• Title/Summary/Keyword: national greenhouse gas inventory

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Estimation of greenhouse gas emissions from an underground wastewater treatment plant

  • Kyung, Daeseung;Jung, Da-Yoon;Lim, Seong-Rin
    • Membrane and Water Treatment
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    • v.11 no.3
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    • pp.173-177
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    • 2020
  • Wastewater treatment plants (WWTPs) have been recognized as one of the significant greenhouse gas (GHG) generators, due to the complex biochemical reaction and huge consumption of energy and materials. Recently, WWTPs have been built underground and they will be confronted with the challenges of mitigating GHG emissions and improving the quality of treated wastewater. Here, we focus on estimating GHG emissions to set up effective management plans for a WWTP built underground. First, we apply the process-based life cycle assessment (LCA) with an inventory database of the underground WWTP for a case study. Then, we identify significant factors affecting GHG emissions during service life using sensitivity analysis and suggest the proper tactics that could properly reduce GHG emissions from the WWTP.

Quality Improvement of Greenhouse Gas Inventories by the Use of Bottom-Up Data (상향식 자료를 이용한 온실가스 인벤토리의 품질 개선 방향 - 화학, 금속 분야를 중심으로 -)

  • Choi, Eunhwa;Shin, Eunseop;Yi, Seung-Muk
    • Journal of Korean Society for Atmospheric Environment
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    • v.30 no.2
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    • pp.161-174
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    • 2014
  • The methodology report '2006 IPCC Guidelines for National Greenhouse Gas Inventories' shows higher tier method can be a good practice, which uses country-specific or plant-specific data when calculating greenhouse gas emissions by country. We review the methodology report to present principles of using plant-level data and also examine examples of using plant-level data in chemical and metal industry in 20 countries for the purpose of quality improvement of national greenhouse gas inventories. We propose that Korea consider utilizing plant-level data, as reported according to 'Greenhouse gas and Energy Target Management Scheme', in the following order as a preference. First, the data can be utilized for quality control of Korea's own parameters, when Tier 2 method is adopted and bottom-up approach is not applicable. Second, both plant-level data and IPCC default data can be used together, combining Tier 1 method with Tier 3 method. Third, we can also use acquired plant-level data and country specific parameters, combining Tier 2 method with Tier 3 method. Fourth, if the plant-level data involves all categories of emissions and the data is proven to be representative, we can apply Tier 3 method. In this case, we still need to examine the data to check its reliability by a consistent framework, including appropriate quality control.

A Study on Space Allocation Method and Calculation of GHGs Emissions in the Port (항만의 온실가스 배출량 산정 및 공간할당 방법에 관한 연구)

  • Choi, Sang Jin;Kim, Joung Hwa;Son, Ji Hwan;Hong, Hyun Su;Han, Yong hee;Kim, Jeong Soo;Cho, Kyeong Doo
    • Journal of Climate Change Research
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    • v.7 no.3
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    • pp.289-297
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    • 2016
  • In this study, we researched the emission source category and it was calculated emissions estimates from existing research or literature review related to port. In addition, we have created the basis for a policy that can reduce greenhouse gas emissions calculation based on the results of the harbor. Greenhouse gas emissions estimation results, we proposed a method for allocating the GIS space. In this study, we confirmed based on the calculated greenhouse gas emissions by sources resulting in the GIS Map Port result of the expression construct for space allocation. Based on these results, it tries to provide the basic data that can be used when you want to create a local government measures to reduce scenario in the future.

In Pursuit of Low Carbon Cities: Understanding Limitations of ICLEI's International Local Government Greenhouse Gas Emissions Protocol (저탄소도시를 지향하며 -ICLEI 규약의 한계성 분석-)

  • Kim, Oh Seok
    • Journal of the Korean Geographical Society
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    • v.48 no.1
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    • pp.151-165
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    • 2013
  • This article addresses potential errors in accounting greenhouse gas (GHG) emissions based on the International Council for Local Environmental Initiatives' (ICLEI's) International Local Government Greenhouse Gas Emissions Analysis Protocol (IEAP). The IEAP seems to provide practical guidelines for local governments so that they can measure their GHG emissions. The outcomes are immediately convertible for any national GHG inventory analysis when one is constructed based on the methodology drafted by Intergovernmental Panel on Climate Change. Further, it provides a societal foundation at the global level in order for local governments to collectively deal with 'double-counting' and 'allocation' problems. However, ICLEI's IEAP overlooks two major issues: (1) the protocol does not consider carbon dioxide emissions due to burning biological fuel as a type of GHG emission; and (2) it overlooks the possibility of indirect double-counting when producing emission factors at the local level. Thus, the limitations must be fixed so that the local governments can measure their GHG emissions more precisely, while the accurate GHG inventory will ultimately support reducing the local governments' emissions to mitigate anthropogenic climate change.

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A Study on the Greenhouse Gas (CO2) Emission Reduction through Constructing Inventories and Process Diagnostic Techniques in Chemical Industry (A case of Ulsan City, Korea) (화학산업의 인벤토리 구축 및 공정진단을 통한 온실가스 배출 저감에 관한 연구)

  • Ahn, Jun-Ki;Cho, Kyoung-O;Cho, Hyun-Rae;Lee, Man-Sig
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.12 no.7
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    • pp.3302-3309
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    • 2011
  • This study showed the reduced greenhouse gas(GHG) emission through GHG inventory establishment and process diagnosis for a response to climatic change. Also, it presented a direction for company's response to climatic change. Ulsan from its industrial complex has many energy-intensive companies such as petrochemistry, automobile and shipbuilding, and as we judged that the systematic reduction of GHG emission would make a considerable reduction of GHG emission in national dimension we executed this study from 10 companies. It showed the high rate of direction GHG emissions by its process that 5 of 10 companies calculated GHG emission and built its inventory. Also, in order to reduce energy and GHG, it produced about 227,554 million won of its economic effect and 50,740 ton/yr of its sparing effect.

Application of 2006 IPCC Guideline to Improve Greenhouse Gas Emission Estimation for Livestock Agriculture (2006 IPCC 가이드라인 축산부문 도입에 따른 온실가스 배출량 계산 개선방안 연구)

  • Ji, Eun-Sook;Yang, Seung-Hak;Cho, Sung-Back;Hwang, Ok-Hwa;Park, Kyu-Hyun
    • Journal of Animal Environmental Science
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    • v.18 no.2
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    • pp.75-84
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    • 2012
  • Current estimation of greenhouse gas (GHG) emissions from livestock agriculture in Korea was based on Revised 1996 IPCC Guidelines for National Greenhouse Gas Inventories (1996 IPCC GL) published in 1996 and emission data were published in National Inventory Report. New guideline book, 2006 IPCC Guidelines for National Greenhouse Gas Inventories (2006 IPCC GL), however, was published in 2006. Hence preparation to apply new guideline for the estimation of GHG emission would be necessary. In this study, 1996 IPCC GL and 2006 IPCC GL for livestock agriculture were compared. Estimated GHG emissions based on Tier 1 methods of 1996 IPCC GL and 2006 IPCC GL between 2000 and 2008 were also compared. Estimated GHG emissions based on 2006 IPCC GL were 1.27~1.33 times higher than those based on 1996 IPCC GL. These results were mainly caused by emission factors of each IPCC GL. More researches should be conducted to decrease uncertainties of national GHG inventories.

Estimation of greenhouse gas emissions from the landfill sector with the application of the 2006 IPCC guidelines and the change factors analysis (2006 IPCC 가이드라인 적용에 따른 폐기물 매립 부문의 온실가스 배출량 산정 및 변화 요인 분석)

  • Kim, Ran-Hui;Park, Jin-Kyu;Song, Sang-Hoon;Park, Ok-Yun;Lee, Nam-Hoon
    • Journal of the Korea Organic Resources Recycling Association
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    • v.28 no.1
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    • pp.37-51
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    • 2020
  • Following the Paris Agreement adopted at the end of 2015, global stock-taking has been planned to be carried out on a 5-year basis from 2023, and it is mandatory to report on national GHG inventory and progress toward achieving greenhouse gas reduction targets. To prepare for this, it is important to improve the reliability of estimation of the greenhouse gas emission, identify the characteristics of each greenhouse gas emission source, and manage the amount of emissions. As such, this study compared and analyzed the amount of emissions from the landfill sector using the 2000 GPG, the 2006 IPCC Guidelines, and the 2019 Refinement estimation method. As a result, in comparison to 2016, there were 2,287 Gg CO2_eq. in scenario 1, 1,870 Gg CO2_eq. in scenario 2-1, 10,886 Gg CO2_eq. in scenario 2-2, 10,629 Gg CO2_eq. in scenario 2-3, and 12,468 Gg CO2_eq. in scenario 3. Thus, when the 2006 IPCC Guidelines were applied with respect to 2000 GPG, it was revealed that greenhouse gas emissions have increased. Such difference in the emission changes was due to the changes in the calculation method and the emission factor values applied. Therefore, it is urgent to develop national-specific values of the emission factor based on characteristics of greenhouse gas emission in Korea.

Conceptual Design of a Portal System for International Shipping's Greenhouse Gas Monitoring, Reporting, and Verification (MRV 규제 대응을 위한 국제해운 에너지 효율 포탈 시스템 개념 설계)

  • Kang, Nam-seon;Lee, Beom-seok;Kim, Sang-yong;Lee, Jung-jin;Yoon, Hyeon-kyu
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.22 no.1
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    • pp.108-117
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    • 2016
  • In this paper, a portal system compatible with MRV regulation was designed to monitoring, reporting and verifying $CO_2$ emission and fuel consumption data from an international ship. A portal system supports monitoring and reporting task of international shipping companies and calculates national greenhouse gas inventory. EU MRV law, MRV discussions of IMO, responses of international shipping companies to ship energy efficiency and greenhouse gas regulation, and greenhouse gas statistics on international shipping were analyzed to drive portal system requirements. For ship energy efficiency and $CO_2$ emitted monitoring, a data collection module was designed based on on-board equipment, energy efficiency measuring device and navigation report. Data transfer module with easy management and minimized usage to transfer ship data to shore was designed. A portal system was designed to convert the collected data into the standard reporting format, perform monitoring, statical analysis, verification and auto report generation, and support national greenhouse gas inventory.

Analysis of Greenhouse Gas Reduction Potentials in a Electronic·Electrical components company using LEAP Model (LEAP 모형을 활용한 전자소재·부품업의 온실가스 감축 잠재량 분석)

  • Park, Yeong-Su;Cho, Young-Hyuck;Kim, Tae-Oh
    • Journal of Environmental Impact Assessment
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    • v.22 no.6
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    • pp.667-676
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    • 2013
  • This study analyzed the energy demand, greenhouse gas emission and greenhouse gas reduction potential of Electronic Electrical components company. The LEAP model targeting long term energy plan was used to establish the most efficient plan for the companies by examining the climate change policy of government and the countermeasures by companies. A scenario was created by having 11 greenhouse gases reduction plans to be introduced from 2011 as the basic plan. Regarding input data, energy consumption by business place and by use, number of employee from 2009 to 2012, land area and change in number of business places were utilized. The study result suggested that approximately 13,800 TJ of energy will be spent in 2020, which is more than 2 times of 2012 energy consumption. When the integrated scenario based on the reduction plan of companies would be enforced, approximately 3,000 TJ will be reduced in 2020. The emission of greenhouse gases until 2020 was forecasted as approximately 760,000 ton $CO_2eq$. When the integrated scenario would be enforced, the emission will be approximately 610,000 ton $CO_2eq$, which is decrease by approximately 150,000 ton $CO_2eq$. This study will help the efficient responding of eElectronic Electrical components company in preparing detail report on objective management system and enforcement plan. It will also contribute in their image as environment-friendly companies by properly responding to the regulation reinforcement of government and greenhouse gases emission target based on environment policy.

Development of Classification Method for Anthracite and CO2 Emission Factor to Improve the Quality of National GHG Inventory (국가 온실가스 인벤토리 품질 향상을 위한 무연탄 분류 방법 및 배출계수 개발)

  • Kim, Seungjin;Lee, Jeongwoo;Lee, Seehyung;Sa, Jae-Hwan;Choi, Bong-Suk;Jeon, Eui-Chan
    • Journal of Climate Change Research
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    • v.4 no.1
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    • pp.27-39
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    • 2013
  • In this study, the anthracite coal being used as fuel in Korea were classified into different types. These types include the domestically produced anthracite, imported anthracite used as raw material, and imported anthracite used as fuel. Each of the calorific values and greenhouse gas emission factors were calculated. The calculation of greenhouse gas emission factors resulted in the domestically produced anthracite as $111,477{\pm}4,508kg\;CO_2/TJ$, the imported anthracite used as raw material as $108,358{\pm}4,033kg\;CO_2/TJ$, and anthracite used as fuel was displayed as $103,927{\pm}8,367kg\;CO_2/TJ$. Additionally, the amount of greenhouse gas emission based on these calculated emission factors was displayed as $6,216,942ton\;CO_2$, which resulted as 12.7% lower than the green house gas emission amount which was calculated without distinguishing anthracite coal in details. Therefore, collecting activity data through a detailed classification of anthracites facilitate a more accurate calculation of greenhouse gas emission amount compared to collecting activity data through combination. Furthermore, since the anthracite coal used domestically possesses characteristics differing from the anthracite coal proposed by the IPCC, anthracite coal should be classified for each purpose and calculated for the improvement of the national greenhouse gas inventory.