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A study of the stabilities, microstructures and fuel characteristics of tri-fuel (diesel-biodiesel-ethanol) using various fuel preparation methods

机译:使用各种燃料制备方法研究三燃料(柴油机 - 生物柴油 - 乙醇)的稳定性,微观结构和燃料特性

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In this study, the work was carried out to investigate the effects of ethanol proportions on the stabilities and physicochemical characteristics of tri-fuel (Diesel-Biodiesel-Ethanol). For the first time, tri-fuel emulsions and blended were compared side by side. The experiment was done with composition having 5%, 10%, 15%, 20% and 25 % of ethanol with fixed 10% of biodiesel from palm oil origin on a volume basis into diesel. The results indicated that the phase stabilities of the emulsified fuels were higher compared to the blended fuels. In addition, tri-fuel composition with higher proportion of ethanol were found unstable with high tendency to form layer separation. It was found that tri-fuel emulsion with 5% ethanol content (D85B10E5) was of the best in stability with little separation. Furthermore, tri-fuel with lowest ethanol proportion indicated convincing physicochemical characteristics compared to others. Physicochemical characteristics of tri-fuel blending yield almost similar results to tri-fuel emulsion but degrading as more proportion ethanol content added. Emulsion category had cloudy look but on temporarily basis. Under the microscope, tri-fuel emulsion and blending droplet were similar for its active moving about micro-bubble but distinct in term of detection of collision, average disperse micro-bubble size, the spread and organization of the microstructure.
机译:在这项研究中,进行了该作品,以研究乙醇比例对三燃料(柴油 - 生物柴油 - 乙醇)的稳定性和物理化学特性的影响。首次,三燃料乳液并混合并排比较。该实验用具有5%,10%,15%,20%和25%乙醇的组合物进行,该乙醇固定在棕榈油源的10%的生物柴油上以体积的基础,进入柴油。结果表明,与混纺燃料相比,乳化燃料的相稳定性较高。另外,具有较高比例的乙醇的三燃料组合物不稳定,具有高倾向于形成层分离。结果发现,具有5%乙醇含量(D85b10e5)的三燃料乳液是最佳的稳定性,几乎没有分离。此外,与其他相比,具有最低乙醇比例的三燃料指示了令人信服的物理化学特性。作为三燃料乳液的三燃料混合产量的物理化学特性几乎与三燃料乳液相似,但随着更多比例加入乙醇含量。乳液类别的阴天外观,但暂时依据。在显微镜下,三燃料乳液和混合液滴类似于其主动移动关于微气泡,但在检测碰撞的检测期间不同,平均分散微泡尺寸,微观结构的扩散和组织的术语。

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