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Pretreatment chemistry for dual media filtration: model simulations and experimental studies

机译:双重介质过滤的预处理化学:模型模拟和实验研究

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Laboratory dual media filtration experiments were conducted (a) in direct filtration mode using model raw water moderate in turbidity and low in DOC, and (b) in conventional filtration mode treating water moderate in turbidity and high in DOC. Model simulations of filter performance for the removal of particles provided hypotheses for the experimental studies of dual media filtration. An increase in alum dose in direct filtration mode, while improving filter performance, also showed some disadvantages, including rapid development of head loss. Suboptimal dose in direct filtration significantly impaired the filter performance. In conventional mode, the effect of alum dose on the filter performance, while obvious, was not as dramatic as in direct filtration. Ripening indicated by particle counts occurred earlier than by turbidity and breakthrough of particle counts started earlier than breakthrough of turbidity, suggesting that turbidity can be used as a more conservative monitor of filter performance during the ripening period to minimise the risk of passage of small particles, while particle counts can be considered a more sensitive indicator of deteriorating filter performance during the breakthrough period. The lower sand layer served as a multiple barrier for particles when the performance of the anthracite layer was not effective.
机译:实验室双重介质过滤实验是(a)使用浊度中等,DOC含量低的模型原水在直接过滤模式下进行的,以及(b)处理浊度中等,DOC值高的水的常规过滤模式。用于去除颗粒的过滤器性能的模型模拟为双介质过滤的实验研究提供了假设。在改善过滤器性能的同时,直接过滤模式中明矾剂量的增加也显示出一些缺点,包括水头损失的迅速发展。直接过滤的次最佳剂量会严重损害过滤器的性能。在常规模式下,明矾剂量对过滤器性能的影响虽然很明显,但不如直接过滤那样剧烈。颗粒计数表示的早于浊度发生的成熟度,而颗粒计数的突破早于浊度的突破开始,这表明浊度可以在成熟期间用作过滤器性能的更保守的监控器,以最大程度地减小小颗粒通过的风险,而颗粒数可以认为是突破期过滤器性能下降的更敏感指标。当无烟煤层的性能不佳时,下部砂层可作为颗粒的多重屏障。

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