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基于旋风中颗粒的高速自旋转,在短短几秒钟内实现主要为非相变的污泥低温干燥。

Sludge low-temperature drying with mainly non-phase change in mere seconds based on particle high-speed self-rotation in cyclone.

机构信息

National Engineering Research Center of Industrial Wastewater Detoxication and Resource Recovery, East China University of Science and Technology, Shanghai, 200237, China.

Shanghai Ceo Environmental Protection Technology Co. Ltd, Shanghai, 200438, China.

出版信息

Water Res. 2022 Oct 1;224:119092. doi: 10.1016/j.watres.2022.119092. Epub 2022 Sep 10.

Abstract

Improper sludge treatment will cause serious environmental problems, and sludge drying is the key to effective treatment. Almost all the existing sludge drying technologies use heating to overcome the great latent heat of moisture vaporization, which leads to high drying energy consumption. In this study, based on the particle high-speed self-rotation in the cyclone and micro-interface oscillations, the cyclone self-rotation drying (CSRD) technology was developed. It can realize drying of the dewatered landfill sludge (DLS) and the urban sewage dewatered sludge (UDSS) with mainly non-phase change. The obtained results reveal that at low carrier gas temperatures (< 100 °C) and very short residence time (< 15 s), the moisture content of the DLS decreased from 53% to 6.85%, and that of the UDSS decreased from 67% to 18.92%. Through calculation, the proportions of moisture non-phase change removal during the CSRD process touched 68.94% and 63.39%, respectively. Based on the experimental studies, we proposed an enlarged industrial application program (50 t/d) for the UDSS drying by employing the CSRD technology. The operating cost was 159.69 CNY/t HO, showing prominent advantages. This study can provide guidelines for the practical application of CSRD technology and fill the scientific gap in the field of moisture non-phase change separation for sludge drying.

摘要

不当的污泥处理会导致严重的环境问题,而污泥干燥是有效处理的关键。几乎所有现有的污泥干燥技术都使用加热来克服水分蒸发的巨大潜热,这导致了高干燥能耗。在本研究中,基于颗粒在旋风中的高速自旋转和微界面振荡,开发了旋风自旋转干燥(CSRD)技术。它可以实现主要为非相变的脱水垃圾填埋污泥(DLS)和城市污水脱水污泥(UDSS)的干燥。所得到的结果表明,在低载气温度(<100°C)和非常短的停留时间(<15 s)下,DLS 的水分含量从 53%降至 6.85%,UDSS 的水分含量从 67%降至 18.92%。通过计算,CSRD 过程中非相变去除的水分比例分别达到了 68.94%和 63.39%。基于实验研究,我们提出了一个采用 CSRD 技术干燥 UDSS 的扩大工业应用方案(50 t/d)。运行成本为 159.69 元/吨 HO,具有明显的优势。本研究可为 CSRD 技术的实际应用提供指导,并填补污泥干燥中非相变分离领域的科学空白。

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