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Study on the solubilization capacity of bio-oil in diesel by microemulsion technology with Span80 as surfactant

机译:以Span80为表面活性剂的微乳液技术研究柴油中生物油的增溶能力

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Bio-oils obtained from liquefaction/pyrolysis of biomass have undesired properties such as high water content (15-25 wt%), high oxygen content (low heating value), high corrosiveness (acidity) and instability. Therefore, they cannot be directly adopted for fuel applications. Solubilizing bio-oil in diesel by microemulsion technology is one of the most convenient approaches for further upgrading bio-oil. In this work, a synthetic bio-oil was prepared to overcome the limitation posed by complex nature and instability of crude bio-oil. Effects of several microemulsion parameters on the solubilization capacity of bio-oil in diesel were evaluated, including initial bio-oil/diesel volume ratio (B/D ratio), surfactant concentration (Span80), cosurfactant type (n-butanol, n-pentanol, n-hexanol, n-heptanol and n-octanol) and the mass ratio of cosurfactant/surfactant (C/S ratio). The optimum bio-oil/diesel volume ratio was 5:5. The proper concentration of Span80 was 0.36 M. N-octanol was certified as an ideal cosurfactant. A proper C/S ratio of 0.40 was suggested. Meanwhile, fuel properties of bio-oil/diesel microemulsion were examined, including heating value, density, kinematic viscosity, cloud point, pour point, water content, corrosivity and stability. Elemental analysis and thermogravimetric analysis of bio-oil/diesel microemulsion were conducted. Compared with the original synthetic bio-oil, the bio-oil/diesel microemulsion had more desirable fuel properties close to diesel.
机译:从生物质的液化/热解获得的生物油具有不希望的性质,例如高水含量(15-25 wt%),高氧含量(低热值),高腐蚀性(酸度)和不稳定性。因此,它们不能直接用于燃料应用。通过微乳化技术增溶柴油中的生物油是进一步提质生物油的最便捷方法之一。在这项工作中,制备了一种合成生物油,以克服由于生物油的复杂性和不稳定性造成的限制。评估了几种微乳液参数对柴油中生物油增溶能力的影响,包括初始生物油/柴油体积比(B / D比),表面活性剂浓度(Span80),助表面活性剂类型(正丁醇,正戊醇) ,正己醇,正庚醇和正辛醇)和助表面活性剂/表面活性剂的质量比(C / S比)。最佳生物油/柴油体积比为5:5。 Span80的适当浓度为0.36M。N-辛醇被证明是理想的辅助表面活性剂。建议适当的C / S比为0.40。同时,研究了生物油/柴油微乳液的燃料性质,包括热值,密度,运动粘度,浊点,倾点,水含量,腐蚀性和稳定性。进行了生物油/柴油微乳液的元素分析和热重分析。与原始的合成生物油相比,该生物油/柴油微乳液具有更接近柴油的理想燃料性能。

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