• 제목/요약/키워드: Coke oven emission

검색결과 5건 처리시간 0.019초

코크스제조공정에서 탄화시간과 시료채취방법에 따른 다핵방향족탄화수소 발생에 관한 연구 (A Study on Polynuclear Aromatic Hydrocarbons Emitted by Coking Time and Sampling Method in a Coke Oven Plant)

  • 윤충식;백남원
    • 한국산업보건학회지
    • /
    • 제3권1호
    • /
    • pp.37-53
    • /
    • 1993
  • The polynuclear hydrocarbons (PAHs) emitted from coke oven standpipe were sampled using three sampling systems, including glass fiber filter+silver membrane filter, glass fiber filter+silver membrane filter+XAD-2 adsorbent tube, PTFE membrane filter+XAD-2 adsorbent tube, extracted by methylene chloride and analysed by gas chromathography using flame ionization detector. The results of this study were as follows. 1. Because the amounts of coke oven emissions(COE) were large, the analyses of PAHs were simple and possible without evaporation and concentration. Although the generation of COE was high during early stage of coking, the airborne concentration of PAHs was low and increased during late coking. 2. The contents of PAHs in COE were 1.35-2.81%. 3. The index components of PAHs were fluoranthene and pyrene. Their correlation coefficient to total PAHs were 0.96, 0.95, respectively. 4. The particulate PAHs were sampled by filter and gaseous PAHs by adsorbent tube. The collection efficiency of glass fiber filter+silver membrane filter was 20% of total amount sampled by filters+adsorbent and PTFE membrane filter 50%. Adsorbent tube must be attached to the filter to collect light and small PAH components. 5. The generation of acenaphthene and indeno (1,2,3-cd) pyrene were low and concentrations of fluorene and anthracene were $20-40ug/m^3$ throughout coking time. Other PAH eoncentrations were sometimes high. The generation of PAHs was low at 4-6 hours of coking time. The gaseous PAHs were generated earlier than particulate PAHs.

  • PDF

로터리 킬른용 Low-NOx 다공노즐버너 개발을 위한 수치해석적 연구 (Numerical Study to Develop Low-NOx Multi-nozzle Burner in Rotary Kiln)

  • 안석기;김진호;황민영;김규보;전충환
    • 에너지공학
    • /
    • 제23권4호
    • /
    • pp.130-140
    • /
    • 2014
  • 공정효율 및 배기배출물 개선을 위해 로터리 킬른 버너 개발에 대한 연구는 지속적으로 이루어져 왔다. 본 연구에서는 COG(Coke Oven Gas)를 연료로 사용하는 철광석 소결용 로터리 킬른의 다공노즐버너 개발을 위해 일차공기 노즐 직경, 버너 당량비, 버너 중앙노즐과 주위노즐의 당량비 변화에 따른 화염 및 배기배출 특성에 대한 수치해석 연구를 수행하였다. 일차공기 노즐 직경이 증가함에 따라 각 동일 당량비에서 화염길이는 길어지고 $NO_x$ 배출도 증가하였으며, 버너 당량비가 증가함에 따라 화염길이와 $NO_x$ 배출이 증가하는 결과를 보였다. 버너 중앙노즐의 당량비 변화에 따라 $NO_x$ 배출에는 차이를 보였으며, 화염길이 및 킬른 내부 온도에는 큰 차이가 없었다. 본 연구를 통해 $D_2/D_1$가 1.33, 버너 당량비가 1.25이고 버너 중앙 노즐이 Rich인 조건이 킬른 내부 온도분포 및 $NO_x$ 배출량 기준을 만족하는 적절한 설계조건임을 제시하였다.

제철소 코크스 오븐 가스 부생수소 전과정 온실가스 배출량 분석 (Life Cycle Analysis of Greenhouse Gas Emissions of By-Product Hydrogen Produced from Coke Oven Gas in Steel Mill)

  • 이예임;신우재;유예진;송한호
    • 한국수소및신에너지학회논문집
    • /
    • 제33권6호
    • /
    • pp.636-642
    • /
    • 2022
  • The "Hydrogen Economic Activation Road map" was announced in 2019, and hydrogen demand is expected to exceed 470,000 tons per year in 2022 and keep increasing. Under this circumstance, it has become important to understand the greenhouse gas (GHG) emissions associated with various hydrogen production pathways. In this study, the evaluation of life cycle GHG emissions regarding the hydrogen produced as by-product from coke oven gas (COG) in steel mill is conducted. To cover the possible range of operations, three literatures were reviewed and their data of inputs and outputs for the process were adopted for calculation. Life cycle inventories and emission factors were mostly referred to GaBi and Intergovernmental Panel on Climate Change (IPCC) guidelines, respectively. When there are multiple products from a single process, the energy allocation method was applied. Based on these sources and the assumptions, the life cycle emission values of COG-based hydrogen were found to be 3.8 to 4.7 kg/CO2-eq./kg-H2.

코크스오븐가스 기반 천연가스, 바이오가스가 혼합된 연료의 가압 수증기 개질 반응에 관한 연구 (Study on the Pressurized Steam Reforming of Natural Gas and Biogas Mixed Cokes Oven Gas)

  • 전형준;한광우;배중면
    • 한국수소및신에너지학회논문집
    • /
    • 제30권2호
    • /
    • pp.111-118
    • /
    • 2019
  • Greenhouse gas emissions have a profound effect on global warming. Various environmental regulations have been introduced to reduce the emissions. The largest amount of greenhouse gases, including carbon dioxide, is produced in the steel industry. To decrease carbon dioxide emission, hydrogen-based iron oxide reduction, which can replace carbon-based reduction has received a great attention. Iron production generates various by-product gases, such as cokes oven gas (COG), blast furnace gas (BFG), and Linz-Donawitz gas (LDG). In particular, COG, due to its high concentrations of hydrogen and methane, can be reformed to become a major source of hydrogen for reducing iron oxide. Nevertheless, continuous COG cannot be supplied under actual operation condition of steel industry. To solve this problem, this study proposed to use two alternative COG-based fuel mixtures; one with natural gas and the other with biogas. Reforming study on two types of mixed gas were carried out to evaluate catalyst performance under a variety of operating conditions. In addition, methane conversion and product composition were investigated both theoretically and experimentally.

철강 산업의 산업공정부문 CO2 실측 배출계수 산정에 관한 연구 (An Estimation of Plant Specific Emission Factors for CO2 in Iron and Steel Industry)

  • 엄윤성;홍지형;김정수;김대곤;이수빈;송형도;이성호
    • 한국대기환경학회지
    • /
    • 제23권1호
    • /
    • pp.50-63
    • /
    • 2007
  • The development of domestic plant specific emission factors is very important to estimate reliable national emissions management. This study, for the reason, was carried out to obtain advances emission factor for Carbon Dioxide ($CO_2$) by source-specific emission tests from the iron and steel industry sector which is well known as one of the major sources of greenhouse gases ($CO_2$). Emission factors estimated in this study were compared with those of IPCC for evaluation and they were found to be of similar level in the case of $CO_2$. There was no good information available on $CO_2$ plant specific emission factors from the iron and steel industry in Korea so far. The major emission sources of $CO_2$ examined from the iron and steel manufacturing precesses were a hot blast stove, coke oven, sintering furnace, electric arc furnace, heating furnace, and so on. In this study, the concentration of $CO_2$ from the hot blast stove process was the highest among all processes. The $CO_2$ emission factors for a ton of Steel and Iron products (using B-C oil) were estimated to be 0.315 $CO_2$ tonne (by Tier 3 method) and 4.89 $CO_2$ tonne. In addition, emission factor of $CO_2$ for heating furnace process was the highest among all process. Emission factors estimated in this study were compared with those of IPCC for evaluation and they were found to be of similar level in the case of $CO_2$.