【2h】

Oil yield from

机译:油产量来自

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摘要

Due to the worldwide increase in the demands for bioenergy sources to replace fossil fuels. Euphorbia tirucalli oil produced by stems and modified leaves (phylloclades) is a valuable liquid fuel as an alternative energy source for biofuel production. In this study, E. tirucalli oils were extracted from stem barks with varying stem girths (20cm–80cm) and fully grown apical phylloclades. Soxhlet apparatus was used in oil extraction according to Luque de Castro and García (2000). The percentage (%) oil yield was calculated by the weight of extracted oil to the total weight of the dried sample (20g). The study hypothesized that significantly higher oil yields would be obtained from larger stem girths than phylloclades of the same trees in different Agro-Ecological Zones (AEZs). Likewise, the difference in oil yields was higher in the Semi-arid AEZ than in the Southern highland and the Coast AEZs (p > 0.05). Results showed slightly higher oil yields from large stem girths [16.47% ± 0.34%/(20g) max ≡ 82.35% ± 0.34%/(100g) max] than phylloclades [15.7% ± 0.49%/(20g) max ≡ 78.5% ± 0.34%/(100gmax] in different AEZs. Oil yields from Semi-arid [82.35% ± 0.34%/(100g) max and 78.5% ± 0.49%/(100g) max] were slightly higher than Southern highland [79.0% ± 0.34%/(100g) max and 76.4% ± 0.49%/(100g) max] and the Coast [76.4% ± 0.34%/(100g) max and 70.25% ± 0.49%/(100g) max] AEZ. But the difference in oil yields was not significant (p > 0.05). Results exhibited increasing patterns in the percentage (%) oil yields from low (20cm) to larger (80cm) stem girths. High oil yields between stem girths (82.35%) and phylloclades (78.5%) suggest that E. tirucalli oil is suitable for liquid biofuel production as an energy source in Tanzania.
机译:由于全球对生物能源来源的需求增加,以取代化石燃料。由茎和改性叶片产生的大戟属Tirucalli油(Phylloclades)是一种有价值的液体燃料,作为生物燃料生产的替代能源。在本研究中,E.硫磺酸从具有不同茎长(20cm-80cm)和完全生长的顶端螺旋状皮肤的茎吠粒中提取。根据Luque de Castro和García(2000),Soxhlet装置用于油提取。通过提取的油的重量与干燥样品(20g)的总重量计算的百分比(%)油产率计算。该研究假设从不同农业生态区(AEZs)中的相同树木的近距离曲线,从较大的茎长获得显着提高的油产量。同样,半干旱AEZ的油产量差异高于南部高地和海岸AEZ(P> 0.05)。结果表明,大茎周围的油产量略高于底层[16.47%±0.34%/(20g)最大值≥82.35%±0.34%/(100g)最大值] [15.7%±0.49%/(20g)max≡78.5%±不同AEZ中的0.34%/(100gmax]。来自半干旱的油产量[82.35%±0.34%/(100g)Max和78.5%±0.49%/(100g)max]略高于南高兰(Southern Highland)[79.0%±0.34 %/(100g)最大值和76.4%±0.49%/(100g)最大值,海岸[76.4%±0.34%/(100g)max和70.25%±0.49%/(100g)max] aez。但差异油产量不显着(p> 0.05)。结果表现出百分比(%)油产量的增加的模式(20厘米)到较大(80厘米)的茎长。茎长(82.35%)和植物(78.5)之间的高油产量(78.5 %)表明E. Tirucalli油适用于坦桑尼亚的能源生物燃料生产。

著录项

  • 期刊名称 Heliyon
  • 作者

    Hamisi Yunus Nchimbi;

  • 作者单位
  • 年(卷),期 2021(7),3
  • 年度 2021
  • 页码 e06397
  • 总页数 7
  • 原文格式 PDF
  • 正文语种
  • 中图分类
  • 关键词

    E. tirucalli;

    机译:E. Tirucalli.;

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