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March 29, 2026Water0 citationsOpen Access

Water Quality and Land Use Impacts in a Brazilian Conservation Unit with Speleological Heritage

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DMDaphne Heloisa de Freitas MunizSSSamila Neres Farias da SilvaSBSandro Raphael Borges

Key Points

  • The aim is to evaluate the water quality in a Brazilian karst conservation unit and understand the impacts of land use.
  • Monitored sixteen sampling sites, including rivers, springs, and cave waters.
  • Evaluated water quality parameters such as nutrients, major ions, E. coli, and pesticides.
  • Conducted analyses during dry and rainy seasons in 2024.
  • Observed significant spatial and seasonal variability in water quality parameters.
  • Recorded high E. coli concentrations, exceeding regulatory limits at recreational sites.
  • Detected various pesticides with maximum concentrations up to 1.8 µg L−1 in both seasons.

Abstract

Karst water systems are highly vulnerable to land use pressures, requiring integrated assessments to support conservation and management. This study evaluated the physicochemical, microbiological, and pesticide-related water quality in the Environmental Protection Area Nascentes do Rio Vermelho (APANRV), a karst conservation unit in the Brazilian Cerrado. Sixteen sampling sites (rivers, springs, and cave waters) were monitored during the dry (May 2024) and rainy (October 2024) seasons. Analyses included nutrients, major ions, Escherichia coli, and a broad spectrum of pesticides. The results showed marked spatial and seasonal variability, with elevated hardness and conductivity in karst areas due to carbonate dissolution. Nitrate and total phosphorus reached peak values of 13.59 and 0.132 mg L−1, respectively, indicating localized nutrient enrichment. E. coli concentrations reached ≥2419.6 MPN 100 mL−1, exceeding regulatory limits, particularly during the rainy season at recreational cave sites. Pesticides were detected in both seasons, with 11 compounds in the dry season and 8 in the rainy season, including atrazine degradation products, and maximum quantified concentrations up to 1.8 µg L−1 (acephate). These findings highlight the combined influence of geology, seasonality, and land use on karst water quality and reinforce the need for continuous monitoring and targeted management strategies.

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Cite This Study

Muniz et al. (2026) studied this question.

synapsesocial.com/papers/69c8c25dde0f0f753b39ca8bhttps://doi.org/10.3390/w18070799
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