March 3, 2017
51社区's Ms. Jane Staveley recently coauthored the article, "Adsorption and Desorption of 17伪-Trenbolone and Trendione on Five Soils," in Environmental Toxicology and Chemistry.
Abstract
The metabolites 17伪-trenbolone and 17伪-estradiol are principal metabolites in cattle excreta following the administration of Synovex庐 ONE, which contains trenbolone acetate and estradiol benzoate. As part of the environmental assessment of the use of Synovex ONE, data were generated to characterize the fate of 17伪-trenbolone, and its metabolite trendione in the environment. Predictions of the fate and environmental concentrations of these hormones after land application require accurate estimates of the sorption of these compounds in soils. The sorption and desorption of 17伪-trenbolone and trendione were measured at 5 nominal concentrations in 5 soils from different geologic settings using a batch equilibrium technique following guideline 106 of the Organisation for Economic Co-operation and Development. Both the sorption and desorption of 17伪-trenbolone and trendione to soils were adequately described by the Freundlich sorption model and by linear partition coefficients. The mean sorption coefficients were 9.04鈥塵L/g and 32.2鈥塵L/g for 17伪-trenbolone and trendione, respectively. The corresponding mean Freundlich sorption exponents were 0.88 and 0.98, respectively. Sorption of 17伪-trenbolone and trendione was correlated principally with soil organic carbon. Average sorption coefficients normalized to soil organic carbon content (KOC) were 460鈥塵L/g and 1804鈥塵L/g for 17伪-trenbolone and trendione, respectively. The mean desorption coefficients were 22.1鈥塵L/g and 43.8鈥塵L/g for 17伪-trenbolone and trendione, respectively. Calculated hysteresis coefficients based on the difference in the area between sorption and desorption isotherms indicated that sorption equilibrium was not fully reversible, and hysteresis of desorption isotherms occurred for both 17伪-trenbolone and trendione.
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