Key Laboratory of Pollution Processes and Environmental Criteria (Ministry of Education), College of Environmental Science and Engineering, Nankai University, Tianjin 300071, China.
Chemosphere. 2010 Aug;80(7):807-12. doi: 10.1016/j.chemosphere.2010.04.066. Epub 2010 May 26.
Heavy metals and antibiotics often coexist in agricultural soils and their concentrations are increasing with land application of wastes from concentrated animal feeding operations. This study aims at evaluating interaction of cadmium (Cd) and a widely-used veterinary antibiotic tetracycline (TC) on the basis of their adsorption and desorption on cinnamon soil using the batch experiments. The results indicated that adsorption and desorption of Cd and TC were strongly dependent on soil characteristics, and adsorption and desorption isotherms of Cd and TC on the soils were well fitted with the Freundlich equation. In particular, there was an apparent sorption-desorption hysteresis of Cd and TC in soil, which will probably pose a threat to soil-environmental quality and human health. Moreover, the presence of TC increased Cd adsorption on the tested soil (K(f)=602.2-737.6), which can be attributed to increasing Cd adsorption via the bridge of TC, or stronger affinity of the TC-Cd complex to soil minerals than Cd ion itself. The presence of TC also enhanced the hysteresis effect of Cd sorption-desorption (H=0.86-0.96). Similarly, the sorption K(f) values of TC increased from 1095 in absence of Cd to 1305 in presence of Cd, respectively. In the meantime, the presence of Cd enhanced adsorption of TC by the bridge of Cd, which is similar to that of Ca(2+) and Mg(2+). However, the presence of Cd decreased the hysteresis effect of TC sorption-desorption (H=0.99-0.84). It is thus important to consider the interaction between Cd and TC when studying on the fate of Cd and TC in soil environment.
重金属和抗生素经常共存于农业土壤中,并且随着集约化养殖场废物在土地中的应用,它们的浓度正在增加。本研究旨在通过批实验,基于肉桂土对镉(Cd)和一种广泛使用的兽用抗生素四环素(TC)的吸附和解吸作用,评估它们的相互作用。结果表明,Cd 和 TC 的吸附和解吸强烈依赖于土壤特性,Cd 和 TC 在土壤上的吸附和解吸等温线均很好地符合 Freundlich 方程。特别是,Cd 和 TC 在土壤中的吸附-解吸滞后现象明显,这可能对土壤环境质量和人类健康构成威胁。此外,TC 的存在增加了 Cd 在受测土壤上的吸附(K(f)=602.2-737.6),这可能归因于 TC 桥接增加了 Cd 的吸附,或者 TC-Cd 络合物与土壤矿物质的亲和力强于 Cd 离子本身。TC 的存在也增强了 Cd 吸附解吸的滞后效应(H=0.86-0.96)。同样,在不存在 Cd 的情况下,TC 的吸附 K(f)值从 1095 增加到存在 Cd 的情况下的 1305。同时,Cd 的存在通过 Cd 桥增强了 TC 的吸附,这与 Ca(2+)和 Mg(2+)的情况相似。然而,Cd 的存在降低了 TC 吸附解吸的滞后效应(H=0.99-0.84)。因此,在研究 Cd 和 TC 在土壤环境中的命运时,考虑 Cd 和 TC 之间的相互作用非常重要。