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[暴雨对河网平原河流中氮磷浓度的影响]

[Effect of Heavy Rainfall on Nitrogen and Phosphorus Concentrations in Rivers at River-net Plain].

作者信息

Lian Xin-Qiao, Zhu Guang-Wei, Yang Wen-Bin, Zhu Meng-Yuan, Xu Hai

机构信息

School of Ecology and Environment, Anhui Normal University, Wuhu 241003, China.

Taihu Laboratory for Lake Ecosystem Research, State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 210008, China.

出版信息

Huan Jing Ke Xue. 2020 Nov 8;41(11):4970-4980. doi: 10.13227/j.hjkx.202003183.

Abstract

To understand the quantitative effect of heavy rain on nitrogen and phosphorus pollution in river-net plain, daily observations of nutrient concentrations in two rivers, flowing into Lake Taihu, were conducted from 1 September, 2017 to 31 August, 2019. The daily rainfall was recorded by auto-recording meteorological stations located on the two rivers and the Taihu Laboratory for Lake Ecosystem Research. Intensive sampling in different sections of the two rivers during Super Typhoon Lekima was also conducted in August 2019. Using these datasets, the influence of heavy rainfall on various forms of nitrogen and phosphorus concentrations in the rivers, and its environmental effects, were analyzed. The results showed that 16 heavy rainfall events (19 d) were observed in two years, 50% of which occurred in the summer season. In addition, heavy rainfall accounted for as much as 41.33% of the total rainfall over the entire year. After the period of heavy rainfall, the concentrations of various forms of nitrogen and phosphorus increased, and the particulate P generally exhibited the fastest response, usually peaking on the day of heavy rainfall. In contrast, the peaks of N were delayed for 2-5 days with the occurrence of heavy rain. In general, the duration of the increase in the concentration of nutrients in the study river caused by heavy rainfall was short (usually 1-2 days), and sometimes was lower than the concentration before the rains. The Dapu River exhibited a slower response to heavy rains than the Yincun River because it has a larger and longer catchment area than the Dapu River. In addition, the effect of heavy rain on N and P concentrations was also strongly influenced by the land-use situation around the river basin. The increase of nitrogen in the reach, affected by agricultural non-point sources, was dominated by granular nitrogen, and the increase of nitrogen in the reach affected by urban non-point sources was dominated by dissolved nitrogen. The increase of phosphorus was dominated by granular phosphorus in the entire process. The conclusions of this study are as follows:In the plain river network area, the fluctuations of nitrogen and phosphorus concentrations in the river water body caused by heavy rainfall are small, and the response of various forms of nitrogen and phosphorus are significantly affected by the local environmental background. Therefore, the water quality generally exhibited limited variation. Due to the large proportion of water entering the lake during heavy rainfall events, a high level of the nutrient loading was also observed, and the occurrence of heavy rainfall was occasional. The short-term effect of heavy rainfall on the nitrogen and phosphorus loading entering the lake in the river channel in the plain river network area is therefore, also significant, and requires further investigation.

摘要

为了解暴雨对河网平原氮磷污染的定量影响,于2017年9月1日至2019年8月31日对流入太湖的两条河流中的营养物质浓度进行了每日观测。每日降雨量由位于两条河流及太湖湖泊生态系统研究实验室的自动气象站记录。2019年8月在超级台风“利奇马”期间还对两条河流的不同断面进行了密集采样。利用这些数据集,分析了暴雨对河流中各种形态氮磷浓度的影响及其环境效应。结果表明,两年内共观测到16次暴雨事件(19天),其中50%发生在夏季。此外,暴雨降雨量占全年总降雨量的41.33%。暴雨过后,各种形态的氮磷浓度升高,颗粒态磷通常响应最快,通常在暴雨当天达到峰值。相比之下,氮的峰值在暴雨发生后延迟2至5天出现。总体而言,暴雨导致研究河流中营养物质浓度升高的持续时间较短(通常为1至2天),有时甚至低于降雨前的浓度。大浦河对暴雨的响应比殷村河慢,因为其集水面积比大浦河更大、更长。此外,暴雨对氮磷浓度的影响还受到流域周边土地利用情况的强烈影响。受农业面源影响河段的氮增加以颗粒态氮为主,受城市面源影响河段的氮增加以溶解态氮为主。整个过程中磷的增加以颗粒态磷为主。本研究的结论如下:在平原河网地区,暴雨引起的河流水体中氮磷浓度波动较小,各种形态氮磷的响应受当地环境背景的显著影响。因此,水质总体变化有限。由于暴雨事件期间入湖水量比例较大,也观测到较高水平的营养负荷,且暴雨的发生具有偶然性。因此,暴雨对平原河网地区河道入湖氮磷负荷的短期影响也很显著,需要进一步研究。

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