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Comparative approach to the performance of direct and indirect solar drying of sludge from sewage plants, experimental and theoretical evaluation

机译:污水厂污泥直接和间接太阳干燥性能的比较方法,实验和理论评价

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摘要

The objective of this work is to contribute to the enhancement of sludge of wastewater treatment plants and solar energy in Algeria. A kinetic comparison was made to the direct and indirect solar dryers operated with natural convection. Two models have been developed to simulate drying. Under natural conditions and at ambient temperatures below 32 degrees C, the indirect dryer gives high temperatures and efficiency compared to the direct dryer. Drying curves show that the higher the temperature is, the shorter drying time is and the faster drying speed is. From the drying curves, only the decreasing speed phase or slowdown (phase 2) is observed in the two types of drying, which is similar to results obtained in the literature with plant products. Solar dryers have reduced the time needed, a moisture reduction of 71% which increases the dryness of the mud from 14.47% to 85.53%. Thirteen mathematical models existing in the literature were tested and compared with the proposed models. The proposed models and the modified Henderson and Pabis model showed the best smoothing qualities of all indirect and direct dryer drying kinetics, with an advantage for the proposed models as they are dimensionless (independent models of units of measurement), they contain fewer parameters and verify the boundary conditions.
机译:这项工作的目的是促进阿尔及利亚废水处理厂的污泥和太阳能的使用。对自然对流运行的直接和间接太阳能干燥机进行了动力学比较。已经开发出两个模型来模拟干燥。在自然条件下和低于32摄氏度的环境温度下,与直接干燥器相比,间接干燥器具有较高的温度和效率。干燥曲线表明,温度越高,干燥时间越短,干燥速度越快。从干燥曲线来看,在两种类型的干燥中仅观察到速度下降阶段或减速阶段(阶段2),这与文献中有关植物产品的结果相似。太阳能干燥机减少了所需的时间,减少了71%的水分,使泥浆的干燥度从14.47%增加到85.53%。测试了文献中存在的13种数学模型,并与提出的模型进行了比较。所提出的模型以及改进的Henderson和Pabis模型在所有间接和直接干燥机干燥动力学中均表现出最佳的平滑质量,这对所提出的模型是有利的,因为它们是无量纲的(独立的计量单位模型),它们包含较少的参数并验证边界条件。

著录项

  • 来源
    《Solar Energy》 |2018年第1期|722-732|共11页
  • 作者单位

    Univ Yahia Fares, Biomat & Transport Phenomena Lab LBMPT, Ain Dhab 26000, Medea, Algeria;

    Univ Yahia Fares, Biomat & Transport Phenomena Lab LBMPT, Ain Dhab 26000, Medea, Algeria;

    Univ M Hamed Bougara, Mat Res Unit Proc & Environm URMPE, Boumerdes 35000, Algeria;

    Univ M Hamed Bougara, Mat Res Unit Proc & Environm URMPE, Boumerdes 35000, Algeria;

  • 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

    Drying kinetics; Moisture; Sludge; Solar drying;

    机译:干燥动力学;水分;污泥;太阳能干燥;

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