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Proposed water balance equation for municipal solid waste landfills in Jordan

机译:约旦城市固体垃圾掩埋场的拟议水平衡方程

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This article presents a water balance equation for predicting leachate generation in municipal solid waste (MSW) landfills located in semi-arid areas, using the Akaider landfill in Jordan as an example. HYDRUS-2D/3D software was used to model the effect of co-disposal of wastewater into the landfill on the leachate production rates and for comparison with the results of the simulation of the proposed water balance equation parameters. A series of simulations was carried out for a 30-year period. The suggested water balance equation predicted that leachate will percolate to a depth of 50 m in the simulated period. The result indicates that the co-disposed wastewater plays a major role in controlling the rate and magnitude of the contaminants that percolate from the MSW leachate. As the initial water content of the waste increases, there is greater mobilisation of salts. The concentration of chloride at a given location increased and the time required for the chloride to reach this location decreased as a consequence. However, eliminating the co-disposed wastewater will significantly minimise leachate generation and decrease possible groundwater contamination. This equation is applicable to areas that have geological and hydrological properties similar to Jordan.
机译:本文以约旦的Akaider垃圾填埋场为例,提出了一个水平衡方程,用于预测位于半干旱地区的城市垃圾填埋场中垃圾渗滤液的产生。使用HYDRUS-2D / 3D软件对垃圾共处理到垃圾填埋场对渗滤液生产率的影响进行建模,并与拟议的水平衡方程参数的仿真结果进行比较。进行了为期30年的一系列模拟。建议的水平衡方程预测,在模拟期间渗滤液将渗透至50 m的深度。结果表明,共同处置的废水在控制从MSW渗滤液中渗出的污染物的速率和大小方面起着重要作用。随着废物初始水含量的增加,盐的移动性更大。因此,给定位置的氯化物浓度增加,氯化物到达该位置所需的时间减少。但是,消除混合处置的废水将大大减少渗滤液的产生,并减少可能的地下水污染。该方程式适用于地质和水文性质类似于约旦的地区。

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