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Adsorption and Deactivation of Atrazine and Diuron by Charcoals

Published online by Cambridge University Press:  12 June 2017

P. D. Jordan
Affiliation:
Dep. of Bot., Univ. of Guelph, Guelph, Ontario, Canada
L. W. Smith
Affiliation:
Dep. of Bot., Univ. of Guelph, Guelph, Ontario, Canada

Abstract

The adsorption of 2-chloro-4-(ethylamino)-6-(isopropylamino)-s-triazine (atrazine) and 3-(3,4-dichlorophenyl)-1,1-dimethylurea (diuron) from aqueous solution by charcoal varied widely with the type of charcoal tested. However, adsorption in solution was directly related to the deactivating properties of the charcoals for the two herbicides in soil. Several charcoals deactivated residues of 0.3 ppmw of atrazine and 1.0 ppmw of diuron when they were present at concentrations of 30 to 50 ppmw in the soil. Activation of the charcoal was essential for the adsorption and deactivating properties. A simple laboratory test was developed for assessing activated charcoals for use in deactivation studies in soil.

Type
Research Article
Copyright
Copyright © Weed Science Society of America 

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References

Literature Cited

1. Ahrens, J. G. 1965. Detoxification of simazine and atrazine treated soil with activated charcoal. Proc. No. East. Weed Contr. Conf. 19:364365.Google Scholar
2. Andersen, A. H. 1968. The inactivation of simazine and linuron in soil by charcoal. Weed Res. 8:5860.Google Scholar
3. Bikerman, J. J. 1958. Surface chemistry-theory and applications. Academic Press, New York. 501 p.Google Scholar
4. Coffey, D. L. and Warren, G. F. 1969. Inactivation of herbicides by activated carbon and other adsorbents. Weed Sci. 17:1619.Google Scholar