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Iron and manganese removal in direct anoxic nanofiltration for indirect potable reuse

机译:直接缺氧纳米过滤器中的钢铁和锰去除,用于间接饮用再利用

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摘要

Managed aquifer recharge (MAR) systems are gaining interest as an alternative to conventional water resources. However, when the water recovered in MAR systems, dissolved iron and manganese species may easily oxidize and they cause well screen clogging or require abandonment of extraction wells. In this study, both oxic and anoxic conditions were analyzed to verify the feasibility of the membrane filtration performance under various solution chemistries. The fouling mechanisms of the metal ions under anoxic conditions were also investigated by employing synthetic wastewater. The fouled membranes were then further analyzed to verify the major causes of inorganic fouling through SEM and XPS. The newly suggested anoxic process refining existing membrane process is expected to provide more precious information about nanofiltration (NF) membrane fouling, especially for demonstrating the potential advantages to chemical-free drinking water production for indirect potable reuse.
机译:管理含水层充值(MAR)系统正在获得常规水资源的替代品。然而,当在MAR系统中回收的水时,溶解的熨斗和锰物质可能很容易氧化,它们造成良好的筛网堵塞或要求遗弃提取孔。在该研究中,分析了氧和缺氧条件,以验证在各种溶液化学中膜过滤性能的可行性。还通过采用合成废水研究了缺氧条件下金属离子的污垢机制。然后进一步分析污垢膜以验证无机污垢通过SEM和XPS的主要原因。新建议的缺氧过程改善现有膜过程有望提供有关纳米滤膜(NF)膜污染的更珍贵信息,特别是为了证明对无间接饮用物品的无化学饮用水生产的潜在优势。

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