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Nitrate removal from aqueous solutions by nanofiltration

机译:通过纳滤从水溶液中去除硝酸盐

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Due to excessive usage of nitrate fertilizers in agricultural sectors and dumping of domestic wastewaters, nitrate levels of water resources are increased in aqueous environments. Increased nitrate-containing compounds in the water resources, could lead to serious problems including eutrophication, and cause potential hazards for human and animal health. The aim of the present study was to investigate the effectiveness of nitrate removal from aqueous environments using nanofiltration (NF) membranes. In this study, the effect of different factors such as initial nitrate concentration, flow rate and associated cation and co-existing anions on the retention of nitrate by NF was examined. The results showed that with increased initial concentration of nitrate, flow rate and associated anions, the removal efficiency of nitrate decreased. The experiment indicated that many of negative charge groups on the membrane surface are covered by cations. The divalent cations covered membrane charge more effectively than monovalent cations. The result showed with high removal of sulfate ion, many nitrates are forced to pass through the membrane. The highest nitrate removal efficiency was 80.5%. According to the findings of this study, NF membrane usage could be recommended as an effective and reliable method for removing nitrates from aqueous environments.
机译:由于农业部门硝酸盐肥料的过量使用和生活污水的倾倒,水性环境中水资源硝酸盐含量增加。水资源中含硝酸盐的化合物增加,可能导致严重的问题,包括富营养化,并对人类和动物健康造成潜在危害。本研究的目的是研究使用纳滤(NF)膜从水性环境中去除硝酸盐的有效性。在这项研究中,研究了诸如硝酸盐初始浓度,流速,相关阳离子和共存阴离子等不同因素对NF保留硝酸盐的影响。结果表明,随着硝酸盐初始浓度,流速和相关阴离子的增加,硝酸盐的去除效率降低。实验表明,膜表面上的许多负电荷基团被阳离子覆盖。二价阳离子比单价阳离子更有效地覆盖了膜电荷。结果表明,高去除硫酸根离子后,许多硝酸盐被迫通过膜。最高的硝酸盐去除效率为80.5%。根据这项研究的发现,可以建议使用NF膜作为从水性环境中去除硝酸盐的有效且可靠的方法。

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