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Sensitivity analysis and literature review of parameters controlling local biodegradation processes in municipal solid waste landfills

机译:控制城市生活垃圾填埋场局部生物降解过程参数的敏感性分析和文献综述

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The local gas production rate in municipal landfills is influenced by a large number of processes, which have been modelled by a local mechanistic reaction model based on Monod kinetics. This type of model, however, requires over 40 input parameters. The aim of this research was to review published values for these input parameters, and to analyse the sensitivity of the model to changes in each of them. Included were rate constants based on Monod kinetics, general rate-controlling variables, and parameters that influence the local pH and temperature of the waste. Mathematical functions that describe the influence of water content, temperature, and pH on biodegradation rates were calibrated on the basis of literature data. The results of the sensitivity analysis suggest that the parameters with the largest impact on model output are the hydrolysis constant k_(Hy), the kinetic constants μ_(max,X_(me, 1)), bx_(me), Y_(ac, X_(me, 1)), K_(i, ac, Hy), and Y_(CO_2, X_(me,2)), the water content, temperature, pH, initial concentration of X_(me), the enthalpy of formation of the original organic matter, as well as the protein content and buffering capacity of the waste. These parameters, therefore, should be carefully selected when similar modelling studies are performed.
机译:市政垃圾填埋场中的本地天然气生产率受许多过程的影响,这些过程已通过基于Monod动力学的局部机械反应模型进行了建模。但是,这种类型的模型需要40多个输入参数。这项研究的目的是审查这些输入参数的公开值,并分析模型对每个参数变化的敏感性。其中包括基于Monod动力学的速率常数,一般的速率控制变量以及影响废物的局部pH和温度的参数。在文献数据的基础上,对描述水含量,温度和pH对生物降解速率影响的数学函数进行了校准。灵敏度分析的结果表明,对模型输出影响最大的参数是水解常数k_(Hy),动力学常数μ_(max,X_(me,1)),bx_(me),Y_(ac, X_(me,1)),K_(i,ac,Hy)和Y_(CO_2,X_(me,2)),水含量,温度,pH,X_(me)的初始浓度,形成焓原始有机物的含量,以及废物的蛋白质含量和缓冲能力。因此,当执行类似的建模研究时,应仔细选择这些参数。

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