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Kenaf stems: Thermal characterization and conversion for biofuel and biochar production

机译:Kenaf Stefs:生物燃料和生物炭生产的热表征和转换

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摘要

Kenaf stems are characterized in this present investigation in order to assess their suitability in energy recovery through a pyrolysis process and to identify sustainable applications of the generated biochar. In particular, the raw biomass properties are analyzed using numerous analytical techniques such as thermogravimetric analyses (TGA/DTG), X-Ray Fluorescence (XRF) and Scanning Electronic Microscopy (SEM). First, the thermogravimetric analyses monitor the pyrolysis parameters, control the proportion of its outputs and allow to extract the kinetic parameters. The latter is determined using Friedman, Flynn-Wall-Ozawa (FWO) and Kissinger-Akahira-Sunose (KAS) models.In a second step, Kenaf derived chars are produced at different pyrolysis temperatures and their physicochemical, morphological, textural and structural properties are determined using different techniques such as CO2 adsorption, Raman Spectroscopy, and DRIFT Spectroscopy.The main results confirm the Kenaf potential for energy applications as its thermal properties are more interesting compared to other usual crops. The Kenaf stem derived char is also very promising for pollutants removal or gas storage as its surface area as well as its microporous structure are interestingly developed when increasing the pyrolysis temperature. Kenaf char could be also chemically or physically activated in order to be used for pollutants removal from gaseous and aqueous effluents.Finally, the XRF analysis indicated that contents in K and P elements are high. Ca and Mg are also major mineral species in the char. These contents indicate that Kenaf derived char could be also suitable for agricultural soil amendments.
机译:在本发明的研究中,Kenaf茎的特征在于通过热解过程评估它们在能量恢复中的适合性,并鉴定生物炭的可持续应用。特别地,使用许多分析技术(例如热重分析(TGA / DTG),X射线荧光(XRF)和扫描电子显微镜(SEM))分析原料生物质性质。首先,热重分析分析监测热解参数,控制其输出的比例并允许提取动力学参数。使用弗里曼,飞纳 - 沃德 - 瓦川(FWO)和基辛格-Akahira-Sunose(KAS)模型确定。第二步,keenaf衍生的字符在不同的热解温度和它们的物理化学,形态学,纹理和结构性质中产生使用不同的技术确定如CO 2吸附,拉曼光谱和漂移光谱。主要结果证实了随着其热性能与其他常规作物相比的热性能更有趣的能源应用。 KENAF茎衍生的CHAR也很有前途对于污染物去除或气体存储,以及其表面积以及其微孔结构在增加热解温时是有趣的。 Kenaf Char也可以化学或物理活化,以便用于从气体和水性流出物中去除污染物。末端,XRF分析表明K和P元素中的含量高。 Ca和Mg也是Char中的主要矿物质。这些内容表明洋地区衍生的炭也可能适用于农业土壤修正。

著录项

  • 来源
    《Fuel 》 |2020年第15期| 116654.1-116654.11| 共11页
  • 作者单位

    Ctr Water Res & Technol CERTE Lab Wastewaters & Environm Technopk Borj Cedria Tourist Rd Soliman BP 273 Soliman 8020 Tunisia;

    Univ Strasbourg Univ Haute Alsace ISM2 CNRS UMR 7361 Mulhouse France;

    Ctr Water Res & Technol CERTE Lab Wastewaters & Environm Technopk Borj Cedria Tourist Rd Soliman BP 273 Soliman 8020 Tunisia|Univ Strasbourg Univ Haute Alsace ISM2 CNRS UMR 7361 Mulhouse France;

    Univ Strasbourg Univ Haute Alsace ISM2 CNRS UMR 7361 Mulhouse France;

    Sultan Qaboos Univ Ctr Environm Studies & Res Muscat Oman;

    Univ Strasbourg Univ Haute Alsace ISM2 CNRS UMR 7361 Mulhouse France;

    Univ Strasbourg Univ Haute Alsace ISM2 CNRS UMR 7361 Mulhouse France;

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

    Kenaf; Characterization; Pyrolysis; Biochar; Textural properties; Mineral contents;

    机译:kenaf;表征;热解;生物炭;纹理性质;矿物质内容;

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