Real-time monitoring using in-situ sensors is becoming a common approach for measuring water-quality within watersheds. High-frequency measurements produce big datasets that present opportunities to conduct new analyses for improved understanding of water-quality dynamics and more effective management of rivers and streams. Of primary importance is enhancing knowledge of the relationships between nitrate, one of the most reactive forms of inorganic nitrogen in the aquatic environment, and other water-quality variables. We analysed high-frequency water-quality data from in-situ sensors deployed in three sites from different watersheds and climate zones within the National Ecological Observatory Network, USA. We used generalised additive mixe...
Water-quality monitoring in rivers often focuses on the concentrations of sediments and nutrients, c...
High-frequency, in-situ monitoring provides large environmental datasets. These datasets will likely...
An edited version of this paper was published by AGU. Copyright 2018 American Geophysical Union.Exce...
Real-time monitoring using in-situ sensors is becoming a common approach for measuring water-quality...
Agricultural intensification in the Midwestern U.S. and the resultant downstream transport of nitrog...
Agricultural intensification in the Midwestern U.S. and the resultant downstream transport of nitrog...
Agricultural intensification in the Midwestern U.S. and the resultant downstream transport of nitrog...
Agricultural intensification in the Midwestern U.S. and the resultant downstream transport of nitrog...
Agricultural intensification in the Midwestern U.S. and the resultant downstream transport of nitrog...
Water-quality monitoring in rivers often focuses on the concentrations of sediments and nutrients, c...
High frequency in-situ measurements of nitrate can greatly reduce uncertainty in nitrate flux estima...
Water-quality monitoring in rivers often focuses on the concentrations of sediments and nutrients, c...
Water-quality monitoring in rivers often focuses on the concentrations of sediments and nutrients, c...
High frequency in-situ measurements of nitrate can greatly reduce uncertainty in nitrate flux estima...
Water-quality monitoring in rivers often focuses on the concentrations of sediments and nutrients, c...
Water-quality monitoring in rivers often focuses on the concentrations of sediments and nutrients, c...
High-frequency, in-situ monitoring provides large environmental datasets. These datasets will likely...
An edited version of this paper was published by AGU. Copyright 2018 American Geophysical Union.Exce...
Real-time monitoring using in-situ sensors is becoming a common approach for measuring water-quality...
Agricultural intensification in the Midwestern U.S. and the resultant downstream transport of nitrog...
Agricultural intensification in the Midwestern U.S. and the resultant downstream transport of nitrog...
Agricultural intensification in the Midwestern U.S. and the resultant downstream transport of nitrog...
Agricultural intensification in the Midwestern U.S. and the resultant downstream transport of nitrog...
Agricultural intensification in the Midwestern U.S. and the resultant downstream transport of nitrog...
Water-quality monitoring in rivers often focuses on the concentrations of sediments and nutrients, c...
High frequency in-situ measurements of nitrate can greatly reduce uncertainty in nitrate flux estima...
Water-quality monitoring in rivers often focuses on the concentrations of sediments and nutrients, c...
Water-quality monitoring in rivers often focuses on the concentrations of sediments and nutrients, c...
High frequency in-situ measurements of nitrate can greatly reduce uncertainty in nitrate flux estima...
Water-quality monitoring in rivers often focuses on the concentrations of sediments and nutrients, c...
Water-quality monitoring in rivers often focuses on the concentrations of sediments and nutrients, c...
High-frequency, in-situ monitoring provides large environmental datasets. These datasets will likely...
An edited version of this paper was published by AGU. Copyright 2018 American Geophysical Union.Exce...