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Influence of Leachate Recirculation on Landfill Degradation and Biogas Production

机译:渗滤液再循环对垃圾填埋场降解和沼气生产的影响

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Population growth combined with the rising standard of living of people around the world is the reason for the ever-increasing production of waste which management is costing states a lot of money for its disposal. Among available waste treatment techniques, landfill is one of the most promoted waste management techniques with the emergence of the bioreactor concept. However, the control of biodegradation parameters in order to accelerate waste stabilization is an important issue. For environmental and economic reasons, the technique of leachate recirculation by injection into the waste is increasingly used to improve the degradation of landfilled waste. The injection of leachate is possible using vertical boreholes, horizontal pipes, infiltration ponds or a combination of these. Indeed, moisture is the main factor in waste degradation and biogas production. The migration of leachate to the bottom of the landfill creates low moisture in the upper areas of the landfill reducing the growth of microbial populations. This results in low or no biogas production. The main objective of the present work is to develop a numerical model of leachate recirculation by injection into the waste to rewet the waste and restart biological activity. The analysis of the results shows that the diffusion of the wet front increases with time and depth. The lateral widening of the wet front is slow in relation to the progression of the wet front towards the bottom of the waste cell. This indicates the predominance of gravity effects over diffusion phenomena. The results reveal that the distributed re-injection is the best mode of leachate recirculation because the moisture distribution on the whole waste mass is totally satisfactory and the biogas generation is more important. Leachate recirculation campaigns should be done periodically to rewet the waste, boost microbial activity and hope for a quicker stabilization of the landfill.
机译:人口增长加上世界各地人们生活水平的提高是废物产量不断增加的原因,管理成本使各州花费了大量资金进行处理。在现有的废物处理技术中,随着生物反应器概念的出现,垃圾填埋场是最受推广的废物管理技术之一。然而,控制生物降解参数以加速废物稳定是一个重要问题。出于环境和经济原因,通过注入废物进行渗滤液再循环的技术越来越多地用于改善填埋废物的降解。可以使用垂直钻孔、水平管道、渗透池或这些方法的组合注入渗滤液。事实上,水分是废物降解和沼气产生的主要因素。渗滤液迁移到垃圾填埋场底部会在垃圾填埋场的上部区域产生低水分,从而减少微生物种群的增长。这导致沼气产量低或没有沼气产量。本工作的主要目标是开发一种渗滤液再循环的数值模型,通过注入废物以重新润湿废物并恢复生物活性。分析结果表明,湿锋的扩散随时间和深度的增加而增大。湿锋的横向拓宽是缓慢的,相对于湿锋向废液池底部的进展。这表明重力效应比扩散现象更占主导地位。结果表明,分布式回注是渗滤液再循环的最佳方式,因为整个废物体上的水分分布完全令人满意,沼气生成更为重要。应定期进行渗滤液再循环运动,以重新润湿废物,提高微生物活性,并希望更快地稳定垃圾填埋场。

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