Department of Plant and Environmental Sciences, University of Copenhagen, Frederiksberg, Denmark.
Soil Science and Agricultural Chemistry Area, Faculty of Sciences, Campus Univ. Ourense, University of Vigo, Galicia, Spain.
Chemosphere. 2015 Sep;134:361-6. doi: 10.1016/j.chemosphere.2015.04.098. Epub 2015 May 15.
The objective of this work was to study the competitive adsorption/desorption of tetracycline (TC), oxytetracycline (OTC) and chlortetracycline (CTC) on two acid soils. We used the stirred flow chamber technique to obtain experimental data on rapid kinetic processes affecting the retention/release of the antibiotics. Both adsorption and desorption were higher on soil 1 (which showed the highest carbon, clay and Al and Fe oxides content) than on soil 2. Moreover, hysteresis affected the adsorption/desorption processes. Experimental data were fitted to a pseudo-first order equation, resulting qamax (adsorption maximum) values that were higher for soil 1 than for soil 2, and indicating that CTC competed with TC more intensely than OTC in soil 1. Regarding soil 2, the values corresponding to the adsorption kinetics constants (ka) and desorption kinetics constants for fast sites (kd1), followed a trend inverse to qamax and qdmax respectively. In conclusion, competition affected adsorption/desorption kinetics for the three antibiotics assayed, and thus retention/release and subsequent transport processes in soil and water environments.
本研究的目的是研究四环素(TC)、土霉素(OTC)和金霉素(CTC)在两种酸性土壤上的竞争吸附/解吸。我们采用搅拌流室技术获得了影响抗生素保留/释放的快速动力学过程的实验数据。与土壤 2 相比,土壤 1(具有最高的碳、粘土和 Al 和 Fe 氧化物含量)的吸附和解吸作用更高。此外,滞后现象影响了吸附/解吸过程。实验数据拟合到拟一级方程,得到的最大吸附量(qamax)值在土壤 1 中高于土壤 2,表明 CTC 在土壤 1 中比 OTC 更强烈地与 TC 竞争。关于土壤 2,吸附动力学常数(ka)和快速位点解吸动力学常数(kd1)的相应值分别遵循与 qamax 和 qdmax 相反的趋势。总之,竞争影响了三种抗生素的吸附/解吸动力学,从而影响了土壤和水环境中的保留/释放和随后的迁移过程。