• Title/Summary/Keyword: Carbon Emission Analysis

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Analysis of Spatial Patterns and Estimation of Carbon Emissions in Deforestation using GIS and Administrative Data (GIS와 행정정보를 이용한 교토의정서 제3조 3항 산림전용지의 공간패턴 및 탄소배출량 분석)

  • Lee, Jung-Soo;Park, Dong-Hwan
    • Journal of Forest and Environmental Science
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    • v.27 no.1
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    • pp.39-46
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    • 2011
  • This study purposed to analyze the spatial pattern and the amount of carbon emission at the deforestation area in Gangwondo. Forest geographic information system(FGIS) and administrative data were used in the analysis. The area size and spatial patterns of deforestation area were analyzed according to the article 3.3 of Kyoto protocol. Forest administration data for 9 years from 2000 to 2008 were entered into a database. Fifty-nine percent of deforestation area was found within 200m of the road network, and seventy-five percent of the area was found within 500m. Theoretical carbon emission based on deforestation area was estimated at 6,968tc. Carbon emission of national forest was 5.7times higher than that of private forest.

Decomposition Analysis of Carbon Emission in Korea Electricity Industry : Utilizing the Logarithmic Mean Divisia Index Method to the Demand and the Supply Side (국내 전력산업의 탄소배출 변화요인 분석 : 로그평균디비지아지수를 이용한 수요와 공급 측면 분석)

  • Kim, Kyunam;Kim, Kangseok;Kim, Yeonbae
    • Environmental and Resource Economics Review
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    • v.19 no.2
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    • pp.243-282
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    • 2010
  • In this paper, we analyze the components and trends of carbon emissions using the Logarithmic Mean Divisia Index decomposition method in Korean electricity industry during the period 1991~2007. In the demand side, carbon emissions are affected by electricity intensity and structural shift and especially electricity intensity is identified as the major factor which has lead carbon emissions decreasing. In the supply side, the result in variations of carbon emission for electric power generation depends on the influences of fossil fuel mix, fuel intensity, generation mix and so on. As a result fuel intensity is the most negative effect on both carbon emission intensity and the amount of carbon emission while the change of generation mix has a positive effect on increasing carbon emissions. And to conclude it needs to make the strategic policies to improve electricity intensity in the demand and to rise emission efficiency as well as to substitute thermal power generation in supply side.

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Analysis on the Energy and GHG Emissions Reduction Effect of Old Public Health Centers through Green-remodeling (노후 보건소의 그린리모델링을 통한 에너지 및 탄소배출 저감효과 분석)

  • Jeong-Heum Cho;Jinhwan Oh;Yeonju Kang;Yujin Nam
    • Journal of the Korean Society for Geothermal and Hydrothermal Energy
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    • v.19 no.4
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    • pp.18-26
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    • 2023
  • Green-remodeling is to improve the energy performance of existing buildings that have been aged for more than 15 years since completion. In order to achieve the national greenhouse gas emission reduction plan in the building sector, it is necessary to analyze the carbon reduction effect by considering the internal carbon emissions that may occur during green-remodeling of old buildings. This study analyzed the effects of energy reduction and carbon emission reduction when green-remodeling was applied to old health centers constructed in 1992. When applying green-remodeling, the carbon emission reduction effect considered the embodied carbon emission of the improvement items and the carbon emission at the building operation stage. When applying green-remodeling to existing buildings, energy consumption was reduced by 39.3%, and carbon emissions were reduced by 48.9% after 27 years of green-remodeling. In order to reduce carbon emissions, it was important to apply a renewable system as an item to improve the performance of green-remodeling. In particular, it was confirmed that it is very important to consider the photovoltaic system as a top priority for the carbon emission reduction.

Quantification of Carbon Reduction Effects of Domestic Wood Products for Valuation of Public Benefit

  • Chang, Yoon-Seong;Kim, Sejong;Kim, Kwang-Mo;Yeo, Hwanmyeong;Shim, Kug-Bo
    • Journal of the Korean Wood Science and Technology
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    • v.46 no.2
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    • pp.202-210
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    • 2018
  • This study was carried out to quantify degree of contribution of harvested wood product (HWP) on mitigation of climate change by valuation of public benefits, environmentally and economically. The potential carbon dioxide emission reduction of HWP was estimated by accounting carbon storage effect and substitution effect. Based on 2014 statistics of Korea Forest Service, domestic HWPs were sorted by two categories, such as wood products produced domestically from domestic and imported roundwood. The wood products were divided into seven items; sawnwood, plywood, particle board, fiberboard (MDF), paper (including pulp), biomass (wood pellet) and other products. The carbon stock of wood products and substitution effects during manufacturing process was evaluated by items. Based on the relevant carbon emission factor and life cycle analysis, the amount of carbon dioxide emission per unit volume on HWP was quantified. The amounts of carbon stock of HWP produced from domestic and from imported roundwood were 3.8 million $tCO_{2eq}$., and 2.6 million $tCO_{2eq}$., respectively. Also, each reduction of carbon emission by substitution effect of HWP produced from domestic and imported roundwood was 3.1 million $tCO_{2eq}$. and 2.1 million $tCO_{2eq}$., respectively. The results of this study, the amount of carbon emission reduction of HWP, can be effectively used as a basic data for promotion of wood utilization to revise and establish new wood utilization promotion policy such as 'forest carbon offset scheme', and 'carbon storage labeling system of HWP'.

Assessing the Contribution of Food Donation to GHG Reduction: Insights for Sustainable Business Practices

  • Yeon A HONG;Chanmi YUN;Jungwook AHN
    • Asian Journal of Business Environment
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    • v.14 no.4
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    • pp.41-52
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    • 2024
  • This study aims to assess the contribution of food donation to GHG (Greenhouse Gas) reduction to provide insights for sustainable business practices. We measure the effect of carbon emission reduction by avoiding the disposal of fresh and processed food donated through food banks and preventing additional fresh and processed food that would have been produced and grown without the donation. The analysis uses data on the quantity and donation value of 24,627 fresh and 733,222 processed food items donated by food banks in 2022. The result shows that the effect of carbon emission reduction through food bank donations of fresh food totaled 3,081 tons CO2-eq, and the impact of carbon emission reduction through those of processed food totaled 65,103 tons CO2-eq. As the socio-economic costs of food waste in Korea are increasing, redistributing surplus food products to the socially vulnerable is expected to become a representative alternative to reducing food waste.

Development of Life Cycle Carbon Emission Analysis for optimal low-carbon design of water distribution system (상수관망 저탄소 최적 설계를 위한 Life Cycle Carbon Emission Analysis의 개발)

  • Ryu, Yong Min;Lee, Eui Hoon
    • Journal of Korea Water Resources Association
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    • v.57 no.10
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    • pp.711-723
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    • 2024
  • Water distribution systems are important large-scale social infrastructure facilities for maintaining human society. Large-scale social infrastructure facilities are increasing due to urbanization and industrialization. However, one of the problems caused by the progress of urbanization and industrialization is carbon dioxide (CO2) emissions. In this study, a Life Cycle Carbon Emission Analysis (LCCEA) model was proposed to analyze the amount of CO2 generated during the life cycle of water distribution systems, such as installation, maintenance, and repair. Based on the proposed LCCEA model, low-carbon optimal design was performed and compared with cost-optimal design. As a result of applying the LCCEA model to domestic and international water distribution systems, the low-carbon optimal design showed a decrease in total and annual CO2 emissions compared to the cost-optimal design. In addition, when CO2 emissions were converted to costs and compared, the low-carbon optimal design showed better results in terms of cost. The LCCEA model can be applied to various water distribution systems as well as domestic and international water supply networks used in this study, and it will show good results in the design and operation of water distribution systems.

Design and Development of Carbon Emission Monitoring System in Sejong City, Korea (세종시 탄소배출 모니터링시스템(CEMS)의 설계)

  • Leem, Yountaik
    • The Journal of the Korea Contents Association
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    • v.14 no.2
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    • pp.482-493
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    • 2014
  • Many kinds of carbon emission monitoring systems or integrated systems have been developed so far. However, despite of the development of related techniques, they tend to be lack of statistic processing functions for feedback and policy-making data for users. In this study, a new CEMS (Carbon Emission Monitoring System) has been suggested and implemented in Sejong City, Korea. This system adapted automatic remote reading system from the site management agency as data hub to collect the electricity, gas and water usage of each household. The CEMS is consisted of 6 parts; carbon emission measurement, carbon emission standard setup and management, statistic analysis and the incentives. CEMS is distinguished with other systems for its UIs for users and the administrators. Also, data sharing with urban information system(UIS) of local government to produce information for users and policy-makers. This system makes it possible to investigate the change of energy consumption patterns, especially depending on the family structure and the housing characteristics. Furthermore, analyzing their correlation with carbon emission, it is expected to provide basic data used to establish urban environmental policies.

Design of a Logistics Decision Support System for Transportation Mode Selection considering Carbon Emission Cost (탄소배출비용을 고려한 물류의 최적 운송수단 의사결정 시스템 설계)

  • Song, Byung-Jun;Koo, Je-Kwon;Song, Sang-Hwa;Lee, Jong-Yun
    • The KIPS Transactions:PartD
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    • v.18D no.5
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    • pp.371-384
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    • 2011
  • This paper considers logistics decision support system which deals with transportation mode selection considering transportation and carbon emission cost. Transportation and carbon emission costs vary with the choice of transportation modes and to become competitive companies need to find proper transportation modes for their logistics services. However, due to the restricted capacity of transportation modes, it is difficult to balance transportation and carbon emission costs when designing logistics network including transportation mode choice for each service. Therefore this paper aims to analyze the trade-off relationship between transportation and carbon emission cost in mode selection of intermodal transportation and to provide optimal green logistics strategy. In this paper, the logistics decision support system is designed based on mixed integer programming model. To understand the trade-off relationship of transportation and carbon emission cost, the system is tested with various scenarios including transportation of containers between Seoul and Busan. The analysis results show that, even though sea transportation combined with trucking is competitive in carbon emission per unit distance travelled, the total cost of carbon emission and transportation for the sea transportation may not have competitive advantage over other transportation modes including rail and truck transportation modes. The sea-based intermodal logistics service may induce detours which have negative impacts on the overall carbon emission. The proposed logistics decision support system is expected to play key role in green logistics and supply chain management.

The Effect Analysis of Reducing Carbon Emission by Design Parameter Change and Material Properties (변수 변경 및 재료적 특성에 따른 철골 구조물의 탄소 배출량 절감 효과 분석)

  • Song, Chang-Hyun;Jang, Arum;Ju, Young K.
    • Journal of Korean Association for Spatial Structures
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    • v.23 no.3
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    • pp.105-113
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    • 2023
  • The study used the whole-life carbon assessment method to conduct a thorough carbon-neutral evaluation of a standard steel structure. To further assess carbon emissions, 11 design-changed models were evaluated, with changes made to the span between beams and columns. The results of the carbon emission assessment showed savings of approximately 13.1% by implementing the stage of the beyond life cycle. Additionally, the evaluation of carbon emissions through design changes revealed a difference of up to 42.2%. These findings confirmed that recycling and structural design changes can significantly reduce carbon emissions by up to 48.6%, making it an effective means of achieving carbon neutrality. It is therefore necessary to apply the stage of beyond life cycle and structural change to reduce carbon emissions.

Analysis of Cast Iron by Glow Discharge Emission Spectrometry (글로우 방전/방출분광분석법에 의한 주철시료의 분석)

  • Cho, K.H.;Woo, J.C.;Han, M.S.
    • Analytical Science and Technology
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    • v.6 no.3
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    • pp.297-305
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    • 1993
  • Generally, it is difficult to analyze cast iron samples with spark discharge emission spectrometry since the content of carbon in these samples is high as a few percent. The cast iron samples were analyzed with the developed glow discharge emission spectrometer composed of glow discharge emission source and polychromator. The discharge condition of glow discharge lamp(GDL) has been optimized by variation of Ar gas pressure, discharge voltage and discharge time. Under the optimum conditions obtained in this work, relationships between the measured emission intensities and concentration of two types of cast iron standard samples(BAS, LECO) were investigated. Most of elements(Mn, Si, P, S etc.) showed the good linearity in one calibration curve. And the carbon showed slightly the systematic difference according to the type of standard samples.

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