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Thermal conductivity characteristics of dewatered sewage sludge by thermal hydrolysis reaction

机译:热水解反应脱水污泥的导热系数

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摘要

The purpose of this study is to quantify the thermal conductivity of sewage sludge related to reaction temperature for the optimal design of a thermal hydrolysis reactor. We continuously quantified the thermal conductivity of dewatered sludge related to the reaction temperature. As the reaction temperature increased, the dewatered sludge is thermally liquefied under high temperature and pressure by the thermal hydrolysis reaction. Therefore, the bound water in the sludge cells comes out as free water, which changes the dewatered sludge from a solid phase to slurry in a liquid phase. As a result, the thermal conductivity of the sludge was more than 2.64 times lower than that of the water at 20. However, above 200, it became 0.704 W/m· ℃, which is about 4% higher than that of water. As a result, the change in physical properties due to thermal hydrolysis appears to be an important factor for heat transfer efficiency.Implications: The thermal conductivity of dewatered sludge is an important factor the optimal design of a thermal hydrolysis reactor. The dewatered sludge is thermally liquefied under high temperature and pressure by the thermal hydrolysis reaction. The liquid phase slurry has a higher thermal conductivity than pure water.
机译:这项研究的目的是量化与反应温度相关的污水污泥的热导率,以优化热水解反应器的设计。我们不断地量化与反应温度相关的脱水污泥的热导率。随着反应温度的升高,脱水的污泥在高温和高压下通过热水解反应被热液化。因此,污泥池中的结合水以自由水的形式排出,这将脱水的污泥从固相变为液相的淤浆。结果,污泥的热导率比20℃的水低2.64倍以上。但是,高于200时,为0.704W / m·℃,比水高约4%。结果,热水解引起的物理性质变化似乎是传热效率的重要因素。启示:脱水污泥的导热系数是热水解反应器优化设计的重要因素。通过热水解反应在高温和高压下将脱水的污泥热液化。液相浆料具有比纯水更高的导热率。

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  • 来源
    《Journal of the air & waste management association 》 |2014年第12期| 1384-1389| 共6页
  • 作者单位

    Clean Energy Team, Institute for Advanced Engineering, 175-28, Goan-ro, 51 beon-gil, Baegam-myeon, Yongin-si, Gyeonggi-do, 449-863, Republic of Korea;

    Department of Industrial Machinery Engineering, Sunchon National University, Sunchon, Republic of Korea;

    Clean Energy Team, Institute for Advanced Engineering, Yongin, Republic of Korea;

    Clean Energy Team, Institute for Advanced Engineering, Yongin, Republic of Korea;

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