Literature DB >> 15260322

Herbicide runoff along highways. 1. Field observations.

Xinjiang Huang1, Theresa Pedersen, Michael Fischer, Richard White, Thomas M Young.   

Abstract

Herbicides are widely applied along highways to control roadside vegetation, and surface water is frequently nearby. To determine whether herbicide runoff along highways threatens water quality, a field study was conducted at two sites in northern California for three rainy seasons. The herbicides oryzalin, isoxaben, diuron, glyphosate, and clopyralid were selected for study to include compounds with significant variation in physical/chemical properties. Concentrations of herbicides in runoff were monitored for up to 11 storms following herbicide application, and 24 samples were collected per storm, providing unprecedented temporal detail. Flow-weighted event mean concentrations were calculated for each herbicide in each storm and ranged from below detection limits to 43.13 microg/L for oryzalin. The least soluble compounds, isoxaben and oryzalin, were detected in all storms monitored while the more soluble compounds, diuron and clopyralid, declined to levels below detection limits before monitoring was concluded. Very small amounts of glyphosate were mobilized, but its transformation product aminomethylphosphonic acid was detected at higher concentrations, in more storm events, and at greater depth in the soil profile. A first-order model successfully described the declining herbicide concentrations in spray zone soil and in surface runoff for all sites and herbicides. Fitted first-order coefficients were always higher for runoff than for soil, indicating that the herbicide that persists in the source zone becomes less available for runoff as the time since application increases. The percentage of the applied herbicide that was detected in surface runoff over a season ranged from 0.05% to 43.5%, and the most critical variables in controlling the variation were the solubility of the herbicide and the runoff volume. For a given herbicide and site, the most critical factors in determining seasonal herbicide loss to surface water were the timing and intensity of the first storm following application, affecting total seasonal runoff by up to 2 orders of magnitude. Minimizing runoff of herbicides along highways will thus require careful attention to the intrinsic mobility of the compound and the timing of its application.

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Year:  2004        PMID: 15260322     DOI: 10.1021/es034847h

Source DB:  PubMed          Journal:  Environ Sci Technol        ISSN: 0013-936X            Impact factor:   9.028


  4 in total

1.  Elevated water temperature reduces the acute toxicity of the widely used herbicide diuron to a green alga, Pseudokirchneriella subcapitata.

Authors:  Rumana Tasmin; Yohei Shimasaki; Michito Tsuyama; Xuchun Qiu; Fatma Khalil; Nozomu Okino; Naotaka Yamada; Shinji Fukuda; Ik-Joon Kang; Yuji Oshima
Journal:  Environ Sci Pollut Res Int       Date:  2013-07-20       Impact factor: 4.223

2.  Risk assessment of selected priority pollutants coming from boating activities.

Authors:  Giuliana Ansanelli; Luisa Parrella; Giuseppe Di Landa; Paolo Massanisso; Simona Schiavo; Sonia Manzo
Journal:  Environ Monit Assess       Date:  2016-06-25       Impact factor: 2.513

3.  Micropollutants in urban stormwater: occurrence, concentrations, and atmospheric contributions for a wide range of contaminants in three French catchments.

Authors:  J Gasperi; C Sebastian; V Ruban; M Delamain; S Percot; L Wiest; C Mirande; E Caupos; D Demare; M Diallo Kessoo Kessoo; M Saad; J J Schwartz; P Dubois; C Fratta; H Wolff; R Moilleron; G Chebbo; C Cren; M Millet; S Barraud; M C Gromaire
Journal:  Environ Sci Pollut Res Int       Date:  2013-12-10       Impact factor: 4.223

4.  Methodologies for pre-validation of biofilters and wetlands for stormwater treatment.

Authors:  Kefeng Zhang; Anja Randelovic; Larissa M Aguiar; Declan Page; David T McCarthy; Ana Deletic
Journal:  PLoS One       Date:  2015-05-08       Impact factor: 3.240

  4 in total

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