Remote Sensing for Water Quality Monitoring—A Case Study for the Marateca Reservoir, Portugal

IF 2.4 Q2 GEOSCIENCES, MULTIDISCIPLINARY Geosciences (Switzerland) Pub Date : 2023-08-24 DOI:10.3390/geosciences13090259
C. Alegria, T. Albuquerque
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Abstract

Continuous monitoring of water resources is essential for ensuring sustainable urban water supply. Remote sensing techniques have proven to be valuable in monitoring certain qualitative parameters of water with optical characteristics. This survey was conducted in the Marateca reservoir located in central inland Portugal, after a major event that killed a considerable number of fish. The objectives of the study were as follows: (1) to define a pollution spectral signature specific to the Marateca reservoir that could shed light on the event; (2) to validate the spectral water’s quality characteristics using the data collected in five gauging points; and (3) to model the characteristics of the reservoir water, including its depth, trophic state, and turbidity. The parameters considered for analysis were total phosphorus, total nitrogen, and chlorophyll-a, which were used to calculate a trophic level index. Sentinel-2 imagery was employed to calculate spectral indices and image ratios for specific bands, aiming at the definition of spectral signatures, and to model the water characteristics in the reservoir. The trophic level index acquired from each of the five gauging points was used for validation purposes. The reservoir’s trophic level was classified as hypereutrophic and eutrophic, indicating its sensitivity to contamination. The developed methodological approach can be easily applied to other reservoirs and serves as a crucial decision-making tool for policymakers.
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遥感水质监测——以葡萄牙马拉特卡水库为例
持续监测水资源对于确保可持续的城市供水至关重要。遥感技术已证明在监测具有光学特性的水的某些质量参数方面是有价值的。这项调查是在葡萄牙内陆中部的马拉特卡水库进行的,此前发生了一场造成大量鱼类死亡的重大事件。研究的目的如下:(1)定义Marateca水库特有的污染光谱特征,以阐明该事件;(2)利用5个测量点数据验证光谱水质特征;(3)模拟水库水的特征,包括其深度、营养状态和浊度。考虑的分析参数为全磷、全氮和叶绿素-a,用于计算营养水平指数。利用Sentinel-2遥感影像计算特定波段的光谱指数和图像比例,定义光谱特征,并对水库水体特征进行建模。从五个测量点获得的营养水平指数用于验证目的。水库的营养水平分为富营养化和富营养化,表明其对污染的敏感性。所开发的方法方法可以很容易地应用于其他油藏,并可作为决策者的重要决策工具。
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来源期刊
Geosciences (Switzerland)
Geosciences (Switzerland) Earth and Planetary Sciences-Earth and Planetary Sciences (all)
CiteScore
5.30
自引率
7.40%
发文量
395
审稿时长
11 weeks
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