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Lecane tenuiseta (Rotifera, Monogononta) as the best biological tool candidate selected for preventing activated sludge bulking in a cold season

机译:leecane tenuiseta(Rotifera,Monogononta)作为选择的最佳生物工具候选者,用于防止在寒冷季节中膨胀的活性污泥

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Rotifers in activated sludge reduce the quantity of dispersed bacteria, ingest filamentous bacteria, enhance flocculation and limit biomass production. Growth rates of rotifers are inversely correlated with temperature; thus, their density declines drastically in wastewater treatment plants (WWTPs) during the winter. The only species already demonstrated to be able to control bulking is Lecane inermis. However, they cease proliferation at 8 degrees C. The goal of our research was to select other rotifers species whose growth rates at lower temperatures are sufficiently high to maintain a favourable density during cold seasons. We conducted selection experiments in the laboratory at temperatures reflecting the temperature distribution in the majority of municipal WWTPs in the temperate zone. In the first experiment, the general selection stage, we tested the influence of the temperatures 8, 15 and 20 degrees C on competition among different rotifer taxa in sludge samples originating from different WWTPs. The rotifers best adapted to lower temperatures were found among the genera Lecane and Cephalodella. The second stage, focused on Lecane selection, showed that the genus Lecane was represented most abundantly by L. inermis and Lecane tenuiseta. At 8 degrees C, only clones of L. tenuiseta exhibited positive growth rates. At 15 degrees C, more selected clones were identified as L. tenuiseta than as L. inermis, but the r-value for L. inermis was higher. Our results suggested that L. tenuiseta is the best candidate for bulking control in cold seasons.
机译:活性污泥中的转子减少分散细菌的数量,摄取丝状细菌,增强絮凝和极限生物质生产。转速器的生长速率与温度相反;因此,它们在冬季废水处理厂(WWTPS)中的密度急剧下降。已经证明能够控制膨胀的唯一物种是卵巢肠道。然而,它们在8摄氏度下停止增殖。我们的研究目标是选择其他旋转器种类,其生长速率在较低温度下足够高,以保持冷季节的良好密度。我们在体温下进行了实验室的选择实验,反映了温带大多数城市WWTPS温度分布的温度。在第一个实验中,一般选择阶段,我们在源自不同WWTP的污泥样品中对不同转子分类群的温度8,15和20℃的影响进行了测试。最佳适应较低温度的旋转器是在Genera lecane和Cephalodella之间进行的。第二阶段,重点是含卵藻的选择,表明,甲烷属,由L.肠道和甲烷替尼斯塔最丰富地表示。在8摄氏度下,只有L. Tenuiseta的克隆表现出阳性生长率。在15℃下,将更多选定的克隆鉴定为L. Tenuiseta而不是L. inermis,但L.肠道的R值较高。我们的结果表明,L. Tenuiseta是寒冷季节中批量控制的最佳候选者。

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