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首页> 外文期刊>Harmful Algae >Cyanobacteria passage through drinking water filters during perturbation episodes as a function of cell morphology, coagulant and initial filter loading rate
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Cyanobacteria passage through drinking water filters during perturbation episodes as a function of cell morphology, coagulant and initial filter loading rate

机译:蓝细菌在摄动过程中通过饮用水过滤器的通道与细胞形态,凝结剂和初始过滤器的加载速率有关

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摘要

Eight pilot-scale in-line filtration trials were performed to evaluate the passage of cyanobacterial cells through drinking water filters after sudden increases in hydraulic loading rates. Trials were performed at 30℃ using two coagulant combinations (aluminum sulfate and cationic polymer or ferric chloride and cationic polymer), two initial filter loading rates (7 or 10 m/h) and two species of morphologically different cyanobacteria (Microcystis aeruginosa or Anabaena flos aquae). The filter was perturbed by instantaneously increasing the hydraulic loading rate by 50%. Filter influent and effluent water qualities were characterized by measuring turbidity, particles and chlorophyll a. The observed post-perturbation filter effluent chlorophyll a peaks were 1.6-48 times greater than the pre-perturbation averages. Chlorophyll a peaks were larger for M. aeruginosa than for A. flos aquae. Chlorophyll a peaks were also larger for the higher (10 m/h) than for the lower (7 m/h) initial filter loading rate. The post-perturbation effluent turbidity peaks were 1.4-7.2 times greater than the pre-perturbation averages. The post-perturbation effluent particle peaks were 6.5-25 times greater than the pre-perturbation averages. These results indicate that particles were a more sensitive indicator of cyanobacterial passage than turbidity.
机译:进行了八项中试规模的在线过滤试验,以评估液压负载率突然增加后蓝细菌细胞通过饮用水过滤器的情况。使用两种混凝剂(硫酸铝和阳离子聚合物或氯化铁和阳离子聚合物),两种初始过滤器加载速度(7或10 m / h)和两种形态不同的蓝细菌(铜绿微囊藻或鱼腥藻)在30℃下进行试验。水)。通过立即将水力加载率提高50%来扰动过滤器。通过测量浊度,颗粒和叶绿素a来表征过滤器进水和出水水质。观察到的扰动后过滤器流出物的叶绿素a峰值是扰动前平均值的1.6-48倍。铜绿假单胞菌的叶绿素a峰比浮萍的更大。较高的(10 m / h)的叶绿素a峰也比较低的(7 m / h)初始过滤器加载率大。扰动后出水的浊度峰值比扰动前的平均值大1.4-7.2倍。扰动后的流出物峰比扰动前的平均值大6.5-25倍。这些结果表明,颗粒比浊度更能指示蓝细菌通过。

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