首页> 外文期刊>Advances in Chemical Engineering and Science >A Laboratory Study of the Effect of Temperature on Densities and Viscosities of Binary and Ternary Blends of Soybean Oil, Soy Biodiesel and Petroleum Diesel Oil
【24h】

A Laboratory Study of the Effect of Temperature on Densities and Viscosities of Binary and Ternary Blends of Soybean Oil, Soy Biodiesel and Petroleum Diesel Oil

机译:温度对豆油,大豆生物柴油和石油柴油二元和三元混合物的密度和粘度影响的室内研究

获取原文
       

摘要

The depletion of world petroleum reserves and the increased environmental concerns have stimulated the search for alternative sources for petroleum based fuel. The possibility of using vegetable oils as fuel has been recognized, however, due to its high viscosities and low volatilities makes it inefficient for most combustion engines and thus the need to get them chemically altered or transesterified to obtain fatty alkyl esters of the oil (biodiesel). In this study, binary and ternary blends of biodiesel were produced and the effect of temperature on their viscosity and density was investigated. Biodiesel was produced from soybean oil by transesterification of the oil with methanol using potassium hydroxide as a catalyst at a temperature of 60℃ in a batch reactor. Binary and ternary blends of the soy-biodiesel were prepared with soy bean oil and petroleum diesel fuel, respectively. Viscosities and densities of the binary and ternary blends were measured at different temperatures of 20℃ to 90℃ as to determine the effect of temperature on viscosities and densities of the blends. The properties of the soy-biodiesel produced were compared with ASTM standard and found to be within the limits. The results show that the viscosities and densities of both the binary and ternary blends are temperature dependent. The viscosities of binary and ternary blends decreased nonlinearly with temperature, while their densities decreased linearly with temperature. The variation of temperature with viscosity and density of the blends was correlated and the polynomial equation offered the best correlation between temperature and viscosity, while linear equation gave the best correlation between temperature and density. In conclusion, the efficiency of binary and ternary blends of biodiesel in combustion engines is dependent on the viscosity and density of the blends which are invariably temperature dependent.
机译:世界石油储备的枯竭和对环境的日益关注,促使人们寻找石油基燃料的替代来源。然而,已经认识到使用植物油作为燃料的可能性,因为其高粘度和低挥发性使其对于大多数内燃机而言效率低下,因此需要对其进行化学改变或酯交换以获得油的脂肪烷基酯(生物柴油)。 )。在这项研究中,生产了生物柴油的二元和三元混合物,并研究了温度对其粘度和密度的影响。在间歇式反应器中,在60℃的温度下,使用氢氧化钾作为催化剂,通过大豆油与甲醇的酯交换反应,从大豆油中生产生物柴油。大豆生物柴油的二元和三元混合物分别用大豆油和石油柴油制成。在20℃至90℃的不同温度下测量二元和三元共混物的粘度和密度,以确定温度对共混物的粘度和密度的影响。将生产的大豆生物柴油的特性与ASTM标准进行比较,发现其在极限范围内。结果表明,二元和三元混合物的粘度和密度均与温度有关。二元和三元混合物的粘度随温度呈非线性下降,而其密度随温度呈线性下降。将温度随混合物粘度和密度的变化进行关联,多项式方程式在温度和粘度之间的相关性最好,而线性方程式在温度和密度之间的相关性最好。总之,内燃机中生物柴油的二元和三元混合物的效率取决于混合物的粘度和密度,而混合物的粘度和密度始终与温度有关。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号