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Human activities threaten the integrity of watersheds. We aimed to investigate the impact of land use on water quality, adopting a multiscale approach. We collected water samples from twelve streams in Southern Brazil and conducted limnological analyses (physical, chemical, and biological) during the dry season. We used the water quality index based on the quality standards of Canada and Brazil. Land use percentage was measured in two groups (local scale and network scale). Environmental variables were summarized through Principal Component Analysis, and we organized them into Linear Models, integrating the percentage of land use classes and terrain slope in the Multifit formula. Statistical analyses were performed using the R software. Results indicated contamination by lead, chromium, copper, nitrogen, and Escherichia coli in water samples. The Canadian Water Quality Guidelines for the Protection of Aquatic Life resulted in an index ranging from 23.3 to 47.3, compared to the Brazilian Resolution No. 357/2005 for Class 2, which had an index ranging from 47.5 to 100. This disparity is attributed to the more rigorous and sensitive monitoring approach adopted by the Canadian guidelines. Riparian forests which are up to 50 m wide are associated with improved water quality. Agricultural and urban activities were the main contributors to water quality degradation in an area extending up to 1000 m from the watershed. We emphasize the importance of a multiscale approach in watershed management and public policies, considering not only riparian forest preservation, but also human activities throughout the watershed. It is crucial to prioritize science-based environmental public policies and strengthen enforcement to prevent increasingly pronounced environmental collapses. We have identified the urgency to reformulate CONAMA Resolution No. 357/2005 with a more conservationist and ecosystem-oriented approach, as well as to propose modifications to the Brazilian Forest Code, particularly regarding the buffer zones of permanent preservation areas. Thus, this study can provide insights, such as incorporating the “effect scale,” to enhance water resource management in landscapes heavily influenced by human action, contributing to the advancement of future research in freshwater ecosystems.
Human activities threaten the integrity of watersheds. We aimed to investigate the impact of land use on water quality, adopting a multiscale approach. We collected water samples from twelve streams in Southern Brazil and conducted limnological analyses (physical, chemical, and biological) during the dry season. We used the water quality index based on the quality standards of Canada and Brazil. Land use percentage was measured in two groups (local scale and network scale). Environmental variables were summarized through Principal Component Analysis, and we organized them into Linear Models, integrating the percentage of land use classes and terrain slope in the Multifit formula. Statistical analyses were performed using the R software. Results indicated contamination by lead, chromium, copper, nitrogen, and Escherichia coli in water samples. The Canadian Water Quality Guidelines for the Protection of Aquatic Life resulted in an index ranging from 23.3 to 47.3, compared to the Brazilian Resolution No. 357/2005 for Class 2, which had an index ranging from 47.5 to 100. This disparity is attributed to the more rigorous and sensitive monitoring approach adopted by the Canadian guidelines. Riparian forests which are up to 50 m wide are associated with improved water quality. Agricultural and urban activities were the main contributors to water quality degradation in an area extending up to 1000 m from the watershed. We emphasize the importance of a multiscale approach in watershed management and public policies, considering not only riparian forest preservation, but also human activities throughout the watershed. It is crucial to prioritize science-based environmental public policies and strengthen enforcement to prevent increasingly pronounced environmental collapses. We have identified the urgency to reformulate CONAMA Resolution No. 357/2005 with a more conservationist and ecosystem-oriented approach, as well as to propose modifications to the Brazilian Forest Code, particularly regarding the buffer zones of permanent preservation areas. Thus, this study can provide insights, such as incorporating the “effect scale,” to enhance water resource management in landscapes heavily influenced by human action, contributing to the advancement of future research in freshwater ecosystems.
Atualmente, cerca de dois bilhões de pessoas carecem de acesso à água de qualidade. No Brasil, tal situação é agravada por questões geográficas, adensamento populacional e poluição. Considerando que a bacia hidrográfica é a unidade de planejamento ambiental no Brasil, pressupõe-se que a realização de seu manejo de forma adequada e aplicação das políticas correlacionadas favorecem a promoção dos usos múltiplos da água. O presente artigo visa fornecer uma visão geral da gestão de recursos hídricos, adotando a bacia hidrográfica como unidade de manejo, abordando aspectos básicos ligados aos recursos hídricos, o histórico do sistema de gestão de recursos hídricos brasileiro e apontar elementos que podem ser empregados no manejo de bacias hidrográficas. Os esforços destinados à gestão dos recursos hídricos no Brasil se iniciaram em 1934, o manejo das bacias hidrográficas deve ser pautado na implementação de estratégias conservacionistas, do saneamento ambiental e da promoção da articulação entre os instrumentos existentes. O processo de gerenciamento deve envolver todos os interessados e os recursos arrecadados com a cobrança pelo uso da água devem favorecer a condução das ações nas bacias hidrográficas. O Grau de Hemerobia consiste em uma ferramenta útil para verificar a influência da paisagem sobre a qualidade da água e eventuais desregulações dos ecossistemas. Water resource management and hydrographic basin management in Brazil: basic elements, historic and strategies A B S T R A C TCurrently, about two billion people lack access to quality water. In Brazil, this situation is aggravated by geographical issues, population density, and pollution. Considering that the hydrographic basin is the environmental planning unit in Brazil, we assumed that the performance of its management in an appropriate manner and application of related policies favors the promotion of multiple water uses. This article aims to provide an overview of water resources management, adopting the hydrographic basin as a management unit, addressing basic aspects related to water resources, the historic of the Brazilian water resource management system and pointing out elements that can be used in the management of hydrographic basins. Efforts destined to the water resources management in Brazil began in 1934, the management of hydrographic basins must be guided by the implementation of conservationist strategies, the implementation of environmental sanitation and promoting the articulation between the existing instruments. The management process needs to involve all stakeholders and the resources collected from charging for the use of water favors the conduct of actions in hydrographic basins. The Hemeroby Degree is a useful tool for verifying the influence of the landscape on water quality and possible deregulation of the ecosystems.Keywords: Aquatic Ecosystems; Management; Planning; Environmental Policy.
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