• 제목/요약/키워드: bituminous

검색결과 251건 처리시간 0.033초

국내 유연탄의 발열량 추이 분석(2010~2014년) 및 탄소배출계수 개발 (Domestic Bituminous Coal's Calorific Value Trend Analysis (2010~2014) and Carbon Emission Factor Development)

  • 김민욱;조창상;전영재;양진혁;신호철;전의찬
    • 한국기후변화학회지
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    • 제7권4호
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    • pp.513-520
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    • 2016
  • Korea's energy consumption has been constantly increasing. Final energy consumption was increased by an annual average of 2.9% compared to 2010. The consumption of all energy sources except for its oil was increased during the same time. While electric demand has increased coal consumption increased rapidly. Therefore, calorfic value and carbon emission factor development can improve the quality of Korea's greenhouse gas inventory. Calorific value is the amount of heat generated while burning coal. Caloric value is one of the most important factors in the development of carbon emission factors. Calorific value is used as the basis for the analysis of the various energy statistics. This study has calculated the other bituminous coal and coking coal's calorfic value by the data received from domestic coal-fired power plants and steel manufacturer. Calorofic value's trend analysis period is the year of 2010~2014. Through analyzing the carbon content it was calculated the carbon emission factor. The bituminous coal and coking coal's uncertainty analysis was performed using a Monte Carlo simulation.

국내 아역청탄의 발열량 추이 분석과 탄소배출계수 개발 (Sub-bituminous Coal's Calorific Value Trend Analysis and Carbon Emission Factor Development)

  • 김민욱;조창상;전영재;양진혁;신호철;전의찬
    • 한국기후변화학회지
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    • 제8권2호
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    • pp.145-151
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    • 2017
  • Korea's energy consumption has been constantly increasing. Final energy consumption was increased by anannual average of 2.9% compared to 2010. The consumption of all energy sources except for its oil was increased during the same time. While electric demand has increased coal consumption increased rapidly. Therefore, calorfic value and carbon emission factor development can improve the quality of Korea's greenhouse gas inventory. Calorific value is the amount of heat generated while burning coal. Caloric value is one of the most important factors in the development of carbon emission factors. Calorific value is used as the basis for the analysis of the various energy statistics. This study has calculated the sub-bituminous coal's calorfic value by the data received from domestic coal-fired power plants. Calorofic value's trend analysis period is the year of 2011~2015. Through analyzing the carbon content it was calculated the carbon emission factor. The sub-bituminous coal's uncertainty analysis was performed using a Monte Carlo simulation.

전력계통 모의를 통한 에너지세제 개편의 전력가격 및 조세수입에 대한 영향 연구 (Impacts of Energy Tax Reform on Electricity Prices and Tax Revenues by Power System Simulation)

  • 김윤경;박광수;조성진
    • 자원ㆍ환경경제연구
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    • 제24권3호
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    • pp.573-605
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    • 2015
  • 본 논문은 2014년 7월과 2015년 7월부터 시행된 발전용 유연탄 과세와 LNG 세율 변경을 중심으로 세제 개편의 시나리오들을 설정하여 2029년까지의 SMP, 정산단가, 조세수입에 대한 영향을 추정하고, 시나리오 1(기준시나리오)의 값들과 비교하였다. 추정에서는 우리나라의 전력계통과 전력시장 운용방식에 특화한 모형과 전력수급기본계획 등의 정부 계획자료를 이용하여 전력계통 모의 실험을 실시하였다. 발전용 유연탄에 과세하고 조세중립성을 확보하기 위해 LNG에 대해서도 과세하는 경우에 단기에 SMP는 시나리오 1의 경우에 비해서 낮아진다. 원자력발전의 경우는 과세를 하여도 발전비용이 다른 발전원의 발전비용보다 작고, 원자력발전이 SMP를 결정하는 시간대가 거의 없기 때문에 과세가 SMP에 미치는 영향은 거의 없다. 따라서 SMP와 정산단가의 동조화관계가 성립한다면, 단기에 발전용 유연탄에 대한 과세로 에너지소비의 전력화현상을 둔화시키기는 어렵다. 그러나 중 장기에는 석탄발전설비가 충분히 확보되면 발전용 유연탄에 대한 과세는 SMP를 상승시키므로 세제 개편의 형태가 단기에 발전용 유연탄에만 과세하고 신규 유연탄 발전설비가 충분히 도입된 이후에 LNG에 대한 세율을 조정하면 에너지세제 개편으로 전기요금을 인상시켜서 전력수요를 감소시키려는 목적은 달성할 수 있을 것이다. 중 장기에는 발전설비의 확충으로 LNG복합발전기의 이용률이 낮아지므로 LNG에 대한 세율이 정산단가에 영향을 미치지 못한다. 원자력발전에 대한 과세는 SMP에 대한 영향과는 달리 정산조정계수의 영향으로 정산단가를 상승시켰다. 중 장기에 에너지세제가 갖는 순효과는 전력공급력의 확대에 따른 정산단가 하락이 에너지세제 부과에 따른 정산단가 상승을 상쇄시키는 정도에 따라서 달라질 것이다. 과세대상 중에서 원자력발전의 경우에 과세하는 경우에 추가적으로 발생하는 조세수입이 가장 컸다. 에너지세제의 형태와 조세수입의 관계를 보면 발전용 유연탄에 대한 세율이 높을수록, 그리고 원자력발전에 신규로 조세를 부과할수록 조세수입은 커진다.

국내 석탄회 육상매립의 오염 잠재성 평가 (Assessment of potential environmental impact from fly ash landfill)

  • 이상훈
    • 환경영향평가
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    • 제8권4호
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    • pp.25-35
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    • 1999
  • Fly ash, by-product from coal fired power station, has long been regarded as a potential contamination source for heavy metals and inorganics due to their enriched concentrations and associations with particle surface. Feed coal and fly ash samples were collected from two power stations; Yongdong deliang with domestic anthracite coals and Boryong with imported bituminous coals. The coal and fly ash samples were analyzed for chemical composition and mineral components, using XRF and XRD. Batch leaching experiments were conducted by agitating samples with deionised water for 24 hours. Anthracite coals are generally higher in Al and Si contents than bituminous coals. This is due to the higher ash contents of the anthracite coal than bituminous coal. The chemistry of the two fly ash samples shows broadly similar compositions each other, except for the characteristically high contents of Cr in anthracite coal fly ash. Leaching experiments revealed that concentrations of metals gradually decreased with leachings in general. However, measurable amounts of metals were present in the effluent from weathered ash and the samples subjected to the leaching procedure. These metals are likely to indicate that the metals in fly ash were incorporated into glass fraction as well as associated with particle surface of samples. Dissolution of aluminosilicate glass would control releasing heavy metals from fly ash as weathering progresses during landfill with implication of possible groundwater contamination through fly ash landfill.

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석탄의 열적 특성과 석탄 내부의 승온 특성과의 상관관계 연구 (Study on the Correlation between Thermal Characteristics and Heat Accumulation in the Coal Pile)

  • 이현동;김재관
    • 한국연소학회지
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    • 제15권4호
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    • pp.58-64
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    • 2010
  • Spontaneous ignition tests of five different coals with non-iso-thermal and iso-thermal test method based on the standard test procedure of NF T20-036 were carried. These five coals included the 2 low rank coals and 3 bituminous coals. Test results showed that the ignition temperatures of all coals at the iso-thermal conditions were higher than that of non-isothermal condition, and those of low rank SM and BR coal in both nonisothermal and isothermal conditions were lower than bituminous AN and CN coals. The chemical species of coals such as oxygen and hematite also plays an important role in enhancing the ignition rate that the ignition temperature of SM coal was lowered. The heat accumulation tendency of five coals inside outdoor stack pile was monitored with emphasis on the change in the temperature of the coal depth in stack pile. In case of low rank BR coal, its temperature inside coal stack pile due to the rate of high heat accumulation and oxidation was $59^{\circ}C$ compared to $51^{\circ}C$ for other SW bituminous coal. And the heat accumulation rate inside coal stack piles was increased with increased the Cp value which it was defined as the specific heat of coal at constant pressure, whereas other factors such as thermal diffusivity and conductivity of coal relatively had less effect on heat accumulation.

유동층 연소로에서 유, 무연탄 혼합연소시 탈황에 관한 연구 -천연석회석을 이용한 황산화물 제어- (A study on Desuifurization by Anthracite-Bituminous coal blend combustion in a fluidized bed combustor -A desulfurization using natural limestone-)

  • 조상원;민병철;정종현;전영화;김대영;정덕영
    • 한국환경보건학회지
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    • 제23권3호
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    • pp.102-108
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    • 1997
  • It has been studied that SO$_2$ removal efficiency of anthracite-bituminous coal blend combustion in a fludized bed coal combustor. The objectives of this study were to investigate SO$_2$ removal characteristics of coal blend combustion with Ca/S, anthracite fraction, bed temperature, and limestone size. The experimental results were presented as follows First, the effect of the desulfurization by the dia size of limestone was great and SO$_2$ removal efficiency was highest in limestone dia 631 $\mu$m. Second, as air velocity increased, the desulfurization rate decreased a little. But the difference of the desulfurization rate according to air velocity was not too large. As the height of fluidized bed combustor increased regardless of air velocity, SO$_2$ concentration tends to increase largely. Third, as Ca/S mole ratio incresed, SO$_2$ desulfurization rate incresed rapidly up to Ca/S mole ratio 3 while the desulfurization rates did not increse too largely in the range of more than the level. Forth, the bed temperature had a great effect on the desulfurization rate and the desulfurization rate tended to increase slightly as anthracite fraction increased.

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국내 무연탄 발전소 역청탄 사용시 탈황 특성 연구 (Desulfurization Characteristics for Anthracite Coal Power Plant by Increasing Bituminous Coal Fuel)

  • 김정유;문승재;이재헌
    • 플랜트 저널
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    • 제4권4호
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    • pp.71-77
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    • 2008
  • The sulfur oxides is one of important materials to come about air pollution at thermal plant consuming fossil fuel. The several flue gas desulfurization equipments are installed and operated to decrease sulfur oxides. The flue gas desulfurization of our thermal plant is designed for optimizing flue gas desulfurization technical development and research by Korea Electric Power Research Institute. We operate this desulfurization equipment. Now, our country imports nearly 97 percentage of the energy source and competes with the world for the energy because of the sudden rise of raw materials cost. The fuel cost decrease of power plants is the most important factor of the operation. The fuel used in the experiment is the domestic anthracite from Kangwon Taeback and the bituminous coal from Taldinsky Mine in Russia. This Study is experimental investigations of desulfurization characteristics for domestic anthracite power plant by increasing bituminous coal. We surveyed possible parameters and conducted the performance about desulfurization equipment in Yong Dong thermal power plant.

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2 MWe 순환유동층 발전 플랜트에서 유연탄과 북한 무연탄 혼소시험 특성 연구 (A Study of Co-Combustion Characteristics of North Korean Anthracite and Bituminous Coal in 2 MWe CFBC Power Plant)

  • 한근희;현주수;최원길;이종섭
    • Korean Chemical Engineering Research
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    • 제47권5호
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    • pp.580-586
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    • 2009
  • 본 연구에서는 2 MWe 규모 순환유동층 발전소에서 중국산 유연탄과 북한산 무연탄의 혼합연소특성을 실험적으로 고찰하였다. 중국유연탄과 호주유연탄을 과잉공기량과 층온도 등을 변수로 실험한 결과, 연소효율은 석탄입자의 입도와 석탄중의 휘발분의 영향을 받으며, 이 때 미연탄소분은 Fly ash 5~7%, 바닥회 0.3% 수준으로 중국 유연탄의 연소효율은 99.5% 이상을 보였다. 북한산 무연탄과 유연탄의 혼소시 혼합비 20%에서 무연탄의 평균입도가 작아 연소실에서 비산되는 입자로 인해 연소효율은 5% 이상 저하되었다, 그러나 $SO_2$와 NOx의 배출농도는 크게 변화하지 않았다. 배출되는 대기오염물질의 농도는 $NO_x$ 200~250 ppm($O_2$ 6%), $SO_2$ 100~320 ppm($O_2$ 6%)이었다. SCR 공정에서 2~13 l/min 범위의 $NH_3$ 공급으로 30~65%의 $NO_x$가 저감되었다. Limestone을 이용한 노내탈황에서 약 Ca/S 몰비 6.5를 공급했을 때 $SO_2$가 75% 제거되었고, $Mg(OH)_2$를 흡수제로 하는 FGD를 운전했을 때 pH 5.0 이상에서 100% 탈황효과를 보였다.

유동층 연소로에서 유.무연탄 혼합 연소법을 이용한 국내산 저질 무연탄의 활용에 관한 연구 (A Study on the Use of Low-Grade Domestic Anthracite by Anthracite - Bituminous Coal Blend Combustion in a Fluidized Bed Combustor)

  • 정종현;조상원
    • 한국환경과학회지
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    • 제6권3호
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    • pp.267-276
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    • 1997
  • It has been studded that combustion and the production of air pollution of anthracite - bituminous coal blend In a fluidized bed coal combustor, The objects of thIns study were to investigate mixing characteristics of the particles as well as the combustibility of the low grade domestic anthracite coal and Imported h19h calorific bltununous coal in the fluidized bed coal combustor. They were used as coal samples ; the domestic low grade anthracite coal with heating value of 2,010kca1/kg and the Imported high grade bituminous coal with beating value of 6,520kca1/kg. Also, the effects of air flow rate and anthracite fraction on the reaching time of steady state condition have been studied. The experimental results are presented as follows. The time of reaching to steady state was affected by the temperature variation. The steady state time was about 120 minute at 300sc1h which was the fastest. It has been found that $O^2$ and $CO^2$ concentration were reached steady state at about 100 minute. It has been found that $O^2$ concentration decreased and $CO^2$ concentration increased as the height of fluidlzed bed Increased. It was found that splash zone was mainly located from 25cm to 35cm above distributor. Also, as anthracite traction Increased, the mass of elutrlatlon particles Increased, and $CO^2$ concentration decreased. As gk flow rate Increased,$O^2$ concentration decreased and $CO^2$ concentration increased. Regardless of anthracite fraction and flow rate, the uncombustible weight percentage according to average diameter of elutriation particles were approldmately high In the case of One Particles. As anthracite traction and k now rate Increased, elutriation ratio Increased. As anthracite fraction was increased, exit combustible content over feeding combustible content was Increased. Regardless of anthracite fraction, size distribution of Ued material from discharge was almost constant. Over bed temperature 85$0^{\circ}C$ and excess air 20% , the difference of combution efficiencies were little. It is estimate that the combustion condition In anthracite-bituminous coal blend combustion is suitable at the velocity 0.3m/s, bed temperature 85$0^{\circ}C$, the excess air 20%.

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