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Advanced Biofuels Based on Fischer–Tropsch Synthesis for Applications in Gasoline Engines

机译:基于Fischer-Tropsch合成的高级生物燃料在汽油发动机中的应用

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摘要

The aim of the article is to determine the properties of fuel mixtures of Fischer–Tropsch naphtha fraction with traditional gasoline (petrol) to be able to integrate the production of advanced alternative fuel based on Fischer–Tropsch synthesis into existing fuel markets. The density, octane number, vapor pressure, cloud point, water content, sulphur content, refractive index, ASTM color, heat of combustion, and fuel composition were measured using the gas chromatography method PIONA. It was found that fuel properties of Fischer–Tropsch naphtha fraction is not much comparable to conventional gasoline (petrol) due to the high n-alkane content. This research work recommends the creation of a low-percentage mixture of 3 vol.% of FT naphtha fraction with traditional gasoline to minimize negative effects—similar to the current legislative limit of 5 vol.% of bioethanol in E5 gasoline. FT naphtha fraction as a biocomponent does not contain sulphur or polyaromatic hydrocarbons nor benzene. Waste materials can be processed by FT synthesis. Fischer–Tropsch synthesis can be considered a universal fuel—the naphtha fraction cut can be declared as a biocomponent for gasoline fuel without any further necessary catalytic upgrading.
机译:本文的目的是确定与传统的汽油(汽油)的Fischer-Tropscoptha零件的燃料混合物的性质能够将基于Fischer-Tropsch合成的高级替代燃料的生产整合到现有的燃料市场中。使用气相色谱法测定密度,辛烷值,蒸气压,浊点,水含量,硫含量,折射率,ASTM颜色,燃烧热和燃料组合物。发现由于高N烷烃含量,Fischer-Tropschapha馏分的燃料特性与常规汽油(汽油)相当。这项研究工作建议创造3体积的3体百分比的混合物。占FT石尾草级别的百分比与传统汽油,以尽量减少负面影响 - 类似于5 Vol的目前的立法限制。E5汽油中的生物乙醇的百分比。作为生物组分的Ft石脑油级分不含硫或多芳烃或苯。废料可以通过FT合成加工。 Fischer-Tropsch合成可以被认为是通用燃料 - 石脑油馏分切割可以被宣布为汽油燃料的生物组分,而无需进一步必要的催化升级。

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