Illinois Sustainable Technology Center, University of Illinois Urbana-Champaign, Champaign, Illinois 61820, United States.
Environ Sci Technol. 2013 May 21;47(10):5185-92. doi: 10.1021/es400624w. Epub 2013 May 3.
Field application of livestock manure introduces animal hormones and veterinary antibiotics into the environment. Colloids present in manure may potentially intensify the environmental risk of groundwater pollution by colloid-facilitated contaminant transport. The transport behavior of the veterinary antibiotic florfenicol in saturated homogeneously packed soil columns has been investigated in both the presence and absence of manure colloids. Results show that facilitated transport of florfenicol is significant in the presence of manure colloids. Multiple chemical and physical processes caused by the presence of manure colloids were considered to contribute to facilitated transport. Florfenicol breakthrough curves (BTCs) were fit well by two models. The two-site nonequilibrium adsorption contaminant transport model suggested the mechanisms for facilitated florfenicol transport are as follows: manure colloids decrease the sorption capacity of florfenicol to soil, enhance the instantaneous equilibrium adsorption, and suppress the time-dependent kinetic adsorption processes. The colloid-facilitated model further evaluated the partition coefficient of florfenicol to colloids and indicated that cotransport has little contribution. A stepwise inverse model fitting approach resulted in robust parameter estimation. The adoption of the nonlinear Freundlich adsorption equation in the two-site nonequilibrium model significantly increased the fit of the model to the breakthrough curves.
粪肥的田间应用将动物激素和兽医抗生素引入环境中。粪肥中存在的胶体可能会增强胶体促进污染物运移对地下水污染的环境风险。本文研究了在有和没有粪肥胶体存在的情况下,兽医抗生素氟苯尼考在饱和均质填充土壤柱中的运移行为。结果表明,在有粪肥胶体存在的情况下,氟苯尼考的易位运输非常显著。考虑到粪肥胶体的存在会导致多种化学和物理过程,这些过程可能有助于易位运输。氟苯尼考穿透曲线(BTC)可以很好地用两个模型拟合。双位点非平衡吸附污染物运移模型表明,促进氟苯尼考运移的机制如下:粪肥胶体降低了氟苯尼考对土壤的吸附能力,增强了瞬时平衡吸附,并抑制了随时间变化的动力学吸附过程。胶体促进模型进一步评估了氟苯尼考对胶体的分配系数,并表明共运移的贡献很小。逐步反演模型拟合方法得到了稳健的参数估计。在双位点非平衡模型中采用非线性 Freundlich 吸附方程,显著提高了模型对穿透曲线的拟合度。