 $TiO_2$ 광촉매 입자는 딥코팅(dip-coating) 방법에 의해 높은 비표면적을 가지는 스펀지 형태로 유리구에 코팅되었다. 플라즈마 반응기에 인가된 전압이나 펄스 주파수, 혹은 기체의 체류시간이 증가함에 따라, NO 및 $SO_2$의 제거효율은 증가하였다. NO 및 $SO_2$ 공급농도 증가하면 NO 및 $SO_2$ 제거에 더 많은 에너지가 요구되어 NO 및$SO_2$의 제거효율이 감소하였다. 본 연구의 실험 결과들은 NO 와 $SO_2$를 제거하기 위한 유전체 장벽 방전-광촉매 복합 공정 설계의 기초 자료로 사용될 수 있다.

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코로나 샤워 시스템을 이용한 NOx제거에서 $SO_2$의 영향 (The $SO_2$ effect on NOx removal by Corona Shower System)

  • 박재윤;김익균;이재동;김종달;이덕출
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 1998년도 하계학술대회 논문집 E
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    • pp.1794-1796
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    • 1998
  • In this study, the $SO_2$ addition effect on NOx removal has been conducted from a combustion flue gases by the do corona discharge-activated radical shower systems. The simulated flue gases were consisted of NO-O_2-$N_2$, NO-$CO_2-N_2-O_2$ and $NO-SO_2-CO_2-Na-O_2$([NO]o:200ppm and $[SO_2]o$:800ppm). The injection gases used as radical source gases were $NH_3$-Ar-air. $SO_2$ and NOx removal efficiency and the other by-products were measured by Fourier Transform Infrared(FTIR) as well as $SO_2$. NOx and $NO_2$ gas detectors. By-product aerosol particles were also observed by Condensation Nucleation Particle Counter(CNPC) and SEM images after sampling. The results showed that asignificant aerosol Particle formation was observed during a removal operation in corona radical shower systems. The NOx removal efficiency significantly increased with increasing applied voltage and $NH_3$ molecule ratio. The $SO_2$ removal efficiency was not significantly effected by applied voltage and slightly increased with increasing $NH_3$ molecule ratio. The NOx removal efficiency for NO-$SO_2-CO_2-N_2-O_2$ was better than that for NO-$CO_2-N_2-O_2$.

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저온 플라즈마 공정에 의한 효율적인 탈황 및 탈질 (Efficient Desulfurization and Denitrification by Low Temperature Plasma Process)

  • 김성민;김동주;김교선
    • Korean Chemical Engineering Research
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    • 제43권1호
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    • pp.129-135
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    • 2005
  • 본 연구에서는 펄스 코로나 방전 공정에 의해 $SO_2$$SO_2/NO$의 제거효율을 분석하였으며, 여러 공정변수가 제거효율에 끼치는 영향을 체계적으로 조사하였다. 공정변수로서 인가전압, 펄스 주파수, 체류시간, 반응물의 초기 농도(NO, $SO_2$, $NH_3$, $H_2O$, and $O_2$)의 영향을 분석하였다. 인가되는 전압, 펄스 주파수 또는 체류시간이 증가함에 따라 또는 $O_2$$H_2O$가 첨가됨에 따라 $SO_2$의 제거효율과 $SO_2/NO$의 동시 제거효율은 증가하였다. 또한, $NH_3$의 초기 농도가 증가할수록 $SO_2/NO$의 제거효율은 증가하였다. 이 실험적인 결과들은 $NO_x$$SO_x$를 제거하기 위한 펄스 코로나 방전 공정 장치 설계의 기초 자료로 사용될 수 있다.

혼합 촉진 장치의 형상에 따른 탈황효율 비교 (Comparison of the $SO_2$ Removal Efficiency by Mixing Enhancement Shape)

  • 정진도;김장우;배영필
    • 대한환경공학회지
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    • 제32권1호
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    • pp.17-22
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    • 2010
  • 본 연구의 목적은 대형 석탄 화력 발전소에 DSI (Dry Sorbent Injection)공정을 실제 적용 할 경우에 실현 가능성에 대한 연구로서 N 발전(주)의 S 화력발전본부에서 운용중인 500MW급 석탄화력 발전시설의 보일러 후단에서 전기 집진기 전 단까지를 모델로 삼아 Lab-scale 실험장치를 제작하여 탈황효율을 높이기 위한 실험을 수행하였다. 이를 위하여 Lobedplate와 Step-plate라는 혼합촉진장치를 고안하고 각각 형상을 달리하여 궁극적으로 탈황효율을 높이기 위한 혼합촉진장치의 최적 형상도출을 위한 실험을 수행하였으며 부수적으로 탈황제의 분사구의 개수에 따른 탈황효율 또한 분석하였다. 그 결과 혼합촉진장치가 설치된 경우가 더 높은 탈황 효율을 나타내었고 형상에서는 계단형상일 경우 가장 높은 탈황효율을 보였다. 또한, 탈황제의 분사구의 개수에 따른 탈황효율은 혼합 촉진 장치가 설치되지 않은 경우, 분사구의 개수가 증가할수록 높은 탈황 효율을 보였으나 혼합촉진장치가 설치된 경우는 분사구의 개수가 4개일 경우가 이론적 결과와 같이 가장 높은 탈황효율을 나타내었다.

코로나 방전 시스템을 이용한 연소가스중의 NOx, $SO_2$제거 (Removal of NOx and $SO_2$ from Combustion Flue Gases by Corona Discharge Systems)

  • 박재윤
    • E2M - 전기 전자와 첨단 소재
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    • 제10권8호
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    • pp.830-835
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    • 1997
  • In this study an experimental investigation has been conducted to remove NOx and SO$_2$simultaneously from a combustion flue gases were consisted of NO-SO$_2$-$CO_2$-$N_2$-O$_2$([NO]o:200ppm and [SO$_2$]o:800ppm) and the injection gases used as radical source gases were NH$_3$-Ar-air and CH$_4$-Ar-air. NOx and SO$_2$removal efficiency and the other by-products were measured by Fourier Transform Infrared(FTIR) as well as SO$_2$, NOx and NO$_2$gas detectors. and SEM images after sampling. The results showed that a significant Nucleating Particle Counter(CNPC) and SEM images after sampling. The results showed that a significant aerosol particle formation was observed during a simultaneous NOx and SO$_2$removal operation in corona radical shower systems. The diameter of aerosol particles was in the range of 0.18 to 3.6${\mu}{\textrm}{m}$ with a maximum fraction of particles at particles diameter of 1${\mu}{\textrm}{m}$. The NOx removal efficiency significantly increased with increasing applied voltage and NH$_3$molecule ratio. The SO$_2$removal efficiency was not significantly effected by applied voltage and slightly increased with increasing NH$_3$molecule ratio. It could be found that it is possible to use CH$_4$for NOx and SO$_2$removal by corona radical shower systems.

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실험실 규모 정전기 분무형 반건식 세정기의 SO2 제거효율 향상에 대한 계산 및 실험적 연구 (Numerical and Experimental Study on the Increase of Removal Efficiency of SO2 in a Laboratory Scale Electrostatic Spray Drying Absorber)

  • 변영철;황정호
    • 대한기계학회논문집B
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    • 제22권8호
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    • pp.1111-1120
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    • 1998
  • Spray Drying Absorber(SDA) system, where the combustion product gas is mixed with atomized limestone-slurry droplets and then the chemical reaction of $SO_2$ with alkaline components of the liquid droplets forms sulfates, has been widely used to eliminate $SO_2$ gas from coal fired power plants and waste incinerators. Liquid atomization is necessary because it can maximize the reaction efficiency by increasing the total surface area and dispersion angle of the alkaline components. First, numerical calculations using FLUENT are carried out to investigate $SO_2$ concentration distribution and thus to calculate $SO_2$ removal efficiency. So to attain the optimized spray conditions, then an electrostatic spraying system is set up and spray visualization is performed to show the effect of an electric field on overall droplet size. Next, the effect of an electric field on the concentrations of $SO_2$ is experimentally examined. Field strength is varied from -10 kV to 10 kV and configurations of conduction charging and induction charging are utilized. Consequently, the electrostatic removal efficiency of 501 increases about 30% with the applied voltage of ${\pm}10kV$ but is independent of polarity of the applied voltage. It Is also found that the conduction charging configuration results in higher efficiency of $SO_2$ removal that the induction charging configuration. Finally, the effect of slurry temperature on $SO_2$ removal is studied. The temperature influences on the electrostatic removal efficiency of $SO_2$.