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Reverse osmosis followed by activated carbon filtration for efficient removal of organic micropollutants from river bank filtrate

机译:反渗透,然后进行活性炭过滤,可有效去除河岸滤液中的有机微量污染物

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Drinking water utilities in Europe are faced with a growing presence of organic micropollutants in their water sources. The aim of this research was to assess the robustness of a drinking water treatment plant equipped with reverse osmosis and subsequent activated carbon filtration for the removal of these pollutants. The total removal efficiency of 47 organic micropollutants was investigated. Results indicated that removal of most organic micropollutants was high for all membranes tested. Some selected micropollutants were less efficiently removed (e.g. the small and polar NDMA and glyphosate, and the more hydrophobic ethylbenzene and napthalene). Very high removal efficiencies for almost all organic micropollutants by the subsequent activated carbon, fed with the permeate stream of the RO element were observed except for the very small and polar NDMA and 1,4-dioxane. RO and subsequent activated carbon filtration are complementary and their combined application results in the removal of a large part of these emerging organic micropollutants. Based on these experiments it can be concluded that the robustness of a proposed treatment scheme for the drinking water treatment plant Engelse Werk is sufficiently guaranteed.
机译:欧洲的饮用水企业在其水源中面临着越来越多的有机微量污染物的存在。这项研究的目的是评估配备了反渗透和随后的活性炭过滤以去除这些污染物的饮用水处理厂的耐用性。研究了47种有机微污染物的总去除效率。结果表明,对于所有测试的膜,大多数有机微量污染物的去除率很高。某些选定的微污染物的去除效率较低(例如小而极性的NDMA和草甘膦,以及疏水性更高的乙苯和萘)。除了极小的极性NDMA和1,4-二恶烷外,观察到几乎所有有机微污染物都被后续的活性炭去除,去除率很高,这些活性炭由反渗透元素的渗透物流供入。反渗透和随后的活性炭过滤是互补的,它们的组合应用可去除大部分这些新兴的有机微污染物。基于这些实验,可以得出结论,可以充分保证针对饮用水处理厂Engelse Werk提出的处理方案的鲁棒性。

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