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Development of blooms of Cyclotella meneghiniana and Nitzschia spp. (Bacillariophyceae) in a shallow river and estimation of effective suppression flows

机译:满天星小环藻和尼兹菌属的花开。浅水中的细菌(细菌科)和有效抑制流量的估算

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摘要

Diatom blooms in the middle reaches of the shallow, freshwater, Hunter River, Australia, are a frequent nuisance to river users. During a 4-year study, blooms of Cyclotella meneghiniana and Nitzschia spp. coincided with water temperatures above 23°C and flows below 400 Ml d−1 that lasted for more than 12 days. Redundancy analysis showed that water temperature was positively related, and antecedent flow was negatively related, to the abundance of both taxa. Addition experiments indicated that nutrients are seldom limiting to growth. It is suggested that a combination of faster growth rates at higher temperatures and longer retention times at low flows allows bloom populations to develop. Simulation modelling showed that flow regulation and water extraction have decreased flows in the river during summer, and consequently have probably increased the number of diatom blooms. Environmental flows have been provided to the river, but are not sufficient to prevent blooms. Discharges required for bloom suppression are described.
机译:硅藻在澳大利亚亨特河(Hunter River)的浅水中游中游,经常给河川使用者带来麻烦。在一项为期4年的研究中,梅格尼小环藻和尼兹菌属的花开了。水温高于23°C,流量低于400 Ml d -1 ,持续了超过12天。冗余度分析表明,水温与两个分类单元的丰度呈正相关,而前期流量呈负相关。另外的实验表明,养分很少限制生长。建议在较高温度下更快的生长速度和在低流量下更长的保留时间相结合,使水华种群得以发展。仿真模型表明,在夏季,流量调节和取水量减少了河中的水流量,因此可能增加了硅藻水华的数量。已经向河流提供了环境流量,但不足以防止水华。描述了抑制起霜所需的放电。

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