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The Fast Pyrolysis Characteristics of Palm Empty Fruit Bunch: The Yield and Homogeneity of Biocrudeoil Affected by Ash

机译:棕榈空果束的快速热解特性:灰分影响生物原油的产量和均质性

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摘要

In the palm oil industry, the palm fresh fruit bunch (FFB) is used to make crude palm oil. During the oil manufacturing process, the palm empty fruit bunch (EFB), which accounts for more than 20 wt % of the FFB, is generated as a byproduct. Although large amounts of EFB are generated every year in Malaysia, the EFB is treated as waste material because commercial technologies for thermochemical conversion of EFB into renewable energy are still in development. Hence, if a robust conversion method is found, the EFB will be an appealing renewable energy source. In this study, the fast pyrolysis of the EFB was conducted in a laboratory-scale (throughput = 1 kg/h) bubbling fluidized bed reactor. The sample material was imported from Waris Selesa Sdn. Bhd. in Malaysia. First, this EFB was characterized using proximate and ultimate analytic methods, among others. Additionally, thermogravimetric analysis was conducted to determine the basic thermal degradative characteristics of the EFB. However, one of most difficult problems in manufacturing homogeneous biocrude oil from EFB is its high ash content. The ash content of EFB is more than 7 wt %, which may decrease the yield and quality of resultant biocrude oil. Hence, in this study, the effect of changing the ash content of the EFB on the yield of biocrude oil was examined. Moreover, the pyrolysis reaction temperature was varied from 400 to 650℃ to determine the pyrolysis conditions for the optimal yield and quality of biocrude oil. The quality of the biocrude oil was determined based on its homogeneity, which was quantified using microscopy and image-processing technology.
机译:在棕榈油工业中,棕榈新鲜水果束(FFB)用于制造粗棕榈油。在制油过程中,产生的棕榈空果束(EFB)占FFB的20%以上。尽管马来西亚每年产生大量的EFB,但EFB被视为废料,因为将EFB热化学转化为可再生能源的商业技术仍在开发中。因此,如果找到可靠的转换方法,EFB将是有吸引力的可再生能源。在这项研究中,EFB的快速热解是在实验室规模(通量= 1 kg / h)鼓泡流化床反应器中进行的。样品材料是从Waris Selesa Sdn。马来西亚的Bhd。首先,该EFB的特征是使用近似分析和最终分析方法进行表征。此外,进行了热重分析,以确定EFB的基本热降解特性。然而,由EFB制造均质生物原油中最困难的问题之一是其高灰分含量。 EFB的灰分含量超过7重量%,这可能降低所得生物原油的产率和质量。因此,在这项研究中,研究了改变EFB的灰分含量对生物原油产量的影响。此外,热解反应温度在400至650℃之间变化,以确定热解条件,以获得最佳的生物原油产量和质量。生物原油的质量是根据其均质性确定的,并使用显微镜和图像处理技术对其进行了量化。

著录项

  • 来源
    《Environmental progress》 |2014年第3期|706-710|共5页
  • 作者单位

    Department of Environmental Engineering, Yonsei University, Wonju 220-710, Republic of Korea;

    Department of Environmental Engineering, Yonsei University, Wonju 220-710, Republic of Korea;

    Department of Environmental Engineering, Yonsei University, Wonju 220-710, Republic of Korea;

    Department of Environmental Engineering, Yonsei University, Wonju 220-710, Republic of Korea;

    Department of Environmental Engineering, Yonsei University, Wonju 220-710, Republic of Korea;

    Department of Environmental Engineering, Yonsei University, Wonju 220-710, Republic of Korea;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    pyrolysis; biocrude oil; bubbling fluidized bed; palm oil industry; palm mill wastes;

    机译:热解生物原油鼓泡流化床;棕榈油行业;棕榈磨废料;
  • 入库时间 2022-08-17 13:28:12

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