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Simulating temperature-dependent biodegradation-induced settlement at a landfill with waste lifts placed under frozen conditions

机译:在垃圾堆放在冷冻条件下模拟垃圾掩埋场中与温度有关的生物降解诱导的沉降

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摘要

Instrument bundles placed within the Ste. Sophie landfill (Quebec, Canada) have been collecting temper-ature and settlement data since January 2010. Previous modelling efforts simulated settlement based on a three-component model to account for primary or instantaneous compression, secondary compression or mechanical creep and time-dependent biodegradation-induced settlement. In northern climates where waste may be placed under frozen conditions, a time-dependent biodegradation-induced settlement term is unable to simulate settlement due to biodegradation as waste temperatures transition from below zero to optimal values for anaerobic degradation. This paper presents a temperature-dependent biodegration-induced settlement model. The model simulates heat generation as a function of tempera-ture and tracks the expended energy as the waste degrades. The ratio of the expended energy to the total potential expended energy is used in the proposed temperature-dependent biodegradation-induced set-tlement term. The new term better accounts for the delayed biodegradation process observed in wastes placed under frozen conditions. The model was able to simulate the settlement trends observed at the Ste. Sophie landfill. The goal of developing and including a temperature-dependent biodegradation-induced settlement term in the model was to study the effects of operating conditions on waste settle-ment and stabilization. An optimized waste lift placement strategy could enhance waste stabilization and improve the airspace utilization within a landfill, simultaneously bringing increased revenues to landfill operators while decreasing the post closure environmental burden of landfills.
机译:仪器束放置在Ste。 Sophie垃圾填埋场(加拿大魁北克)自2010年1月以来一直在收集温度和沉降数据。先前的建模工作基于三组分模型来模拟沉降,以说明一次或瞬时压缩,二次压缩或机械蠕变以及与时间有关的生物降解。引起的沉降。在可能将废物置于冰冻条件下的北部气候中,随着时间的推移,随着废物温度从零以下转变为厌氧降解的最佳值,生物降解引起的时间依赖性生物降解无法模拟沉积。本文提出了一种温度依赖性生物降解诱导的沉降模型。该模型根据温度模拟热量的产生,并随着废物的降解跟踪消耗的能量。提议的温度相关生物降解诱导的沉降元素中使用了消耗的能量与潜在的总消耗能量之比。新术语更好地解释了在冷冻条件下放置的废物中观察到的延迟的生物降解过程。该模型能够模拟在Ste观测到的沉降趋势。苏菲垃圾填埋场。开发并在模型中包括与温度相关的生物降解诱导沉降术语的目的是研究操作条件对废物沉降和稳定的影响。一种优化的垃圾升降机放置策略可以增强垃圾的稳定性,并提高垃圾填埋场的空域利用率,同时为垃圾填埋场运营商增加收入,同时减少垃圾填埋场的关闭后环境负担。

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