Evaluation of the Additive Power of Ethanol Obtained from Angola Grass in Direct Distillation Gasoline Samples, Case Study: Straight Run (SR) Gasoline Produced at Luanda Refinery

Morais Pg, Q. En, J. Lf
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Abstract

Alongside the process of blending naphtha, fuel anhydrous ethyl alcohol is an additive recurrently used to adjust commercial properties such as the octane index of gasolines during its formulation. This additive is environmentally recommended due to the promotion of decarbonization in gasolines that is evidenced in its consumption with the reduction of CO2 emissions into the atmosphere, compared to the consumption of other gasolines. There are several ways to obtain the respective additive, the research leads to obtaining it from the Angolan grass (Brachiaria purpurascens "Forsk" Stapf). Angola grass has a low fiber and protein content, thus becoming with low preference in the choice for animal feed and has a significant content of nonnitrogen extractives giving it a high energy potential to be raw material for biofuel production Through an experimental study and on a laboratory scale, alcohol was produced, then the quantities of the two components of the mixture were determined using additive calculations, and then mixed in samples of Straight run (SR) gasolines direct distillation produced in Luanda Refinery. Next, octane index tests were performed in the final mixture by the RON method following ASTM D22699 and adulteration potencies were verified in the samples. The octane index defined to be reached was 95 octane and it was proven that alcohol produced from Angola grass has the potential to promote improvements in octane index, as we found increases in the octane index of additive gasoline shows. We recorded an improvement of the rate of 91% for sample 1 namely the mixture of anhydrous alcohol of grass and light gasoline (SR) of the Luanda Refinery and finally an improvement in the order of 81% for sample 2 namely the mixture of anhydrous alcohol of heavy gasoline grass of the Luanda Refinery. However, it is demonstrating in the first instance starting methodologies for the additive of gasoline samples, and in the second instance the "effect" of a fuel anhydrous alcohol derived from a "differentiated matter" called Angola grass, when used as an additive in direct distillation gasoline, which is concluded to be positive.
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评价从安哥拉草中提取的乙醇在直接蒸馏汽油样品中的添加力,以罗安达炼油厂生产的直馏(SR)汽油为例
在混合石脑油的过程中,燃料无水乙醇是一种添加剂,经常用于调整商业性质,如汽油的辛烷值指数。这种添加剂是环保的推荐,因为它促进了汽油中的脱碳,与其他汽油的消耗相比,它的消耗与减少二氧化碳排放到大气中证明了这一点。有几种方法可以获得相应的添加剂,研究导致从安哥拉草(Brachiaria purpurascens“Forsk”Stapf)中获得。安哥拉草纤维和蛋白质含量低,因此成为动物饲料的低偏好选择,非氮提取物含量高,使其具有成为生物燃料生产原料的高能量潜力。通过实验研究和实验室规模,生产酒精,然后使用添加剂计算确定混合物的两种成分的数量。然后与罗安达炼油厂生产的直馏(SR)汽油样品混合。接下来,根据ASTM D22699,用RON法对最终混合物进行辛烷值指数测试,并在样品中验证掺假强度。确定要达到的辛烷值为95辛烷值,并且证明从安哥拉草中生产的酒精有可能促进辛烷值指数的改善,因为我们发现添加剂汽油显示的辛烷值指数有所增加。我们记录了样品1(即罗安达炼油厂的无水酒精草和轻质汽油(SR)的混合物)的改进率为91%,最后样品2(即罗安达炼油厂的重汽油草的无水酒精混合物)的改进率为81%。然而,它首先展示了汽油样品添加剂的起始方法,其次展示了从称为安哥拉草的“分化物质”中提取的燃料无水酒精作为直接蒸馏汽油添加剂的“效果”,结论是积极的。
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