• 제목/요약/키워드: Nitrogen oxides ($NO_X$)

검색결과 107건 처리시간 0.027초

마이크로버블과 환원제를 이용한 습식 NO 및 SO2의 동시제거 (Simultaneous Removal of NO and SO2 using Microbubble and Reducing Agent)

  • 송동훈;강조홍;박현식;송호준;정용철
    • 청정기술
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    • 제27권4호
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    • pp.341-349
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    • 2021
  • 연소시설에서는 화석연료에 포함된 질소와 황이 산소와 반응하여 대기 오염물질인 질소산화물(NOX)과 황산화물(SOX)을 발생시킨다. 인체에 유해하고 환경 오염을 야기하는 NOX, SOX를 저감하기 위해 전세계적으로 환경규제를 시행 중이며, 규제를 충족하기 위해 다양한 기술들을 적용하고 있다. 상용화된 NOX 및 SOX 저감방식들로 SCR (selective catalytic reduction), SNCR (selective non-catalytic reduction), WFGD (wet flue gas desulfurization) 등이 있으나 이 방식들의 단점들 때문에 NOX, SOX를 동시제거하는 연구가 근래 많이 수행되고 있다. 그러나 NOX, SOX 동시 제거 방식에서도 산화제 및 흡수제로 인한 폐수 발생에 대한 문제점, 특정 산화제를 활성화 하기 위한 촉매 및 전기분해 사용에 따른 비용 발생, 마지막으로 기체 산화제들 자체 유해성의 문제점을 가지고 있다. 따라서 본 연구에서는 NOX, SOX 동시처리 방식의 단점들을 보완하고자 고압분산기에서 생성된 마이크로버블과 환원제를 이용하여 비용절감 및 폐수처리 시 환경부하저감 가능성을 확인해 하고자 하였다. 분산기가 마이크로버블을 생성하는 것을 이미지 프로세싱과 ESR (electron spin resonance) 분석을 통해 확인하였으며, 마이크로버블만을 이용하여 온도에 따른 NOX, SOX 제거율 성능 테스트도 진행하였다. 뿐만 아니라 폐수를 저감하기 위해 환원제와 마이크로버블을 이용하여 습식으로 NOX 제거율 약 75%, SOX 제거율 99%를 달성하였다. 본 마이크로버블 시스템에 산화제를 함께 투여할 경우 NOX, SOX제거율 모두 99%이상을 달성 하였다. 이러한 연구 결과를 토대로 습식산화제거방식을 적용하는 시설의 단점이었던 비용 및 환경 문제를 해결함에 기여할 수 있을 것으로 기대 된다.

암모니아수용액을 이용한 SOX-NOX 동시 흡수에 관한 연구 (The Simultaneous absorption of SOX-NOX using aqueous ammonia solution)

  • 김재강;이주열;박병현;최진식
    • 한국응용과학기술학회지
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    • 제32권3호
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    • pp.372-376
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    • 2015
  • The experiment was performed using the cleaning precipitator To investigate the absorption efficiency of the $SO_X/NO_X$ of the aqueous ammonia solution. Concentration of the cleaning liquid is 0.1, 0.5, and 1.0% with increasing absorption efficiency has improved. However, the reaction shown only a difference in time. Absorption efficiency has improved in accordance with the gas residence time. When the direction of the same gas and the cleaning liquid is determined that there is the effect of increasing the residence time. The relative impact of $SO_X$ and $NO_X$ is this likely to react slower than $SO_X/NO_X$. The yield is determined to require adjustment of the cleaning dust collector according to the concentration of the next gas.

NO 환원반응을 위한 $V_2O_5/TiO_2$계 촉매필터의 $MnO_2$ 조촉매 효과 (The Effect of $MnO_2$ Addition on the $V_2O_5/TiO_2$ Catalytic Filters for NO Reduction)

  • 신해중;최재호;송영환;이주영;장성철;최주홍
    • 대한설비공학회:학술대회논문집
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    • 대한설비공학회 2008년도 동계학술발표대회 논문집
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    • pp.363-368
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    • 2008
  • Nitrogen oxides (NO, $NO_2$ and $N_2O$) have been controlled effectively by the SCR catalysts coated on monolith or honeycomb in commercial sites with ammonia as reductant at high temperature range $300{\sim}400^{\circ}C$. However, the catalytic filter has much merit on the point of controlling the particles and nitrogen oxides simultaneously. It will be more advanced-system if the catalytic working temperature is reduced to the normal filtration temperature of under $200^{\circ}C$. This study has focus on the development of the catalytic filter working at the low temperature. So the additive effect of the components such as Pt and Mn (which are known the catalytic component of $V_2O_5/TiO_2$ was investigated. The $V_2O_5-WO_3$ catalytic filter exhibited high activity and selectivity at $250{\sim}320^{\circ}C$ showing more than 95% NO conversion for the treatment of 600 ppm NO at face velocity 2 cm/s. The Pt-$V_2O_5-WO_3$ catalytic filter shifted the optimum working temperature towards the lower temperature ($170{\sim}200^{\circ}C$). And NO conversion was 100% and higher than that of $V_2O_5-WO_3$ catalyst at $250{\sim}320^{\circ}C$. The $MnO_X-V_2O_5-WO_3$ catalytic filter showed the wide temperature range of $220{\sim}330^{\circ}C$ for more than 95% NO conversion. This is a remarkable advantage when considered the $MnO_X$ catalytic filter presents the maximum activity at $150{\sim}250^{\circ}C$ and $V_2O_5-WO_3$ catalytic filter shows the maximum activity at $250{\sim}320^{\circ}C$.

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ZnO 바리스터형 가스 센서의 감도 향상에 관한 연구 (A Study on the Improvement of Sensing Ability of ZnO Varistor-type Gas Sensors)

  • 한세원;조한구
    • 한국전기전자재료학회:학술대회논문집
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    • 한국전기전자재료학회 2000년도 추계학술대회 논문집
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    • pp.271-274
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    • 2000
  • Gas sensor materials capable of detecting hydrogen gases (H$_2$) or nitrogen oxides (NO$\_$x/, primarily NO and NO$_2$) with high sensitivity have attracted much interest in conjunction with the growing concern to the protection of global environments. Beside conventional sensor materials, such as semiconductors., conducting polymers and solid electrolytes, the potential of sensor materials with a new method for detecting hydrogen gases or nitrogen oxides gas has also been tested. The breakdown voltage of porous varistors shifted to a low electric field upon exposure to H$_2$ gas, whereas it shifted to a reverse direction in an atmosphere containing oxidizing gases such as O$_3$ and NO$_2$ in the temperature range of 300 to 600$^{\circ}C$. Furthermore, it was found that the magnitude of the breakdown voltage shift, i. e. the magnitude of sensitivity, was well correlated with gas concentration, and that the H$_2$ sensitivity was improved by controlling the composition of the Bi$_2$O$_3$ rich grain boundary phase. However, NO$\_$x/ sensing properties of porous varistors have not been studies in detail. The objective of the present study is to investigate the effect of the composition of the Bi$_2$O$_3$ rich grain boundary phase and other additive such as A1$_2$O$_3$ on the hydrogen gases (H$_2$) sensing properties of porous ZnO based varistors.

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Removal of NOx using electron beam process with NaOH spraying

  • Shin, Jae Kyeong;Jo, Sang-Hee;Kim, Tae-Hun;Oh, Yong-Hwan;Yu, Seungho;Son, Youn-Suk;Kim, Tak-Hyun
    • Nuclear Engineering and Technology
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    • 제54권2호
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    • pp.486-492
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    • 2022
  • Nitrogen oxides (NOx; NO and NO2) are major air pollutants and can cause harmful effects on the human body. Electron Beam Flue Gas Treatment (EBFGT) is a technology that generates electrons with an energy of 0.5-1 MeV using electron accelerators and effectively processes exhaust gases. In this study, NOx was removed using an electron beam accelerator with spraying additives (NaOH and NH4OH). NO and NO2 were 100% and more than 94% removed, respectively, at an electron beam absorbed dose of 20 kGy and an additive concentration of 0.02 M (mol/L). In most cases, NOx was removed better with lower initial NOx concentrations and higher electron beam absorbed doses. As the irradiation strength (mA) of the electron beam increases, the probability of electron impact on the material accordingly rises, which may lead to increase removal efficiency. The results of the present study show that the continuous electron beam process using additives achieved more effective removal efficiency than either individual process (wet-scrubbing or EB irradiation only).

THE EFFECTS OF EGR AND SPLIT FUEL INJECTION ON DIESEL ENGINE EMISSION

  • Gao, Z.;Schreiber, W.
    • International Journal of Automotive Technology
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    • 제2권4호
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    • pp.123-133
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    • 2001
  • An important goal in diesel engine research is the development of a means to reduce the emission of oxides of nitrogen ($NO_x$) and soot particulate. A phenomenological model based on the multizone concept is used in the current paper to analyze and compare the effects of exhaust gas recirculation (EGR) and split fuel injection on emission from a compression-ignited, direct-injection engine. The present results show that $NO_x$ can be reduced with a minimum penalty of soot particle emission with cooled EGR. Compared with EGR, split fuel injection has a higher soot penalty at a given level of $NO_x$ reduction.

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단기통 엔진에서 대유량 EGR을 통한 저온 연소 특성 (Characteristics of Low Temperature Combustion in Single Cylinder Engine by High EGR Rate)

  • 조상현;오광철;이춘범
    • 한국자동차공학회논문집
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    • 제17권4호
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    • pp.79-85
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    • 2009
  • Low temperature combustion regime for the simultaneous reduction of nitrogen oxides ($NO_x$) and paticulate matter (PM) is demonstrated in single cylinder engine at various operating parameters, such as EGR rate, injection timing, EGR temperature, amount of fuel and swirl rate. Low temperature combustion is accomplished by high exhaust gas recirculation (EGR) rate in this study. Generally, the emission of $NO_x$ almost completely disappears and PM significantly increases in the first decreasing regime of oxygen concentration but after peaking about 10~12% oxygen concentration, PM then decreases regardless of fuel injection quantity. Low temperature combustion regime was extended by low EGR temperature, high injection pressure and low amount of fuel.

유전체장벽방전을 이용한 촉매공정의 질소산화물 저감성능 향상 (Improvement in Catalytic NOx Reduction by Using Dielectric Barrier Discharge)

  • 목영선;남창모
    • 한국산업융합학회 논문집
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    • 제9권1호
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    • pp.13-19
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    • 2006
  • The ozone produced by a dielectric barrier discharge device was injected into the exhaust gas to oxidize a part of NO to $NO_2$, and then the exhaust gas containing the mixture of NO and $NO_2$ was further treated in a catalytic reactor where both NO and $NO_2$ were reduced to $N_2$ in the presence of ammonia as the reducing agent. The $NO_2$ content in the mixture of NO and $NO_2$ was changed by the amount of ozone added to the exhaust gas. The experiments were primarily concerned with the effect of reaction temperature on the catalytic $NO_x$ reduction at various $NO_2$ contents. The increase in the $NO_2$ content by the ozone injection remarkably improved the performance of the catalytic $NO_x$ reduction, especially at low temperatures.

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수도권지역의 고농도 오존사례에 관한 연구 (A Study on the Episodes of Ozone in Seoul Metropolitan Area)

  • 이종범;방소영
    • 한국대기환경학회:학술대회논문집
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    • 한국대기환경학회 1999년도 추계학술대회 논문집
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    • pp.366-367
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    • 1999
  • 오존과 같은 광화학 오염물질의 특징 중의 하나는 도시나 공업단지 등의 차량이나 공장 등으로부터 초기에 배출된 질소산화물(NO$_{x}$ :Oxides of nitrogen), 비메탄계 유기화합물(NMOC:non-methan organic carbon), 알데히드류(RCHO, HCHO 등)와 같은 1차 오염물질이 바람을 따라 풍하측으로 이동하면서 광화학반응을 일으켜 풍하측의 도시에 고농도의 오존을 발생시키는 것이다.(중략)

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코팅된 제올라이트 비드를 이용한 콘크리트 투수블록의 대기전구물질 제거율 평가 (Air Pollutant Removal Rates of Concrete Permeable Blocks Produced with Coated Zeolite Beads)

  • 박준서;양근혁
    • 한국건축시공학회지
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    • 제23권2호
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    • pp.153-164
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    • 2023
  • 이 연구의 목적은 황산화물(SOx) 및 질소산화물(NOx)을 제거할 수 있는 소재를 코팅한 제올라이트 비드를 이용하여 제조된 콘크리트 투수블록의 대기전구물질의 제거율을 평가하는데에 있다. 대기전구물질인 SOx와 NOx를 제거하기 위해서 사용된 소재는 이산화티타늄(TiO2) 분말과 야자각 분말이며, 이 두 소재를 제올라이트 비드에 코팅하였다. 시편은 실제 공장생산라인을 이용하여 제올라이트 비드가 임베디드된 콘크리트 투수블록을 제작하였다. 실험결과 표층에서 야자각 분말로 코팅된 제올라이트 비드가 첨가된 콘크리트 투수블록의 SOx와 NOx 제거율은 각각 12.5% 및 99%로서 다른 블록보다도 우수한 성능을 발휘하였다. 또한, 휨 강도 및 미끄럼저항성은 각각 5.3MPa 및 65BPN 이상으로 KS F 4419 및 KS F 4561에서 제시된 값을 만족하였다. 반면, 투수계수는 서울특별시의 투수블록 포장 설계, 시공 및 유지관리 기준으로 협잡물 오염 전후에 각각 3 및 4등급으로 낮은 투수성을 보였다. 결과적으로 표층에서 야자각 분말로 코팅된 제올라이트 비드의 첨가는 충분한 휨강도 및 미끄럼저항성을 확보하면서 자외선에 관계없이 SOx와 NOx를 동시에 제거할 수 있지만, 투수성이 낮으므로 이에 대한 보완이 필요하다.