MARE - Marine and Environmental Sciences Centre, Faculdade de Ciências, Universidade de Lisboa, 1749-016, Lisboa, Portugal.
Instituto Hidrográfico, Rua das Trinas 49, 1249-093, Lisboa, Portugal.
Sci Rep. 2021 Nov 30;11(1):23112. doi: 10.1038/s41598-021-02603-6.
To establish effective water quality monitoring strategies in estuaries, it is imperative to identify and understand the main drivers for the variation of water quality parameters. The tidal effect is an important factor of the daily and fortnightly variability in several estuaries. However, the extent of that influence on the different physicochemical and biological parameters is still overlooked in some estuarine systems, such as the Sado Estuary, a mesotidal estuary located on the west coast of Portugal. The main objective of this study was to determine how the water quality parameters of the Sado Estuary varied with the fortnightly and the semidiurnal tidal variation. To achieve this goal, sampling campaigns were conducted in May/18, Nov/18 and Jun/19, under neap and spring tidal conditions, with data collection over the tidal cycle. Results were observed to be significantly influenced by the tidal variation, in a large area of the estuary. Flood seemed to mitigate possible effects of nutrient enrichment in the water column. Additionally, significant differences were also observed when considering the different sampling stations. Temperature, Suspended Particulate Matter (SPM) and nutrients showed the highest values at low water. Lastly, the implications of the tidal variability in the evaluation of the water quality according to Water Framework Directive were also discussed, highlighting the importance of studying short-time scale variations and the worst-case scenario to ensure water quality is maintained. These findings are relevant for the implementation of regional management plans and to promote sustainable development.
为了在河口建立有效的水质监测策略,必须识别和了解水质参数变化的主要驱动因素。潮汐效应是几个河口日变化和半月变化的重要因素。然而,在一些河口系统中,如位于葡萄牙西海岸的萨多河口,这种影响对不同理化和生物参数的程度仍被忽视。本研究的主要目的是确定萨多河口的水质参数如何随半月和半日潮的变化而变化。为了实现这一目标,在低潮和大潮条件下,于 2018 年 5 月、11 月和 6 月进行了采样活动,并在潮汐周期内进行了数据收集。结果表明,潮汐变化在河口的大部分地区都有显著影响。涨潮似乎减轻了水柱中营养物质富集的可能影响。此外,当考虑不同的采样站时,也观察到了显著的差异。温度、悬浮颗粒物(SPM)和养分在低潮时呈现出最高值。最后,还讨论了潮汐变化对根据《水框架指令》评估水质的影响,强调了研究短时间尺度变化和最不利情况的重要性,以确保水质得到维持。这些发现对于实施区域管理计划和促进可持续发展具有重要意义。