首页> 外文期刊>Journal of Sustainable Bioenergy Systems >Physicochemical Characterization of Jatropha curcas Linn Oil for Biodiesel Production in Nebbi and Mokono Districts in Uganda
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Physicochemical Characterization of Jatropha curcas Linn Oil for Biodiesel Production in Nebbi and Mokono Districts in Uganda

机译:乌干达内比和莫科诺地区麻疯树麻疯树油用于生物柴油生产的理化特性

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摘要

Jatropha curcas Linn has been identified worldwide as one of the sources of biodiesel. Biodiesel has energy properties close to fossil diesel and can be a potential energy alternative. However, these properties may vary based on soils, plant genetics and agro-climatic conditions in a given geographical location. Several studies on biodiesel production under such conditions have been done elsewhere, but few have been done on J, curcas oil in Uganda. This study analysed the physicochemical properties of J, curcas L. oil for biodiesel production in Nebbi and Mukono districts using American Standards and Testing Methods (ASTM D6751) and European Standards (EN 14214). J. curcas seed kernel contained 51% w/w and 48% w/w of oil with high levels of Free Fatty Acids (1.52% and 1.93%) and acid values (35 and 36 mg KOH/g) for Nebbi and Mukono, respectively; the difference was significant (p S 0.05). Generally, the quality and quantity of the oil from Nebbi were better than those of Mukono, based on the biodiesel standard values. Nevertheless, kinematic viscosity, acidity, potassium and phosphorus content values were found abnormally high (31.46 - 33.23 mm~2/s, 35.23 - 36.66 mg KOH/g, 16.50 - 20.52 mg/100g and 16.13 - 26.02 mg/kg, respectively) for both regions as compared to the standard values (3.5 - 5.0 mm~2/s, 2 mg KOH/g, <5 mg/100g and <10 mg/kg, respectively) of biodiesel for diesel engine. Such properties are very important for engine fuels and if not considered well, may affect engine performance negatively. Therefore adequate treatment of the oil by degumming, etherification and transesterifi-cation before use in a diesel engine could avert this difficulty.
机译:麻风树麻疯树已被全世界确定为生物柴油的来源之一。生物柴油具有接近化石柴油的能源特性,可以作为潜在的能源替代品。但是,这些属性可能会根据给定地理位置的土壤,植物遗传学和农业气候条件而有所不同。在其他条件下已经进行了一些有关在这种条件下生产生物柴油的研究,但在乌干达对J豆腐油的研究很少。这项研究使用美国标准和测试方法(ASTM D6751)和欧洲标准(EN 14214)分析了内比和穆科诺区生产生物柴油的麻疯树油的理化特性。麻疯树种子仁含有51%w / w和48%w / w的油,内比和Mukono的游离脂肪酸含量高(1.52%和1.93%),酸值分别为35和36 mg KOH / g,分别;差异是显着的(PS 0.05)。通常,根据生物柴油标准值,内比的油质和量要好于Mukono。然而,发现运动粘度,酸度,钾和磷含量值异常高(分别为31.46-33.23 mm〜2 / s,35.23-36.66 mg KOH / g,16.50-20.52 mg / 100g和16.13-26.02 mg / kg)相对于柴油发动机生物柴油的标准值(分别为3.5-5.0 mm〜2 / s,2 mg KOH / g,<5 mg / 100g和<10 mg / kg)。这些特性对发动机燃料非常重要,如果考虑不周,可能会对发动机性能产生负面影响。因此,在柴油机上使用之前,通过脱胶,醚化和酯交换反应对机油进行充分处理可以避免这种困难。

著录项

  • 来源
    《Journal of Sustainable Bioenergy Systems》 |2015年第3期|104-113|共10页
  • 作者单位

    National Forestry Resources Research Institute (NaFORRI), National Agricultural Research Organisation (NARO), Kampala, Uganda;

    National Forestry Resources Research Institute (NaFORRI), National Agricultural Research Organisation (NARO), Kampala, Uganda;

    National Forestry Resources Research Institute (NaFORRI), National Agricultural Research Organisation (NARO), Kampala, Uganda;

    National Forestry Resources Research Institute (NaFORRI), National Agricultural Research Organisation (NARO), Kampala, Uganda;

    College of Engineering, Design, Art and Technology (CEDAT), Makerere University, Kampala, Uganda;

    National Forestry Resources Research Institute (NaFORRI), National Agricultural Research Organisation (NARO), Kampala, Uganda;

    National Forestry Resources Research Institute (NaFORRI), National Agricultural Research Organisation (NARO), Kampala, Uganda;

    National Forestry Resources Research Institute (NaFORRI), National Agricultural Research Organisation (NARO), Kampala, Uganda;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    J. curcas; Oil; Biodiesel; Engine; Energy;

    机译:J. curcas;油;生物柴油发动机;能源;

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