Design of Leachate Drainage System in Shallow Landfill Areas

Junsheng Wang, Zanli Jia, Biao Zhou, Liyong Zhang, MA Lan
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Abstract

: Leachate drainage systems in landfills often face issues like pipe blockage and reduced seepage flow over time. Inadequate leachate drainage can lead to rising leachate levels in the waste heap, negatively impacting landfill gas collection efficiency. This study aimed to develop and test an air-lift device to improve leachate drainage in shallow landfills. The air-lift device was designed to lift leachate while allowing simultaneous landfill gas collection under negative pressure. Experiments examined how air pressure, submergence depth, pipe diameters, and lifting height affected the leachate outlet flow rate of the device. Orthogonal experimental analysis found submergence depth and lifting height had the most significant influence on outlet flow rate. A multiple regression model was developed to quantify the effects of these parameters. Additionally, a foam separator was incorporated into the device design and removed 20 - 30% of non-settleable particles from the leachate. While the foam separator improved leachate water quality, its effect on air quality requires further study. Overall, the air-lift device successfully lifted leachate and collected landfill gas simultaneously, providing an efficient alternative drainage method for shallow landfills.
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浅层垃圾填埋场沥滤液排水系统的设计
:垃圾填埋场的沥滤液排水系统经常会面临管道堵塞和渗流减少等问题。沥滤液排水不足会导致垃圾堆中的沥滤液水平上升,对垃圾填埋场气体收集效率产生负面影响。本研究旨在开发和测试一种空气提升装置,以改善浅层垃圾填埋场的沥滤液排放。空气提升装置旨在提升沥滤液,同时在负压条件下收集填埋气体。实验研究了气压、浸没深度、管道直径和提升高度如何影响该装置的沥滤液出口流速。正交实验分析发现,浸没深度和提升高度对出口流速的影响最大。我们建立了一个多元回归模型来量化这些参数的影响。此外,在设备设计中还加入了泡沫分离器,可从沥滤液中去除 20 - 30% 的不可沉降颗粒。虽然泡沫分离器改善了沥滤液的水质,但其对空气质量的影响还需要进一步研究。总之,空气提升装置成功地提升了沥滤液,并同时收集了填埋气体,为浅层填埋场提供了一种高效的替代排水方法。
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