Literature DB >> 20727665

Impact of climatic and soil conditions on environmental fate of atrazine used under plantation forestry in Australia.

Rai Kookana1, Greg Holz, Chris Barnes, Ken Bubb, Ray Fremlin, Bob Boardman.   

Abstract

We studied the leaching and dissipation of atrazine (2-chloro-4-ethylamino-6-isopropylamino-1, 3, 5-s-triazine) and its two principal metabolites (desethylatrazine and desisopropylatrazine) for more than two years through soil profiles at five forestry sites across Australia (representing subtropical, temperate and Mediterranean climatic conditions with rainfall ranging from 780 to 1536 mm yr(-1)). Following atrazine applications at local label rates, soil cores were collected at regular intervals (up to depths of 90-150 cm), and the residues of the three compounds in soil were analysed in composite samples using liquid chromatography. Bromide was applied simultaneously with atrazine to follow the movement of the soil water. While bromide ion rapidly leached through the entire profile, in most cases the bulk of atrazine, desethylatrazine and desisopropylatrazine remained in the top 45 cm of the soil profile. However, a small fraction of residue moved deeper into the soil profile and at a subtropical site (Toolara) trace levels (ng L(-1)) of atrazine and one of its metabolites (DEA) were detected in perched groundwater located at a depth of 1.8 m. Data on the total residues of atrazine in soil profiles from all sites except the Tasmanian site fitted a first-order decay model. The half-life of atrazine in surface soils at the subtropical sites (Toolara and Imbil) ranged from 11 to 21 days. Four separate applications of atrazine at Toolara resulted in a narrow range of half-lives (16 ± 3.6 days), confirming relatively rapid dissipation of atrazine under subtropical conditions (Queensland). In contrast, a prominent biphasic pattern of initial rapid loss followed by very slow phase of degradation of atrazine was observed under the colder temperate climate of Highclere (Tasmania). The data showed that while its 50% (DT(50)) loss occurred relatively rapidly (36 days), more than 10% of herbicide residue was still detectable in the profile even a year after application (DT(90) = 375 days). The rate of dissipation of atrazine at warm subtropical Queensland sites (Imbil and Toolara) was 2-3 times faster than sites located in colder climate of Tasmania. The marked contrast in DT(50) values between subtropical and temperate sites suggest that climatic conditions (soil temperature) is one of the key factors affecting atrazine dissipation. At the Tasmanian site, the combination of leaching of the herbicide in subsoil and slower microbial activity at cooler temperatures would have caused a longer persistence of atrazine. Crown
Copyright © 2010. Published by Elsevier Ltd. All rights reserved.

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Year:  2010        PMID: 20727665     DOI: 10.1016/j.jenvman.2010.07.037

Source DB:  PubMed          Journal:  J Environ Manage        ISSN: 0301-4797            Impact factor:   6.789


  3 in total

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Authors:  Stephanie E King; Eric Nilsson; Daniel Beck; Michael K Skinner
Journal:  Adipocyte       Date:  2019-12       Impact factor: 4.534

2.  Exploring Biophysical Linkages between Coastal Forestry Management Practices and Aquatic Bivalve Contaminant Exposure.

Authors:  Kaegan Scully-Engelmeyer; Elise F Granek; Max Nielsen-Pincus; Andy Lanier; Steven S Rumrill; Patrick Moran; Elena Nilsen; Michelle L Hladik; Lori Pillsbury
Journal:  Toxics       Date:  2021-03-02

3.  Low-Level Groundwater Atrazine in High Atrazine Usage Nebraska Counties: Likely Effects of Excessive Groundwater Abstraction.

Authors:  Moses New-Aaron; Olufemi Abimbola; Raheleh Mohammadi; Oluwaseun Famojuro; Zaeema Naveed; Azar Abadi; Jesse E Bell; Shannon Bartelt-Hunt; Eleanor G Rogan
Journal:  Int J Environ Res Public Health       Date:  2021-12-15       Impact factor: 3.390

  3 in total

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