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Towards a more efficient Hydrothermal Carbonization: Processing water recirculation under different conditions

机译:朝着更有效的水热碳化:在不同条件下加工水再循环

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摘要

The use of Processing Water (PW) on the Hydrothermal Carbonization (HTC) of tunisian pine cones was investigated under different temperature (200 and 240 °C) and residence time conditions (3 and 20 h). Recir-culating PW improved the HC (hydrochar) solid yield, without being detrimental to the carbon content of the HC. The heating value of the HCs, that with a single reaction already involved a rise of this parameter in the range 22.1-55.8% as compared to the raw material, was further increased up to 24.9-58.6% for cyclic runs. This was attributed to enhanced secondary char formation by reusing liquid, although this effect depended on the severity of previous HTC and was affected by both temperature and time. The HCs showed an increment on C and especially on N for cyclic runs. Also, thermal degradation peaks during HC TGA/DTA analyses showed a broader temperature range decomposition upon pyrolysis when PW was recirculated. The modifications of HC surface morphologies and functional groups was also investigated and associated to related reaction mechanisms.
机译:在不同温度(200和240℃)和停留时间条件下(3和20小时)研究了在突尼斯松锥体水热碳化(HTC)上的处理水(PW)。 Recir-Cutul PW改善HC(Hymrochar)固体产率,而不会对HC的碳含量有害。与原料相比,HCS的加热值已经涉及该参数的升高在22.1-55.8%范围内,循环循环的进一步增加至24.9-58.6%。这归因于通过重用液体增强二级炭形成,尽管这种效果取决于先前HTC的严重程度,并且受温度和时间的影响。 HCS在C上呈现为C,尤其是用于循环运行的N。此外,HC TGA / DTA分析期间的热降解峰在再循环PW时在热解时显示出更宽的温度范围分解。还研究了HC表面形态和官能团的修饰并与相关的反应机制相关。

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  • 来源
    《Waste Management》 |2021年第8期|115-123|共9页
  • 作者单位

    Laboratory of Process Engineering and Industrial Systems (LR11ES54) National School of Engineering of Gabes University of Gabes Medenine Street 6029 Tunisia;

    Applied Physics Department Industrial Engineering School University of Extremadura Avda. Elvas s/n 06006 Badajoz Spain;

    Applied Physics Department Industrial Engineering School University of Extremadura Avda. Elvas s/n 06006 Badajoz Spain;

    Applied Physics Department Industrial Engineering School University of Extremadura Avda. Elvas s/n 06006 Badajoz Spain;

    Laboratory of Process Engineering and Industrial Systems (LR11ES54) National School of Engineering of Gabes University of Gabes Medenine Street 6029 Tunisia;

    Laboratory of Process Engineering and Industrial Systems (LR11ES54) National School of Engineering of Gabes University of Gabes Medenine Street 6029 Tunisia;

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

    Hydrochars; Hydrothermal carbonization; Recycling process water;

    机译:hydrochars;水热碳化;回收过程用水;

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