Freshwater Fisheries Research Center, Chinese Academy of Fishery Sciences, Wuxi, 214081, PR China.
Laboratory of Quality & Safety Risk Assessment for Aquatic Products On Environmental Factors (Wuxi), Ministry of Agriculture and Rural Affairs, Wuxi, 214081, PR China.
Bull Environ Contam Toxicol. 2021 May;106(5):866-872. doi: 10.1007/s00128-021-03199-3. Epub 2021 Mar 25.
Orthogonal experiments were used to simulate the enrofloxacin (ENR) elimination dynamic in deeper water of aquaculture. Two factors at values common in fishery water (temperature of 20°C, 25°C, and 30°C; pH of 5, 7, and 9) were studied. The degradation of ENR in the nine treatment groups ranged from 44.7 to 80.1%. Variance analysis indicated that pH had a strong impact on the elimination of ENR, while temperature changes showed little effect. The ENR removal rate was highest at a combination of 25°C and pH 5. The optimal conditions of eliminating ENR were performed for exploring the generation of ciprofloxacin (CIP), which indicated that higher ENR concentrations led to the production of greater amounts of CIP. The half-time of ENR was increased 2.02-times in the ENR concentrations increasing from 20 to 2000 ng/mL. This study could increase our understanding of the behaviors of ENR and CIP during the aquaculture process.
正交实验用于模拟水产养殖深层水中恩诺沙星(ENR)的消除动态。研究了渔业用水中常见的两个因素(温度为 20°C、25°C 和 30°C;pH 值为 5、7 和 9)。在九组处理中,ENR 的降解范围为 44.7%至 80.1%。方差分析表明,pH 值对 ENR 的消除有很强的影响,而温度变化影响较小。在 25°C 和 pH 值 5 的组合下,ENR 的去除率最高。为了探索环丙沙星(CIP)的生成,对消除 ENR 的最佳条件进行了优化,结果表明,ENR 浓度越高,生成的 CIP 越多。ENR 浓度从 20ng/mL 增加到 2000ng/mL 时,ENR 的半衰期增加了 2.02 倍。本研究可以加深我们对水产养殖过程中 ENR 和 CIP 行为的理解。