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Identification of total phosphate, submerged vegetation cover and zooplankton size thresholds for success of biomanipulation in peri-urban eutrophic ponds

机译:确定在郊区富营养化池塘中成功进行生物处理的总磷酸盐,淹没的植被覆盖度和浮游动物大小阈值

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摘要

In small shallow lakes and ponds, the clear-water state can generally be maintained at higher nutrient concentrations compared to larger shallow lakes. The main objective of this study was to identify thresholds for total phosphorus (TP), submerged vegetation cover and zooplankton size that determine biomanipulation success in peri-urban eutrophic ponds. Additionally, the relationship between transparency and TP is discussed with regard to similar relationships and thresholds reported for shallow lakes. Using classification trees, a threshold TP concentration of 0.300 mg P L-1 was determined below which a clear-water state was generally maintained after biomanipulation. When the average TP concentration was >0.300 mg P L-1, the stability of the clear-water state largely depended on the presence of sufficiently large zooplankton (>0.87 mm) or a submerged vegetation cover of >82% at some point during the year. This threshold TP concentration is considerably higher than the threshold of 0.1 mg L-1 which is generally suggested for longer-term success of biomanipulation in shallow lakes. Such threshold nutrient concentration is important when restoring ecological quality in eutrophic small lakes and ponds. Extended follow-up of biomanipulation success in eutrophic ponds could provide more insight into the feasibility of these thresholds on the longer term.
机译:与较大的浅水湖泊相比,在较小的浅水湖泊和池塘中,通常可以在较高的养分浓度下保持清水状态。这项研究的主要目的是确定总磷(TP),淹没的植被覆盖率和浮游动物大小的阈值,这些阈值决定了城郊富营养化池塘生物操纵的成功。另外,针对浅湖报道的相似关系和阈值,讨论了透明度与总价格之间的关系。使用分类树,确定阈值TP浓度为0.300 mg P L-1,低于该阈值,生物操作后通常保持清水状态。当平均TP浓度> 0.300 mg P L-1时,清水状态的稳定性在很大程度上取决于浮游植物在某个时间点是否存在足够大的浮游动物(> 0.87 mm)或淹没的植被覆盖率> 82%。年。该阈值TP浓度大大高于0.1 mg L-1的阈值,通常建议在浅湖中长期成功进行生物处理。在恢复富营养化小湖和池塘的生态质量时,这种阈值养分浓度很重要。在富营养化池塘中对生物操纵成功进行进一步的跟踪,可以从长远角度进一步了解这些阈值的可行性。

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