首页> 外文期刊>Environmental Toxicology and Chemistry >DISSIPATION KINETICS AND MOBILITY OF CHLORTETRACYCLINE, TYLOSIN, AND MONENSIN IN AN AGRICULTURAL SOIL IN NORTHUMBERLAND COUNTY, ONTARIO, CANADA
【24h】

DISSIPATION KINETICS AND MOBILITY OF CHLORTETRACYCLINE, TYLOSIN, AND MONENSIN IN AN AGRICULTURAL SOIL IN NORTHUMBERLAND COUNTY, ONTARIO, CANADA

机译:加拿大安大略省诺伯伯兰县农业土壤中氯霉素,酪氨酸和莫能菌的耗散动力学和流动性

获取原文
获取原文并翻译 | 示例
       

摘要

A robust high-throughput method was refined to extract three growth-promoting antibiotics, tylosin (TYL), chlortetracycline (CTC), and monensin (MON), from soil. Analysis was performed by electrospray liquid chromatography tandem mass spectrometry. Soil dissipation rate studies were performed in a farm field soil for antibiotics applied with and without manure. Tylosin, CTC, and MON followed first-order dissipation kinetics with half-lives of 4.5, 24, and 3.3 d, respectively, with the addition of manure and 6.1, 21, and 3.8 d, respectively, without manure. Manure application significantly increased TYL dissipation rate, perhaps because of the introduced microbial flora, but had no significant effect on CTC or MON. Monensin dissipation half-life was found to be much shorter in the field study than in a controlled laboratory study, perhaps because of differences in microbial communities. The antimicrobials were not highly mobile. Chlortetracycline was the only antibiotic detected at 25 to 35 cm depth and only up to 2% of the initial concentration in a sandy loam soil. These antibiotics are therefore expected to degrade primarily in agricultural soils before moving to greater depths or to groundwater in significant concentrations in most agricultural systems.
机译:改良了一种稳健的高通量方法,从土壤中提取了三种促进生长的抗生素,泰乐菌素(TYL),金霉素(CTC)和莫能菌素(MON)。通过电喷雾液相色谱串联质谱法进行分析。在农田土壤上进行了土壤消散率研究,研究有无粪便施用的抗生素。泰乐菌素,CTC和MON遵循一阶耗散动力学,半衰期分别为4.5、24和3.3 d,分别添加粪便和6.1、21和3.8 d,无粪便。施用肥料显着提高了TYL的耗散率,这可能是由于引入了微生物菌群,但对CTC或MON没有明显影响。在实地研究中发现莫能菌素耗散半衰期比在对照实验室研究中短得多,这可能是由于微生物群落的差异。抗菌药物的流动性不是很高。金霉素是在25至35厘米深度处检测到的唯一抗生素,在沙壤土中仅占初始浓度的2%。因此,预计在大多数农业系统中,这些抗生素在移入更深的地方或移至地下水中的浓度很高之前,主要在农业土壤中降解。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号