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Secondary Compression of Municipal Solid Wastes and a Compression Model for Predicting Settlement of Municipal Solid Waste Landfills

机译:城市生活垃圾的二次压缩和城市生活垃圾填埋场沉降预测的压缩模型

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The estimation of the capacity and settlement of landfills is critical to successful site operation and future development of a landfill. This paper reports the results of a study on biodegradation behavior and the compression of municipal solid wastes. An experimental apparatus was developed which had a temperature-control system, a leachate recycling system, a loading system, and a gas and liquid collection system. Experiments were performed both with and without optimal biodegradation for comparative purposes. Test results indicated that settlement resulting from creep was relatively insignificant when the biodegradation process was inhibited. Compression due to decomposition under optimal biodegradation conditions was found to be much larger than compression associated with creep. The biodegradation process was significantly influenced by the operational temperature. A one-dimensional model is proposed for calculating settlement and estimating the capacity of the landfill under relatively optimal biodegradation conditions. The model was developed to accommodate the calculation of settlement in landfills when a multistep filling procedure was used. The calculation method is relatively simple and convenient for design purposes. Simulations of the physical processes showed that enhancing solid waste biodegradation during the filling stage can considerably increase the capacity of the landfill and reduce postclosure settlements.
机译:垃圾填埋场的容量和沉降的估算对于成功进行场地运营和垃圾填埋场的未来发展至关重要。本文报告了有关生物降解行为和城市固体废物压缩的研究结果。开发了具有温度控制系统,渗滤液回收系统,装载系统以及气液收集系统的实验装置。为了比较目的,进行了有和没有最佳生物降解的实验。试验结果表明,当抑制生物降解过程时,蠕变引起的沉降相对较小。发现在最佳生物降解条件下由于分解引起的压缩比与蠕变相关的压缩大得多。生物降解过程受操作温度的影响很大。提出了一种一维模型,用于在相对最佳的生物降解条件下计算沉降并估算垃圾填埋场的容量。开发该模型是为了适应使用多步骤填充程序时垃圾填埋场的沉降计算。计算方法相对简单,方便设计。物理过程的模拟表明,在填充阶段提高固体废物的生物降解能力可以大大提高垃圾填埋场的容量并减少封场后的沉降。

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