• 제목/요약/키워드: Flue Gases

검색결과 110건 처리시간 0.027초

산성 및 유기성 가스의 동시제거를 위한 준건식 세정시스템의 적정 운전 조건 (Optimal Operation Condition of Spray Drying Sorber for Simultaneous Removal of Acidic and Organic Gaseous Pollutants)

  • 백경렬;구자공
    • 한국환경과학회지
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    • 제10권1호
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    • pp.59-64
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    • 2001
  • The effect of major operating parameters in spray drying sorber(=SDS) for automatic control for the simultaneous removal of acidic and organic gaseous pollutants from solid waste incinerator was performed. The field experiment was carried out in pilot scale test for the quantification of major operating parameters of hydrophilic and the hydrophobic pollutants. The removal efficiencies of $SO_2$and HCI in the 5wt% slurry condition were being increased with the increase of the stoichiometric ration which is the molecular ratio of lime to the pollutant concentration, and with the decrease of inflow flue gas temperature in the pilot SDS reactor. The removal efficiency along the height of spray drying sorber was closely related to the temperature profile, and more than 90% of total removal efficiency was achieved in an absorption region. For the removal of acidic gas the optimum operating condition considering the economics and a stable operation is the 5wt% of slurry concentration, 1.2 of stoichiometric ratio and 25$0^{\circ}C$ of inflow flue gas temperature. For the organic gases of benzene and toluene the removal efficiencies were 20-60% which is much lower than that of acidic gas. The best removal efficiency was obtained at 1.5 of stoichiometric ratio and 25$0^{\circ}C$ of inflow flue gas temperature. The organic\`s removal efficiency along the height of spray drying sorber was quite different from that of acidic gas, that is, more than 60% of the total removal efficiency for benzene and 90% of the total removal for toluene were achieved in the dried adsorption region, which was formed at the lower or exit part of the reactor.

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Improvement of the $SO_{x}$ Removal by Adding Dibasic Acids into the JBR FGD Process

  • Lee, Byeong-Kyu;Jeon, Sang-Ki;Cho, Seong-Won
    • Journal of Korean Society for Atmospheric Environment
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    • 제17권E4호
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    • pp.157-162
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    • 2001
  • Jet Bubbling Reactors(JBRs) were operated for the removal of SO$_{x}$ in flue gases produced from many electric power plants. However, many JBR flue gas desulfurization (FGD) facility faced a decrease of SO$_{x}$ removal efficiency and an increase of scale problems with continuous operations. We increased alkalinity of the SO$_{2}$ absorbing medium by adding the dibasic acids (DBAs) to solve these problems more effectively. The SO$_{2}$ removal efficiency, the purity of CaCO$_{3}$ and COD of the wastewater was measured to identify the addition effects of DBAs (150, 200, 250, and 400 ppm) for 2hr in a day into the JBR attached to the large-scale power plants (400 MW$\times$3). Addition of the DBAs resulted in the improvement of the SO$_{2}$ removal efficiency from 2 to 5% and the purity of the gypsum from 1 to 2%; these improvement were due to the alkalinity increase of the absorbing medium and the reduction of a proportion of un-reacted CaCO$_{3}$, respectively. Also, the scale problems formed by un-reacted CaCO$_{3}$ inside the reaction zone of the JBR were substantially reduced. Even though the effluent COD of the wastewater slightly increased from 10~15 to 18~36 mg/l and the erosion problems in the injection pump and duct occurred, this method of increasing SO$_{2}$ removal efficiency by adding the DBAs could be considered as a profitable approach.ach.

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석회석 슬러지의 석회석-석고 습식 배연탈황 공정적용에 관한 연구 (A Study on the Application with Limestone Sludge at Limestone-Gypsum Wet Flue Gas Desulfurization Process)

  • 서성관;추용식;심광보
    • 자원리싸이클링
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    • 제25권5호
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    • pp.44-49
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    • 2016
  • 배연탈황기술은 화력발전소에 발생하는 $SO_2$ 가스를 제거하기 위한 효과적인 방법이며, 흡수제로 석회석을 사용하고 있다. 본 연구에서는 천연자원인 석회석의 사용량을 저감하고 산업 폐기물의 재활용을 위해, 제철소에서 발생하는 석회석 슬러지를 흡수제로 사용하고자 하였다. 흡수제 원료의 물리 화학적 특성분석을 실시하였으며, 전처리 설비를 구축하여 석회석 슬러지를 사용한 흡수제를 제조한 후 배연탈황 공정에 적용하였다. 제조 흡수제 적용 결과, $SO_2$ 농도 변화상에서의 경향성은 나타나지 않았으며, 흡수탑에서의 운전 제어를 통해 석회석 슬러지를 흡수제로 사용 가능할 것으로 사료되었다.

직접접촉식 응축기를 통한 가압순산소 연소 배가스 내 SOx, NOx 동시저감 연구 (Simultaneous Removal of SOx and NOx in Flue Gas of Oxy-fuel Combustion by Direct Contact Condenser)

  • 최솔비;목진성;양원;류창국;최석천
    • 청정기술
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    • 제25권3호
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    • pp.245-255
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    • 2019
  • 가압순산소 연소는 발전 공정의 온실가스 포집 기술의 하나로서, $CO_2$의 압축 전 단계에 FGC (Flue gas condensor)를 통해 배가스 내 수분의 잠열을 회수하여 효율을 높일 수 있다. 또한 FGC는 가스의 용해도를 이용하여 $SO_x$$NO_x$를 동시에 효과적으로 제거할 수 있는 장점이 있다. 이 연구에서는 FGC의 방식 중 하나로서 직접 접촉식 응축기를 고안하여 $SO_x$$NO_x$의 저감율을 평가하였다. 특히 가스가 물에 직접 통과할 때 용해를 통한 저감효율을 측정하기 위해 단독가스와 혼합가스로 분리하여 상압에서 10 bar까지의 압력조건을 변수로 실험을 진행하였다. 단독 가스 실험결과 $NO_x$는 상압에서 저감율이 약 20%, 10 bar 압력조건에서 약 76%로 크게 증가하였다. 또한 $SO_2$는 높은 용해도로 전량이 용해하여 초기 저감율에 큰 차이가 나타나지 않았으나, 압력이 증가할수록 최고 저감율이 유지되는 시간이 증가하였다. 동시저감 실험 결과 상압에서 $NO_x$의 저감율은 13%이나, 압력이 상승할수록 헨리법칙에 의한 용해도 증가에 따라 20 bar에서 56%로 증가하였다. $SO_2$는 초기에 다량 용해된 후 다시 배출 농도가 증가하는 폭이 상압에서는 1,219 ppm, 20 bar에서는 165 ppm으로 감소하였다. 결론적으로 $NO_x$$SO_x$ 모두 압력이 높아질수록 저감율이 증가하였으나, 단독가스 실험과 비교하면 저감율이 감소함을 확인하였다. 이는 혼합가스 투입으로 인해 반응기 내부에 채운 물의 산성화가 빠르게 이루어졌기 때문이다.

발전보일러의 최적연소조정에 대한 실험적 연구 (The Study of Optimized Combustion Tuning for Fossil Power Plant)

  • 정재진;송정일
    • 한국태양에너지학회:학술대회논문집
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    • 한국태양에너지학회 2009년도 춘계학술발표대회 논문집
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    • pp.102-108
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    • 2009
  • Fossil power plants firing lower grade coals or equipped with modified system for NOx controls are challenged with maintaining good combustion conditions while maximizing generation and minimizing emissions. In many cases significant derate, availability losses and increase in unburned carbon levels can be attributed to poor combustion conditions as a result of poorly controlled local fuel and air distribution within the boiler furnace. In order to develop a on-line combustion tuning system, field test was conducted at operating power boiler. During the field test the exhaust gases' $O_2$, NOx and CO was monitored by using a spatially distributed monitoring grid located in the boiler's high temperature vestibule and upper convective back-pass region. At these locations, the flue gas flow is still significantly stratified, and air in-leakage is minimal which enables tracing of poor combustion zones to specific burners and over-fire air ports. using these monitored information we can improving combustion at every point within the furnace, therefore the boiler can operate at reduced excess $O_2$ and gas temperature deviation, reduced furnace exit gas temperature levels while also reducing localized hot spots, corrosive gas conditions, slag or clinker formation and UBC. Benefits include improving efficiency, reducing NOx emissions, increasing output and maximizing availability. Discussion concerning the reduction of greenhouse gases is prevalent in the world. When taking a practical approach to addressing this problem, the best way and short-term solution to reduce greenhouse gases on coal-fired power plants is to improve efficiency. From this point of view the real time optimized combustion tuning approach is the most effective and implemented with minimal cost.

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발전용 보일러의 최적연소조정기법에 대한 실험적 연구 (The Study of Optimized Combustion Tuning Method for Fossil Power Plant)

  • 정재진;송정일
    • 한국태양에너지학회 논문집
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    • 제29권5호
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    • pp.45-52
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    • 2009
  • Fossil power plants firing lower grade coals or equipped with modified system for $NO_x$ controls are challenged with maintaining good combustion conditions while maximizing generation and minimizing emissions. In many cases significant derate, availability losses and increase in unburned carbon levels can be attributed to poor combustion conditions as a result of poorly controlled local fuel and air distribution within the boiler furnace. In order to develop a on-line combustion tuning system, field test was conducted at operating power boiler. During the field test the exhaust gases' $O_2,\;NO_x$ and CO was monitored by using a spatially distributed monitoring grid located in the boiler's high temperature vestibule and upper convective rear pass region. At these locations, the flue gas flow is still significantly stratified, and air in-leakage is minimal which enables tracing of poor combustion zones to specific burners and over-fire air ports. using these monitored information we can improving combustion at every point within the furnace, therefore the boiler can operate at reduced excess $O_2$ and gas temperature deviation, reduced furnace exit gas temperature levels while also reducing localized hot spots, corrosive gas conditions, slag or clinker formation and UBC. Benefits include improving efficiency, reducing $NO_x$ emissions, increasing output and maximizing availability. Discussion concerning the reduction of greenhouse gases is prevalent in the world. When taking a practical approach to addressing this problem, the best way and short-term solution to reduce greenhouse gases on coal-fired power plants is to improve efficiency. From this point of view the real time optimized combustion tuning approach is the most effective and implemented with minimal cost.

Microwave에 의한 산성가스 분해 특성 (The Characteristics of Sour Gas Decomposition by Microwave)

  • 김동식;김재설;이동규
    • 공업화학
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    • 제7권6호
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    • pp.1027-1033
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    • 1996
  • 쌍극자물질에 전자파를 조사하면 그 파동의 변화에 따라 분자가 진동하며, 이웃 분자와 마찰을 일으켜 물질 내부로부터 가열되는 독특한 현상을 보인다. 따라서 고체인 전자파흡수제에 흡착시킨 쌍극자 기체를 microwave energy로 쉽게 파괴할 수 있다. 연소기기 배출가스에서 산성가스 제거공정 개발을 위하여 이 방법에 의한 산성가스 분해실험을 실시하였다. Calcined char는 전자파흡수제 및 가스 흡착제로서의 역할을 하는데, NO와 $SO_2$를 함유한 표준가스를 char bed내로 통과시키면서 microwave를 조사하였다. Microwave가 조사되고 있는 20 gram의 char bed를 통과하는 동안 95% 이상의 NO와 70% 이상의 $SO_2$가 환경적으로 무해한 단체원소로 분해되었으며, 분해된 원소 중 산소기는 char의 기공내에서 탄소와 반응하여 $CO_2$를 형성하며 char의 기공도 및 표면적 증대효과를 가져왔다. 일반적인 상업적 연소공정에서 처럼 이보다 낮은 농도에서는 거의 완전한 분해가 가능하리라 보여지며, 대기오염 방지에 좋은 방법이 되리라 믿어진다.

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배가스 펄스코로나 처리공정 실험설비용 20 kW급 자기펄스압축형(MPC) 펄스 모듈레이터 개발 (Development of a 20 kW pulse modulator for industrial application of pulse corona process)

  • 손윤규;장성덕;오종석;조무현;김민호;한병욱
    • 대한전기학회:학술대회논문집
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    • 대한전기학회 2004년도 하계학술대회 논문집 C
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    • pp.1781-1783
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    • 2004
  • Flue gas from fossil fuel combustion is the main source of air pollution. It is recognized that $SO_2$ and $NO_x$, (sum of NO and $NO_2$) react with $H_2O$ and $O_2$ in atmosphere and convert precursors of acid rain. Streamer corona process using pulse power is one of the effective methods to remove these gases from stack. For this, pulse generator with 160 kV of output peak voltage, 0.3 ${\mu}s$ of pulse width and 120Hz of pulse repetition rate is developed. This paper shows the pulse compression characteristics to obtain optimum parameters for basic system design.

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Performance Analysis of Supercritical Coal Fired Power Plant Using gCCS Simulator

  • Tumsa, Tefera Zelalem;Mun, Tae-Young;Lee, Uendo;Yang, Won
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2014년도 제49회 KOSCO SYMPOSIUM 초록집
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    • pp.37-40
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    • 2014
  • Capturing the carbon dioxide emitted from coal-fired power plants will be necessary if targeted reduction in carbon emissions is to be achieved. Modelling and simulation are the base for optimal operation and control in thermal power plant and also play an important role in energy savings. This study aims to analyze the performance of supercritical coal fired power plant through steady and dynamic simulation using a commercial software gCCS. A whole power plant has been modeled and validated with design data of 500 MWe power plant, base and part load operations of the plant were also evaluated, consequently it had been proven that the simulated result had a good agreement with actual operating data. In addition, the effect of co-firng on the plant efficiency and flue gases were investigated using gCCS simulator.

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고열량 반탄화 연료 생산을 위한 목질계 바이오매스 저온열분해 방법에 대한 연구 (Study on Low Temperature Pyrolysis of Woody Biomass to Produce High-Calorie Torrefied Fuel)

  • 이창엽;권민준;김대해;김세원
    • 한국연소학회:학술대회논문집
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    • 한국연소학회 2014년도 제49회 KOSCO SYMPOSIUM 초록집
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    • pp.263-263
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    • 2014
  • Low temperature pyrolysis of woody biomass has been conducted to produce highcalorie torrefied fuel. In this experiment, to maximize the energy efficiency in heat transfer, flue gas is directly used for heat source in the torrefier. To accomplish the oxygen free environment in the torrefaction reactor, a burner has been developed and it can be runned with fuel rich state. An inner central axis rotating type of reactor was applied in experiment. To use the calorific gases produced from torrefier, another burner is developed to combust them.

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