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降雨对中国北方半湿润地区流域水体内氮磷的影响。

The Effect of Rainfall on Aquatic Nitrogen and Phosphorus in a Semi-Humid Area Catchment, Northern China.

机构信息

Institute of Surface-Earth System Science, School of Earth System Science, Tianjin University, Tianjin 300072, China.

Tianjin Eco-Environmental Monitoring Center, Tianjin 300191, China.

出版信息

Int J Environ Res Public Health. 2022 Sep 2;19(17):10962. doi: 10.3390/ijerph191710962.

Abstract

The impact of rainfall on water quality may be more important in semi-arid regions, where rainfall is concentrated over a couple of months. To explore the impact of rainfall changes on water quality, e.g., nitrogen (TN) and phosphorous (TP), the diversion from Luan River to Tianjin Watershed in the northern semi-humid area was selected as the study area. TN and TP concentrations in rivers and the Yuqiao Reservoir during the three-year high-flow season (2019-2021) were analyzed. The response relationship and influencing factors among the watershed's biogeochemical process, rainfall, and water quality were clarified. The results showed that rainfall in the high flow season mainly controlled the river flow. The concentration of TN and TP in the inflow rivers is regulated by rainfall/flow, while the concentration of TN and TP in the water diversion river has different variation characteristics in the water diversion period and other periods. The lowest annual concentrations of TN and TP were observed in the normal year, while the highest annual concentration was observed in the wet year, indicating that the hydrological process drove the nutrient transport in the watershed. For the tributaries, the Li River catchment contributed a large amount of N and P to the aquatic environment. For the reservoir, the extreme TN concentrations were the same as the tributaries, while the extremes of TP concentrations decreased from the dry year to wet year, which was in contrast to the tributaries. The spatial variation of TN and TP concentrations in the reservoir showed that the concentration decreased following the flow direction from the river estuary to the reservoir outlet. Considering climate change, with the increase of rainfall in North China in the future, the TN and TP transport fluxes in the watershed may continue to increase, leading to the nitrogen and phosphorus load of the downstream reservoir. To ensure the impact of the increase of potential N and P output fluxes in the watershed on the water quality of the reservoir area, it is necessary to strengthen the effective prevention and control of non-point source pollution in the watershed.

摘要

降雨对水质的影响在半干旱地区可能更为重要,因为降雨集中在几个月内。为了探索降雨变化对水质的影响,例如氮(TN)和磷(TP),选择北方半湿润地区的滦河流域调水至天津流域作为研究区。分析了三年丰水期(2019-2021 年)河流和玉桥水库的 TN 和 TP 浓度。阐明了流域生物地球化学过程、降雨和水质之间的响应关系及其影响因素。结果表明,丰水期降雨主要控制河流流量。入境河流中 TN 和 TP 的浓度受降雨/流量调节,而调水河流中 TN 和 TP 的浓度在调水期和其他时期具有不同的变化特征。正常年份 TN 和 TP 的年平均浓度最低,而丰水年份的年平均浓度最高,表明水文过程驱动了流域的养分输送。对于支流,黎河流域向水生态环境贡献了大量的 N 和 P。对于水库,极端 TN 浓度与支流相同,而 TP 浓度的极端值从枯水年到丰水年降低,与支流相反。水库中 TN 和 TP 浓度的空间变化表明,浓度随水流方向从河口向水库出口逐渐降低。考虑到气候变化,未来华北地区降雨量增加,流域 TN 和 TP 输运通量可能继续增加,导致下游水库氮磷负荷增加。为了确保流域潜在 N 和 P 输出通量增加对库区水质的影响,有必要加强对流域非点源污染的有效防控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0c26/9518500/a5657147da7e/ijerph-19-10962-g001.jpg

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