• 제목/요약/키워드: carbon allocation

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Regional allocation of carbon emissions in China based on zero sum gains data envelopment analysis model

  • Wen, Lei;Zhang, Er nv
    • Environmental Engineering Research
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    • 제21권1호
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    • pp.91-98
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    • 2016
  • Along with China's increasing share in global total $CO_2$ emissions, there is a necessity for China to shoulder large emission-mitigating responsibility. The appropriate allocation of $CO_2$ emission quotas can build up a solid foundation for future emissions trading. In views of originality, an optimized approach to determine $CO_2$ emissions allocation efficiency based on the zero sum gains data envelopment analysis (ZSG-DEA) method is proposed. This paper uses a non-radial ZSG-DEA model to allocate $CO_2$ emissions between different Chinese provinces by 2020 and treats $CO_2$ as the undesirable output variable. Through the calculation of efficiency allocation amounts of provincial $CO_2$ emissions, all provinces are on the ZSG-DEA efficiency frontier. The allocation results indicate that the cumulative optimal amounts of $CO_2$ emissions in 2020 were higher than the actual amounts in 13 provinces, and lower in other 17 provinces, and show that different provinces have to shoulder different mitigation burdens in terms of emission reduction.

복합생산품에 대한 환경오염비용 배분 방법론 (Suggestion of Allocation Methodology of Environmental Pollution Cost on Multi - Product)

  • 김덕진
    • 설비공학논문집
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    • 제21권5호
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    • pp.311-318
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    • 2009
  • In previous study, a new allocation methodology of common cost on multi-product have been suggested. The aim of this study is to suggest the methodology that allocates an environment pollution cost including carbon emission cost to each cost of multi-product. For this study, a supposed multi-energy system composed of twenty kinds of systems was made. The multi-energy system produces eighteen kinds of outputs that are electricity, steam, hot water, chilled water, ice, warm air, and cooling air from seven kinds of energy source that are LNG, coil, geothermal energy, sun heat, hydrogen, bio-mass, and waste. The new methodology was applied to the multi-energy system in order to allocate the environment pollution cost to each production cost, and twenty seven equations were induced. From this result, it is concluded that this methodology can estimate each unit cost and allocate each cost flow in any product of any energy system.

Two Decades of International Climate Negotiations - Carbon Budget Allocation Approach to Re-shaping Developing Country Strategies

  • Yedla, Sudhakar;Garg, Sandhya
    • East Asian Economic Review
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    • 제18권3호
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    • pp.277-299
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    • 2014
  • Climate negotiations have been going on for the last two decades and the awareness for impacts of climate change has improved substantially. However, the trends of global $CO_2$ emissions did not reveal any encouraging signs, with developing countries emitting even more $CO_2$ and industrialized nations showing no signs of reducing emissions to below their 1990 levels. In order to meet the ambitious targets set by the Stern report for the next two decades, it is important to find new and path-breaking approaches to climate change. This paper attempts to analyze the use of carbon/development space historically, at present and in the future with a focus on equity. Trends analysis focuses on the last two decades (Post Rio) and the carbon budget based analysis considers a period of 1850-2050. Industrialized countries are found to have significantly overshot their budgeted allocation for the last 160 years. Both the developing and industrialized countries are overshooting the present budget estimates based on world per capita budget for the next forty years and proportional to the population of each country. It is important for the industrialized countries to bring down their emissions to meet their carbon budgets while the developing countries use their development space as a guideline for their development path. Furthermore, this paper presents aggressive and regressive scenarios for the industrialized countries to compensate for the climate debt they have created.

초기 탄소배출권 배분이 경제성장에 미치는 영향 분석 (Analysis of the Impact of Initial Carbon Emission Permits Allocation on Economic Growth)

  • 박선영;김동구
    • 자원ㆍ환경경제연구
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    • 제20권2호
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    • pp.167-198
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    • 2011
  • 최근 우리나라는 2020년 Business-As-Usual(BAU) 대비 30%를 감축하는 탄소배출 감축안을 목표로 설정하였다. 탄소배출 감축목표 달성의 한 방편으로 탄소배출권 거래제가 논의되고 있는 상황이지만, 탄소배출권 거래제를 실시하기 위해서는 가장 먼저 초기 탄소배출권의 배분문제가 해결되어야 한다. 본 연구에서는 탄소배출권 초기배분방식 결정이 우리 경제에 어떠한 영향을 미칠 수 있는가를 중심으로 살펴보았다. 이를 위해 협조적 게임이론인 bankruptcy problem에서의 배분방법을 적용해 배출권을 각 산업별로 배분하였다. 산업별 이산화탄소 배출량은 에너지 통계와 산업연관표를 결합한 하이브리드 산업연관표를 이용해 추계하였다. 세 가지 분배방법에 따른 경제적 파급효과 분석에는 녹색성장회계(green growth accounting) 방식이 적용되었다. 분석결과, 2005년~2007년 기간 동안 우리나라의 연평균 경제성장률은 약 4.36%로 추계되는데, Proportional rule에 의한 배분에 의하면 4.03%, Constrained Equal Awards rule에 의한 배분에서는 4.23%, 마지막으로 Constrained Equal Losses rule에 의한 배분으로는 3.67%로 추산되었다. 따라서 경제성장률 측면에서 보면 Constrained Equal Awards rule에 의한 초기 탄소배출권 배분이 가장 바람직한 것으로 분석된다. 이처럼 초기 배출권의 산업별 배분방식이 어떻게 결정되느냐에 따라 경제에 미치는 파급효과가 매우 상이하게 나타나기 때문에 탄소배출권 도입 및 시행을 위해서는 산업 수준의 연구결과를 반영해야 하며, 각 산업의 특성을 고려해야 할 것으로 보인다.

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한중일 탄소시장 연계의 파급효과 분석 (Economic impacts of linking carbon markets among Korea, China and Japan)

  • 김용건
    • 자원ㆍ환경경제연구
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    • 제21권4호
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    • pp.809-850
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    • 2012
  • 본 연구는 개별 국가 혹은 지역 단위 배출권 거래제도의 국제적 연계 가능성에 대비하기 위해 한 중 일 3국간의 배출권 거래제도 연계 시 예상되는 경제 환경적 영향을 분석하기 위해 수행되었다. 이를 위해 연산가능 일반균형모형을 통해 3국간 배출권 거래제 도입의 경제 환경적 영향을 분석하였다. 분석결과 한 중 일 3국간 탄소시장의 연계는 국가별로 다양한 측면에서 복잡한 영향을 미치게 됨을 확인할 수 있다. 한 중 일 배출권 거래제 연계 시행은 3국 전체의 실질 GDP를 증가시키는 긍정적 효과가 있음에도 불구하고 연계로 인한 이익의 국가간 분배가 불균형적임은 물론 실질 소비나 고용 등의 측면에서는 탄소시장 연계가 3국 전체적으로도 오히려 부정적인 영향을 초래할 수 있다는 점에서 반드시 긍정적인 효과만을 담보하는 것은 아니다. 특히 배출권 매입국인 한국과 일본의 소득 소비 고용 감소 및 에너지 의존도 증가, 배출권 매출국인 중국의 생산 감소 및 해외 이전 가능성은 3국간 탄소시장의 연계의 장애요인으로 작용할 수 있다. 3국간 탄소시장 연계를 통한 긍정적 효과를 최대한 유지하면서 예상되는 부정적 효과를 최소화하기 위해서는 배출권 수입 관세나 수입배출권 할인과 같은 보완적 정책수단의 개발 적용이 필요하다.

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연료 전환 사업의 방법론과 온실가스 배출권거래제 상쇄제도 분석 (Methodology of the Fuel Conversion Project and Analysis of the Offset System of the Greenhouse Gas Emission Trading System)

  • 김억용;신민창;박정훈
    • Korean Chemical Engineering Research
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    • 제60권4호
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    • pp.478-485
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    • 2022
  • 외부사업을 통해 발행받은 인증실적을 배출권 거래제 할당 대상 업체에게 판매하고 할당 대상업체는 구매한 외부사업 인증실적을 상쇄 배출권으로 바꾸어 할당량을 확보할 수 있다. 본 방법론은 기존 기름보일러를(유종별) 사용하던 화석연료를 상대적으로 탄소 함량이 적은 프로판가스를 사용하는 보일러로 교체하였을 때 유종별 이산화탄소 배출 감축분을 인정받아 온실가스 감축을 하지 못해 배출허용량을 넘긴 대기업의 부족된 할당량으로 보충하기 위한 초기 분석으로 탄소감축 배출량과 배출권 거래 금액을 산출하였다.

Impact of inhibitors of amino acid, protein, and RNA synthesis on C allocation in the diatom Chaetoceros muellerii: a FTIR approach

  • Giordano, Mario;Norici, Alessandra;Beardall, John
    • ALGAE
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    • 제32권2호
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    • pp.161-170
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    • 2017
  • Fourier Transform Infrared (FTIR) spectroscopy was used to study carbon allocation patterns in response to N-starvation in the nearly ubiquitous diatom Chaetoceros muellerii. The role of gene expression, protein synthesis and transamination on the organic composition of cells was tested by using specific inhibitors. The results show that inhibition of key processes in algal metabolism influence the macromolecular composition of cells and and prior cell nutritional state can influence a cell's response to changing nutrient availability. The allocation of C can thus lead to different organic composition depending on the nutritional context, with obvious repercussions for the trophic web. This also shows that C allocation in algal cells is highly flexible and that C (and the energy associated with its allocation) can be variably and rapidly partitioned in algal cells in response to relatively short term perturbations. Furthermore, the data confirm and extend the utility of infrared spectroscopy as a probe of the metabolic state of autotrophic cells.

Assessment of Air Quality Impact Associated with Improving Atmospheric Emission Inventories of Mobile and Biogenic Sources

  • Shin, Tae-joo
    • Environmental Sciences Bulletin of The Korean Environmental Sciences Society
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    • 제4권1호
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    • pp.11-23
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    • 2000
  • Photochemical air quality models are essential tools in predicting future air quality and assessing air pollution control strategies. To evaluate air quality using a photochemical air quality model, emission inventories are important inputs to these models. Since most emission inventories are provided at a county-level, these emission inventories need to be geographically allocated to the computational grid cells of the model prior to running the model. The conventional method for the spatial allocation of these emissions uses "spatial surrogate indicators", such as population for mobile source emissions and county area for biogenic source emissions. In order to examine the applicability of such approximations, more detailed spatial surrogate indicators were developed using Geographic Information System(GIS) tools to improve the spatial allocation of mobile and boigenic source emissions, The proposed spatial surrogate indicators appear to be more appropriate than conventional spatial surrogate indicators in allocating mobile and biogenic source emissions. However, they did not provide a substantial improvement in predicting ground-level ozone(O3) concentrations. As for the carbon monoxide(CO) concentration predictions, certain differences between the conventional and new spatial allocation methods were found, yet a detailed model performance evaluation was prevented due to a lack of sufficient observed data. The use of the developed spatial surrogate indicators led to higher O3 and CO concentration estimates in the biogenic source emission allocation than in the mobile source emission allocation.llocation.

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QoS Aware Energy Allocation Policy for Renewable Energy Powered Cellular Networks

  • Li, Qiao;Wei, Yifei;Song, Mei;Yu, F. Richard
    • KSII Transactions on Internet and Information Systems (TIIS)
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    • 제10권10호
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    • pp.4848-4863
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    • 2016
  • The explosive wireless data service requirement accompanied with carbon dioxide emission and consumption of traditional energy has put pressure on both industria and academia. Wireless networks powered with the uneven and intermittent generated renewable energy have been widely researched and lead to a new research paradigm called green communication. In this paper, we comprehensively consider the total generated renewable energy, QoS requirement and channel quality, then propose a utility based renewable energy allocation policy. The utility here means the satisfaction degree of users with a certain amount allocated renewable energy. The energy allocation problem is formulated as a constraint optimization problem and a heuristic algorithm with low complexity is derived to solve the raised problem. Numerical results show that the renewable energy allocation policy is applicable not only to soft QoS, but also to hard QoS and best effort QoS. When the renewable energy is very scarce, only users with good channel quality can achieve allocated energy.

Litterfall과 토양호흡 측정에 의한 신갈나무 천연림의 지하부 탄소 분배 (Belowground Carbon Allocation of Natural Quercus mongolica Forests Estimated from Litterfall and Soil Respiration Measurements)

  • 이명종;손요환;진현오;박인협;김동엽;김용석;신동민
    • 한국농림기상학회지
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    • 제7권3호
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    • pp.227-234
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    • 2005
  • From published data of mature forests worldwide, Raich and Nadelhoffer suggested that total belowground carbon allocation (TBCA) could be estimated from the difference between annual rates of soil respiration and aboveground litterfall. Here we analyze new measurements of IRGA-based soil respiration and litterfall of natural mature oak forests dominated by Quercus mongolica in Korea. Rates of in situ soil respiration and aboveground litter production are highly and positively correlated. Our results disagree with the Raich and Nadelhoffer model far world forests. A regression analysis of the data from Q. mongolica forests produced the following relationship: annual soil respiration : 141 + 2.08 ${\times}$ annual litterfall. The least squares regression line has a more gentle slope (2.08) than the slope (2.92) described by Raich and Nedelhoffer for mature forests worldwide. The regression slope of our study indicates that, on average, soil respiration is about two times the aboveground litterfall-C, which further implies that TBCA is similar with annual aboveground litterfall-C at natural Q. mongolica forests in Korea. The non-zero Y-intercept (141) of the regression indicates that TBCA may be greater than litterfall-C where litterfall rate are relativery low. Over a gradient of litterfall-C ranging from 200-370 g C $m^{-2}yr^{-l}$, TBCA increased from 350-530 g C $m^{-2}yr^{-l}$.