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首页> 外文期刊>Journal of the American Oil Chemists' Society >Low-temperature flow properties of vegetable oil/cosolvent blend diesel fuels
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Low-temperature flow properties of vegetable oil/cosolvent blend diesel fuels

机译:植物油/助溶剂混合柴油的低温流动特性

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Vegetable oils are an attractive renewable source for alternative diesel fuels. However, the relatively high kinematic viscosity of vegetable oils must be reduced to make them more compatible with conventional compression-ignition engines and fuel systems. Cosolvent blending is a low-cost and easy-to-adapt technology that reduces viscosity by diluting the vegetable oil with a low-M.W. alcohol (methanol or ethanol). The cosolvent (A), which consists of one or more amphiphilic compounds, is added to solubilize the otherwise nearly immiscible oil-polar alcohol mixture. This work investigates cold flow properties and phase equilibrium behavior associated with blends consisting of soybean oil (SBO) and methanol where A = 8:1 (mol) n-butanol/oleyl alcohol; 6:1 (mol) 2-octanol/triethyl-ammonium linoleate; and 4:1 (mol) 2-octanol/Unadol 40 (alcohols from SBO FA); and a blend of 2:1 (vol/vol) No. 2 diesel fuel/SBO and 95% ethanol where A = n-butanol. Cloud point (CP), pour point, cold filter plugging point (CFPP), and low-temperature flow test (LTFT) results were compared with corresponding phase separation temperature (T-phi) data measured at equilibrium. Although CP data were measured under non-equilibrium experimental conditions, a nearly linear correlation was found between T-phi and CP. Statistical analysis showed that To may also be correlated with CFPP and LTFT. Analysis of heating and cooling DSC curves indicated that peak temperatures may be employed to predict cold flow properties and T-phi behavior for SBO/cosolvent blends. Cooling curve parameters correlated more readily than heating curve parameters. Finally, relatively low quantities of heat evolved during freezing indicated that crystallization in the SBO/cosolvent blends studied in this work occurs easily during cooling.
机译:植物油是替代柴油燃料的有吸引力的可再生资源。但是,必须降低植物油相对较高的运动粘度,以使其与常规压燃式发动机和燃料系统更加兼容。共溶剂共混是一种低成本且易于适应的技术,可通过用低M.W稀释植物油来降低粘度。酒精(甲醇或乙醇)。加入由一种或多种两亲化合物组成的助溶剂(A),以溶解原本几乎不混溶的油-极性醇混合物。这项工作研究了由大豆油(SBO)和甲醇(其中A = 8:1(摩尔)正丁醇/油醇)组成的混合物的冷流特性和相平衡行为。 6:1(mol)2-辛醇/三乙基亚油酸铵;和4:1(摩尔)的2-辛醇/ Unadol 40(来自SBO FA的醇);以及2:1(体积/体积)的2号柴油/ SBO和95%的乙醇(其中A =正丁醇)的混合物。将浊点(CP),倾点,冷滤器堵塞点(CFPP)和低温流动试验(LTFT)结果与平衡时测得的相应相分离温度(T-phi)数据进行了比较。尽管CP数据是在非平衡实验条件下测量的,但在T-phi和CP之间发现了几乎线性的相关性。统计分析表明,To也可能与CFPP和LTFT相关。加热和冷却DSC曲线的分析表明,峰值温度可用于预测SBO /助溶剂共混物的冷流性能和T-phi行为。冷却曲线参数比加热曲线参数更容易相关。最后,在冷冻过程中放出的热量相对较少,这表明在这项工作中研究的SBO /助溶剂混合物中的结晶在冷却过程中很容易发生。

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