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Biodiesel Potential of Nonfood Plant Resources from Tsinling and Zhongtiao Mountains of China

机译:秦岭和中条山非食用植物资源的生物柴油潜力

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摘要

Forty-nine wild oil plants which are abundant in the Tsinling and Zhongtiao Mountains were investigated and screened as raw material for biodiesel production. The oil content was tested and found to be greatly variable, ranging from 10 to 62.8 %. Fatty acid profiles of their vegetable oils were analyzed, and their acid value, saponification number, and iodine value were found to range from 1.6 to 61.3 mg KOH/g, 128.6 to 225.9 mg KOH/g, and 54.3 to 120.9 g I2/100 g, respectively. Cetane number, kinematic viscosity, specific gravity, high heating values, and cold filter plugging point of the 49 vegetable-oil methyl esters (MEs) were empirically calculated and were found to vary from 38.8 to 66.6, 2.9 to 4.2 mm2/s, 841.4 to 883.8 kg/m3, 39.0 to 47.5 kJ/g, and −14.3 to 13.2 °C, respectively. Almost half (25 species) of all the sampled resources were found to be suitable for biodiesel production since the profiles of their vegetable-oil MEs met the major specifications of Chinese and European Union biodiesel standards, GB/T20828 and EN-14214, respectively. Grey relational analysis was used during the optimum-species screening process. The difference between the individual species and the artificial designed ideal species (the best biodiesel plant type in this paper) was calculated and evaluated with the help of grey relational grade, which varied from 0.467 to 0.686. Finally, the selected plants, Prunus salicina Linn. and Amygdalus davidiana (C.) C. de Vos, were considered as the optimal feedstock for biodiesel production.
机译:调查并筛选了在秦岭和中条山丰富的四十九种野生油料植物,并将其作为生产生物柴油的原料。经过测试,发现油含量变化很大,范围从10%到62.8%。分析了其植物油的脂肪酸谱,发现其酸值,皂化值和碘值范围为1.6至61.3 mg KOH / g,128.6至225.9 mg KOH / g和54.3至120.9 g I2 / 100 g,分别。通过经验计算了49种植物油甲基酯(ME)的十六烷值,运动粘度,比重,高热值和冷滤器堵塞点,发现其变化范围为38.8至66.6、2.9至4.2 mm2 / s,841.4分别为883.8 kg / m3、39.0至47.5 kJ / g和-14.3至13.2°C。所有样本资源中几乎有一半(25种)适合于生物柴油的生产,因为它们的植物油ME的特性分别符合中国和欧盟生物柴油标准的主要规格,分别为GB / T20828和EN-14214。在最佳物种筛选过程中使用了灰色关联分析。在灰色关联度的帮助下,计算并评估了单个物种与人工设计的理想物种(本文中最佳的生物柴油植物类型)之间的差异,该差异介于0.467至0.686之间。最后,选定的植物,李李。和Amygdalus davidiana(C.)C. de Vos被认为是生产生物柴油的最佳原料。

著录项

  • 来源
    《Bioenergy research》 |2013年第3期|1104-1117|共14页
  • 作者单位

    1.College of Agronomy and Biotechnology China Agricultural University 100193 Beijing People’s Republic of China 2.Institute of Crop Science University of Hohenheim 70599 Stuttgart Germany;

    4.The Mina and Everard Goodman Faculty of Life Sciences Bar-Ilan University 52900 Ramat-Gan Israel;

    3.College of Agronomy and Biotechnology/National Energy RD Center for Biomass China Agricultural University 100193 Beijing People’s Republic of China;

    5.Institute of Crop Science Chinese Academy of Agricultural Sciences 100081 Beijing People’s Republic of China;

    6.Institute of Wild Plant Resources Application Hebei Normal University of Science Technology 066600 Qinhuangdao People’s Republic of China;

    3.College of Agronomy and Biotechnology/National Energy RD Center for Biomass China Agricultural University 100193 Beijing People’s Republic of China;

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

    Biodiesel Nonfood oil plants Tsinling plant resources Zhongtiao plant resources Grey relational analysis Optimization;

    机译:生物柴油非食用油植物秦岭植物资源中条植物资源灰色关联分析优化;

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