Strong hydroclimatic controls on vulnerability to subsurface nitrate contamination across Europe

Author:

Kumar R.ORCID,Heße F.,Rao P. S. C.,Musolff A.ORCID,Jawitz J. W.ORCID,Sarrazin F.,Samaniego L.ORCID,Fleckenstein J. H.,Rakovec O.ORCID,Thober S.,Attinger S.

Abstract

AbstractSubsurface contamination due to excessive nutrient surpluses is a persistent and widespread problem in agricultural areas across Europe. The vulnerability of a particular location to pollution from reactive solutes, such as nitrate, is determined by the interplay between hydrologic transport and biogeochemical transformations. Current studies on the controls of subsurface vulnerability do not consider the transient behaviour of transport dynamics in the root zone. Here, using state-of-the-art hydrologic simulations driven by observed hydroclimatic forcing, we demonstrate the strong spatiotemporal heterogeneity of hydrologic transport dynamics and reveal that these dynamics are primarily controlled by the hydroclimatic gradient of the aridity index across Europe. Contrasting the space-time dynamics of transport times with reactive timescales of denitrification in soil indicate that ~75% of the cultivated areas across Europe are potentially vulnerable to nitrate leaching for at least one-third of the year. We find that neglecting the transient nature of transport and reaction timescale results in a great underestimation of the extent of vulnerable regions by almost 50%. Therefore, future vulnerability and risk assessment studies must account for the transient behaviour of transport and biogeochemical transformation processes.

Publisher

Springer Science and Business Media LLC

Subject

General Physics and Astronomy,General Biochemistry, Genetics and Molecular Biology,General Chemistry

Reference73 articles.

1. WFD. Directive 2000/60/ec of the European parliament and of the council of 23 october 2000 establishing a framework for Community action in the field of water policy’ or, in short, the EU Water Framework Directive. Off. J. Euro. Commun. L 327, 1–72 (2000).

2. Kampa, E. et al. EEA 2018: European Waters Assessment of Status and Pressures. EEA Report No 7/2018 https://www.eea.europa.eu/publications/state-of-water (2018).

3. Rockström, J. et al. A safe operating space for humanity. Nature 461, 472 (2009).

4. Sutton, M. A. et al. Too much of a good thing. Nature 472, 159–161 (2011).

5. Erisman, J. W. et al. Consequences of human modification of the global nitrogen cycle. Philos. Trans. R. Soc. B-Biol. Sci. 368, 20130116 (2013).

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