• 제목/요약/키워드: carbon emission reduction effect

검색결과 128건 처리시간 0.024초

현지개량형 주거지 재생의 탄소저감 효과 분석 (A Study on Carbon Reduction Effect in On-site Improvement Type Residential Regeneration)

  • 김영환;박상준
    • 한국산학기술학회논문지
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    • 제14권3호
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    • pp.1495-1501
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    • 2013
  • 본 연구는 탄소저감과 관련하여 그 동안 진행되어온 도시 단위의 저탄소형 신도시 개발 혹은 기성 시가지에서의 전면철거형 정비방식에서 탈피하여 현지개량방식에 의한 주거지 재생의 탄소저감 효과를 분석하기 위한 것이다. 이를 위해 기존 문헌조사 및 국내 외 사례연구를 통해 탄소저감을 위한 기술적 계획요소들을 도출한 후, 사례 대상지인 청주시 탑2정비구역을 대상으로 관련자료를 수집하여 에너지 소비량 기반의 탄소배출량을 산출하였다. 이 후 탄소배출량 산출기준을 이용하여 기존 대상지역의 탄소발생량과 기 계획된 전면철거방식의 공동주택개발에 따른 탄소발생량을 산출하고, 새롭게 제안된 현지개량방식의 저탄소 지향형 개발에 따른 탄소발생량을 산출하여 상호 비교분석을 실시하였다. 이를 통해 현지개량방식의 저탄소 지향형 주거지 재생이 기존의 전면철거방식의 공동주택 재개발에 비해 탄소를 저감시킬 수 있는 효과적인 방안임을 확인하였다.

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.

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.

A Case Study to Estimate the Greenhouse-Gas Mitigation Potential on Rice Production System in Farming without Agricultural Chemicals

  • Lee, Jong-Sik;Ryu, Jong-Hee;Jeong, Hyun-Cheol;Choi, Eun-Jung;Kim, Gun-Yeob
    • 한국토양비료학회지
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    • 제47권5호
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    • pp.374-380
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    • 2014
  • To estimate greenhouse gas (GHG) emission, the inventory of rice cultivation at the farming without agricultural chemicals was established from farmers in Gunsan, Jeonbuk province in 2011~2012. The objectives of this study were to calculate carbon footprint and analyse the major factor of GHGs. To do this, we carried out a sensitivity analysis using the analyzed main factors of GHGs and estimated the mitigation potential of GHGs. Also we suggested agricultural methods to reduce GHGs that can be appled by farmers at this region. At the farming system without agricultural chemicals, carbon footprint of rice production unit of 1 kg was 2.15 kg $CO_2.-eq.kg^{-1}$. Although the amount of carbon dioxide ($CO_2$) emission was the largest among GHGs, methane ($CH_4$) emission had the highest contribution to carbon footprint on rice production system when it was converted to carbon dioxide equivalent ($CO_2-eq.$) multiplied by the global warming potential (GWP). Main source of $CO_2$ emission in the rice farming system without agricultural chemicals was combustion of fossil fuels used by agricultural machinery. Most of the $CH_4$ was emitted during rice cultivation practice and its major emission factor was flooded paddy field in anaerobic condition. Also, most of the $N_2O$ was emitted from rice cultivation process. Major sources of the $N_2O$ emission was application of fertilizer such as compound fertilizer. As a result of sensitivity analysis in energy consumption, diesel had the highest sensitivity among the energy inputs. With the reduction of diesel consumption by 10%, it was estimated that $CO_2$ potential reduction was about 2.0%. With reducing application rate of compound fertilizer by 10%, the potential reduction was calculated that $CO_2$ and $N_2O$ could be reduced by 0.5% and 0.9%, respectively. At the condition of 10% reduction of silicate and compost, $CO_2$ and $CH_4$ could be reduced by 1.5% and 1.6%, respectively. With 8 days more drainage than the ordinary practice, $CH_4$ emission could be reduced by about 4.5%. Drainage and diesel consumption were the main sources having the largest effect on the GHG reduction at the farming system without agricultural chemicals. Based on the above results, we suggest that no-tillage and midsummer drainage could be a method to decrease GHG emissions from rice production system.

가솔린 엔진(3.8L)에서 바이오에탄올 혼합연료의 성능 및 배출특성에 관한 연구 (A Study on Engine Performance and Exhaust Emission Characteristics of Gasoline Engine using Bio-ethanol Blended Fuel)

  • 이치우
    • 한국기계가공학회지
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    • 제11권4호
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    • pp.131-137
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    • 2012
  • This article is about using the fuel mixed with 10% and 20% bio-ethanol to gasoline for the engine as a way to reduce carbon emission before commercializing future automobiles like fuel cell cars. The fuel mixed with 10% and 20% bio-ethanol showed output equivalent to that of the previous gasoline fuel. CO and $CO_2$ emission was somewhat reduced, but the difference was not significant. And the consumption of the fuel increased slightly. However, bio-ethanol is produced from bio mass growing with the absorption of carbon dioxide, so the total amount of carbon dioxide did not increase according to the result. In NOx, as the use of ethanol increases, the effect of reduction gets greater, and the emission of oxygen showed almost no change compared with gasoline.

저탄소 운항절차에 따른 연료절감 효과분석 (An analysis of the fuel saving effect during low carbon flight procedures)

  • 김용석;이주형
    • 한국항공운항학회지
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    • 제21권1호
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    • pp.39-44
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    • 2013
  • The amount of greenhouse gas (GHG) emissions has been increasing steadily over the last 4 years, averaging 6.8 percent a year, due to the growth of low cost carriers and the increased demand for air transportations. For the aviation GHG reduction, various fuel saving activities are implemented in many areas such as high-efficiency aircraft and bio-fuel development in the technical part and low carbon flight procedures, short cut route development in the operational approach. Among the various reduction technologies, we focused on low carbon flight procedures that are crucial to GHG reduciton and suggested a reduction effect according to target implementation rate using by fuel saving estimation data in each aircraft type.

국내 제조업 집적이 탄소 배출 강도에 미치는 영향: 공간패널회귀모형의 적용 (A Study on Manufacturing Aggregation And Carbon Emission Intensity: Application of Spatial Panel Regression )

  • 오진;김현중
    • 무역학회지
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    • 제47권3호
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    • pp.157-175
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    • 2022
  • This study calculates agglomeration indices of manufacturing specialization and diversification in different regions of South Korea. Two types of agglomeration indices are introduced into the spatial durbin model (SDM) to analyzes the effects of manufacturing agglomeration in Korea on CO2 emission intensity. The subjects of this study are 17 regions of South Korea , and the research period is from 2013 to 2019. This study also uses partial differential to analyze the direct and spillover effect of specialization and diversification agglomeration on CO2 emission intensity. From the perspective of direct effect, the results reveal that specialization agglomeration is an important factor contributing to Korea's CO2 emissions. However, diversification agglomeration has an obvious CO2 emission reduction effect. From the perspective of spillover effect, this study finds that specialization agglomeration in one region can also contribute to CO2 emissions in nearby regions. However, the development of diversification agglomeration in one region can have CO2 emission reduction spillover effect on neighboring regions.

고추의 무경운 재배에 따른 탄소저감효과 분석 (Analysis of Consumption of Homemade Organically Processed Food Analysis of The Carbon Emission Reduction Effect from No-Tillage in Pepper (Capsicum annuum L.) Cultivation)

  • 이길재;최윤실;양승구;이진홍;윤성이
    • 한국유기농업학회지
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    • 제20권4호
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    • pp.503-518
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    • 2012
  • 본 연구에 적용된 한국형 무경운(no-tillage)농법은 한국의 기상특성 및 농업현실에 맞도록 초기 두둑을 형성한 후 이를 지속적으로 재활용하는 방식을 적용하였다. 한국형 무경운 농법은 생산량 저하 등 부정적인 영향이 거의 없는 것으로 보고되었으며 경운작업 등 농자재사용은 크게 절감되는 효과로 인하여 에너지 및 농자재 비용의 절감과 노동시간 단축 등 긍정적인 효과가 높은 것으로 보고되었다(Yang et al., 2012). 무경운농법에 의한 고추재배는 일반적인 고추재배 방식과(국가평균) 비교하여 10a ($1,000m^2$)당 $344.7kgCO_2$(58%)의 온실가스저감 효과를 갖는 것으로 분석되었다. 이 중 비료절감에 의한 직-간접효과가 92%, 에너지사용 절감에 의한 효과는 44%로 높은 탄소저감효과를 나타내었다. 또한, 무경운농법의 직접적인 효과에 부가하여 무경운방식의 토양관리는 일반적으로 시간이 흐를수록 토양의 탄소격리 효과가(carbon sequestration effect) 높아지는 특징을 갖고 있기 때문에 연속적인 무경운농법을 수행할 경우 연구대상지의 지속적인 탄소저감 효과가 기대된다. 본 연구의 결과를 바탕으로 한국형 무경운농법은 농업부문 국가온실가스 저감목표 달성을 위한 주요한 녹색농업기술(agro-green technologies)로서 역할을 수행할 것으로 기대되며, 관련기술의 보급 및 확대를 위한 국가적 차원의 노력이 절실히 요구된다.

주행패턴의 상대 가속도에 따른 중소형 자동차의 온실가스 및 대기오염물질 배출 특성 (Greenhouse Gas and Pollutant Emission from Light-Duty Vehicles Regarding the Relative Positive Acceleration)

  • 이태우;길지훈;박경균;박준홍;박용희;홍지형;이대엽
    • 한국자동차공학회논문집
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    • 제18권4호
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    • pp.31-39
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    • 2010
  • Although driving patterns strongly influence greenhouse gas and air pollutant emission rate from light duty vehicles, emission measurements have been mainly based on chassis dynamometer testing with one standard driving pattern. And there has been limited work on quantifying the independent effect of driving parameters on emission rate because of multidimensional nature of real-world driving pattern. The objective of this study is to obtain the quantitative effect of relative positive acceleration (RPA) on vehicle emission rate. RPA has been used to define the occurrence of acceleration demanding large amounts of power in certain driving distance and shown to be a significant affecting parameter for real-world emission rate. 40 driving patterns have been developed with fixed driving parameters to investigate independent effect of RPA. For the same values of average vehicle speed and power, the trend in carbon dioxide emission rate and fuel consumption with respect to RPA is very clear. Emission rate of nitrogen oxide and particulate matter also increase with respect to RPA, but the trend is less clear. Carbon dioxide emission from diesel vehicle appear to be more affected by high accelerations compared to that from gasoline vehicle because of high intake air restriction during acceleration caused by turbocharger and intercooler. The results have implications for the possible reduction of environmental effects through better traffic planning and management, driver education and car design.

디젤기관에서 CNG혼소에 의한 배출가스 저감에 관한 실험적 연구 (An Experimental Study on the Emission Reduction of Duel-Fuel Engine by CNG)

  • 한영출;엄명도;오용석;이성욱
    • 한국자동차공학회논문집
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    • 제5권5호
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    • pp.213-218
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    • 1997
  • CNG dual fuel engine for heavy duty diesel engine has been equipped to a Korean bus engine and tested to compare th engine performance and the emission characteristics with the existing diesel fueled engine. The results are summarized as follows. Diesel fueled engine has the fuel injection timing of BTDC17°. The injection timing of CNG modified engine is retarded to BTDC14° for reduction of NOx. Performance optimization has been carried out to have engine power equivalent to or better than the diesel fueled engine. Smoke is decreased by 85% by Korean smoke 3 mode test. By 6 mode test CO is increased by 313% and THC is increased by 1407%. NOx is decreased by 27%. Even though THC is increased very much, it's not too serious problem since CO and THC emission of diesel engine are very little compared to gasoline engine and THC don't give bad effect on human health. But the reduction technologies of CO and THC need to be considered.

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