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首页> 外文期刊>Water Science & Technology. Water Supply >Surface water clarification by ultrafiltration with an immersed membrane system: effect of coagulation/aeration on flux enhancement
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Surface water clarification by ultrafiltration with an immersed membrane system: effect of coagulation/aeration on flux enhancement

机译:浸入式膜系统通过超滤净化地表水:凝结/曝气对通量增强的影响

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摘要

A new clarification system was developed to intensify a clarification step by ultrafiltration. Membrane modules equipped with capillary fibers were immersed in a reactor where a horizontal water circulation and a vertical air bubble circulation could assist in minimizing clogging inside the fiber network. Experiments were conducted with a clay particle suspension. Ferric chloride was added to induce coagulation of suspended particles. Results show that when filtering was operated under supracritical conditions clay deposit was observed on the membrane surface and a rapid increase in transmembrane pressure (TMP) value appeared. Air bubbling, and above all adding ferric chloride, allowed an actual enhancement of the filtering conditions. In optimal conditions, a very high concentrated suspension (5.0 g SS/L), filtering evolution was comparable to a clear water filtration until a 65 L/h/m~2 permeate flux value (obtained under a 0.16 bar TMP), further a rapid fouling inside the fiber network appeared and obliged us to undertake specific membrane cleaning. The chosen membrane cleaning procedure showed that the particle deposit was the main fouling cause when filtering above the critical conditions.
机译:开发了新的澄清系统,以通过超滤加强澄清步骤。将装有毛细管纤维的膜组件浸入反应器中,在该反应器中水平水循环和垂直气泡循环可帮助最大程度地减少纤维网内部的堵塞。用粘土颗粒悬浮液进行实验。加入氯化铁以引起悬浮颗粒的凝结。结果表明,当在超临界条件下进行过滤时,在膜表面观察到了粘土沉积,并且跨膜压力(TMP)值迅速增加。鼓泡空气,最重要的是加入氯化铁,可以使过滤条件得到实际改善。在最佳条件下,非常高的浓缩悬浮液(5.0 g SS / L)的过滤过程与清水过滤相当,直到65 L / h / m〜2的渗透通量值(在0.16 bar TMP下获得)为止。纤维网络内部迅速结垢,这迫使我们必须进行特定的膜清洁。选择的膜清洁程序表明,在高于临界条件的条件下过滤时,颗粒沉积是主要的结垢原因。

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