Published February 2019 | Version v1
Journal article

Previous degradation study of two herbicides to simulate their fate in a sandy loam soil: Effect of the temperature and the organic amendments

  • 1. Institute of Natural Resources and Agrobiology of Salamanca (IRNASA-CSIC), Cordel de Merinas 40-52, Salamanca, 37008 (Spain)

Description

Highlights: • Impact of organic amendments and temperature on two herbicides degradation in soil was evaluated. • Degradation rate decreased by application of organic amendments and increased by temperature. • Major metabolites of both herbicides were found and evaluated in all conditions assayed. • Kinetic parameters at different temperatures allowed calculation of Q10 factor in amended soils. • Q10 values will allow simulating pesticide leaching in amended soils with FOCUS models. -- Abstract: A laboratory study was designed to assess the following: i) the degradation kinetics of chlorotoluron and flufenacet at two different temperatures, 6 °C and 16 °C, in an unamended agricultural soil and one amended with spent mushroom substrate (SMS) and green compost (GC), and ii) the formation of the main metabolites of both herbicides with potential risk for water pollution over degradation time. The aim was to determine the dependence of these herbicide degradations on temperature (Q10 factor) using kinetic parameters, which is essential information for the later simulation of herbicide environmental fate with FOCUS models. SMS and GC were applied in situ to the natural soil as organic amendments at rates of 140 or 85 t residue ha−1, respectively. Unamended and amended soils were taken from the 0–10 cm topsoil of experimental plots (three replicates/treatment) located on an agricultural farm. Samples of soil + herbicides were incubated at 6 °C or 16 °C under laboratory conditions. The degradation curves of chlorotoluron and flufenacet were fitted to single first-order and first-order multicompartment kinetic models, respectively. The flufenacet degradation, the more hydrophobic herbicide, was slower than that of chlorotoluron in all the treatments. The application of the organic amendments to soil increased the half-lives (DT50) for both herbicides incubated at 6 °C (1.3–1.9 times) and 16 °C (1.4–1.9 times) due to their higher sorption and lower bioavailability for degradation in amended soils. The herbicides recorded a faster degradation at 16 °C than at 6 °C (Q10 = 1.9–2.8) due to the increased microbial biomass and/or activity with temperature. The metabolites desmethyl chlorotoluron, flufenacet ESA and flufenacet OA were detected in all the soil treatments at both incubation temperatures. The determination of Q10 factors in amended soils is very valuable for generating accurate input data for pesticide fate models such as FOCUS in order to improve the evaluation of the leaching of herbicides and their transformation products, which is a relevant goal to maintain the sustainability of agricultural systems.

Additional details

Additional titles

Augmented title (English)
Degradation;Herbicide;Soil;Spent mushroom substrate;Green compost;Temperature

Identifiers

DOI
10.1016/j.scitotenv.2018.11.015;
PII
S0048969718343614;

Publishing Information

Journal Title
Science of the Total Environment
Journal Volume
653
Journal Page Range
p. 1301-1310
ISSN
0048-9697
CODEN
STENDL

INIS

Country of Publication
Netherlands
Country of Input or Organization
International Atomic Energy Agency (IAEA)
INIS RN
55103900
Subject category
S54: ENVIRONMENTAL SCIENCES;
Descriptors DEI
AGRICULTURE; AMENDMENTS; BIOLOGICAL AVAILABILITY; COLIFORMS; COMPOST; FUNGICIDES; HALF-LIFE; HERBICIDES; INCUBATION; LEACHING; LOAM; METABOLITES; SIMULATION; SOILS; SORPTION; SUBSTRATES
Descriptors DEC
BACTERIA; DISSOLUTION; MICROORGANISMS; ORGANIC WASTES; PESTICIDES; SEPARATION PROCESSES; SOILS; WASTES

Optional Information

Copyright
Copyright (c) 2018 Elsevier B.V. All rights reserved.