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Microwave drying behavior, energy consumption, and mathematical modeling of sewage sludge in a novel pilot-scale microwave drying system

机译:新型先导微波干燥系统中污水污泥的微波干燥行为,能耗和数学建模

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摘要

Microwave drying is attracting increasing attention due to its energy efficiency. A self-developed pilot-scale microwave dryer was used in this study to dry two different common types of sewage sludge, namely mechanically dewatered sewage sludge and composting dewatered sewage sludge, by using two heating modes: constant temperature and constant power modes. The microwave drying behavior, specific energy consumption, average drying rate, energy efficiency, and drying effect were explored considering the influences of microwave output power, initial mass, and heating mode. Results showed that the output power had the largest influence on specific energy consumption, energy efficiency, and drying efficiency, followed by the constant temperature and initial mass. The specific energy consumption of mechanically dewatered sewage sludge decreased by roughly 14%. By contrast, the average drying rate increased by approximately 6%, and the energy efficiency increased by approximately 20% for each 1 kW increase in output power. Meanwhile, composting dewatered sewage sludge displayed drying effects at an output power of 3 kW, and the temperature exceeded 80 °C. The comparison of the two modes suggested that the constant temperature mode was better than the constant power mode considering product quality and operational safety. Compared with six thin-layer drying mathematical models, the Midilli-Kucuk model could provide a good fit for the constant temperature mode. The proposed microwave drying process exhibited effective performance in drying rate. This process also demonstrated considerable application potential for sewage sludge drying.
机译:微波干燥由于其能效而引起了越来越长的关注。本研究中使用了一种自行开发的先导微波干燥机,通过使用两个加热模式干燥两种不同类型的污水污泥,即机械脱水污泥和堆肥脱水污水污泥。恒温和恒定的动力模式。考虑到微波输出功率,初始质量和加热模式的影响,探讨了微波干燥行为,特定能耗,平均干燥速率,能效和干燥效果。结果表明,输出功率对特定能耗,能量效率和干燥效率的影响最大,其次是恒温和初始质量。机械脱水污泥的具体能耗约为14%。相比之下,平均干燥速率提高了大约6%,每次1千瓦的输出功率增加,能量效率增加约20%。同时,将脱水污水污泥堆叠出现在3 kW的输出功率下显示干燥效果,温度超过80°C。两种模式的比较表明,考虑产品质量和操作安全性,恒温模式优于恒定功率模式。与六层薄层干燥数学模型相比,Midilli-Kucuk模型可以为恒温模式提供良好的拟合。所提出的微波干燥过程表现出有效的干燥速率性能。该过程还表明了污水污泥干燥的相当大的应用潜力。

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  • 来源
    《Science of the total environment》 |2021年第10期|146109.1-146109.9|共9页
  • 作者

    Jiali Guo; Lei Zheng; Zifu Li;

  • 作者单位

    School of Energy and Environmental Engineering Beijing Key Laboratory of Resource-oriented Treatment of Industrial Pollutants International Science and Technology Cooperation Base for Environmental and Energy Technology of MOST University of Science and Technology Beijing Beijing 100083 PR China;

    School of Energy and Environmental Engineering Beijing Key Laboratory of Resource-oriented Treatment of Industrial Pollutants International Science and Technology Cooperation Base for Environmental and Energy Technology of MOST University of Science and Technology Beijing Beijing 100083 PR China;

    School of Energy and Environmental Engineering Beijing Key Laboratory of Resource-oriented Treatment of Industrial Pollutants International Science and Technology Cooperation Base for Environmental and Energy Technology of MOST University of Science and Technology Beijing Beijing 100083 PR China;

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

    Sewage sludge; Microwave drying process; Energy consumption; Drying effect; Mathematical modeling;

    机译:污水污泥;微波干燥过程;能源消耗;干燥效果;数学建模;

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