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HYDROCARBON RENEWABLE AND SYNTHETIC DIESEL FUEL BLENDSTOCKS: COMPOSITION AND PROPERTIES

机译:碳氢化合物可再生和合成柴油燃料混合术:组成和性质

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The properties of synthetic paraffinic and hydrotreated renewable diesel fuels follow logically from their composition. Comprehensive two-dimensional gas chromatographic analysis with nonpolar and polar columns and ~(13)C NMR are powerful techniques for determining the bulk composition of these fuels. These techniques were used to determine the carbon number distributions of total, normal, and isomerized paraffins in a variety of samples, including a Fischer-Tropsch diesel from coal and hydrotreated renewable diesel fuels from vegetable oils, animal fats, and algal oils. The detailed compositions were crucial to providing deeper insight into the chemical and physical property trends. In particular, the compositions were able to elucidate the general differences in properties, such as low temperature operability, ignition delay, distillation profile, density, kinematic viscosity, and net heat of combustion. These properties in particular are crucial to predicting the successful performance of the fuels for use in compression-ignition engines. In each Of the fuels, the fraction of normal to isomerized paraffins and the shape of the carbon number distributions had the largest influence on these properties.
机译:合成石蜡和加氢处理可再生柴油燃料的性质从其组合物逻辑遵循。具有非极性和极柱的综合二维气相色谱分析和〜(13)C NMR是用于确定这些燃料的散装组成的强大技术。这些技术用于确定各种样品中的总,正常和异构化链烷烃的碳数分布,包括来自煤油,动物脂肪和藻类油的煤和加氢处理可再生柴油燃料的Fischer-Tropsch柴油。详细的组合物对于提供深入了解化学和物理性质趋势至关重要。特别地,该组合物能够阐明性质的一般差异,例如低温可操作性,点火延迟,蒸馏曲线,密度,运动粘度和燃烧净热量。这些性质尤其至关重要,以预测燃料的成功性能以用于压缩点火发动机。在每个燃料中,正常到异构化链烷烃的级分和碳数分布的形状对这些性质具有最大的影响。

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