Sequential use of the STICS crop model and of the MACRO pesticide fate model to simulate pesticides leaching in cropping systems

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TitreSequential use of the STICS crop model and of the MACRO pesticide fate model to simulate pesticides leaching in cropping systems
Type de publicationJournal Article
Year of Publication2017
AuteursLammoglia S-K, Moeys J, Barriuso E, Larsbo M, Marin-Benito J-M, Justes E, Alletto L, Ubertosi M, Nicolardot B, Munier-Jolain N, Mamy L
JournalENVIRONMENTAL SCIENCE AND POLLUTION RESEARCH
Volume24
Pagination6895-6909
Date PublishedMAR
Type of ArticleArticle
ISSN0944-1344
Mots-clésAgricultural practices, Cropping systems, MACRO, Modelling, pesticides, STICS
Résumé

The current challenge in sustainable agriculture is to introduce new cropping systems to reduce pesticides use in order to reduce ground and surface water contamination. However, it is difficult to carry out in situ experiments to assess the environmental impacts of pesticide use for all possible combinations of climate, crop, and soils; therefore, in silico tools are necessary. The objective of this work was to assess pesticides leaching in cropping systems coupling the performances of a crop model (STICS) and of a pesticide fate model (MACRO). STICS-MACRO has the advantage of being able to simulate pesticides fate in complex cropping systems and to consider some agricultural practices such as fertilization, mulch, or crop residues management, which cannot be accounted for with MACRO. The performance of STICS-MACRO was tested, without calibration, from measurements done in two French experimental sites with contrasted soil and climate properties. The prediction of water percolation and pesticides concentrations with STICS-MACRO was satisfactory, but it varied with the pedoclimatic context. The performance of STICS-MACRO was shown to be similar or better than that of MACRO. The improvement of the simulation of crop growth allowed better estimate of crop transpiration therefore of water balance. It also allowed better estimate of pesticide interception by the crop which was found to be crucial for the prediction of pesticides concentrations in water. STICS-MACRO is a new promising tool to improve the assessment of the environmental risks of pesticides used in cropping systems.

DOI10.1007/s11356-016-6842-7