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번호 | 참고문헌 | 국회도서관 소장유무 |
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1 | S. K. Hoekman, A. Broch, C. Robbins, E. Ceniceros and M. Natarajan, Review of Biodiesel Composition, Poperties, and Specifications, Renew. Sustain. Energy Rev., 16, 143 (2012). | 미소장 |
2 | J. -K. Kim, C. H. Jeon, E. S. Yim, C. S. Jung, S. B. Lee, Y. J. Lee and M. J. Kang, A Study on Fuel Quality Characteristics of F-T Diesel for Production of BTL Diesel, J. Kor. Oil Chem. Soc., 29, 450 (2012). | 미소장 |
3 | J. -K. Kim, C. H. Jeon, E. S. Yim and C. S. Jung, A Study on the Fuel Characteristics of Hydrotreated Biodiesel (HBD) for Alternative Diesel Fuel, J. Kor. Oil Chem. Soc., 28, 508 (2011). | 미소장 |
4 | IEA. 2009, "World Energy Outlook", International Energy Agency. OECD/Paris. | 미소장 |
5 | Hart’s Global Biofuel Center, 2010, "Global Biofuels Outlook 2010-2020", Houston, USA. | 미소장 |
6 | Study on Comparison of Global Biofuels Mandates Policy in Transport Sector | 소장 |
7 | Y. J. Hyun, Conversion of Mixed Fat into Biodiesel in Plug Flow Reactor Using Alkali and Mixed Catalysts, J. Kor. Oil Chem. Soc., 27, 123 (2010). | 미소장 |
8 | Y. J. Hyun and H. S. Kim, Conversion of Rapeseed Oil Containing Palmitic Acid into Biodiesel by Acid/Alkali Catalysts, J. Kor. Oil Chem. Soc., 23, 300 (2006). | 미소장 |
9 | Y. J. Hyun and H. S. Kim, Conversion of Vegetable Oil into Biodiesel Fuel by Continuous Process, J. Kor. Oil Chem. Soc., 19, 327 (2002). | 미소장 |
10 | Y. M. Kang and H. S. Kim, Emulsified Transesterification of Soybean Oil into Biodisel, J. Kor. Oil Chem. Soc., 18, 298 (2001). | 미소장 |
11 | Biodiesel production through the use of different sources and characterization of oils and their esters as the substitute of diesel: A review ![]() |
미소장 |
12 | Biodiesel as alternative fuel: Experimental analysis and energetic evaluations ![]() |
미소장 |
13 | Improving the low temperature properties of biodiesel fuel ![]() |
미소장 |
14 | Kinematic viscosity of biodiesel components (fatty acid alkyl esters) and related compounds at low temperatures ![]() |
미소장 |
15 | Thermodynamic study on cloud point of biodiesel with its fatty acid composition ![]() |
미소장 |
16 | Cold Flow Behavior of Biodiesels Derived from Biomass Sources ![]() |
미소장 |
17 | A comparative study of vegetable oil methyl esters (biodiesels) ![]() |
미소장 |
18 | A comprehensive review on biodiesel as an alternative energy resource and its characteristics ![]() |
미소장 |
19 | Blending effects of biodiesels on oxidation stability and low temperature flow properties. ![]() |
미소장 |
20 | Antioxidants for improving storage stability of biodiesel ![]() |
미소장 |
21 | Effects of Oxidation during Long-term Storage on the Fuel Properties of Palm Oil-based Biodiesel ![]() |
미소장 |
22 | M. Canakci and H. Sanli, Biodiesel Production from Various Feedstocks and their Effects on the Fuel Properties, J. Ind. Microbiol. Biotechnol., 35, 431 (2010). | 미소장 |
23 | J. Rodrigues, F. Cardoso, E. Lachter, L. Estevao, E. Lima and R. Nascimento, Correlating Chemical Structure and Physical Properties of Vegetable Oil Esters, J. Am. Oil Chem. Soc., 83, 353 (2006). | 미소장 |
24 | High quality biodiesel and its diesel engine application: A review ![]() |
미소장 |
25 | J. -K. Kim, E. S. Yim, C. H. Jeon, C. S. Jung and B. H. Han, Cold Performance of Various Biodiesel Fuel Blends at Low Temperature, Int. J. Automotive Technology, 13, 293 (2012). | 미소장 |
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