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富营养化湖泊中营养限制的季节性模式及内部营养循环影响的定量分析。

Seasonal Pattern of Nutrient Limitation in a Eutrophic Lake and Quantitative Analysis of the Impacts from Internal Nutrient Cycling.

机构信息

School of Environmental Science and Engineering , Tianjin University , Tianjin 300072 , China.

Department of Earth, Atmospheric and Planetary Sciences , Massachusetts Institute of Technology , Cambridge Massachusetts 02139 , United States.

出版信息

Environ Sci Technol. 2019 Dec 3;53(23):13675-13686. doi: 10.1021/acs.est.9b04266. Epub 2019 Oct 23.

Abstract

Nutrient dynamics in lakes are determined by the external anthropogenic discharges and unobserved internal cycling processes. In this work, a decadal nutrient data set from the eutrophic Lake Taihu, China, revealed a strong seasonal pattern of nutrient concentration and limitation. A nutrient-driven dynamic eutrophication model based on a Bayesian hierarchical framework was established to quantify the relative contributions to temporal variations from external discharges and internal processes. Results showed that after years of efforts on nutrient reduction, external discharges were relatively small and fluctuated less between seasons compared to the internal processes. A quantitative relationship between monthly nutrient concentration and corresponding internal loading was observed. Lake sediment could transform from a source of phosphorus in overlying water in summer and autumn to a sink in winter and spring. Together with temporal variations in nitrification and denitrification, seasonal transformation from the limitation of phosphorus induced colimitation of nitrogen and phosphorus. Understanding the potential impact of internal nutrient cycling on a seasonal pattern of nutrient concentration and limitation, the growth of phytoplankton, and, possibly, phytoplankton community composition should be emphasized, given the change in the relative importance of external discharges and internal loading in the process of lake restoration.

摘要

湖泊中的营养动态是由外部人为排放和未观测到的内部循环过程决定的。在这项工作中,中国富营养化太湖的一个十年营养数据集揭示了营养浓度和限制的强烈季节性模式。建立了一个基于贝叶斯层次框架的营养驱动的动态富营养化模型,以量化外部排放和内部过程对时间变化的相对贡献。结果表明,经过多年的营养减排努力,与内部过程相比,外部排放相对较小,且季节间波动较小。观察到每月营养浓度与相应内部负荷之间存在定量关系。湖泊沉积物可以在夏季和秋季从上层水中的磷源转变为冬季和春季的磷汇。伴随着硝化和反硝化作用的时间变化,磷限制导致的氮磷共限制发生季节性转变。考虑到湖泊恢复过程中外源排放和内部负荷的相对重要性发生变化,了解内部营养循环对营养浓度和限制、浮游植物生长以及可能的浮游植物群落组成的潜在影响,应得到强调。

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