• Title/Summary/Keyword: Biofuel

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Fabrication of Biofuel Cell Roll Using Flexible CNT Nanosheet Substrate (유연한 CNT Nanosheet 기판을 이용한 생체연료전지 Roll 제작)

  • Sung, Jungwoo;Lim, Geunbae
    • Journal of Sensor Science and Technology
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    • v.23 no.6
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    • pp.388-391
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    • 2014
  • The most promising application of the biofuel cells is implantable devices, so the biofuel cells should have an appropriate shape for the vascular vessel. We demonstrated the biofuel cell roll for using in tubes. MWNTs were aggregated by vacuum filtration on a nitrocellulose membrane filter, which was biocompatible and flexible. The MWNT aggregated nitrocellulose membrane used the electrodes of the biofuel cells because it was conductive as well as nanostuructured. Then, the membrane was rolled into the roll shape. The maximum power density of the biofuel cell roll was $7.9{\mu}W/cm^2$ at 153mV and 50 mM glucose. Also, the power density is expected to increase in its practical application if there is flow in the tube, which makes the transportation of fuel easy. The biofuel cell roll contacts with the wall of the tube, so flow in the tube does not disturb. Also, the biofuel cell roll has multi-layers offering more electroactive area.

Current Status and Prospects on Biofuel Conversion Technologies and Facilities, Using Lignocellulosic Biomass (목질계 바이오연료 생산을 위한 산업화 기술 및 전망)

  • Kim, Yeong-Suk
    • Journal of the Korean Wood Science and Technology
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    • v.44 no.5
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    • pp.622-628
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    • 2016
  • This study investigated to understand the trend of international commercializing technologies and industrial status of the transportation biofuel based on lignocellulosic biomass. Two major commercializing technologies for the lignocellulosic biofuel are biochemical conversion technology and thermochemical conversion technology. It was reported that a total of 93 industrial companies were using lignocellulosic biomass of all facilities related to advanced biofuel. On the basis of commercial type, the biochemical conversion technology was identified to be the major technology in the lignocellulosic biofuel industries, showing 84% of all. Also the main products of commercial type industrial companies are bioethanol (1,155,000 tons/yr) and bio-oil (120,000 tons/yr), which are in a remarkably inadequate amount to substitute for the transportation biofuel worldwide. It was suggested that the transportation biofuel market was currently in need of further development in both technology and scale, and was in high demands of technological development and commercializing exertion.

The biofuel cell: development of new materials for composing electron mediator-free and electrochemical active bacteria-free biofuel cell

  • Park Doohyun;Park Yongkeun;Kim Sikyun;Lee Daesik;Shin Inho
    • Proceedings of the Microbiological Society of Korea Conference
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    • 2000.10a
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    • pp.92-99
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    • 2000
  • In this study biofuel cell is classified into 5 generation fuel cell system based on structural and structural difference. I optionally named the biofuel cell with electron mediators prototype, that with electrochemical active bacterium 2nd generation, that with modified electrode with NR 3rd generation, that with catalytic active electrode 4th generation, and that using air as a catholyte instead of ion selective membrane and cathode, respectively. The electricity production was compared among 5 types biofuel cell and was confirmed to be $50-100\%$ higher in 4th and 5th generation than in 1st to 3rd generation.

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The Impacts of Biofuel Production on Water Quality and a Mitigation Methodology to Reduce the Impacts (바이오 연료 생산이 수질에 미치는 영향과 수질오염의 최소화 방안)

  • Lee, Tae-Soo
    • Journal of the Korean Geographical Society
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    • v.46 no.1
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    • pp.50-66
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    • 2011
  • Biofuel crops and their economical benefits have been recently researched as one of the alternative energy sources. Very few studies, however, have brought an issue about the impacts of the new cropping on environment, especially water quality. Because biofuel cropping requires more crop production with more fertilizers for cost-effectiveness, water quality near the new crops as well as downstream is expected to be degraded. In this study, the impacts of biofuel crop production on water quality was estimated by scenarios between pre-biofuel cropping and post-biofuel cropping using the previously calibrated SWAT (Soil and Water Assessment Tool) model in a watershed in Texas, USA. Then, 30 meter filter strips were implemented on each biofuel ropland as a mitigation method. The economical and agricultural aspect and requirements of biofuel cropping was also previously investigated. The on-site impacts estimation showed that biofuel cropping increased about 250% to 1,150% of Total Nitrogen and about 100% to 1,100% of Total Phosphorous annually. The off-site estimation at the reservoir (entire watershed outlet) showed the annual increase of 40 to 50% for both Total Nitrogen and Total Phosphorous. The on-site effectiveness of filter strips was from 58.0% to 67.9% reduction for Total Nitrogen and 57.7% to 68.2% reduction for Total Phosphorous. The filter strips reduced 28.5% of Total Nitrogen and 29.4% of Total Phosphorous at the watershed outlet.

Development of Technological Innovation System in an Emerging Economy - A Study of the Malaysian Biodiesel Innovation System -

  • H., Maziar;Avvari, Mohan V.
    • Asian Journal of Innovation and Policy
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    • v.1 no.2
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    • pp.168-199
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    • 2012
  • Studies on innovation point towards the need for both in-house research and development (R&D) capabilities along with collaborations with external organisations or linkages with other firms, universities and research institutes. The argument is that innovation is not just a firm specific factor but requires support from several other factors which in turn involves developing linkages with various actors/institutions as sources of resources and/or knowledge for innovation. This paper presents findings from an exploratory study about the Malaysian biofuel sector as an innovation system. Instead of using the neo-classical approach and proposing policy interventions based on traditional market failure rationale (Bergek et al., 2008a), the functional analysis of the technological innovation systems (TIS) approach is used to analyse the biofuel sector in Malaysia to help reveal the strengths and weaknesses in terms of its fulfillment of seven critical functions which are necessary for the generation and commercialization of a product. In addition an attempt is made to reveal the inducement and blocking mechanisms affecting the Malaysian biofuel TIS and the seeking of improved poor functionality. These functional aspects of the Malaysian biofuel sector are analysed in different phases of its development to gain an understanding of the different institutions and their functions at different phases of the development of the innovation system.

Biofuel Industry and Recent Research in USA (미국의 바이오연료와 연구 동향)

  • Lee, Joung-Kyong;Bransby, David
    • Journal of The Korean Society of Grassland and Forage Science
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    • v.28 no.2
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    • pp.129-138
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    • 2008
  • Demand for alternatives to petroleum is increasing the production of biofuels from food crops such as corn, soybeans, sorghum and sugarcane, etc. At least for the next 5 years, ethanol demand will be increased greatly in the United States and in the world. Presently, most ethanol produced in the United States is corn (Zea mays) ethanol. As a result, especially in the Americas and Southeast Asia, agricultural land is diverted to biofuel production. Even though biofuel industry has many advantage including national security, economical, energetical and sustainable impacts, it is driving grain prices up and creating considerable concern about the potential negative impacts on a wide range of food products that depend on gain : chicken, pork, beef, and dairy products such as milk, cheese, yoghurt, cream and ice cream. Feedstock crops are crops such as switchgrass(Panicum virgatum, L.), corn stover and grasses that can be used in industrial processes such as fermentation into alcohol fuels. Feedstock is no compete with food. Furthermore it is friendly environmental bioenergy crops. In Korea, with increasing demand for fossil fuels the exploration of alternative sources of liquid fuel is inevitable. I suggest Korea need to research and to develop actively on feedstock for biofuel production through this review.

Evaluations of Potential Biofuels and Environmental Implications with Latent Biomass Resources in South Korea (국내 바이오매스 잠재 가용자원을 이용한 바이오 연료 생산량 및 온실가스 감축효과 분석)

  • Suh, Kyo;Kim, Tae-Gon;Lee, Jeong-Jae
    • Journal of The Korean Society of Agricultural Engineers
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    • v.52 no.4
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    • pp.35-44
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    • 2010
  • Biofuel based on available biomass in rural area could contribute to increase the vitality and income of rural residents. This study estimates the potential production and environmental benefits of biofuel production from surplus rice, rice straw, cow manure, and food waste in South Korea. We could produce about 2.4 billion liters of ethanol using surplus rice and rice straw and 841 million $m^3$ of methane from cow manure and food waste. 1.7 billion liters of gasoline and 800 million liters of diesel could be replaced with these potential biofuel productions, which can annually reduce 4.9 million ton $CO_2$ eq. GHGs.

Biofuel: Current Status in Production and Research

  • Yu, Ju-Kyung;Park, Soon Ki
    • Korean Journal of Breeding Science
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    • v.42 no.2
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    • pp.121-128
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    • 2010
  • Finding alternative and renewable energy sources has become an important goal for plant scientists, especially with the demand for energy increasing worldwide and the supply of fossil fuel being depleted. The most important biofuel to date is bioethanol which is produced from sugars (sucrose and starch) found in corn and sugarcane. Second generation bioethanol is targeting studies that would allow the use of the cell wall (lignocellulose) as a source of carbon by non-food plants. Plant scientists, including breeders, agronomists, physiologists and molecular biologists, are working towards the development of new and improved energy crops especially, how to design crops for bioenergy production and increased biomass generation for biofuel purposes. This review focuses on: i) the current status of first generation bioenergy production, ii) the limitations of first and second generation bioenergy, and iii) ongoing research to overcome challenging issues in second generation bioenergy.

읽을거리 - 미래를 주도하는 첨단 항공우주기술(18) - 바이오 연료(Biofuel)

  • 한국항공우주산업진흥협회
    • Aerospace Industry
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    • s.108
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    • pp.68-69
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    • 2010
  • 친환경과 대체에너지에 대한 시대적 요구가 높아지면서 새롭게 주목받고 있는 첨단 항공우주기술이 있다. 바로 미래 대체연료로 주목받고 있는 바이오 연료(Biofuel) 개발 기술이다. 신재생 에너지로 주목받고 있는 바이오 연료에 대해 알아본다.

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