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Drying behavior and thermo-gravimetrical kinetic analysis of foam-pretreated sewage sludge

机译:泡沫预处理污泥的干燥行为及热重动力学分析

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摘要

An innovative pretreatment technology, in which CaO was jointly added with NaOH followed by appropriate mechanical whipping, was investigated for the foaming and drying of sewage sludge (SS). Foaming efficiency, appropriate density of the best drying performance and drying temperature were examined. Considering high foaming efficiency and low energy consumption, the optimal mixture was found to be 1.0 wt% NaOH with 1.0 wt% CaO, which takes only 50% of the foaming time to reach the appropriate density (0.6 g mL(-1)) compared to that with 2.0 wt% CaO. When compared with SS, the optimal mixture also saved 20%-26% drying time to reach 40% moisture content. Non-linear regression techniques (Nonlinear Curve Fit (Dose Resp)) were applied to simulate the drying process of S-2:2. The kinetics of sludge was studied by thermogravimetry analysis using the Starink method with three heating rates (10, 20 and 50 K min(-1)). Different trends in apparent activation energy support the conclusion that differences appear in the chemical compositions of sludge samples that have different ratios of additives. Moreover, the TG analysis results provide referable combustion data for the sludge samples in this research.
机译:研究了一种创新的预处理技术,其中CaO与NaOH共同添加,然后进行适当的机械搅拌,以用于污水污泥(SS)的发泡和干燥。检查发泡效率,最佳干燥性能的适当密度和干燥温度。考虑到高发泡效率和低能耗,发现最佳混合物是1.0 wt%NaOH和1.0 wt%CaO,相比起适当的密度(0.6 g mL(-1)),仅需要50%的发泡时间含2.0 wt%的CaO。与SS相比,最佳混合物还节省了20%-26%的干燥时间,以达到40%的水分含量。应用非线性回归技术(非线性曲线拟合(剂量响应))模拟S-2:2的干燥过程。使用Starink方法通过热重分析法以三种加热速率(10、20和50 K min(-1))研究污泥的动力学。表观活化能的不同趋势支持这样的结论,即具有不同比例添加剂的污泥样品的化学组成会出现差异。此外,TG分析结果为该研究中的污泥样品提供了可参考的燃烧数据。

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