• Title/Summary/Keyword: 해양바이오에너지

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Development of Improving Water Quality in Eutrophic Lake Using Microalgal Cultivation (미세조류 배양을 이용한 부영양호 내 수질 개선 기술 개발)

  • Kim, Ki-Hyun;Kang, Sung-Mo;Cho, Yonghee;Jeon, Sanghyun;Kim, Jun-Ho;Park, Hanwool;Lee, Yunwoo;Jeong, Jeongho;Lim, Sang-Min;Lee, Choul-Gyun
    • Journal of Marine Bioscience and Biotechnology
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    • v.10 no.2
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    • pp.91-96
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    • 2018
  • There are many eutrophic lakes by point and non-point pollution sources such as in dustrial waste water, domestic raw sewage, and mucks. The eutrophic lakes not only cause algal blooms but also destroy the ecosystem in the lakes due to high nutrient concentrations. The purpose of this study was to improve water quality in eutrophic lakes by cultivating microalgae using photobioreactors (PBRs) with selectively permeable mesh (SPM), supplying nutrients in the lake and inhibiting cell leakage by diffusion and water permeability. Chlorella vulgaris, was cultivated using PBRs with SPM installed in Inkyung Lake located in Inha university, Incheon, Korea. When cultivating C. vulgaris, $8.3g/m^2/day$ of average biomass productivity was obtained at 3 days. Furthermore, concentrations of total nitrogen and phosphorus were reduced by 35.7% and 84.2%, respectively, compared to initial condition and water quality in eutrophic lake was improved to oligotrophic environment. These results suggest that microalgal cultivation using PBRs with SPM in the lake could produce microalgal biomass as well as improve water quality by decreasing nutrient concentrations.

Measurement of the Greenhouse Gas Emission Benefits from the Marine Bio-Energy Development Project (해양바이오에너지 개발사업의 온실가스 저감편익 추정)

  • Kim, Tae-Young;Pyo, Hee-Dong;Kim, Hye-Min;Park, Se-Hun
    • Journal of the Korean Society for Marine Environment & Energy
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    • v.16 no.3
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    • pp.217-225
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    • 2013
  • It is time to develop new renewable energy that could fundamentally replace fossil fuel, which has been increasingly needed due to environmental pollution and energy security. Korean marine bio-energy development project is planned to produce 50% of total bioenergy. This study attempts to measure the greenhouse gas emission reduction benefits of marine bio-energy development project through contingent valuation method. Single bounded dichotomous choice (SBDC) is applied with spike model. The results show that the average willingness to pay are estimated to be KRW 4,190 at SBDC, per household per year. If the result has been expanded to the region which is survey conducted, KRW 50.1 billion annually. These quantitative information can be usefully utilized in the cost benefit analysis to implement project and policy-making for the industrialization of marine bio-energy development project.

The Economic Impacts of Marine Bio-energy Development Project (해양바이오에너지 개발사업의 경제적 파급효과)

  • Kim, Tae-Young;Jin, Se-Jun;Park, Se-Hun;Pyo, Hee-Dong
    • Journal of Energy Engineering
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    • v.22 no.2
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    • pp.184-196
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    • 2013
  • We need to develop new renewable energy that could fundamentally replace fossil fuel, since the volume of economy and industry of our time becomes uncontrollably enormous. One of the alternative is to develop energy based on marine biomass, which would meet environment and energy needs at the same time. The marine bio-energy productions is supposed to occupy 50% to 500 million TOE in bio-energy production that is based on the Korean 3rd new renewable energy technology development, utilization, supply plan until 2030. This study attempts to apply input-output analysis to investigating the economic impacts of marine bio-energy development project in the Korean national economy. More specifically, this study shows what national economy effect of production-inducing effect, value-added inducing effect, employment-inducing effect, and R&D-inducing effect are explored with demand-driven model. Furthermore, this study attempts to define and classify the marine bio-energy development project sector from I-O table. Also, this study pays particular attention to marine bio-energy development project by taking the industry as exogenous specification and then investigating its economic impacts. The Marine bio-energy development project case 223 billion won, production-inducing effect, value-added inducing effect, and employment-inducing effect are 312 billion won, 87 billion won, 1,151 persons, and 5 billion won respectively. These quantitative information can be usefully utilized in the policy-making for the industrialization of marine bio-energy development project.

Isolation and Characterization of Five Isolates of Tetraselmis sp. with Rapid Growth Rates in Low Temperatures (저온 생장성이 우수한 분리 미세조류 Tetraselmis sp. 5개주의 생장 패턴 및 지방산 조성 분석)

  • Park, Hanwool;Hoh, Donghee;Shin, Dong-Woo;Kim, Z-Hun;Hong, Seong-Joo;Lim, Sang-Min;Lee, Choul-Gyun
    • Journal of Marine Bioscience and Biotechnology
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    • v.11 no.1
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    • pp.23-28
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    • 2019
  • For successful microalgal biodiesel production, the strain should be selected carefully. Fast growth rate and high fatty acid contents are desired traits for algal biodiesel production. In ocean cultivation of microalgae, seawater temperature slowly changes over seasons, and rotating algal strains in accordance with their optimal temperature could improve overall productivity. Additionally, use of indigenous strain is preferred to alleviate potential impacts on the environment. In this study, five strains of Tetraselmis sp. from nearshore of Youngheung Island, Incheon, Korea, were isolated during winter and characterized for their growth patterns and fatty acid compositions in the low temperatures ($5-15^{\circ}C$). The five strains showed various characteristics in optimal growth temperature, fatty acid contents, and compositions. Compared with a strain of Tetraselmis sp., isolated from Ganghwa island in a previous study, a rapid-growing strain with 237% higher biomass productivity and an oleaginous strain with twice higher fatty acid contents at $10^{\circ}C$ were isolated. The oleaginous Tetraselmis strain showed the highest fatty acid productivity among the strains, having 438% higher productivity than the previous strain. Using the new isolates in the seasons with low seawater temperature would improve microalgal fatty acid productivity in ocean cultivation.

Production of Bio-energy from Marine Algae: Status and Perspectives (해양조류로부터 바이오에너지 생산 : 현황 및 전망)

  • Park, Jae-Il;Woo, Hee-Chul;Lee, Jae-Hwa
    • Korean Chemical Engineering Research
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    • v.46 no.5
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    • pp.833-844
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    • 2008
  • Bio-energy offers the opportunity to lessen fossil fuel consumption. Energy derived from solar, wind, hydroelectric, geothermal, and biomass sources are considered renewable. Because most forms of bio-energy are derive deither directly or indirectly from the sun, there is an abundant supply of renewable energy available, unlike fossil fuels. The use of bio-energy also provides environmental, economic and political benefits. Bio-energy can be produced from a marine source such as biomass provides a $CO_2$ neutral, non-polluting form of energy. In this paper, the potential of marine biomass is increasingly discussed, given the size of the resource in that more than three quarters of the surface of planet earth is covered by water.

POLICY & ISSUES 기획특집_4 - 기후변화대응 녹색기술의 현주소와 미래

  • Kim, Ju-Yeong
    • Bulletin of Korea Environmental Preservation Association
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    • s.399
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    • pp.20-21
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    • 2012
  • 우리나라는 좁은 국토에 많은 인구가 밀집한 관계로 단위면적당 폐기물의 발생량이 세계 최고 수준이며, 해양 오염 방지를 위해 유기성 폐기물 해양 배출을 금지한 런던협약 등 기후변화 관련 규제가 강화되고 있다. 또한 화석연료의 고갈화로 대체에너지 개발이 시급한 현시점에서 폐자원 에너지화 사업의 인프라 구축 및 대응책 수립이 요구되고 있다. 이에 우리나라는 2008년 5월 "폐기물 에너지화 종합대책" 이후 2009년 7월 "폐자원 및 바이오매스 에너지 대책" 실행계획 수립으로 폐기물 에너지화 사업 도입을 적극 추진하고 있다. 폐자원 에너지화 기술은 화석연료 대체로 인한 온실가스 감축효과가 있어 폐기물 처리, 화석연료 대체, 온실가스 감축이라는 일석삼조의 기술이다.

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Sustainable middle indices development for Algae Bio-energize industry (해조류를 이용한 바이오 에너지화 산업의 지속가능 중간지표 개발)

  • Koo, Ja-Kong;Kim, So-Hyun
    • Journal of the Korea Organic Resources Recycling Association
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    • v.22 no.2
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    • pp.11-16
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    • 2014
  • Korea is the urgent need to diversify the bio-energy raw materials because we have narrow area of land cultivated plants and lack the bio-mass resources. Using a resource-rich the marine environment enclosed on three sides by the sea. Through bio-energy production-technical and carbon dioxide reduction measures which will be a very effective alternative. Sustainable development about algae bio-energize industry through SSaM-GG(Smart, Shared and Mutual-Green, Growth) is expected. Algae has high carbon dioxide absorption factor, extracting oil from algae is thirty times much more than sunflower.

Effects of the Characteristics of Exhaust Emissions by Using Bio Fuel in Marine Diesel Engine (선박디젤기관에 있어서 바이오연료가 배기배출물특성에 미치는 영향)

  • Cho, Sang-Gon
    • Journal of the Korean Society of Marine Environment & Safety
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    • v.21 no.1
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    • pp.103-108
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    • 2015
  • Recent global warming has been recognized as the world economy development from fossil fuel use is the culprit. This study was reduce the fossil fuel has been developed in a number of alternative energy, As a fuel that can be produced in our country is a biofuel. Biofuels is a sustainable fuel having economically benefits and decreasing environmental pollution problems caused due to fossil fuel. A lot of research is progressing about the conversion of diesel biofuel as renewable clean energy. In this experiment were remodel the institution that has been used in fishing engine again produced an experimental apparatus were installed directly, were studied using various bio fuel like to help the economically and environmentally sound operation of the vessel. rapeseed oil, soybean oil, comprehensively analyzing the results the effects of the exhaust emission characteristics of the waste rapeseed oil is available in a marine engine with similar physical and chemical components of the fuel, and the fuel consumption ratio, NOx is slightly increased, but soot was confirmed a tendency to decrease much.