Maszkowska Joanna, Białk-Bielińska Anna, Mioduszewska Katarzyna, Wagil Marta, Kumirska Jolanta, Stepnowski Piotr
Department of Environmental Analysis, Faculty of Chemistry, University of Gdańsk, ul. Wita Stwosza 63, 80-308, Gdańsk, Poland.
Environ Sci Pollut Res Int. 2015 Aug;22(16):12182-9. doi: 10.1007/s11356-015-4445-3. Epub 2015 Apr 19.
Although sulfonamides (SAs) are among the most commonly used veterinary drugs and their presence in the environment is well documented, knowledge of their fate and behavior in the soil environment is still limited, especially for sulfisoxazole (SSX) which is characterized by the lowest (among other SAs) pK a value associated with acid-base equilibrium of sulfonamide group. Thus, this work was focused on determining the sorption potential of SSX onto natural soils differing in physicochemical properties. All the results were modeled using linear, Freundlich, Langmuir, Dubinin-Radushkevich, and Temkin sorption isotherms. The established sorption coefficients (K(d)) for SSX were quite low (from 0.27 to 0.95 L kg(-1)), which indicated that this substance is highly mobile and has the potential to run off into surface waters and/or infiltrate ground water. The sorption data of SSX is well fitted to the Freundlich isotherm model (R(2) > 0.968). Moreover, we assessed the sorption mechanism of these compounds in the edaphic environment with respect to organic matter (OM) content, pH, and ionic strength. To clarify the current state of knowledge, these factors were examined much more thoroughly than in previous investigations concerning other SAs. The wide range of ionic strength examined showed positive correlation of this factor and sorption of SAs. The results also yielded new insight into dependency of sorption of SAs on organic matter content in soil.
尽管磺胺类药物(SAs)是最常用的兽药之一,并且它们在环境中的存在已有充分记录,但关于它们在土壤环境中的归宿和行为的了解仍然有限,特别是对于磺胺异恶唑(SSX),其特点是(与其他磺胺类药物相比)与磺胺基团酸碱平衡相关的pK a值最低。因此,这项工作的重点是确定SSX在理化性质不同的天然土壤上的吸附潜力。所有结果均使用线性、弗伦德利希、朗缪尔、杜宾宁-拉杜什克维奇和坦金吸附等温线进行建模。SSX的吸附系数(K(d))相当低(从0.27到0.95 L kg(-1)),这表明该物质具有高度的流动性,有可能流入地表水和/或渗入地下水。SSX的吸附数据与弗伦德利希等温线模型拟合良好(R(2) > 0.968)。此外,我们评估了这些化合物在土壤环境中的吸附机制与有机质(OM)含量、pH值和离子强度的关系。为了阐明当前的知识状态,对这些因素的研究比以往关于其他磺胺类药物的研究更为深入。所研究的广泛离子强度范围显示该因素与磺胺类药物的吸附呈正相关。研究结果还为磺胺类药物在土壤中吸附与有机质含量的依赖性提供了新的见解。