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Pyrolysis characteristics and kinetic analysis of different dewatered sludge

机译:不同脱水污泥的热解特性及动力学分析

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摘要

Pyrolysis behavior and kinetic properties of four different sludge, including raw sludge and three sludge respectively dewatered with FeCl_3/CaO, FeCl_3/CaO/coal and Fenton’s reagent (Fe~(2+) + H_2O_2)/CaO, were analyzed by using thermogravimetry coupled with Fourier transform infrared spectrometry (TG-FTIR). The results show that organics of raw sludge mainly decomposed at 378–676 K, and the decomposition temperature of conditioned sludge was prolonged to 823 K. Addition of coal and catalysis of CaO/ferric salt both promoted sludge pyrolysis, leading to more NH_3, CH_4 and CO productions. Compared with dry sludge, wet sludge pyrolysis was hard to finish completely, and the first peak of organics’ decomposition appeared at higher temperature (about 573 K). Additionally, the global reaction model was suited to determine kinetic parameters, which showed that dry sludge conditioned with more CaO addition had higher E values than those of dry raw sludge. Opposite results were obtained when sludge samples were wet.
机译:采用热重分析法,对分别用FeCl_3 / CaO,FeCl_3 / CaO /煤和芬顿试剂(Fe〜(2+)+ H_2O_2)/ CaO脱水的四种污泥的热解行为和动力学性质进行了分析。用傅立叶变换红外光谱(TG-FTIR)。结果表明,原污泥的有机物主要在378–676 K处分解,条件污泥的分解温度延长至823K。煤的加入和CaO /铁盐的催化都促进了污泥的热解,导致更多的NH_3,CH_4和CO生产。与干污泥相比,湿污泥的热解难以完全完成,有机物分解的第一个高峰出现在较高的温度下(约573 K)。此外,全局反应模型适合确定动力学参数,这表明添加更多CaO的干污泥的E值比干生污泥的E值高。当污泥样品是湿的时,获得相反的结果。

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