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Interaction of Surfactant Dose and Spray Volume on Rimsulfuron Activity

Published online by Cambridge University Press:  12 June 2017

Jerry M. Green*
Affiliation:
DuPont Agric. Prod., Stine-Haskell Res. Cent. Bldg. 210, Newark. DE 19714

Abstract

Surfactant concentrations from 0.0008 to 12.5% (w/w) in spray volumes from 19 to 475 L/ha were tested with and without rimsulfuron on giant foxtail. Both factors varied at 5-fold increments so treatments with equal surfactant concentrations and rates could be compared. As surfactant concentration increased from 0.0008 to 0.1%, rimsulfuron activity increased from less than 20% to more than 90% growth inhibition. This increase was dependent on surfactant concentration. As surfactant concentration increased from 0.5 to 12.5%, rimsulfuron activity decreased to less than 20% at all spray volumes. This decreased activity and the associated surfactant phytotoxicity was dependent on surfactant rate, not concentration. Thus rimsulfuron can be much less active when applied with too little or too much surfactant.

Type
Research
Copyright
Copyright © 1996 by the Weed Science Society of America 

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References

Literature Cited

1. Green, J. M., Dobrotka, M. D., and Chicoine, T. K. 1994. Guidelines for adjuvant qualifications for use with DuPont row crop and cereal herbicides. Weed Sci. Soc. Am. Abstr. 34:294.Google Scholar
2. Green, J. M. and Green, J. H. 1995. Surfactant structure and concentration strongly affect rimsulfuron activity. Weed Technol. 7:633640.Google Scholar
3. Stickle, W. E. 1992. The importance of adjuvants to the agricultural chemical industry p. 247253 in Foy, C. L., ed. CRC Press Inc., Boca Raton, FL.Google Scholar
4. Wall, D. A. 1994. Tolerance of five annual broadleaf crops to simulated thifensulfuron:tribenuron (2:1) spray drift. Weed Technol. 8:785793.Google Scholar