Matches in SemOpenAlex for { <https://semopenalex.org/work/W750093325> ?p ?o ?g. }
- W750093325 endingPage "87" @default.
- W750093325 startingPage "75" @default.
- W750093325 abstract "Cover crops can be an efficient agricultural practice to reduce nitrate leaching during the fallow period and decrease nitrate pollution of aquifers. For maximum reduction of nitrate leaching, cover-crop management must be adapted to the pedoclimatic context. We used the soil–crop model STICS to assess optimal emergence dates in summer and destruction dates in autumn and winter for three species of cover crops (mustard, ryegrass and vetch) at a large scale in France. We first calibrated and validated STICS’s predictions of soil and crop dynamics under a wide range of conditions, including bare soil and cover crops. Since predictions were sufficiently accurate, we then predicted the impact of several emergence and destruction dates of cover crops on nitrate leaching in 24 contrasting climatic sites over 20 years. These sites represented a wide range of conditions found in France and much of Europe. Using generalized linear model (GLM), we extrapolated to the vulnerable nitrate zones in France the optimal dates predicted for the 24 sites. We defined optimal emergence date as the date allowing the higher nitrate leaching decrease in drained water and optimal destruction dates as those for which a high reduction of nitrate leaching was predicted and that also avoided negative effects on the subsequent main crop and water resources. STICS accurately predicted mineral N and water dynamics from both calibration and validation datasets, despite lower accuracy for vetch simulations. Over the 20-year simulations, optimal dates varied, depending mainly on site, cover crop and year. Optimal emergence dates for cover crops were earlier for vetch (late July) than for ryegrass (early August) and mustard (late August) and earlier in the north (cold and rainy) than in the south of France (warm and dry). Optimal destruction dates, as defined in this paper, were frequently between October and December. Mean optimal dates by site and species were strongly correlated with climatic characteristics of the 24 sites tested, which enabled us to extrapolate them to a larger scale and identify areas with similar optimal emergence and destruction dates according to cover-crop species. Later optimal emergence dates occurred in southeastern France in late August and September, while the earliest dates occurred in late July and early August in the north and east of France. The extrapolated optimal destruction dates occurred in autumn (October–December), with later destruction dates located in zones with higher temperature in the western coastal zones of the Atlantic Ocean and in southeastern France." @default.
- W750093325 created "2016-06-24" @default.
- W750093325 creator A5011678514 @default.
- W750093325 creator A5011851407 @default.
- W750093325 creator A5017785901 @default.
- W750093325 date "2015-09-01" @default.
- W750093325 modified "2023-10-02" @default.
- W750093325 title "Large-scale assessment of optimal emergence and destruction dates for cover crops to reduce nitrate leaching in temperate conditions using the STICS soil–crop model" @default.
- W750093325 cites W119792119 @default.
- W750093325 cites W135554566 @default.
- W750093325 cites W1608563899 @default.
- W750093325 cites W1964402598 @default.
- W750093325 cites W1964700776 @default.
- W750093325 cites W1979110338 @default.
- W750093325 cites W1993064131 @default.
- W750093325 cites W1997960297 @default.
- W750093325 cites W2007435795 @default.
- W750093325 cites W2010833708 @default.
- W750093325 cites W2011124779 @default.
- W750093325 cites W2025083994 @default.
- W750093325 cites W2036908963 @default.
- W750093325 cites W2061059630 @default.
- W750093325 cites W2061242803 @default.
- W750093325 cites W2067707730 @default.
- W750093325 cites W2068181161 @default.
- W750093325 cites W2069852967 @default.
- W750093325 cites W2075648393 @default.
- W750093325 cites W2087194814 @default.
- W750093325 cites W2087693688 @default.
- W750093325 cites W2090747646 @default.
- W750093325 cites W2094696743 @default.
- W750093325 cites W2094753045 @default.
- W750093325 cites W2097071540 @default.
- W750093325 cites W2105337265 @default.
- W750093325 cites W2110016106 @default.
- W750093325 cites W2124528803 @default.
- W750093325 cites W2130683986 @default.
- W750093325 cites W2135938451 @default.
- W750093325 doi "https://doi.org/10.1016/j.eja.2015.06.002" @default.
- W750093325 hasPublicationYear "2015" @default.
- W750093325 type Work @default.
- W750093325 sameAs 750093325 @default.
- W750093325 citedByCount "32" @default.
- W750093325 countsByYear W7500933252015 @default.
- W750093325 countsByYear W7500933252016 @default.
- W750093325 countsByYear W7500933252017 @default.
- W750093325 countsByYear W7500933252018 @default.
- W750093325 countsByYear W7500933252019 @default.
- W750093325 countsByYear W7500933252020 @default.
- W750093325 countsByYear W7500933252021 @default.
- W750093325 countsByYear W7500933252022 @default.
- W750093325 countsByYear W7500933252023 @default.
- W750093325 crossrefType "journal-article" @default.
- W750093325 hasAuthorship W750093325A5011678514 @default.
- W750093325 hasAuthorship W750093325A5011851407 @default.
- W750093325 hasAuthorship W750093325A5017785901 @default.
- W750093325 hasConcept C137580998 @default.
- W750093325 hasConcept C159390177 @default.
- W750093325 hasConcept C159750122 @default.
- W750093325 hasConcept C18903297 @default.
- W750093325 hasConcept C2776384668 @default.
- W750093325 hasConcept C34070608 @default.
- W750093325 hasConcept C39432304 @default.
- W750093325 hasConcept C54286561 @default.
- W750093325 hasConcept C6557445 @default.
- W750093325 hasConcept C81461190 @default.
- W750093325 hasConcept C86803240 @default.
- W750093325 hasConcept C90982505 @default.
- W750093325 hasConceptScore W750093325C137580998 @default.
- W750093325 hasConceptScore W750093325C159390177 @default.
- W750093325 hasConceptScore W750093325C159750122 @default.
- W750093325 hasConceptScore W750093325C18903297 @default.
- W750093325 hasConceptScore W750093325C2776384668 @default.
- W750093325 hasConceptScore W750093325C34070608 @default.
- W750093325 hasConceptScore W750093325C39432304 @default.
- W750093325 hasConceptScore W750093325C54286561 @default.
- W750093325 hasConceptScore W750093325C6557445 @default.
- W750093325 hasConceptScore W750093325C81461190 @default.
- W750093325 hasConceptScore W750093325C86803240 @default.
- W750093325 hasConceptScore W750093325C90982505 @default.
- W750093325 hasLocation W7500933251 @default.
- W750093325 hasLocation W7500933252 @default.
- W750093325 hasOpenAccess W750093325 @default.
- W750093325 hasPrimaryLocation W7500933251 @default.
- W750093325 hasRelatedWork W2001163870 @default.
- W750093325 hasRelatedWork W2065508092 @default.
- W750093325 hasRelatedWork W2065845744 @default.
- W750093325 hasRelatedWork W2583367826 @default.
- W750093325 hasRelatedWork W2795795945 @default.
- W750093325 hasRelatedWork W2921929372 @default.
- W750093325 hasRelatedWork W2989245493 @default.
- W750093325 hasRelatedWork W3184156951 @default.
- W750093325 hasRelatedWork W3197659044 @default.
- W750093325 hasRelatedWork W4246087227 @default.
- W750093325 hasVolume "69" @default.
- W750093325 isParatext "false" @default.
- W750093325 isRetracted "false" @default.
- W750093325 magId "750093325" @default.