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Low-temperature Properties of Biodiesel:Rheological Behavior and Crystallization Morphology 被引量:1

Low-temperature Properties of Biodiesel:Rheological Behavior and Crystallization Morphology
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摘要 A soybean oil derived biodiesel was prepared and blended with a conventional No. 0 petrodiesel. The pour points (PP) and the cold filter plugging points (CFPP) of biodiesel blends were evaluated on a low-temperature flow tester. Dynamic viscosities of the blends at different temperatures and different shear rates were measured on a rotary rheometer. The crystal morphologies of biodiesel blends at low temperatures were analyzed using a polarizing microscope. The results indicated that blended fuels demonstrated slight decrease in PPs and CFPPs as compared with those of neat soybean oil derived biodiesel and pure petrodiesel. Below the temperatures of PPs or CFPPs, the dynamic viscosity of biodiesel blends dramatically increased with a decreasing temperature, but decreased with an increasing shear rate, so that biodiesel blends exhibited non-Newtonian behavior. At temperatures higher than PPs or CFPPs, a linear relationship appeared between the dynamic viscosity and shear rate and biodiesel blends became Newtonian fluids. At low temperatures, wax crystals of biodiesel blends grew and agglomerated rapidly. Loss of fluidity for biodiesel blends at low temperatures could therefore be attributed on one hand to the sharp increase of viscosity and on the other hand to the rapid growth and agglomeration of wax crystals.
出处 《China Petroleum Processing & Petrochemical Technology》 SCIE CAS 2010年第1期29-33,共5页 中国炼油与石油化工(英文版)
基金 the financial support of the Natural Science Foundation of Chongqing(project No.CSTC2006BA6031) the Program for New Century Excellent Talents in Chinese Universities(project No.NCET-04-1002)
关键词 BIODIESEL cold flow property VISCOSITY RHEOLOGY CRYSTALLIZATION 生物柴油 流变行为 低温性能 结晶形态 混合动力 温度上升 低温流动 粘度测定
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参考文献16

  • 1Nye M J, Southwell P H. Esters from rapeseed oil as diesel fuel. Proceedings of"Vegetable Oil as Diesel Fuel- Seminar III " 1983, Peoria, IL.
  • 2Ali Y, Hanna M A. Alternative diesel fuels from vegetable oils[J]. Bioresource Technology, 1994, 50:153-163.
  • 3Agarwal A K, Das L M. Biodiesel development and characterization for use as a fuel in compression ignition engines[J]. Transactions of the ASME, Journal of Engineering for Gas Turbines and Power, 2001, 123:440-447.
  • 4Demirbas A. Progress and recent trends in biofuels[J]. Progress in Energy and Combustion Science, 2007, 33:1-18.
  • 5Demirbas A. Diesel fuel from vegetable oil via transesterification and soap pyrolysis[J]. Energy Sources, 2002, 24:835-41.
  • 6Knothe G. Dependence of biodiesel fuel properties on the structure of fatty acid alkyl esters. Fuel Processing Technology, 2005, 86: 1059- 1070.
  • 7Rushang M J, Michael J P. Flow properties of biodiesel fuel blends at low temperatures[J]. Fuel, 2007, 86:143-151.
  • 8Kerschbaum S, Rinke G. Measurement of the temperature dependent viscosity of biodiesel fuels[J]. Fuel, 2003, 83: 287- 91.
  • 9Dunn R O, Bagby M O. Low-temperature properties of triglyceride-based diesel fuels: transesterified methyl esters and petroleum middle distillate/ester blends. Journal of the Ameri-can Oil and Chemical Society, 1995, 72: 895-904.
  • 10Dunn R O, Shockley M W, Bagby M O. Improving the low-temperature properties of alternative diesel fuels: vegetable oil-derived methyl esters[J]. J Am Oil Chem Soc, 1996, 73: 1719-1728.

同被引文献10

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  • 2Crabbe E,Nolasco Hipolitao C,Kobayashi G,et al.Biodiesel production from crude palm oil and evaluation of butanol extraction and fuel properties[J].Process Biochemistry,2001,37(1):65-71.
  • 3Demirbas A.Progress and recent trends in biofuels[J].Prog.Energy Combust.,2007,33(1):1-18.
  • 4Al-Zuhair S.Production of biodiesel:Possibilities and challenges[J].Biofuels Bioprod.Bioref.,2007(1):57-66.
  • 5Sharma Y,Singh B,Upadhyay S.Advancements in development and characterization of biodiesel:A review[J].Fuel,2008,87(12):2355-2373.
  • 6Knothe G.Biodiesel and renewable diesel:A comparison[J].Prog.Energy Combust.,2010,36(3):364-373.
  • 7Santos N A,Bicudo T C,Barro A K,et al.Rheology and MT-DSC studies of the flow properties of ethyl and methyl babassu biodiesel and blends[J].J.Therm.and Calorim.,2011,106(2):501-506.
  • 8Alexandra A Alicke,Bruna C Leopércio,Flávio H Marchesini,et al.Guidelines for the rheological characterization of biodiesel[J].Fuel,2015,140:446-452.
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