首页> 外文期刊>Aquaculture >Comparative hydrolysis and photolysis of four antibacterial agents (oxytetracycline oxolinic acid, flumequine and florfenicol) in deionised water, freshwater and seawater under abiotic conditions
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Comparative hydrolysis and photolysis of four antibacterial agents (oxytetracycline oxolinic acid, flumequine and florfenicol) in deionised water, freshwater and seawater under abiotic conditions

机译:在非生物条件下在去离子水,淡水和海水中四种抗菌剂(土霉素,亚麻酸和氟苯尼考)的比较水解和光解

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摘要

A large fraction of antibacterial agents administered to farmed fish is released into the environment, either in leaching from uneaten medicated pelleted feed, or through urinary, branchial and faecal excretions. Processes such as hydrolysis and photolysis might be important for the elimination of antibacterial agents from water. The aim of the present study was to compare hydrolysis and photolysis of oxytetracycline (OTC), oxolinic acid (OXA), flumequine (FLU) and florfenicol (FLO) in three types of water (deionised water, freshwater and seawater) under abiotic conditions. For each antibacterial agent, a 7-day factorial experiment was designed in order to study the effect of light, pH and dissolved oxygen on hydrolysis and photolysis in deionised water. Furthermore, 14-day kinetics experiments were performed for each antibacterial agent and each type of water. FLO was not degraded by hydrolysis or photolysis phenomena. Hydrolysis phenomena only concerned OTC and were responsible for about 20% of its degradation following a 14-day exposure at a temperature of +8 super(o)C. Photolysis was responsible for about 70% of the OTC degradation in freshwater and seawater and 10% of the OXA and FLU degradation in seawater following the same exposure. Water pH played a role in OTC hydrolysis and photolysis. There was no close connection between OTC hydrolysis and photolysis and OTC binding to cations and organic matter, but it would be suggested that there was a connection between absence of OXA and FLU photolysis and OXA and FLU binding to organic matter.
机译:施用给养殖鱼类的大部分抗菌剂通过未食用的药丸饲料浸出或通过尿、,和粪便排泄而释放到环境中。水解和光解等过程对于从水中消除抗菌剂可能很重要。本研究的目的是比较在非生物条件下三种类型的水(去离子水,淡水和海水)中土霉素(OTC),恶唑酸(OXA),氟美宁(FLU)和氟苯尼考(FLO)的水解和光解作用。对于每种抗菌剂,设计了一个为期7天的析因实验,以研究光,pH和溶解氧对去离子水中水解和光解的影响。此外,针对每种抗菌剂和每种类型的水进行了14天的动力学实验。 FLO不会因水解或光解现象而降解。水解现象仅涉及OTC,并且在+8 super(o)C的温度下暴露14天后其降解量约为其20%。在相同的暴露后,光解作用导致淡水和海水中OTC降解的约70%,海水中OXA和FLU降解的10%。水的pH值在OTC水解和光解中起作用。 OTC水解和光解之间以及OTC与阳离子和有机物的结合之间没有紧密的联系,但建议在OXA和FLU光解的缺乏与OXA和FLU与有机物的结合之间存在联系。

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