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首页> 外文期刊>Journal of water supply >Developments of high rate dissolved air flotation for drinking water treatment
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Developments of high rate dissolved air flotation for drinking water treatment

机译:高速溶解气浮处理饮用水的研究进展

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Since the mid 1990s there has been a large increase in the hydraulic loading rates used to design dissolved air flotation (DAF) facilities for drinking water applications. High rate DAF processes are now available at loading rates of 20 to 40 m h~(-1). These high rate systems have a smaller plant footprint compared to conventional systems. The paper examines bubble and floc-bubble rise rates, and how the simple theory relating these rise rates to the hydraulic loading of the DAF separation zone is inadequate. It is shown for high rate systems that the flow through the separation zone is stratified and must be accounted for in relating separation zone efficiency to the hydraulic loading and bubble or floc-bubble rise rates. A conceptualized stratified flow model is used to explain why DAF tanks can be designed with hydraulic loadings > 20 m h~(-1).
机译:自1990年代中期以来,用于设计用于饮用水应用的溶解气浮(DAF)设施的水力负载率已大大提高。现在可以以20到40 m h〜(-1)的加载速率使用高速率DAF工艺。与常规系统相比,这些高速率系统具有较小的工厂占地面积。本文研究了气泡和絮状气泡的上升速率,以及将这些上升速率与DAF分离区的水力负荷相关联的简单理论是如何不足的。对于高速率系统来说,表明通过分离区的流量是分层的,必须在将分离区效率与水力负荷和气泡或絮凝物上升速率相关联时加以考虑。使用概念化的分层流模型来解释为什么可以在水力负载> 20 m h〜(-1)的情况下设计DAF储罐。

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