Tang Xianqiang, Li Rui, Wang Danyang, Jing Zheng, Zhang Wei
Basin Water Environmental Research Department, Changjiang River Scientific Research Institute, Wuhan 430010, China; Key Lab of Basin Water Resource and Eco-Environmental Science in Hubei Province, Wuhan 430010, China.
Basin Water Environmental Research Department, Changjiang River Scientific Research Institute, Wuhan 430010, China; Key Lab of Basin Water Resource and Eco-Environmental Science in Hubei Province, Wuhan 430010, China.
Water Res. 2023 Apr 15;233:119728. doi: 10.1016/j.watres.2023.119728. Epub 2023 Feb 10.
The effect of reservoir construction on nutrient dynamics is well recognized, at flood event-scale influence of reservoir flood regulation on nutrient transport however has received less attention. Taking the Three Gorges Reservoir (TGR) in the Changjiang River as an example, during the TGR's regulation on a flood in Sep., 2021, this study collected water samples along the mainstream of the reservoir as well as pre/post-dam, with the aim to identify the impact of flood regulation on nutrient (nitrogen and phosphorus) distribution and transportation. Results show that nitrate nitrogen (NON) and particulate phosphorus (PP) were the main fraction of the total nitrogen (TN) and total phosphorus (TP) with the proportion of 46.5%-95.6% and 57.4%-81.6%, respectively. N and P responded different to flood regulation: (i) along the stream P concentration significantly decreased due to PP deposited with sediment while N concentration barely changed during flood regulation; (ii) P concentration was significantly higher at post-dam section than at pre-dam section, while N concentration maintained the same. The diffed response to flood regulation caused TN/TP ratio increased from 4 to 8 in the reservoir tail to over 20 near the dam, which probably arise eutrophication in the reservoir head area. This study reveals the influence of flood regulation on nutrient transport in flood event and provides scientific basis for reservoir management.
水库建设对养分动态的影响已得到广泛认可,然而,在洪水事件尺度上,水库调蓄洪水对养分输运的影响却较少受到关注。以长江三峡水库(TGR)为例,在三峡水库2021年9月对一次洪水进行调蓄期间,本研究沿水库干流以及坝前/坝后采集了水样,旨在确定洪水调蓄对养分(氮和磷)分布与输运的影响。结果表明,硝态氮(NON)和颗粒态磷(PP)分别是总氮(TN)和总磷(TP)的主要组成部分,占比分别为46.5% - 95.6%和57.4% - 81.6%。氮和磷对洪水调蓄的响应不同:(i)在洪水调蓄期间,沿水流方向,由于颗粒态磷随沉积物沉积,磷浓度显著降低,而氮浓度几乎没有变化;(ii)坝后断面的磷浓度显著高于坝前断面,而氮浓度保持不变。对洪水调蓄的不同响应导致水库尾部的TN/TP比值从4增加到8,在大坝附近超过20,这可能导致水库头部区域发生富营养化。本研究揭示了洪水调蓄在洪水事件中对养分输运的影响,为水库管理提供了科学依据。