• 제목/요약/키워드: carbon-reduction

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LEAP 모형을 이용한 도로교통부문의 온실가스 감축잠재량 분석 - 저탄소차협력금제도, 연비강화, 운전행태개선을 중심으로 - (Analysis of GHG Reduction Potential on Road Transportation Sector using the LEAP Model - Low Carbon Car Collaboration Fund, Fuel Efficiency, Improving Driving Behavior -)

  • 김민욱;윤영중;한준;이화수;전의찬
    • 한국기후변화학회지
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    • 제7권1호
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    • pp.85-93
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    • 2016
  • This study the efficiency of greenhouse gas reduction of 'low carbon car collaboration fund' and its alternative 'control of average fuel efficiency and greenhouse gas', and 'improving driving behavior' were analyzed by using LEAP, long term energy analysis model. Total 4 scenarios were set, baseline scenario, without energy-saving activity, 'low carbon car collaboration fund' scenario, 'fuel efficiency improving scenario', and 'improving driving behavior' scenario. The contents of analysis were forecast of energy demand by scenario and application as well as reduction of greenhouse gas emission volume, and the period taken for analysis was every 1 year during 2015~2030. Baseline scenario, greenhouse gas emission volume in 2015 would be 7,935,697 M/T and 13,081,986 M/T in 2030, increased 64.8%. The analysis result was average annual increase rate of 3.4%. The expected average annual increase rate of other scenarios was, 'low carbon car collaboration fund' scenario 1.7%, 'fuel efficiency improving' scenario 3.0%. and 'improving driving behavior' scenario 3.4%. and these were each 1.7%, 0.3%. 0.3% reduce from baseline scenario. The largest reduction was 'low carbon car collaboration fund' scenario, and there after were 'fuel efficiency improving scenario', and 'improving driving behavior' scenario.

상세 공간단위 농업분야 온실가스 배출량 산정 방안 연구 (Estimating GHG Emissions from Agriculture at Detailed Spatial-scale in Geographical Unit)

  • 김솔희;전혜진;최지연;서일환;전정배;김태곤
    • 한국농공학회논문집
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    • 제65권5호
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    • pp.69-80
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    • 2023
  • Carbon neutrality in agriculture can be derived from systematic GHG reduction policies based on quantitative environmental impact analysis of GHG-emitting activities. This study is to explore how to advance the calculation of carbon emissions from agricultural activities to the detailed spatial level to a spatial Tier 3 level (Tier 2.5 level), methodologically beyond the Tier 2 approach. To estimate the GHG emissions beyond the Tier 2.5 level by region for detailed spatial units, we constructed available activity data on carbon emission impact factors such as rice cultivation, agricultural land use, and livestock. We also built and verified detailed data on emission activities at the field level through field surveys. The GHG emissions were estimated by applying the latest national emission factors and regional emission factors according to the IPCC 2019 GL based on the field-level activity data. This study has significance that it explored ways to build activity data and calculate GHG emissions through statistical data and field surveys based on parcels, one of the smallest spatial units for regional carbon reduction strategies. It is expected that by utilizing the activity data surveyed for each field and the emission factor considering the activity characteristics, it will be possible to improve the accuracy of GHG emission calculation and quantitatively evaluate the effect of applying reduction policies.

Silicon Carbide Coating on Graphite and Isotropic C/C Composite by Chemical Vapour Reaction

  • Manocha, L.M.;Patel, Bharat;Manocha, S.
    • Carbon letters
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    • 제8권2호
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    • pp.91-94
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    • 2007
  • The application of Carbon and graphite based materials in unprotected environment is limited to a temperature of $450^{\circ}C$ or so because of their susceptibility to oxidation at this temperature and higher. To over come these obstacles a low cost chemical vapour reaction process (CVR) was developed to give crystalline and high purity SiC coating on graphite and isotropic C/C composite. CVR is most effective carbothermal reduction method for conversation of a few micron of carbon layer to SiC. In the CVR method, a sic conversation layer is formed by reaction between carbon and gaseous reagent silicon monoxide at high temperature. Characterization of SiC coating was carried out using SEM. The other properties studied were hardness density and conversion efficiency.

생물학적 질소 제거공정에서 ORP 측정을 통한 외부탄소원의 자동 주입 제어 (Automatic Addition Control of the External Carbon Source by the Measurement of ORP in Biological Nitrogen Removal Process)

  • 신춘환
    • 한국환경과학회지
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    • 제21권3호
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    • pp.383-390
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    • 2012
  • For the cost-effective biological nitrogen removal (BNR) process whose characteristics of influent have low COD/N ratios, the automatic control system for the addition of external carbon based on oxidation-reduction potential (ORP) data in an anoxic reactor has been developed. In this study, it was carried out with a pilot-scale Bardenpho process which was consisted of anoxic 1, aerobic 1, aerobic 2, anoxic 2, aerobic 3 tank and clarifier. Firstly, the correlation coefficient ($R^2$) of the dosage of external carbon source and ORP value was about 0.97. Consequently, the automatic control system using ORP showed that the dosage of external carbon source was decreased by about 20% compared with a stable dosage of 75 mg/L based on the COD/N ratio of the anoxic influent.

Carbon bead-supported copper-dispersed carbon nanofibers: An efficient catalyst for wet air oxidation of industrial wastewater in a recycle flow reactor

  • Yadav, Ashish;Verma, Nishith
    • Journal of Industrial and Engineering Chemistry
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    • 제67권
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    • pp.448-460
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    • 2018
  • Copper nanoparticle-doped and graphitic carbon nanofibers-covered porous carbon beads were used as an efficient catalyst for treating synthetic phenolic water by catalytic wet air oxidation (CWAO) in a packed bed reactor over 10-30 bar and $180-230^{\circ}C$, with air and water flowing co-currently. A mathematical model based on reaction kinetics assuming degradation in both heterogeneous and homogeneous phases was developed to predict reduction in chemical oxygen demand (COD) under a continuous operation with recycle. The catalyst and process also showed complete COD reduction (>99%) without leaching of Cu against a high COD (~120,000 mg/L) containing industrial wastewater.

도시재생사업 적용에 따른 탄소저감 효과 - 전주TB지역을 대상으로 - (A Study on the Effect of the Urban Regeneration Project on the Reduction of Carbon Emission - A Case Study of Jeonju Test-Bed -)

  • 박기용;이상은;박희경
    • 대한토목학회논문집
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    • 제36권1호
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    • pp.65-74
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    • 2016
  • 본 연구는 도시 환경 개선을 위해 각광받고 있는 도시재생사업계획시 탄소저감 효과를 극대화하는 방법을 제시하는 데에 초점을 맞추며, 전주시 TB지역에서 논의되었던 실제 사업을 중심으로 실증코자 한다. 우선, 전주시의 구도심인 TB지역을 대상으로 문제점 및 잠재력을 분석하여, 이를 극복할 수 있는 가장 효율적이고 적합한 도시재생사업을 전략적으로 계획하였다. 그리고 각 사업별, 저감시나리오별 탄소 발생량 및 저감량을 분석하였다. 탄소배출원 분류는 IPCC에서 제시한 자료를 토대로 분류체계를 작성하였으며, 분석방법은 온실가스 배출량 산정 가이드라인을 통한 배출량 산정법, 기존 탄소 배출량 산정 결과를 바탕으로 한 Down-Scaling 산정법, 원단위를 활용한 배출량 산정법, 에너지 시뮬레이션을 통한 산정법(건축물 분야)을 서로 연개하여 탄소배출량을 분석하였다. 현황분석에서 대상지역의 탄소발생량은 102,149tCO2eq로 산정되었으며, 특히 '건축물' 부분의 배출 비중이 약 70%으로서, 도시재생사업시 건축물 분야에 집중하는 것이 탄소배출량 감소를 위해 효율적인 전략이라는 점을 알 수 있었다. 대상지역의 2020년의 탄소배출량은 2011년 대비 3,826tCo2eq 만큼 자연적으로 감소되는 것으로 예측되었다. 이는 상가 공실률 증가와 산업체 수 및 주거지역 인구수 감소에 기인한 것으로 판단된다. 이 대상지역에 대해 5개의 분야(도시환경, 토지이용, 녹색교통, 저탄소 에너지, 녹색건축물)에 걸쳐 도시재생 전략사업을 적용 하였을 경우 총 10,628tCO2eq 만큼이 저감되는 것으로 나타났으며, 건축물 부문에 한정하여 세부적인 사업계획을 세웠을 경우 탄소 저감량은 4,857tCO2로 15.47%의 저감효과가 있는 것으로 분석되었다. 또한, 도시재생에 따른 탄소저감량을 높이기 위해서 시나리오 A, B, C로 구분하여 각 사업별 목표치를 설정하여 예측한 결과, 시나리오 A가 약 5%, B가 11%, C가 15%로 분석되어 최소한 11% 이상의 목표를 달성하기 위해서는 시나리오 B를 도시재생 사업의 탄소저감 목표치로 설정하여 중장기 사업을 수립해야 한다는 것을 알게 되었다. 본 연구는 향후 정부 정책과 연계한 도시재생사업의 구체적인 계획 수립의 자료로 활용될 수 있을 뿐 아니라, 도시의 환경정비를 위한 재생의 이슈와 함께, 기후변화저감에 기여하기 위한 지역차원의 노력을 종합해 구체적인 실천방안을 제시했다는 점에서 큰 의의가 있다고 할 수 있다.

산소 환원 반응을 위한 탄소기반 Pt-Cu 합금의 높은 전기적 촉매 활성 (High Electrochemical Activity of Pt-Cu Alloy Support on Carbon for Oxygen Reduction Reaction)

  • 김한슬;류수착;이영욱;신태호
    • 한국수소및신에너지학회논문집
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    • 제30권6호
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    • pp.549-555
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    • 2019
  • Electrocatalysis of oxygen reduction reaction (ORR) using Pt nanoparticles or bimetal on carabon was studied. Currently, the best catalyst is platinum, which is a limited resource and expensive to commercialize. In this paper, we investigated the cheaper and more active electrocatalysts by making Pt nanoparticles and adding 3D transition metal such as copper. Electrocatalysts were obtained by chemical reduction based on ethylene glycol solutions. Elemental analysis and particle size were confirmed by XRD and TEM. The electrochemical surface area (ECSA) and activity of the catalyst were determined by electrochemical techniques such as cyclic voltammetry and linear sweep voltammetry method. The commercialized Pt support on carbon (Pt/C, JM), synthesis Pt/C and synthesis Pt3Cu1 alloy nanoparticles supported on carbon were compared. We confirmed that the synthesized Pt3-Cu1/C has high electrochemical performance than commercial Pt/C. It is expected to develop an electrocatalyst with high activity at low price by increasing the oxygen reduction reaction rate of the fuel cell.

탄소강재(炭素鋼材)의 작은 표면결함(表面缺陷)에서 성장(成長)하는 표면피로(表面疲勞)균열의 성장특성(成長特性)에 관한 연구(硏究) (A Study on Growth Characteristics of the Surface Fatigue Crack Propagated from a Small Surface Defect in Carbon Steels)

  • 서창민;강용구
    • 대한조선학회지
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    • 제21권1호
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    • pp.35-42
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    • 1984
  • In the present study, rotating bending fatigue tests have been carried out in three kinds of carbon steel specimens; an annealed low carbon steel, an annealed high carbon steel and quenched-tempered high carbon steel; with a small artificial surface defect that might exist in real structures. Fatigue crack lengths have been observed by a method of replication in order to investigate the growth characteristic of fatigue crack in the viewpoints of strength of materials and fracture mechanics. The main results obtained are as follows: 1) The effect of a small surface defect upon the reduction of fatigue limit is considerably large, and the rate of fatigue limit reduction grows in the following order; annealed low carbon steel(mild steel), annealed high carbon steel, quenched-tempered high carbon steel. 2) When the growth rate of surface crack length(2a) was investigated in the viewpoints of fracture mechanics based upon $ ${\Delta}K_{\varepsilon}$, the dependence of stress level and of surface defect size disappear, and there exists a linear relationships between d(2a)/dN and ${\Delta}K_{{\varepsilon}t},\;\Delta_{{\varepsilon}t}\sqrt{{\pi}a}$, on log. plot, i.e, $d(2a)/dN={C{\cdot}{\Delta}K_{\varepsilon}}^3_t$, where ${\Delta}_{{\varepsilon}t}\sqrt{{\pi}a}$ a is the cyclic total strain intensity factor range.

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DME 예혼합 압축착화 엔진에서 질소와 이산화탄소의 영향 (Effect of Nitrogen and Carbon Dioxide on DME Homogeneous Charge Compression Ignition Engine)

  • 장진영;배충식
    • 한국자동차공학회논문집
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    • 제16권5호
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    • pp.171-178
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    • 2008
  • The combustion and exhaust emission characteristics were investigated in an DME fueled HCCI engine. Carbon dioxide, nitrogen and mixed gas, which was composed of carbon dioxide and nitrogen, were used as control parameters of combustion and exhaust emission. As the oxygen concentration in induction air, which was occurred by carbon dioxide, nitrogen and mixed gas, was reduced, the start of auto-ignition was retarded and the burn duration was extended due to obstruction of combustion and reduction of combustion temperature. Due to these fact, indicated mean effective pressure was increased and indicated combustion efficiency was decreased by carbon dioxide, nitrogen and mixed gas. In case of exhaust emission, hydrocarbon and carbon monoxide was increased by reduction of oxygen concentration in induction air. Especially, partial burning was appeared at lower than about 18% of oxygen concentration by supplying carbon dioxide. However it was overcome by intake air heating.