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Pollution Plume Development in the Primary Aquifer at the Atlantis Historical Solid Waste Disposal Site, South Africa

机译:南非亚特兰蒂斯历史固体废物处理站点污染羽流发育

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摘要

The monitoring of pollution plumes from municipal landfills is essential in order to control and, where necessary, remediate aquifer contamination. The Atlantis historical landfill was established in 1975 and was unlined as it preceded the promulgation of the Minimum Requirements by the Department of Water and Sanitation. As the underlying, unconfined sandy aquifer serves as a water supply source to the town of Atlantis, regular quarterly hydrochemical monitoring was carried out from 1989 to 1997, at irregular intervals until 2003, and resumed in 2015 when new, deep boreholes were drilled. Groundwater monitoring over nearly three decades provided valuable information on the nature of the chemical reactions that take place in the subsurface and the extent of transport of chemical constituents. Ammonium and organic carbon, which are subject to redox reactions, were lagging compared to chloride and sodium, which are transported advectively. The most recent data indicated the plume consisted mainly of salinity (electrical conductivity (EC) > 200 mS m−1) in the form of sodium, calcium, chloride and bicarbonate ions 350–400 m down-gradient of the landfill, and it is still expanding at a maximum rate of about 25 m a−1, with local deviations from the regional flow pattern. It also became evident that the plume migrated to greater depth as it was transported further from the waste pile. The breakthrough of contaminants being observed at different depths highlights the importance of suitably designed monitoring networks.
机译:从市政垃圾填埋场监测污染羽毛是必不可少的,以便控制,并在必要时修复含水层污染。亚特兰蒂斯历史垃圾填埋场成立于1975年,并因此是无限制的水和卫生部的最低要求的颁布。作为潜在的,无粉状的桑迪含水层作为亚特兰蒂斯镇的供水源,定期季度水化学监测从1989年到1997年以2003年的时间间隔开展,并在钻探新的深层钻孔时恢复了2015年。地下水监测近三十年提供了有关在地下发生的化学反应的性质以及化学成分的运输程度的有价值的信息。与氧化氢和氯化钠相比,受氧化还原反应受到氧化铈和钠的铵和有机碳,其平程于氯化物和钠。最近的数据表明羽流主要由钠,钙,氯化物和碳酸氢盐离子的形式为盐度(电导率(EC)> 200 ms M-1),它是垃圾填埋场的350-400米梯度。仍然以大约25 mA-1的最大速率扩展,具有与区域流动模式的局部偏差。显而易见的是,羽流迁移到更大的深度,因为它从废物桩中进一步运输。在不同深度观察到的污染物的突破突出了适当设计的监控网络的重要性。

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