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Kinetic models for the pyrolysis and combustion of two types of sewage sludge

机译:两种污泥热解和燃烧的动力学模型

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Pyrolysis and combustion of two types of sewage sludge have been studied. The two sludges considered, considering their thermal decomposition, have different behaviors when comparing pyrolysis and combustion TG runs of each sludge. In one case, the combustion can be considered as an oxidative pyrolysis, where the decomposition process is accelerated by the presence of oxygen. In the other case, the TG combustion run has two parts, the first one coinciding with the pyrolysis run and the second one with combustion of the char formed previously. For the pyrolysis of each sludge, three thermogravimetric runs at different heating rates (5, 15 and 30 K/min) were carried out to obtain a kinetic model, considering three parallel reactions. Following the simplex method, and with the same set of parameters for the three runs, and for each one of the three fractions considered, the values of pre-exponential factors, the apparent activation energies (103.9, 169.7 and 209.4 kJ/mol), the reaction orders and the maximum amount of volatiles were obtained. A discussion of the different values, in comparison with others obtained from literature is presented. Following a similar methodology, for the combustion of each sludge, two series of three runs at different oxygen concentrations (10 and 20%) and heating rates were carried out. For the sludge with oxidative pyrolysis behaviour, the scheme of three parallel reactions (as in pyrolysis) was appropriate for correlating the data, using the same values of activation energy, reaction order and maximum amount of volatiles evolved, and optimizing only the value of the pre-exponential factor, that is correlated with oxygen pressure. On the other hand, for the other sludge, with the first stage coinciding with pyrolysis and the second stage concerning the char combustion, the kinetic parameters of the second stage are obtained, with an apparent activation energy of 144.1 kJ/mol.
机译:对两种污泥的热解和燃烧进行了研究。考虑到两种污泥的热分解特性,当比较每种污泥的热解和燃烧TG运行时,它们具有不同的行为。在一种情况下,燃烧可以被认为是一种氧化热解,其中分解过程会由于氧气的存在而加速。在另一种情况下,TG燃烧运行分为两部分,第一部分与热解运行同时进行,第二部分与先前形成的炭燃烧相关。对于每种污泥的热解,考虑了三个平行反应,在不同的加热速率(5、15和30 K / min)下进行了三个热重分析,以获得动力学模型。遵循单纯形法,对于三个运行,以及考虑的三个馏分中的每一个,使用相同的参数集,指数前因子的值,表观活化能(103.9、169.7和209.4 kJ / mol),获得了反应顺序和最大挥发物含量。与从文献中获得的其他价值相比,本文讨论了不同的价值。按照相似的方法,对于每种污泥的燃烧,在不同的氧气浓度(10%和20%)和加热速率下进行了两个系列的三个运行。对于具有氧化热解特性的污泥,采用三个平行反应(如在热解中)的方案适合于数据关联,使用相同的活化能,反应顺序和最大挥发物数量,并仅优化预指数因子,与氧气压力相关。另一方面,对于另一种污泥,第一阶段与热解相吻合,第二阶段涉及焦炭燃烧,获得了第二阶段的动力学参数,其表观活化能为144.1 kJ / mol。

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