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EXAMINATION OF PLANT PERFORMANCE AND FILTER RIPENING WITH PARTICLE COUNTERS AT FULL-SCALE WATER TREATMENT PLANTS

机译:大型水处理厂用颗粒计数器检查植物的性能和滤油

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Filter performance has traditionally been assessed using turbidity as the main water quality parameter. However interest in process optimization and the ability to accurately monitor filtration and particle removal has led to particle counting becoming increasingly more popular. The objective of this research was to evaluate filtration performance and filter ripening at four full-scale water treatment plants. Most of the plants investigated in this study were capable of achieving 2 log total particle removal as well as an effluent turbidity of 0.1 NTU. In some cases 2 log removal was achieved in the lower particle size ranges of 2-5 and 5-10 μm. Log removals in this study compare particle counts in the filtered and raw water. For water treatment plants that do not filter to waste, the ripening period following a filter backwash represents a time where the plant may be most vulnerable to breakthrough of waterborne pathogens. For the plants studied, the ripening period which was defined as the time required to reach peak particle removal and a turbidity of 0.1 NTU, were very similar in duration. The ripening period generally lasted for one hour after the backwash event had been completed. Because the times to reach 2 log total particle removal and 0.1 NTU are similar, the practice of using 0.1 NTU turbidity as a measure of filter ripening may be a useful benchmark for utilities that do not have particle counters.
机译:传统上,使用浊度作为主要水质参数评估过滤器性能。然而,对过程优化的关注以及精确监控过滤和颗粒去除的能力已导致颗粒计数变得越来越流行。这项研究的目的是评估四个大型水处理厂的过滤性能和过滤器的成熟度。在这项研究中研究的大多数植物能够实现2 log log的总颗粒去除以及0.1 NTU的污水浊度。在某些情况下,在2-5和5-10μm的较低粒径范围内实现了2次对数去除。本研究中的原木清除量比较了过滤后的水和原水中的颗粒数。对于不过滤为废物的水处理厂,过滤器反冲洗后的成熟期代表该厂最容易受到水生病原体穿透的时间。对于所研究的植物,成熟期的持续时间非常相似,成熟期定义为达到峰值去除颗粒所需的时间和浊度为0.1 NTU的时间。反冲洗事件完成后,成熟期通常会持续一小时。因为达到2 log log的总颗粒去除时间和0.1 NTU的时间相似,所以使用0.1 NTU浊度作为过滤器成熟度的实践可能是没有颗粒计数器的公用事业的有用基准。

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