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Feasibility Study of Advanced NOM-Reduction by Hollow Fiber Ultrafiltration and Nanofiltration at a Swedish Surface Water Treatment Plant

机译:在瑞典地表水处理厂中通过中空纤维超滤和纳米过滤进行高级NOM还原的可行性研究

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Membrane technology, i.e., ultrafiltration and nanofiltration, is growing in popularity, as it is a space efficient alternative for surface water treatment. Two types of hollow fiber membranes were tested in a fully equipped and automated pilot at a Swedish water treatment plant. Raw water was treated by a nanofilter and by coagulation before an ultrafilter. Operation parameters recorded during these trials have been the basis for cost estimations and assessments of environmental impact, comparing the two membrane modules to the existing conventional treatment. The membranes required lower chemical consumption, but led to increased costs from membrane modules and a higher energy demand. Compared to the existing treatment (0.33 €/m 3 ), the operational costs were estimated to increase 6% for ultrafiltration and 30% for nanofiltration. Considering the low emissions from Nordic energy production, the membrane processes would lower the environmental impact, including factors such as climate and ecosystem health. Greenhouse gas emissions would decrease from 161 g CO 2 -eq/m 3 of the existing process, to 127 g CO 2 -eq/m 3 or 83 g CO 2 -eq/m 3 for ultrafiltration and nanofiltration, respectively. Lower chemical consumption and less pollution from the sludge leaving the water treatment plant lead to lower impacts on the environment.
机译:膜技术,即超滤和纳滤,越来越受欢迎,因为它是一种有效的地表水处理替代方案。两种类型的中空纤维膜在瑞典水处理厂的设备齐全且自动化的试点中进行了测试。原水经过纳滤器和超滤之前的凝结处理。这些试验中记录的操作参数已成为成本估算和环境影响评估的基础,将两个膜组件与现有的常规处理方法进行了比较。膜所需的化学药品消耗较低,但导致膜组件的成本增加,能源需求更高。与现有处理(0.33€/ m 3)相比,超滤的运营成本估计将增加6%,纳滤的运营成本将增长30%。考虑到北欧能源生产的低排放量,膜工艺将降低对环境的影响,包括气候和生态系统健康等因素。用于超滤和纳滤的温室气体排放量将从现有工艺的161 g CO 2 -eq / m 3分别降低至127 g CO 2 -eq / m 3或83 g CO 2 -eq / m 3。较低的化学消耗量和污泥离开水处理厂的污染较少,从而对环境的影响较小。

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