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首页> 外文期刊>Desalination: The International Journal on the Science and Technology of Desalting and Water Purification >A submerged membrane hybrid system coupled with magnetic ion exchange (MIEX~?) and flocculation in wastewater treatment
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A submerged membrane hybrid system coupled with magnetic ion exchange (MIEX~?) and flocculation in wastewater treatment

机译:浸没膜混合系统结合磁离子交换(MIEX〜?)和絮凝处理废水

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摘要

Wastewater treated by conventional secondary and tertiary processes cannot be reused directly without further treatment. The membrane process can achieve a high quality effluent, but membrane fouling caused by organic matter affects membrane performance and operating cost. MIEX~? resin can effectively remove the majority of small MW dissolved organic in wastewater (345-688 Dalton). Flocculation with an optimum dose of ferric chloride (24 mg/L as Fe) gave a higher removal of DOC, especially for removing the middle range of MW organics in wastewater (688-1421 Dalton). MIEX~? and flocculation followed by submerged membrane system led to a very high DOC removal of more than 90-95% UV_(abs). This membrane hybrid system could maintain a transmembrane pressure of less than 8 kPa even after 8 h of operation thus reducing membrane fouling.
机译:通过常规的第二级和第三级工艺处理的废水未经进一步处理就无法直接回用。膜工艺可以实现高质量的废水,但是有机物造成的膜污染会影响膜性能和运行成本。 MIEX〜?树脂可以有效去除废水(345-688道尔顿)中的大部分小分子量溶解有机物。用最佳剂量的氯化铁(以Fe为24 mg / L)进行絮凝可提高DOC的去除率,特别是对于去除废水中中等分子量有机物(688-1421道尔顿)而言。 MIEX〜?絮凝和随后的浸没式膜系统导致DOC去除率非常高,超过90-95%UV_(abs)。该膜混合系统即使在运行8小时后仍可保持跨膜压力小于​​8 kPa,从而减少了膜污染。

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