Literature DB >> 18681442

Degradation and persistence of rotenone in soils and influence of temperature variations.

Ivana Cavoski1, Pierluigi Caboni, Giorgia Sarais, Teodoro Miano.   

Abstract

The persistence and degradation of rotenone and its primary degradation product 12a beta-hydroxyrotenone in soils were determined under standardized laboratory conditions in the dark at 20 or 10 degrees C and at 40% of water holding capacity. Degradation experiments were carried out on two types of soil collected in southern Italy, a silt clay loam (SCL) and a loamy soil (L). A kinetic model was developed to describe degradation rates of rotenone, taking into account the production, retention, and degradation of the main metabolites. The DT50 values of rotenone and 12a beta-hydroxyrotenone, were 8 and 52 days in SCL soil, and 5 and 23 days in L soil at 20 degrees C, respectively. However, at 10 degrees C a tendency for slower degradation of rotenone and 12a beta-hydroxyrotenone was observed (25 and 118 days in SCL and 21 and 35 days in L soils, respectively). The differences were significant for most data sets. Temperature had a strong effect on degradation; a 10 degrees C increase in temperature resulted in a decrease in the DT50 value by a factor of 3.1 and 2.2 in SCL and of 4.2 and 1.4 in L soils for both rotenone and 12a beta-hydroxyrotenone, respectively. Results show that the degradation rates of both rotenone and 12a beta-hydroxyrotenone were greatly affected by temperature changes and soil physicochemical properties. The degradation reaction fits the two compartment or the multiple compartment model pathways better, which clearly indicates a rather complex rotenone degradation process in soils. Results provide further insights on the rates and the mechanisms of rotenone degradation in soils, aiming to more clearly describe the degradation pathway of chemical residues in the environment.

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Year:  2008        PMID: 18681442     DOI: 10.1021/jf801461h

Source DB:  PubMed          Journal:  J Agric Food Chem        ISSN: 0021-8561            Impact factor:   5.279


  2 in total

1.  Field and laboratory characterization of rotenone attenuation in eight lakes of the Kenai Peninsula, Alaska.

Authors:  Jordan M Couture; Zachary C Redman; Jake Bozzini; Robert Massengill; Kristine Dunker; Brandon R Briggs; Patrick L Tomco
Journal:  Chemosphere       Date:  2021-10-06       Impact factor: 7.086

2.  Synthesis of rotenone loaded zein nano-formulation for plant protection against pathogenic microbes.

Authors:  Ngangom Bidyarani; Umesh Kumar
Journal:  RSC Adv       Date:  2019-12-09       Impact factor: 4.036

  2 in total

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