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The use of artificial oxygenation to reduce nutrient availability in the Canning River, Western Australia

机译:在西澳大利亚州的坎宁河中使用人工增氧来减少养分的利用率

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Artificial oxygenation has been used for two summer periods to improve the water quality of the Canning River in Perth, Western Australia. The project is part of the Swan Canning Cleanup Program, which aims to reduce the frequency and severity of nuisance and toxic algal blooms in the Swan-Canning estuary. The trials have proved that oxygenation has increased the dissolved oxygen concentrations in the water column, particularly in the bottom waters where dissolved oxygen concentrations are frequently below a critical level of three milligrams per litre. Oxygenation has had a positive impact on nutrient concentrations in the water column and nitrogen cycling processes. Reductions in nutrient concentrations were highlighted by drops in ammonium and total phosphorus concentrations of 97% and 64% following the recommencement of oxygenation after a plant shutdown. Results of a microbiological study combined with the data analysis indicate that the number of nitrifying microbes have increased due to oxygenation. However, comparisons between oxygenated and control areas were inconclusive about the ability of the oxygenation plant to reduce total nitrogen and phosphorus levels. This could be explained by factors such as spatial variability, water flow during the trials and measurement limitations in the monitoring program. Future work will concentrate on assessing the impact of the oxygenation plant on nutrient concentrations. [References: 9]
机译:人工增氧已用于两个夏季,以改善西澳大利亚州珀斯的坎宁河的水质。该项目是“天鹅罐头清理计划”的一部分,该计划旨在减少天鹅罐头河口滋扰和有毒藻华的发生频率和严重性。试验证明,氧合增加了水​​柱中的溶解氧浓度,特别是在底部水中溶解氧浓度经常低于每升3毫克的临界水平。氧合对水柱和氮循环过程中的养分浓度产生积极影响。在工厂关闭后重新开始充氧后,铵盐和总磷浓度分别下降了97%和64%,这突出了营养物浓度的降低。微生物研究的结果与数据分析相结合,表明硝化微生物的数量由于氧合而增加。但是,在含氧区域和控制区域之间的比较中,关于含氧植物减少总氮和磷水平的能力尚无定论。可以通过诸如空间变异性,试验过程中的水流量以及监测程序中的测量限制等因素来解释。未来的工作将集中在评估氧化工厂对营养物浓度的影响。 [参考:9]

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