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Decoupling MSW settlement into mechanical and biochemical processes - Modelling and validation on large-scale setups

机译:将MSW沉降解耦到机械和生化过程中-大规模设置的建模和验证

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Forecasting settlements of non-hazardous waste is essential to ensure the integrity and durability of landfill covers over time. Over a short time span, the survey of settlements may also contribute to the investigation of the biodegradation processes. This paper addresses secondary settlements of Municipal Solid Waste (MSW), a heterogeneous and time-evolving material.rnAn analysis of available experimental data from different pilots and the literature was conducted to quantify the influence of biodegradation on MSW secondary settlements. After making assumptions about the various features of the waste and their constitutive relationships, a one-dimensional biome-chanical model to predict the secondary settlement has been developed. The determination of the total secondary settlement was obtained by the addition of two separate parts, the mechanical settlement, due to creep, and the biochemical settlement, due to the degradation of the organic matter. The latter has been evaluated based on the observed biogas production. Using the data from different recent large-scale experiments that provide a monitoring of biogas production, a method for predicting the biochemically-induced settlements is proposed and validated on these tests. The relative contributions of mechanical and biochemical settlements are also calculated and discussed as a function of waste pre-treatment and operation conditions (biological pre-treatment, shredding, leachate injection). Finally, settlement may be considered as a relevant indicator for the state of biodegradation.
机译:预测非危险废物的沉降量对于确保垃圾掩埋场的完整性和持久性至关重要。在很短的时间内,对定居点的调查也可能有助于对生物降解过程的调查。本文研究了城市固体废物(MSW)的二次沉降,MSW是一种异质且随时间变化的材料.rn对来自不同试点的可用实验数据进行了分析,并进行了文献分析以量化生物降解对MSW二次沉降的影响。在对废物的各种特征及其本构关系做出假设之后,开发了一种用于预测次生沉降的一维生物力学模型。通过添加两个独立的部分来确定总的次级沉降,这两个部分分别是由于蠕变引起的机械沉降和由于有机物降解引起的生化沉降。已根据观察到的沼气产量对后者进行了评估。利用最近不同的大规模实验提供的数据来监测沼气的产生,提出了一种预测生化诱导沉降的方法,并在这些测试中得到了验证。还根据废物预处理和操作条件(生物预处理,切碎,渗滤液注入)来计算和讨论机械和生化沉降的相对贡献。最后,沉降可以被认为是生物降解状态的相关指标。

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