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Characterize the catchment regime by applying optimal monitoring strategies

, , , and . EGU General Assembly Conference Abstracts, page 4843. (May 2020)

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A sampling scheme to assess persistence and transport characteristics of xenobiotics within an urban river section, , , , and . (2014)Characterize the catchment regime by applying optimal monitoring strategies, , , and . EGU General Assembly Conference Abstracts, page 4843. (May 2020)Optimal scheduling and event-based sampling : development and demonstration for investigating the nitrate characteristics of a headwater catchment, , , and . 21th EGU General Assembly, EGU2019, page 964. Smithsonian Astrophysical Observatory, (2018)A high-precision sampling scheme to assess persistence and transport characteristics of micropollutants in rivers, , , , and . Science of the total environment, (2016)Characterize the catchment regime by applying optimal monitoring strategies, , , and . EGU General Assembly 2020, page EGU2020-4843. Copernicus GmbH, (2020)Characterization of Export Regimes in Concentration : Discharge Plots via an Advanced Time-Series Model and Event-Based Sampling Strategies, , , and . Water, 13 (13): 1723 (2021)Optimal scheduling and event-based sampling: development and demonstration for investigating the nitrate characteristics of a headwater catchment, , , and . General Assembly 2019, Geophysical Research Abstracts: EGU2019-964, 2019, Vienna, Austria, European Geosciences Union (EGU), (April 2019)Characterization of export regime in discharge-concentration plots via an advanced time-series model and event-based sampling, , , and . Water, (2021)Turbidity as a proxy for total suspended solids (TSS) and particle facilitated transport in catchments, , , , and . Environmental Earth Sciences, 2 (69): 373-380 (2013)Catchments as Reactors : A comprehensive approach for water fluxes and solute turn-over, , , , , , , , , and 21 other author(s). Environmental Earth Sciences, 69 (2): 317-333 (2013)