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首页> 外文期刊>Environmental Science and Pollution Research >Water reclamation during drinking water treatments using polyamide nanofiltration membranes on a pilot scale
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Water reclamation during drinking water treatments using polyamide nanofiltration membranes on a pilot scale

机译:使用中试规模的聚酰胺纳米过滤膜在饮用水处理过程中进行水回收

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摘要

The aim of this study was to investigate the performances of polyamide nanofiltration membranes during water reclamation. The study was conducted using nanofiltration concentrates obtained from two different nanofiltration drinking water treatment plants placed in the northern part of Serbia (Kikinda and Zrenjanin). Used nanofiltration concentrates contained high concentrations of arsenic (45 and 451 mu g/L) and natural organic matter (43.1 and 224.40 mgKMnO(4)/L). Performances of polyamide nanofiltration membranes during water reclamation were investigated under various fluxes and transmembrane pressures in order to obtain drinking water from nanofiltration concentrates and, therefore, reduce the amount of produced concentrates and minimize the waste that has to be discharged in the environment. Applied polyamide nanofiltration membranes showed better removal efficiency during water reclamation when the concentrate with higher content of arsenic and natural organic matter was used while the obtained permeates were in accordance with European regulations. This study showed that total concentrate yield can be reduced to similar to 5 % of the optimum flux value, in both experiments. The obtained result for concentrate yield under the optimum flux presents considerable amount of reclaimed drinking water and valuable reduced quantity of produced wastewater.
机译:这项研究的目的是研究水再生期间聚酰胺纳米过滤膜的性能。这项研究是利用从塞尔维亚北部两个不同的纳滤饮用水处理厂(Kikinda和Zrenjanin)获得的纳滤浓缩物进行的。用过的纳滤浓缩物含有高浓度的砷(45和451μg / L)和天然有机物(43.1和224.40 mgKMnO(4)/ L)。为了在纳米通量浓缩物中获得饮用水,并在各种通量和跨膜压力下研究了水回收过程中聚酰胺纳米过滤膜的性能,因此减少了浓缩物的生产量并最大程度地减少了必须排放到环境中的废物。当使用具有较高砷和天然有机物含量的浓缩物,而获得的渗透物符合欧洲法规时,应用的聚酰胺纳米过滤膜在水回收期间显示出更好的去除效率。这项研究表明,在两个实验中,总精矿产量都可以降低至最佳通量值的5%。在最佳通量下获得的精矿产量结果表明,可回收的饮用水量可观,产生的废水量可观地减少。

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