Improving the low-temperature properties of alternative diesel fuels: Vegetable oil-derived methyl esters

被引:148
作者
Dunn, RO
Shockley, MW
Bagby, MO
机构
[1] Oil Chemical Research, USDA, ARS, Peoria
[2] Oil Chemical Research, USDA, ARS, Peoria, IL 61604
关键词
biodiesel; cloud point; cold filter plugging point; diesel fuel; kinematic viscosity; low-temperature flow test; methyl esters; pour point; soybean oil; winterization;
D O I
10.1007/BF02517978
中图分类号
O69 [应用化学];
学科分类号
081704 ;
摘要
This work explores near-term approaches for improving the low-temperature properties of triglyceride oil-derived fuels for direct-injection compression-ignition (diesel) engines. Methyl esters from transesterified soybean oil were evaluated as a neat fuel and in blends with petroleum middle distillates. Winterization showed that the cloud point (CP) of methyl soyate may be reduced to -16 degrees C. Twelve cold-flow additives marketed for distillates were tested by standard petroleum methodologies, including CP, pour point (PP), kinematic viscosity, cold filter plugging point (CFPP), and low-temperature flow test (LTFT). Results showed that additive treatment significantly improves the PP of distillate/methyl ester blends; however, additives do not greatly affect CP or viscosity. Both CFPP and LTFT were nearly linear functions of CP, a result that compares well with earlier studies with untreated distillate/methyl ester blends. In particular, additives proved capable of reducing LTFT of neat methyl esters by 5-6 degrees C. This work supports earlier research on the low-temperature properties; that is, approaches for improving the cold flow of methyl ester-based diesel fuels should continue to focus on reducing CP.
引用
收藏
页码:1719 / 1728
页数:10
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