• 제목/요약/키워드: biomass policy

검색결과 90건 처리시간 0.023초

국내 발전기업의 해외 바이오매스 플랜트 사업진출 방향 (Promotion of the Overseas Biomass Plant Business for a Domestic Power Company)

  • 김영상;문승재;유호선
    • 플랜트 저널
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    • 제7권3호
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    • pp.42-47
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    • 2011
  • One of domestic power generation companies, Korea East-West Power Corporation(EWP) had no performance in overseas business just two short years ago. However, EWP has accomplished breakthrough results with the profit of KRW 17.8 billion in 2010, only overseas business part. With overseas power plant growing fast, there is a possibility that EWP may face the limitation of sustainable growth with the current low income structure, which is mainly focused on commissioning and power plant management. Accordingly, this study was made on overseas biomass plant business participation plan through the establishment of joint venture. The characteristics of a joint venture establishment was searched, choosing business partner; the ideas of how to organize a joint venture was drawn, what the role of each partner in joint venture is, and what proper capital share is; and chose business field, considering changing global energy mix, renewable energy market scale, and growth prospects. Considering government policy for renewable energy vitalization and renewable energy market share, We chose the European union as a market to which our business entered.

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Carbonaceous Aerosols Generated from Wood Charcoal Production Plants in the South Korea Context

  • Magnone, Edoardo;Park, Seong-Kyu;Park, Jung Hoon
    • Journal of the Korean Wood Science and Technology
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    • 제47권3호
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    • pp.277-289
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    • 2019
  • Herein, a case study discussing the effect of carbonaceous aerosol pollution, which is emitted during the charcoal kiln manufacturing processes or carbonization processes, on the atmospheric environment is presented . In South Korea, in situ analysis of different charcoal production plants specialized in the production of charcoal sauna indicate that the emitted organic carbon (OC) and elemental carbon (EC) aerosols are significantly influenced by the nature of the biomass and technological processes, i.e., treatment or emissions abatement systems for the exhaust effluent gases. In detail, total carbon (TC), which is calculated as the sum of OC and EC emission factors, varied widely from a charcoal production site to another ranging from 21.8 to 35.8 gTC/kg-oak, where the mean value for the considered production sites was approximately 28 gTC/kg-oak (N = 7 and sum = 196.4). Results indicate that the emission factors from a modern charcoal production process in South Korea are quantitatively lower in comparison with the traditional kiln. This study aims to propose advanced wood processes for the production of charcoal from the viewpoint of environmental protection policy and green engineering.

우드칩 바이오매스를 이용한 열병합발전 운영 사례 분석 (Case Study and Evaluation of Economic Feasibility of Combined Heat and Power System using Woodchip Biomass)

  • 서길영;김성현
    • 신재생에너지
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    • 제8권4호
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    • pp.21-29
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    • 2012
  • The extensible supply of New & Renewable energy resources desperately needs to counter the high dependence on imported energy, recent high oil prices and the Climate Change Conference, and the government has operated the 'Renewable Portfolio Standard' (RPS) as one of the renewable energy policy from 2012. By analyzing the operation case of combined heat and power plant using the woodchip biomass, we drew the price of wood chip fuel, plant capacity factor, electricity selling price, heat selling price and LCOE value. After analyzing the economic feasibility of 3MWe combined heat and power plant based on the operating performance, the minimum of economic feasibility has appeared to be secured according to the internal rate of return (IRR) is 6.34% and the net present value (NPV) is 3.6 billion won as of 20 years life time after installation, and after analyzing the cases of the economic feasibility of the price of wood chip, plant capacity factor, electricity and heat selling price are changed, the economic feasibility is valuable when the price of wood chip is over 64,000 won/ton, NPV is minus, and the capacity factor is above 46.9%, the electricity selling price is 116 won/kWh and the heat selling price is above 75,600 won/Gcal. When going over the new installation hereafter, we need the detailed review of the woodchip storage and woodchip feeding system rather than the steam-turbine and boiler which have been inspected many times, the reason why is it's hard to secure the suitable quality (constant size) of woodchip by the lack of understanding about it as a fuel because of the domestic poor condition and the calorific value of woodchip is seriously volatile compared with other fuels.

초본계 바이오매스 활용 석탄발전소 연료전환 모형 경제성분석 연구 (An Economical Analysis on Fuel Switching Model of Coal Power Plant using Herbaceous Biomass)

  • 엄병환;강찬호
    • 한국농공학회논문집
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    • 제61권3호
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    • pp.89-99
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    • 2019
  • The project to utilize kenaf as thermal power plant fuel has a positive effect on the unused energy utilization, greenhouse gas reduction, and farm income. However, it is analyzed that it is difficult to secure economical efficiency because the fuel cost of kenaf is higher than that of power by thermal power plant and Renewable Energy Certification (REC). The project of power generation using kenaf is meet the government's major policies, while government support is essential for securing economical efficiency. As a result of the sensitivity analysis on the ratio of the government subsidies, to secure economical efficiency, the power generation prices using kenaf through the direct financial support of the government indicate that 47% and 76% of kenaf fuel cost are supported by government in case of the Saemangeum reclamation and Gangneung-si, respectively. In the case of the government indirect policy support, if kenaf is included as a renewable energy source of Renewable Energy Portfolio Standard and REC is granted, the economic efficiency of Saemangeum reclamation and Gangneung-si is obtained when REC secured at 1.05 or more and 2.43 or more, respectively. The results of this study are meaningful in that the direct and indirect effects of the government on the development of the herbaceous energy crop, kenaf, were evaluated economically. These results are to suggest the need for demonstration study, but economics analyze and evaluate are necessary based on operational data through the demonstration phase in the future.

Government Policies and Promotion for Enhancing Bioenergy Adoption in Korea and USA

  • 김동식;주현수
    • 환경정책연구
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    • 제3권1호
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    • pp.55-69
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    • 2004
  • Bioenergy can be obtained from various forms of biomass such as agricultural, food processing, and municipal wastes. Recently, its importance is recognized more seriously because of its positive impacts on economic and stable energy supply and environmental sustainability. Despite its advantages, bioenergy has not been used as much as it was expected, nor has it been developed to the level of attractive commercialization in energy market. The main reasons for the sluggish progress have been analyzed by comparing the bioenergy policies in Korea and U.S.A. Both Korea and U.S. governments have recognized the importance of bioenergy and put in various efforts to promote the use of bioenergy. Both governments have legislated alternative energy promotion plans that support R&D, tax reduction, rewards, and low interest loans. However, it is suggested that the bioenergy policy and plan juxtapose the financial supports (R&D, tax exemption, low interest loan, education, etc.) with strong mandates and obligations. Although imposing strong mandates prerequisites the economically attractive and feasible technologies, it can motivate and speed up more effective technology development, in turn. In addition, the bioenergy R&D support must include studies on commercialization and marketing as well as process development. R&D on the socioeconomic effects of bioenergy should also be supported. Lastly, decision making processes for the bioenergy policy, and for alternative energy overall, must include environmental agencies for taking advantage of environmental benefits of bioenergy.

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초지 바이오매스 부문 온실가스 인벤토리 구축을 위한 국제 동향과 국내 적용 가능성 평가 (Verification of International Trends and Applicability in the Republic of Korea for a Greenhouse Gas Inventory in the Grassland Biomass Sector)

  • 이슬기;이정관;김현준
    • 한국초지조사료학회지
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    • 제43권4호
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    • pp.257-267
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    • 2023
  • 본 연구는 초지 바이오매스 부문에 대한 국제적 경향과 이를 통한 국내 적용 가능성을 검토하기 위해 수행되었다. 초지 분야는 LULUCF 내 타 분야에 비해 상대적으로 연구 수준이 낮은 편으로 UNFCCC에 보고된 각 국가별 NIR을 기준으로 Approach 2 수준의 Tier 1 방법이 가장 높은 빈도로 적용되고 있었다. IPCC 가이드라인의 Tier 1 방법에서 초지 바이오매스 부문은 연 변화량을 0으로 간주하기 때문에 LULUCF 타 분야에 비해 정형화된 기본 체계가 없이 국가 상황에 따른 다양한 산정 방법을 적용하는 특징이 나타났다. 국내 초지 바이오매스에 대한 Tier 2 이상의 방법에 적용 가능한 산정 방법을 항목별로 분류하면, 인간에 의한 초지 이용 유형을 구분하는지, 초지 내 목본 식생을 포함하는지, 재해로 인한 손실량을 산정하는지, 초지 관리 방법에 따른 차이를 적용하는지 여부였다. 각 항목에서 발생하는 유의미한 차이가 국내에 적용할 수 있는지를 확인하기 위하여 국내를 대상으로 현장 조사와 활동 자료 분석을 수행하였다. 현 시점에서 국내에서 확인 가능한 항목은 초지의 정의에 따른 공간 구성과 이용 유형에 따른 탄소량 차이로 나타났다. 연구 결과, 이용 유형에 따라서 방목지, 섭식이 수행된 방목지, 채초지에서 바이오매스 탄소량의 유의미한 차이가 나타났고, 기후대, 토양형에 따른 차이도 존재하고 있었다. 따라서 IPCC 가이드라인의 기후대와 토양형을 기준으로 한 세분류가 국내에서도 타당한 초지 분류 체계로 적용될 수 있는 것으로 분석되었다. 반면, 초지 바이오매스 부문에서 활용 가능한 국가 공간 자료와 현장 자료의 불일치성이 지나치게 높아 전국 단위의 적용은 신뢰도가 낮은 상황이다. 국제 동향에서 나타난 주요 함의를 국내의 상황과 비교하였을 때, 초지 분야에 대한 더 높은 수준의 온실가스 인벤토리 작성을 위해서는 기후대-토양형 유형에 대한 국가고유계수 개발과 더불어 활용 가능한 공간자료의 마련과 이를 뒷받침할 수 있는 정책 및 제도 체계가 시급히 마련되어야 할 것이다.

우리나라 농업 에너지체계의 전환을 위한 정책대안 연구 (A Study on Policy Alternatives for Major Changes in the Korea's Agricultural Energy System)

  • 정인환;고순철
    • 농촌지도와개발
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    • 제11권2호
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    • pp.251-265
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    • 2004
  • The agricultural sector's economic structure in Korea is regarded to encounter major barriers on the way toward revitalizing its economic prosperity. Among many, the energy-related problem is one of prime nuclei embedded in the country's agricultural sector. The ought-to-come structural changes in the country's agricultural energy system hinge upon the central government's policy direction as well as efforts of local governments and local farming community members. The indirect aids via 'cross subsidy' of electricity tariff rate and 'tax-exempt price' of oil fuels are two notable causes of the unsustainable energy consumption pattern in the country's agricultural sector. As measures, demand-side management(DSM) and energy-efficiency promotions are regarded to be the most attractive methods for energy conservation and economic productivity as well. Development of renewable energy sources are also receiving a great deal of attention for the long-term alternatives to the country's existing oil-based agricultural production mode. This study examines the contributive potential of DSM approaches and renewables-based technologies. With the critical evaluation on the concurrent adversities of the country's agricultural energy system, various sources of renewable energy-solar power, wind power, biomass, etc.-are examined for the purpose of technological and economical viability. As sufficient potentials of renewable energy sources are being estimated, both the system production cost and the installation cost for the county's rural areas are expected to lower in the long term. DSM options are also evaluated to be fruitful even in the short term. Both the public and civil arenas must galvanise each side's effort in order to promote these policy options and community potentials.

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Assessing Organic Matter and Organic Carbon Contents in Soils of Created Mitigation Wetlands in Virginia

  • Ahn, Changwoo;Jones, Stacy
    • Environmental Engineering Research
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    • 제18권3호
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    • pp.151-156
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    • 2013
  • Several soil properties were studied from three young created mitigation wetlands (<10 years old), which were hydrologically comparable in the Piedmont region of Virginia. The properties included soil organic matter (SOM), soil organic carbon (SOC), pH, gravimetric soil moisture, and bulk density ($D_b$). No significant differences were found in the soil properties between the wetlands, except SOM and SOC. SOM and SOC indicated a slight increase with wetland age; the increase was more evident with SOC. Only about a half of SOC variability found in the wetlands was explained by SOM ($R^2$ = 0.499, p < 0.05). The majority of the ratios of SOM to SOC for these silt-loam soils ranged from 2.0 to 3.5, which was higher than the 1.724 Van Bemmelen factor, commonly applied for the conversion of SOM into SOC in estimating the carbon storage or accumulation capacity of wetlands. The results may caution the use of the conversion factor, which may lead to an overestimation of carbon sequestration potentials of newly created wetlands. SOC, but not SOM, was also correlated to $D_b$, which indicates soil compaction typical of most created wetlands that might limit vegetation growth and biomass production, eventually affecting carbon accumulation in the created wetlands.

현대자본이론과 최적어업관리 (Modern Capital Theory and Optimal Fisheries Management)

  • 박장일
    • 수산경영론집
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    • 제23권2호
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    • pp.53-67
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    • 1992
  • It has been recognized, virtually from the time of its inception, that fisheries economics, like other aspects of resource economics, should ideally be cast in capital-theoretic terms. The fish population or biomass can be viewed as a capital stock in that, like conventional or man-made capital, it is capable of yielding a sustainable consumption flow through time. This study is to introduce the optimal control theory which was extended from the theory of calculus of variations into the study of former static theory of fisheries economics started by Gordon (1954). The optimal control theory eliminated the inadequacies of the classical techniques to a large extent. From this point of view, this study, on the base of Schaefer model, summerizes most of major results achieved so far, but does so in a manner such that the links with capital theory are made transparent. This study explores two sets of problems. The first concerns the optimal approach to the equilibrium stock, i.e. the optimal investment policy. The second set of problems arises from the relaxation of the highly restrictive assumption of autonomy (i.e. the assumption that the parameters are independent of time), then concludes the relaxation of linearity assumption together with the complexities caused by that.

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The role of macrophytes in wetland ecosystems

  • Rejmankova, Eliska
    • Journal of Ecology and Environment
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    • 제34권4호
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    • pp.333-345
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    • 2011
  • Aquatic macrophytes, often also called hydrophytes, are key components of aquatic and wetland ecosystems. This review is to briefly summarizes various macrophyte classifications, and covers numerous aspects of macrophytes' role in wetland ecosystems, namely in nutrient cycling. The most widely accepted macrophyte classification differentiates between freely floating macrophytes and those attached to the substrate, with the attached, or rooted macrophytes further divided into three categories: floating-leaved, submerged and emergent. Biogeochemical processes in the water column and sediments are to a large extent influenced by the type of macrophytes. Macrophytes vary in their biomass production, capability to recycle nutrients, and impacts on the rhizosphere by release of oxygen and organic carbon, as well as their capability to serve as a conduit for methane. With increasing eutrophication, the species diversity of wetland macrophytes generally declines, and the speciose communities are being replaced by monoculture-forming strong competitors. A similar situation often happens with invasive species. The roles of macrophytes and sediment microorganisms in wetland ecosystems are closely connected and should be studied simultaneously rather than in isolation.