1 |
Ararimeh Aiyejina; Dhurjati Prasad Chakrabarti;Angelus Pilgrim; M.K.S. Sastry, Wax formation in oil pipelines: A critical review, International Journal of Multiphase Flow, 2011, 37, 671-694 |
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2 |
Impact of alkyl methacrylate–maleic anhydride–alkyl methacrylate terpolymers as cold flow improver on crystallization behavior of diesel fuel  |
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3 |
Investigation of cyclohexanone pentaerythritol ketal as a clean flow improver for crude oil  |
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4 |
Settling of paraffin crystals in cooled middle distillate fuels  |
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5 |
Norbert MISKOLCZI; Richard SAGI; Laszlo BARTHA, Utilization of α-olefins obtained by pyrolysis of waste high density polyethylene to synthesize α-olefin-succinic-anhydride based cold flow improvers, Journal of Fuel Chemistry and Technology, 2009, 37, 302-310 |
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6 |
Effect of polymeric cold flow improvers on flow properties of biodiesel from waste cooking oil  |
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7 |
A. Kleinova; J. Paligova; M. Vrbova, Cold flow properties of fatty esters, Process Safety and Environmental protection, 2007, 85, 390-395 |
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8 |
Impact of cold flow properties of biodiesel on engine performance  |
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9 |
Pengmei Lv; Yufeng Cheng; Lingmei Yang, Improving the low temperature flow properties of palm oil biodiesel: Addition of cold flow improver, Fuel Processing Technology, 2013, 110, 61-64 |
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10 |
Fatty acid derivatives and their use as CFPP additives in biodiesel  |
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11 |
Influence of soybean biodiesel content on basic properties of biodiesel-diesel blends  |
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12 |
Leichang Ca,; Jieni Wang; Cheng Liu, Ethylene vinyl acetate copolymer: A bio-based cold flow imporver for waste cooking oil derived biodiesel blends, Applied Energy, 2014, 132, 163-167 |
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13 |
Ilshat Sharafutdinov; Dicho Stratiev; Ivelina Shishkova;Cold flow properties and oxidation stability of blends of near zero sulfur diesel from Ural crude oil and FAME from different origin, Fuel, 2012, 96, 556-567 |
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14 |
Effect of cold flow improvers on flow properties of soybean biodiesel  |
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15 |
Cold flow properties for blends of biofuels with diesel and jet fuels  |
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16 |
Impact of fatty ester composition on low temperature properties of biodiesel–petroleum diesel blends  |
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17 |
Effect of fractional winterization of beef tallow biodiesel on the cold flow properties and viscosity  |
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18 |
Chuang-wei Chiu; Leon G. Schumacher; Galen J. Suppes, Impact of cold flow improvers on soybean biodiesel blend, Biomass and Bioenergy, 2004, 27, 485-491 |
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19 |
Basic properties of crude rubber seed oil and crude palm oil blend as a potential feedstock for biodiesel production with enhanced cold flow characteristics  |
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20 |
Flow properties of biodiesel fuel blends at low temperatures  |
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21 |
Improvement of cold filter plugging point of biodiesel from alternative feedstocks  |
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22 |
Synthesis of Biodiesel from Vegetable Oil and Their Characteristics in Low Temperature
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23 |
Young-Kwan Lim; Joung-Min Lee; Choong-Sub Jeong, Improvement of low temperature fuel characteristics by pour point depressant |
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