• 제목/요약/키워드: Low NOx emission

검색결과 326건 처리시간 0.027초

저열량 가스 적용에 따른 천연가스엔진의 대응 방안 연구 (Countermeasures to the Introduction of Low Caloric Gas Fuel for Natural Gas Engine)

  • 박철웅;김창기;오세철;이장희
    • 한국가스학회지
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    • 제25권2호
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    • pp.34-41
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    • 2021
  • 국내에서 사용되는 천연가스가 저열량화 되면서 발생할 수 있는 문제점에 대응하기 위해서는 국내 산업용 가스기기에 미칠 수 있는 문제점을 사전에 파악하고, 이를 기반으로 에너지의 효율적인 사용을 위한 대응방안이 선행되어야 한다. 본 연구에서는 EURO-6 규제를 대응하는 희박연소방식의 천연가스 엔진을 이용할 경우, 저열량 가스의 도입으로 인한 엔진 출력성능과 효율의 저하 문제를 해결하기 위해, 실험을 토대로 한 구체적인 제어방안과 결과를 제시하고자 하였다. 전부하 운전조건인 1,400 rpm의 엔진 회전수에서 스로틀이 전부 개방된 전부하 조건과 정격운전조건의 엔진회전수인 2,100 rpm, 450 Nm의 토크 조건에서 점화시기로 대표되는 제어변수에 의한 개선효과 확인을 위해, 각 가스연료에 대해서 점화시기를 변경하여 열효율 및 배출가스특성을 파악하고 최적화하였다. 전부하조건에서 토크를 기준으로 가장 낮은 값을 보이는 순수메탄의 경우 기준 조건에서 약 2 CAD 정도 점화시기를 진각하면 NOx 배출의 큰 증가 없이 토크를 보상할 수 있다.

희박연소를 이용한 가스터빈 연소기의 저 $NO_{x}$ 특성 (The Low $NO_{x}$ Characteristics of a Lean Premixed Gas Turbine Combustor)

  • 손민규;안국영;김한석;김용모
    • 대한기계학회:학술대회논문집
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    • 대한기계학회 2001년도 춘계학술대회논문집D
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    • pp.66-70
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    • 2001
  • The combustion characteristics have been investigated to develop the low $NO_{x}$ gas turbine combustor. The lean premixed combustion technology was applied to reduce the $NO_{x}$ emission. Also, the conventional combustor was designed and tested for the baseline of low $NO_{x}$ combustor performance. The test was conducted at the condition of high temperature and ambient pressure. The combustion air which has the temperature of 500K were supplied to the combustor through the air preheater. The temperature and emissions of $NO_{x}$ and CO were measured at the exit of combustor. The premixing chamber can be operated very lean condition of equivalence ratio around 0.35. The $NO_{x}$ was decreased with decreasing the equivalence ration. The CO was decreased with decreasing the equivalence ratio, but the CO was increased with decreasing the equivalence ratio below 0.45. But, at the very lean condition of equivalence ratio below 0.35 both NOx and CO were increased because of the flame unstability. The $NO_{x}$ was decreased slightly and CO was increased with increasing inlet air flowrate. This results can be used to determine the size of combustor. The low $NO_{x}$ combustor has lower values of $NO_{x}$ and CO compared with conventional one. Consequently the performance of combustor shows the possibility of the application to the gas turbine system.

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분사각 및 분공 직경이 예혼합 압축착화 엔진 연소에 미치는 영향 (The Effect of Injection Angle and Nozzle Diameter on HCCI Combustion)

  • 국상훈;공장식;박세익;배충식;김장헌
    • 한국자동차공학회논문집
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    • 제15권2호
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    • pp.1-7
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    • 2007
  • The effect of injector geometries including the injection angle and number of nozzle holes on homogeneous charge compression ignition (HCCI) engine combustion has been investigated in an automotive-size single-cylinder diesel engine. The HCCI engine has advantages of simultaneous reduction of PM and NOx emissions by achieving the spatially homogenous distribution of diesel fuel and air mixture, which results in no fuel-rich zones and low combustion temperature. To make homogeneous mixture in a direct-injection diesel engine, the fuel is injected at early timing. The early injection guarantees long ignition delay period resulting in long mixing period to form a homogeneous mixture. The wall-impingement of the diesel spray is a serious problem in this type of application. The impingement occurs due to the low in-cylinder density and temperature as the spray penetrates too deep into the combustion chamber. A hole-type injector (5 holes) with smaller angle ($100^{\circ}$) than the conventional one ($150^{\circ}$) was applied to resolve this problem. The multi-hole injector (14 holes) was also tested to maximize the atomization of diesel fuel. The macroscopic spray structure was visualized in a spray chamber, and the spray penetration was analyzed. Moreover, the effect of injector geometries on the power output and exhaust gases was tested in a single-cylinder diesel engine. Results showed that the small injection angle minimizes the wall-impingement of diesel fuel that results in high power output and low PM emission. The multi-hole injector could not decrease the spray penetration at low in-cylinder pressure and temperature, but still showed the advantages in atomization and premixing.

소형디젤기관의 배출가스 저감을 위한 복합재생방식 DPF의 실차적용 연구 (Research on Actual Vehicle Application of Composite Regenerative DPF for Reducing Exhaust Gases of Light-duty Diesel Engines)

  • 이윤철;오상기
    • 한국분무공학회지
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    • 제29권2호
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    • pp.68-74
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    • 2024
  • As awareness of environmental pollution problems increases worldwide, interest in air pollutants is increasing. In particular, NOx and PM, which are major pollutants in diesel vehicles, are contributing significantly to emissions. As a result, its importance is increasing. In this study, based on research results applied to large diesel vehicles, the problem of natural regeneration caused by low exhaust gas temperature during low speed and low load operation is solved by applying a complex regeneration DPF that is not affected by temperature conditions to small diesel vehicles. The feasibility of application to small diesel vehicles was reviewed by measuring the emission reduction efficiency. As a result of the engine test, the power reduction rate and fuel consumption rate before and after device installation under full load conditions were 2.9% decrease and 3.5% increase, respectively, satisfying the standard for a 5% reduction, and as a result of the regeneration equilibrium temperature (BPT) test, the regeneration temperature was 310℃. appeared at the level. The reduction efficiency test results for the actual vehicle durability test equipment showed 97.3% PM, 51.0% CO, and 31.1% HC, while the city commuter vehicle had PM 97.5%, CO 61.7%, HC 40.0%, and the school bus vehicle had PM 96.8%, CO 44.4%, HC 34.3%, and low-speed logistics vehicles showed a reduction efficiency of 98.2% for PM, 36.0% for CO, and 45.7% for HC. Based on the results of this study, in the future, it is necessary to secure DPF technology suitable for all vehicle types through actual vehicle application research on temperature condition-insensitive composite regenerative DPF for medium-sized vehicles.

2008년 북경 올림픽이 한반도 대기질에 미치는 영향 (The Effect of 2008 Beijing Olympic on Korean Air Quality)

  • 송형도;최진수;홍성철;장임석;김정수;이석조
    • 한국환경과학회지
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    • 제18권6호
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    • pp.655-665
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    • 2009
  • This study aims to identify the impacts of air quality in the Korean Peninsula according to the China's environmental policies in preparation of the Beijing 2008 Olympic Games. The measurement of emission variations in China, aircraft measurement, and modelling were carried out. The reduction measures in Beijing, China and its emission changes resulted in $30{\sim}65%$ in decrease out of the total emissions within the Beijing region, whereas when it comes to the whole nation of China, the reduction rate was about $4{\sim}9%$. Comparing the concentration of the air pollutants in Seoul and Ganghwa in August 2008 during around the period of Beijing Olympic Games with one in $2004{\sim}2007$ showed that the $SO_2$ concentrations in the past was above 5ppb, while the concentration in the 2008 olympic period was 4ppb and below. The NOx at the Seokmori site in Ganghwa tended to be lower in concentration in 2008 than in between $2004{\sim}2007$. As for $O_3$ and $PM_{2.5}$, the concentration tended to be rather low since August 11. The air current track that showed during the period of aircraft measurement presented to be flowed into Korea through the Northeast part of China and the coast of Bohai Bay, while the concentrations of $SO_2$. NOx, and $O_3$ over the west sea on August 20 and 24 were 0.54 (0.28ppb), 0.86 (1.84ppb), and 54.0 (41.5ppb) respectively, similar or lower than the ones measured in the past in the similar current patterns. The modelling result showed similar patterns to the data of aircraft measurement, in particular in $SO_2$. Overall, the reduction measures in Beijing, China affected directly and indirectly the air quality in the Korean peninsular, but the impact was not significant as it was momentary and limited to the intended area.

연소방식별 폐기물 고형연료(RDF)의 연소특성 연구 (A Study on Combustion Characteristics of Refuse Derived Fuel(RDF) in Various Incinerators)

  • 김우현
    • 자원리싸이클링
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    • 제15권1호
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    • pp.46-57
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    • 2006
  • 폐기물고형연료(RDF : Resused Derived Fuel)를 연료로 하는 연소기술의 개발을 위하여 기포유동층 연소로와 순환유동층 연소로, 연속연소식 연소로, 회분식 연소로 등 다양한 연소장치를 이용하여 연소 특성실험을 하였다. 여러 종류의 연소설비에서 RDF의 연소 및 배출가스 특성을 비교, 분석하였으며 RDF 전용 연소설비에 대하여 보다 깊은 연구의 기초 자료로 활용하자고 하였다. 기포 유동층 및 순환유동층연소로에서는 적정투입량과 가스공탑속도등 적정운전조건에 따라 안정적인 연소가 이루어지는 것을 확인할 수 있었다. 순환유동층 연소로에서 연소조건에 따라 연료 중의 질소성분과 연소공기 중의 산소와의 반응이 커져서 NOx의 농도가 높아지는 것을 알 수 있었으며 $SO_2$는 매우 낮은 농도로 측정되어 RDF의 유동층 연소시 거의 발생하지 않는 것으로 판단되었으며, HCl의 경우 평균 36.4ppm으로 배출허용기준치보다는 낮으나 저감대책이 필요한 것으로 판단되었다. 연속연소식 연소로와 회분식 연소로의 경우 성형 RDF와 fluff RDF를 비교 실험한 결과 높은 밀도를 가진 성형 RDF의 연소가 안정적인 열회수 측면에서 더 유리한 것을 알 수 있었으며 배가스 특성은 비슷한 값을 나타내었으며 배출가스 특성은 비슷하였다.

DME를 사용한 단기통 엔진의 연소특성에 관한 수치해석적 연구 (A Numerical Study on Combustion Characteristics of Single Cylinder Engine Fueled with DME)

  • 김현철;강우;나병철;김명환
    • 한국자동차공학회논문집
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    • 제14권4호
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    • pp.39-48
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    • 2006
  • In this research, in order to study the spray, combustion, and emission characteristics of the common rail DME engine, the target engine was disassembled, and 3D CAD file was constructed using a 3D measurement machine and a rapid prototyping machine. Using the obtained 3D geometry, fine moving meshes are generated, and three dimensional non-steady turbulence flow field and combustion phenomenon including spray were numerically analyzed. As a result, IMEP of DME and diesel in medium and high speed revolution showed similar performance. As the DME fuel start to burn in spray area, the vaporized fuel rapidly spreads squish area in low speed revolution. In the case of DME engine, CO and NOx are relatively consistent with experiment results. It was found that the break-up, evaporation, collision model of DME fuel need to be properly adjusted through matching the characteristics of fuel and injector for further improvement.

CNG 버스의 CH4 저감용 NGOC의 de-CH4 특성 (The De-CH4 Characteristics of NGOC for CH4 Reduction of a CNG Bus)

  • 서충길;최병철
    • 동력기계공학회지
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    • 제20권4호
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    • pp.69-74
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    • 2016
  • Recently, in order to meet the stricter emission regulations, the proportion of after-treatments for vehicle and vessel is increasing gradually. The purpose of this study is to investigate the de-$CH_4$ characteristics of NGOC in front of proposed combined system according to additive catalyst and support ratio. In the case of Pd addition, the de-$CH_4$ performance of 2Pt-2Pd-3MgO/$Al_2O_3$ NGOC was improved by approximately 10 to 20% for the HC components. The de-$CH_4$ performance of 2Pt-2Pd-3Cr-3MgO/$Al_2O_3$ NGOC was higher compared to five kinds of NGOC catalysts, because Cr particle was smaller and dispersion of Pd was increased. The NGOC(Zeolite:$Al_2O_3$(80%:20%)}catalyst according to support ratio, was improved performance at low temperature region on CO and NO conversion rate.

석유화학 공정부산물의 연소특성에 대한 연구 (A Study on the Combustion Characteristics of Petrochemical Process By-Product)

  • 이용일
    • 대한기계학회논문집B
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    • 제26권11호
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    • pp.1578-1584
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    • 2002
  • Combustion stability is one of the most important factors that must be considered in burning of heavy fuel oil, especially low-grade oil. This paper describes the combustion characteristics of petrochemical process by- product in the combustion furnace of heavy fuel oil. Main experimental parameters were combustion load, excess 02, fuel preheating temperature and air/fuel ratio. The capacity of CRF(combustion research facility) used in this study was 1.0 ton/hr and the burner is steam jet type suitable far heavy oil combustion and manufactured by UNIGAS in Italy. The fuel used in this experiment were 0.5 B-C, petrochemical process by-product and 3 kinds of 0.5 B-C/process by-product mixtures. The combustion stability was monitored and exhaust gases such as CO, NOx, SOx and particulates were measured with the excess $O_2$ and combustion load. The main purpose of this study is to clarify whether process by-product can be used as a boiler fuel or not in consideration of flame stability and emission properties.

The Processing of Livestock Waste Through the Use of Activated Sludge - Treatment with Intermittent Aeration Process -

  • Osada, T.
    • Asian-Australasian Journal of Animal Sciences
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    • 제13권5호
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    • pp.698-701
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    • 2000
  • To prevent surface and underground water pollution, wastewater treatment is essential. Four bench-scale activated sludge units (10 L operational volumes) were operated at 5, 10 and $20^{\circ}C$ for evaluation of treatment efficiencies with typical wastewater from swine housing. The units were set for a 24-hour cycle. As compared to the conventional process, high removal efficiencies for organic substances, nitrogen and phosphorus in swine wastewater were obtained simultaneously with an intermittent aeration process (lAP). The NOx-N produced during an aeration period was immediately reduced to nitrogen gas (e.g. $N_2$ or $N_2O$) in the subsequent non-aeration periods, and nitrification in aeration periods occurred smoothly. Under these conditions, phosphorus removal occurred with the release of phosphorus during the non-aeration periods followed by the excess uptake of phosphorus in the activated sludge during aeration periods. It was confirmed that the lAP had a better ability to remove pollutants under both low temperatures and high nitrogen loading conditions than the ordinary method did. In addition to that, the total emission of $N_2O$ from lAP was reduced to approximately 1/50 of the conventional process for the same loading. By adopting an adequate aeration programme for individual swine wastewater treatment, this system will provide a promising means for nitrogen and phosphorus control without pH control or addition of methanol.