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Kinetic studies of overlapping pyrolysis reactions in industrial waste activated sludge

机译:工业废料活性污泥中重叠热解反应的动力学研究

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A sludge pyrolytic kinetics model was established in this study. Two types of sewage sludge from different industrial wastewater treatment plant produced different DTG (Derivative Thermogravimetry) shapes with an overlapping pattern. The multi-heating rate method was conducted to evaluate the kinetics for obtaining reasonable pyrolysis mechanisms and DTG curves were divided into several peaks using the Lorentz fitting method based on the composition of the sludge and the desire for precision. The peaks formed corresponded to the pyrolysis reactions of volatile matter, microbe cells, proteins, inorganic substances and char respectively, which can be reasonably explained based on the results from the flue gas analyzer and the chemical analysis. Two types of sewage sludge were found to have similar pyrolysis mechanisms. Reasonable reasons were also given to explain the distortion and lag observed in the DTG curves and pyrolysis mechanism.
机译:本研究建立了污泥热解动力学模型。来自不同工业废水处理厂的两种类型的污泥产生了具有重叠图案的不同DTG(衍生热重分析)形状。进行了多重加热速率方法,以评估获得合理热解机理的动力学,并基于污泥的组成和对精度的要求,使用Lorentz拟合方法将DTG曲线分为几个峰。形成的峰分别对应于挥发性物质,微生物细胞,蛋白质,无机物和炭的热解反应,这可以根据烟气分析仪和化学分析的结果合理地解释。发现两种类型的污水污泥具有类似的热解机理。还给出了合理的理由来解释在DTG曲线和热解机理中观察到的畸变和滞后。

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