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首页> 外文期刊>Drying technology: An International Journal >Drying of Sewage Sludge During Composting in an Updraft Dryer with the Concept of Using Self-Energy Generated Within the System
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Drying of Sewage Sludge During Composting in an Updraft Dryer with the Concept of Using Self-Energy Generated Within the System

机译:利用系统内部产生的自能量的概念,在立式干燥机中堆肥过程中对污泥进行干燥

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摘要

An innovative technology for sewage treatment systems is proposed. A mixture of sewage sludge and char particle is subjected to drying in the progress of composting in an updraft column. Exothermic heat generated during composting is utilized for energy of sludge drying. The char particle in the mixture contributes to enhancement of composting and drying rate. This study presents drying and composting behaviors of sludge to examine the effect of char addition. A fundamental drying experiment was carried out by hot-air heating of the sample in a small vessel. The drying characteristic curve for a mixture of sludge and char was greater than the sample of only sludge over a whole period if the drying rates were compared with the same moisture content. The drying behavior could be analyzed with a reasonable agreement by the water front receding model. The enhancement effect of drying and composting of sludge by char addition was confirmed by examination using a pilot scale of the updraft column whose volume was 50m(3). Sludge with 400% dry base (80% wet base) in moisture content could be dried successfully to lower moisture content than 67% dry base (40% wet base) only by exothermic heat during composting without supplying any auxiliary energy from the outside, and the treatment time was reduced by mixing char in sludge. The behavior was analyzed with a satisfactory agreement by a theoretical model employing moisture diffusion parameters determined from the drying characteristic curve.
机译:提出了一种污水处理系统的创新技术。污水污泥和焦炭颗粒的混合物在升气流塔中进行堆肥过程中进行干燥。堆肥过程中产生的放热用于污泥干燥的能量。混合物中的炭颗粒有助于提高堆肥和干燥速度。这项研究提出了污泥的干燥和堆肥行为,以检查炭的添加效果。通过在小容器中对样品进行热风加热进行基本的干燥实验。如果将干燥速率与相同的水分含量进行比较,则在整个时期内,污泥和炭的混合物的干燥特性曲线要大于仅污泥的样品。可以通过水后退模型以合理的协议来分析干燥行为。通过使用容积为50m(3)的上升气流塔的中试规模进行检查,证实了通过添加焦炭来干燥和堆肥污泥的增强效果。仅在堆肥过程中放热就可以成功干燥含水量为400%干基(80%湿基)的污泥,使其比67%干基(40%湿基)的含水量低,而无需从外部提供任何辅助能量。通过在污泥中混合炭减少了处理时间。通过从干燥特性曲线确定的水分扩散参数的理论模型,以令人满意的一致性对行为进行了分析。

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