Effectiveness of Grassed Buffer in Reducing Spinosad Runoff: Real Data and FOCUS Output
- 1 National Research Council, Institute for Sustainable Plant Protection (IPSP-CNR), Agripolis, Viale dell’Università 16, Legnaro (PD), Italy
- 2 AGREA S.r.l. Centro Studi, Via Garibaldi 5/16, San Giovanni Lupatoto (VR), Italy
- 3 AGREA S.r.l. Centro Studi, Via Garibaldi 5/16, San Giovanni Lupatoto (VR), Italy
- 4 International Centre for Pesticides and Health Risk Prevention, Via G.B. Grassi, Milano, Italy
- 5 Dow AgroSciences Italia Srl, Viale F. Albani, Milano, Italy
- 6 Dow AgroSciences LLC, Indianapolis, IN, USA
Abstract
In Italy high-quality vines are grown on sloping fields where pesticide runoff to surface water is possible and vegetated buffers are suggested as mitigation measure. Spinosad is an insecticide used to control pests in vineyards. For regulatory purposes, FOCUS modelling is used to calculate pesticides runoff reduction provided by a vegetated buffer, but there is an urgent need for field-based results. A field trial with artificial runoff was performed in September 2017 in Northern Italy to evaluate the efficiency of a grassed buffer to reduce spinosad runoff. Trial conditions were based on FOCUS scenarios but made worse to draw prudent conclusions. For the first time in Italy, the trial was conducted according to Good Laboratory Practices to increase reliability of results and reproducibility of the study for regulatory purposes. Five plots were tested, each simulating a grassed buffer of 12 m length on a slope of 10% - 13%. The artificial runoff was 200 mm in 3 hours and rainfall pre- and during runoff was 45 mm. Results show that the 12 m buffer completely retained runoff and effectively mitigated runoff concentration, and mean reduction of spinosad concentration was 59%. A width effect exists, and every 6.5 m of buffer reduces concentration by 50%. Comparison of field results with FOCUS modelling shows that both VFSMod and LM models provide acceptable estimation of runoff reduction for a 5 m buffer, while LM seems more precise. For a 10 m buffer the VFSMod is very accurate, while LM underestimates reduction observed in the field.
- Stehle, S. and Shulz, R. (2015) Agricultural Insecticides Threaten Surface Waters at the Global Scale. Proceedings of the National Academy of Science of the United States of America, 112, 5750-5755. https://doi.org/10.1073/pnas.1500232112
- Szocs, E., Brinke, M., Karaoglan, B. and Schafer, R.B. (2017) Large Scale Risks from Agricultural Pesticides in Small Streams. Environmental Science and Technology, 51, 7378-7385. https://doi.org/10.1021/acs.est.7b00933
- Kosmas, C., Danalatos, N., Cammeraat, L.H., Chabart, M., Diamantopoulos, J., Farand, R., Gutierrez, L., Jacob, A., Marques, H., Martinez-Fernandez, J., Mizara, A., Moustakas, N., Nicolau, J.M., Oliveros, C., Pinna, G., Puddu, R., Puigdefabregas, J., Roxo, M., Simao, A., Stamou, G., Tomasi, N., Usai, D. and Vacca, A. (1997) The Effect of Land Use on Runoff and Soil Erosion Rates under Mediterranean Conditions. Catena, 29, 45-59. https://doi.org/10.1016/S0341-8162(96)00062-8
- Blavet, D., De Noni, G., Le Bissonnais, Y., Leonard, M., Maillo, L., Laurent, J.Y., Asseline, J., Leprun, J.C., Arshad, M.A. and Roose, E. (2009) Effect of Land Use and Management on the Early Stages of Soil Water Erosion in French Mediterranean Vineyards. Soil and Tillage Research, 106, 124-136. https://doi.org/10.1016/j.still.2009.04.010
- EPA (2009) Memorandum May 4, 2009: EFED Risk Assessment for the Proposed IR-4 Use of the Spinosad Product Entrust on Pomegranate and Dates. Office of Prevention, Pesticides and Toxic Substances, United States Environmental Protection Agency, 85 p.
- Assessment Report Spinosad PT18 (2010) Assessment Report Finalised in the Standing Committee on Biocidal Products at Its Meeting on May 27, 2010 in View of Its Inclusion in Annex I to Directive 98/8/EC.
- Cardinali, A., Otto, S. and Zanin, G. (2013) Herbicides Runoff in Vegetative Filter Strips: Evaluation and Validation of a Recent Rainfall Return Period Model. International Journal of Environmental Analytical Chemistry, 93, 1-10. https://doi.org/10.1080/03067319.2013.841151
- Otto, S., Vianello, M., Infantino, A., Zanin, G. and Di Guardo, A. (2008) Effect of a Full-Grown Vegetative Filter Strip on Herbicide Runoff. Maintaining of Filter Capacity over Time. Chemosphere, 71, 74-82. https://doi.org/10.1016/j.chemosphere.2007.10.029
- Morvan, X., Naisse, C., Malam Issa, O., Desprats, J.F., Combaud, A. and Cerdan, O. (2014) Effect of Ground-Cover Type on Surface Runoff and Subsequent Soil Erosion in Champagne Vineyards in France. Soil Use and Management, 30, 372-381. https://doi.org/10.1111/sum.12129