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单一组分和三元竞争吸附-解吸及三种农田土壤中氯霉素抗生素的降解。

Single and ternary competitive adsorption-desorption and degradation of amphenicol antibiotics in three agricultural soils.

机构信息

National Reference Laboratory of Veterinary Drug Residues (HZAU) and MOA Key Laboratory for Detection of Veterinary Drug Residues, Huazhong Agricultural University, Wuhan, Hubei, 430070, China; MOA Laboratory for Risk Assessment of Quality and Safety of Livestock and Poultry Products, Hubei, 430070, China.

National Reference Laboratory of Veterinary Drug Residues (HZAU) and MOA Key Laboratory for Detection of Veterinary Drug Residues, Huazhong Agricultural University, Wuhan, Hubei, 430070, China; MOA Laboratory for Risk Assessment of Quality and Safety of Livestock and Poultry Products, Hubei, 430070, China; National Laboratory for Veterinary Drug Safety Evaluation, Huazhong Agriculture University, Wuhan, 430070, China; College of Veterinary Medicine, Huazhong Agriculture University, Wuhan, 430070, China.

出版信息

J Environ Manage. 2021 Nov 1;297:113366. doi: 10.1016/j.jenvman.2021.113366. Epub 2021 Jul 26.

Abstract

The widespread usage of veterinary antibiotics results in antibiotic contamination and increases environmental risks. This study was evaluated the single and ternary competitive adsorption-desorption and degradation of three amphenicol antibiotics (AMs): chloramphenicol (CAP), thiamphenicol (TAP), and florfenicol (FF) in three agricultural soils. The adsorption capacity of amphenicol antibiotics in the soil was weak, and the K value was in the range of 0.15-3.59 μgL kg. In the single adsorption-desorption experiment, the ranked order of adsorption capacity was TAP > FF > CAP. However, in the ternary competitive adsorption experiment, the order was changed to be CAP > FF > TAP. The degradation of AMs in soils was performed at various conditions. All AMs were vulnerable to microbial degradation in soils. A higher initial concentration would reduce the degradation rate and enhance the persistence of AMs in soil. The degradation of AMs was positively influenced by changes in soil moisture content and culture temperatures up to 30 °C and decreased at higher temperatures. An equation was used to predict the leachability of AMs in soils and assess their risk to the water environment. The weak adsorption capacity and poor persistence of FF indicated that it may have a strong effect on groundwater based on the equation. It is imperative to further assess the biological impacts of FF at environmentally relevant concentrations given its mobility and extensive use in the livestock industry.

摘要

兽用抗生素的广泛使用导致了抗生素污染,并增加了环境风险。本研究评估了三种氯霉素抗生素(AMs):氯霉素(CAP)、甲砜霉素(TAP)和氟苯尼考(FF)在三种农业土壤中的单一和三元竞争吸附-解吸和降解。土壤中氯霉素抗生素的吸附能力较弱,K 值范围在 0.15-3.59 μgL kg 之间。在单一吸附-解吸实验中,吸附能力的排序为 TAP > FF > CAP。然而,在三元竞争吸附实验中,顺序变为 CAP > FF > TAP。在不同条件下进行了 AMs 在土壤中的降解实验。所有 AMs 在土壤中都容易受到微生物降解。较高的初始浓度会降低降解速率,并增强 AMs 在土壤中的持久性。土壤含水量和培养温度的变化对 AMs 的降解有积极影响,最高可达 30°C,而在更高温度下则会降低。使用一个方程来预测 AMs 在土壤中的淋溶能力,并评估它们对水环境的风险。FF 的吸附能力较弱,在土壤中的持久性较差,根据该方程表明它可能对地下水有很强的影响。鉴于其在畜牧业中的广泛使用和迁移性,有必要进一步评估 FF 在环境相关浓度下的生物影响。

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