Have a personal or library account? Click to login
Comparing Nozzles with Different Wear Rate and Working with the Same Application Rate of Different Plant Protection Products in Aspect of Plants Condition Cover

Comparing Nozzles with Different Wear Rate and Working with the Same Application Rate of Different Plant Protection Products in Aspect of Plants Condition

Open Access
|Sep 2019

References

  1. Agüera, F., Nuyttens, D., Carvajal, F. and Sánchez-Hermosilla, J. (2012) Fractal analysis of agricultural nozzles spray. Scientia Agricola, 69(1), 6-12.10.1590/S0103-90162012000100002
  2. Berry, P.M., Sterling, M., Spink, J.H., Baker, C.J., Sylvester-Bradley, R., Mooney, S.J., Tams, A.R. and Ennos, A.R., (2004). Understanding and reducing lodging in cereals. Advances in Agronomy, 84, pp.217-271.10.1016/S0065-2113(04)84005-7
  3. Braekman, P., Foque, D., Messens, W., Van Labeke, M.C., Pieters, J.G. and Nuyttens, D. (2010). Effect of spray application technique on spray deposition in greenhouse strawberries and tomatoes. Pest management science, 66(2), 203-212.10.1002/ps.1858
  4. Ebert, T.A. and Downer, R.A. (2006). A different look at experiments on pesticide distribution. Crop Protection, 25(4), 299-309.10.1016/j.cropro.2005.06.002
  5. Harasim, E., Wesołowski, M., Kwiatkowski, C.A. and Cierpiała, R., (2016). Effect of retardants and nitrogen fertilization on winter wheat canopy structure. Romanian Agricultural Research, 33, pp.195-203.
  6. Harms, C.L. and Oplinger, E.S., (1988). Plant growth regulators: their use in crop production. Purdue University, Cooperative Extension Service.
  7. Huyghebaert B. (2015). Verification of measurement methods of flat fan nozzles working parameters used in agriculture, Ph.D Thesis, University of Life Sciences in Lublin, Poland.
  8. Klein, R.N., Kruger, G.R. and Golus, J.A. (2011). Evaluation of Soybean (Glycine max) Canopy Penetration with Several Nozzle Types and Pressures. INTECH Open Access Publisher.
  9. Knoche, M., Bukovac, M.J., Nakagawa, S. and Crabtree, G.D., (1998). Spray application factors and plant growth regulator performance: I. Bioassays and biological response. Pest Management Science, 54(2), pp.168-178.
  10. Matthews, G.A. (2008). Developments in application technology. The Environmentalist, 28(1), 19-24.10.1007/s10669-007-9039-2
  11. Rademacher, W. (2015). Plant growth regulators: Backgrounds and uses in plant production. Journal of plant growth regulation, 34(4), 845-872.10.1007/s00344-015-9541-6
  12. Womac, A.R. (2001) Atomization characteristics of high-flow variable-orifice flooding nozzles. Transactions of the ASAE, 44(3), 463-471.
DOI: https://doi.org/10.1515/agriceng-2019-0016 | Journal eISSN: 2449-5999 | Journal ISSN: 2083-1587
Language: English
Page range: 49 - 56
Submitted on: May 1, 2019
Accepted on: Jun 1, 2019
Published on: Sep 9, 2019
Published by: Polish Society of Agricultural Engineering
In partnership with: Paradigm Publishing Services
Publication frequency: 1 issue per year

© 2019 Stanisław Parafiniuk, Alaa Kamel Subr, Marek Milanowski, Anna Krawczuk, published by Polish Society of Agricultural Engineering
This work is licensed under the Creative Commons Attribution-NonCommercial-NoDerivatives 3.0 License.