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Synthesis of renewable heterogeneous acid catalyst from oil palm empty fruit bunch for glycerol-free biodiesel production

机译:从油棕空果束对可再生异质酸催化剂的合成免于甘油的生物柴油生产

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摘要

Interest in biodiesel research has escalated over the years due to dwindling fossil fuel reserves. The implementation of a carbon-based solid acid catalyst in biodiesel production eradicates the separation problems associated with homogeneous catalysis. However, its application in the glycerol-free interesterification process for biodiesel production is still rarely being studied in the literature. In this study, novel environmentally benign catalysts were prepared from oil palm empty fruit bunch (OPEFB) derived activated carbon (AC) which is sustainable and low cost via direct sulfonation using concentrated sulfuric acid. The effects of synthesizing variables such as carbonization and sulfonation temperatures with different holding times towards the fatty acid methyl ester (FAME) yield in interesterification reaction with oleic acid and methyl acetate were investigated in detail. It was found that the optimum carbonization temperature and duration together with sulfonation temperature and duration were 600 °C, 3 h, 100 °C and 6 h, respectively. The catalyst possessed an amorphous structure with a high total acid density of 9.0 mmol NaOH g~(-1) due to the well-developed porous framework structure of the carbon support Under these optimum conditions, the OPEFB derived solid acid catalyst recorded an excellent catalytic activity of 50.5% methyl oleate yield at 100 °C after 8 h with 50:1 methyl acetate to oleic acid molar ratio and 10 wt% catalyst dosage. The heterogeneous acid catalyst derived from OPEFB had shown promising properties that made them highly suitable for cost-effective and environmental-friendly glycerol-free biodiesel production.
机译:由于Dwindling Fossil燃油储备,多年来对生物柴油研究的兴趣升级。生物柴油生产中碳基固体酸催化剂的实施消除了与均匀催化相关的分离问题。然而,其在甘油无利让利差过程中的生物柴油生产过程仍然很少在文献中进行研究。在该研究中,新颖的环境良性催化剂由油棕空果束(OPEFB)衍生的活性炭(AC)制备,其通过使用浓硫酸直接磺化可持续和低成本。详细研究了合成变量,例如碳化和磺化温度与不同的保持时间朝向脂肪酸甲酯(FAME)含量与油酸和乙酸甲酯的脂肪酸甲酯(MS)产率的影响。发现,最佳的碳化温度和持续时间与磺化温度和持续时间一起分别为600℃,3小时,100℃和6小时。由于在这些最佳条件下,由于在这些最佳条件下碳载体的良好多孔框架结构,催化剂具有高9.0mmol NaOH G〜(-1)的无定形结构,因此渗透性的固体酸催化剂记录了优异的催化剂8小时后,50:1乙酸甲酯与油酸摩尔比和10wt%催化剂剂量为100℃,50.5%甲酯在100℃下产量为100℃。衍生自OPEFB的非均相酸催化剂已经显示出具有高度适用于成本效益和环保的无甘油的生物柴油生产的有前途的性质。

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  • 来源
    《The Science of the Total Environment》 |2020年第jul20期|1385341.1-138534.12|共12页
  • 作者单位

    Department of Chemical Engineering Lee Kong Chian Faculty of Engineering and Science Universiti Tunku Abdul Rahman 43000 Kajang Selangor Malaysia;

    Department of Chemical Engineering Lee Kong Chian Faculty of Engineering and Science Universiti Tunku Abdul Rahman 43000 Kajang Selangor Malaysia Centre for Photonics and Advanced Materials Research Universiti Tunku Abdul Rahman 43000 Kajang Selangor Malaysia;

    Department of Chemical Engineering Lee Kong Chian Faculty of Engineering and Science Universiti Tunku Abdul Rahman 43000 Kajang Selangor Malaysia Centre for Photonics and Advanced Materials Research Universiti Tunku Abdul Rahman 43000 Kajang Selangor Malaysia;

    Department of Chemical Engineering Lee Kong Chian Faculty of Engineering and Science Universiti Tunku Abdul Rahman 43000 Kajang Selangor Malaysia Centre for Photonics and Advanced Materials Research Universiti Tunku Abdul Rahman 43000 Kajang Selangor Malaysia;

    Department of Aeronautics and Astronautics National Cheng Kung University Tainan 701 Taiwan Department of Chemical and Materials Engineering College of Engineering Tunghai University Taichung 407 Taiwan Department of Mechanical Engineering National Chin-Yi University of Technology Taichung 411 Taiwan;

    School of Chemical Engineering Universiti Sains Malaysia Engineering Campus Seri Ampangan Nibong Tebal 14300 Pulau Pinang Malaysia;

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

    Biodiesel; Interesterification; Methyl acetate; Oil palm empty fruit bunch; Heterogeneous acid catalysis; Biomass;

    机译:生物柴油;有关的;乙酸甲酯;油棕榈空果实;异质酸催化;生物量;

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