College of Environmental and Resource Sciences, Zhejiang University, Hangzhou, 310058, China.
Environ Sci Pollut Res Int. 2014 Jan;21(1):652-9. doi: 10.1007/s11356-013-1941-1. Epub 2013 Jul 2.
Quinestrol has shown potential for use in the fertility control of the plateau pika population of the Qinghai-Tibet Plateau. However, the environmental safety and fate of this compound are still obscure. Our study investigated degradation of quinestrol in a local soil and aquatic system for the first time. The results indicate that the degradation of quinestrol follows first-order kinetics in both soil and water, with a dissipation half-life of approximately 16.0 days in local soil. Microbial activity heavily influenced the degradation of quinestrol, with 41.2% removal in non-sterile soil comparing to 4.8% removal in sterile soil after incubation of 10 days. The half-lives in neutral water (pH 7.4) were 0.75 h when exposed to UV light (λ = 365 nm) whereas they became 2.63 h when exposed to visible light (λ > 400 nm). Acidic conditions facilitated quinestrol degradation in water with shorter half-lives of 1.04 and 1.47 h in pH 4.0 and pH 5.0 solutions, respectively. Moreover, both the soil and water treatment systems efficiently eliminated the estrogenic activity of quinestrol. Results presented herein clarify the complete degradation of quinestrol in a relatively short time. The ecological and environmental safety of this compound needs further investigation.
曲螺酮在青藏高原高原鼠兔种群的生育控制中具有应用潜力。然而,该化合物的环境安全性和归宿仍不清楚。本研究首次研究了曲螺酮在当地土壤和水生系统中的降解情况。结果表明,曲螺酮在土壤和水中的降解均遵循一级动力学,在当地土壤中的消解半衰期约为 16.0 天。微生物活性对曲螺酮的降解有很大影响,在 10 天的培养后,非无菌土壤中的去除率为 41.2%,而无菌土壤中的去除率为 4.8%。当暴露于紫外线(λ = 365nm)时,中性水中(pH 7.4)的半衰期为 0.75 h,而当暴露于可见光(λ > 400nm)时,半衰期为 2.63 h。在酸性条件下,曲螺酮在水中的降解速度加快,在 pH 4.0 和 pH 5.0 溶液中的半衰期分别为 1.04 和 1.47 h。此外,土壤和水的处理系统均能有效消除曲螺酮的雌激素活性。本文的结果阐明了该化合物在相对较短的时间内完全降解。该化合物的生态和环境安全性需要进一步调查。