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Potential use of corn leaf waste for biofuel production in Jordan (physio-chemical study)

机译:潜在利用玉米叶废料在约旦生物燃料生产(物理化学研究)

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摘要

The increase in energy demand, especially in Jordan, has encouraged researchers to consider alternative sources of energy, such as biofuel production from agricultural waste. For this study, Jordanian corn leaf waste was characterized by ultimate and proximate analysis, TGA, FTIR and solid state ~(13)C NMR. The waste showed high volatile matter, high atomic H/C ratio and high 0 content. The corn leaf waste contained 32.1 wt% cellulose, 18.1 wt% hemicelluloses and 11.9 wt% lignin. The FTIR and ~(13)C NMR spectrums showed high concentrations of aliphatic and carbonyl carbon. The corn leaf waste was pyrolysed in a temperature range of 300-450 °C under a constant flow rate of nitrogen. Higher oil yield was obtained at pyrolysis temperature of 450 °C. The gas yield and higher heating value of the product increased as the temperature increased, whereas the water content decreased. The biofuels were rich in carbon and had a high oxygen content, which decreased as the temperature increased. The ~1H NMR confirmed the markedly aliphatic character of the biofuel. The GC-MS for the biofuel indicated the presence of hydrocarbon series, large amounts of oxygenated compounds and a few nitrogen and sulfur compounds. The simulated distillation showed a high proportion of diesel fraction (57-73%).
机译:能源需求的增加,特别是在约旦,鼓励研究人员考虑替代能源来源,例如从农业废物中生产生物燃料。对于这项研究,约旦玉米叶废物是通过最终和近似分析,TGA,FTIR和固态〜(13)C NMR的特征。废物显示出高挥发性物质,高原子H / C比和高0含量。玉米叶废料含有32.1wt%纤维素,18.1wt%的半纤维素和11.9wt%木质素。 FTIR和〜(13)C NMR光谱显示出高浓度的脂族和羰基碳。在氮气的恒定流速下,玉米叶废物在300-450℃的温度范围内被热解。在450℃的热解温度下获得较高的油产率。随着温度的增加,产品的气体产量和加热值增加,而水含量降低。生物燃料富含碳并具有高氧含量,随着温度的增加而降低。 〜1H NMR确认了生物燃料的显着脂肪族特征。生物燃料的GC-MS表明存在烃系列,大量含氧化合物和几种氮和硫化合物。模拟蒸馏显示柴油馏分比例高(57-73%)。

著录项

  • 来源
    《Energy》 |2021年第2期|118863.1-118863.11|共11页
  • 作者单位

    Department of Chemistry School of Science The University of Jordan Amman 11942 Jordan;

    School of Chemistry Monash University Clayton Victoria 3800 Australia;

    Department of Chemistry School of Science The University of Jordan Amman 11942 Jordan;

    Department of Chemistry School of Science The University of Jordan Amman 11942 Jordan;

    School of Chemistry Monash University Clayton Victoria 3800 Australia;

    Department of Chemical Engineering Faculty of Engineering Technology Al-Balqa Applied University P.O. Box 15008 Marka 11134 Jordan;

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

    Corn leaf waste; Biomass; Biofuel; Pyrolysis; GC-MS; NMR;

    机译:玉米叶垃圾;生物质;生物燃料;热解;GC-MS;NMR.;

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