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滇池沉积物有效磷的变化及其对藻类生长的影响。

Variation in Sediment Available-Phosphorus in Dianchi Lake and Its Impacts on Algal Growth.

机构信息

College of Biological and Agricultural Sciences, Honghe University, Mengzi 661100, China.

College of Resources and Environment, Yunan Agricultural University, Kunming 650201, China.

出版信息

Int J Environ Res Public Health. 2022 Nov 9;19(22):14689. doi: 10.3390/ijerph192214689.

Abstract

Sediment phosphorus (P) is an active component of the P cycle in lakes and its availability and movement could play an important role in eutrophication. Sediments from different depths in five representative sites of Dianchi Lake China, i.e., Haigeng, Dounan, Luojiacun, Xinjie, and Kunyang, were studied from January to December to evaluate the spatial and temporal dynamics in available-P and soluble-P and their impacts on algal growth. The results showed that the average sediment available-P and soluble-P were 41.2 mg kg and 0.27 mg kg, respectively. Sediment available-P and soluble-P concentrations varied significantly among seasons, sites, and layers, with the following order: surface (0-5 cm) > middle (5-10 cm) > bottom (10-20 cm). The release and transformation characteristics of available-P and soluble-P at the sediment-water interface varied among sites. The Haigeng site, with the most severe algae blooms, had significantly higher average available-P and soluble-P in sediment than other sites. This indicated that phosphorus release and availability were associated with algal growth, and that the sediment surface (0-5 cm) is an important internal source that supports algal growth in Dianchi Lake.

摘要

沉积物磷(P)是湖泊 P 循环中的一个活跃组成部分,其可用性和迁移性可能在富营养化过程中发挥重要作用。本研究于 2019 年 1 月至 12 月对滇池五个具有代表性的采样点(海埂、斗南、落水洞、新寨和昆阳)的不同深度沉积物进行了研究,以评估有效磷和溶解磷的时空动态及其对藻类生长的影响。结果表明,沉积物有效磷和溶解磷的平均含量分别为 41.2 mg kg 和 0.27 mg kg。沉积物有效磷和溶解磷浓度在季节、地点和层位之间存在显著差异,其顺序为:表层(0-5 cm)>中层(5-10 cm)>底层(10-20 cm)。不同采样点的沉积物-水界面上有效磷和溶解磷的释放和转化特征存在差异。富营养化最严重的海埂采样点的沉积物中有效磷和溶解磷的平均含量显著高于其他采样点。这表明磷的释放和可用性与藻类生长有关,并且沉积物表层(0-5 cm)是滇池中支持藻类生长的一个重要内部来源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2865/9690728/234642c63027/ijerph-19-14689-g001.jpg

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