Introducing GloRiSe - A global database on river sediment composition

Publication date

2021-07-29

Authors

Müller, GerritISNI 0000000506846100
Middelburg, JackORCID 0000-0003-3601-9072ISNI 0000000050735946
Sluijs, AppyORCID 0000-0003-2382-0215ISNI 0000000389163131

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Document Type

Article
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cc_by

Abstract

Rivers transport dissolved and solid loads from terrestrial realms to the oceans and between inland reservoirs, representing major mass fluxes on Earth's surface. The composition of river water and sediment provides clues to a plethora of Earth and environmental processes, including weathering, erosion, nutrient and carbon cycling, environmental pollution, reservoir exchange, and tectonic cycles. While there are documented, publicly available databases for riverine dissolved and suspended nutrients, there is no openly accessible, georeferenced database for riverine suspended sediment composition. Here, we present a globally representative set of 2828 suspended and bed sediment compositional measurements from 1683 locations around the globe. This database, named Global River Sediments (GloRiSe) version 1.1, includes major, minor and trace elements, along with mineralogical data, and provides time series for some sites. Each observation is complemented by metadata describing geographic location, sampling date and time, sample treatment, and measurement details, which allows for grouping and selection of observations, as well as for interoperability with external data sources, and improves interpretability. Information on references, unit conversion and references makes the database comprehensible. Notably, the close to globe-spanning extent of this compilation allows the derivation of data-driven, spatially resolved global-scale conclusions about the role of rivers and processes related to them within the Earth system. GloRiSe version 1.1 can be downloaded from Zenodo (10.5281/zenodo.4485795, Muller et al., 2021) and GitHub (https://github.com/GerritMuller/GloRiSe, last access: 26 May 2021), where updates with adapted version numbers will become available, along with a technical documentation and an example calculation in the form of MATLAB scripts, which calculate the sediment-flux-weighted major element composition of the annual riverine suspended sediment export to the ocean and related uncertainties.

Keywords

River, suspended sediment, geochemistry, mineralogy, petrography, weathering, erosion, database, General Earth and Planetary Sciences, SDG 12 - Responsible Consumption and Production, SDG 15 - Life on Land

Citation

Müller, G, Middelburg, J J & Sluijs, A 2021, 'Introducing GloRiSe - A global database on river sediment composition', Earth System Science Data, vol. 13, no. 7, pp. 3565-3575. https://doi.org/10.5194/essd-13-3565-2021