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首页> 外文期刊>Journal of Environmental Management >Kinetics and mechanisms of oxytetracycline degradation in an electro-Fenton system with a modified graphite felt cathode
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Kinetics and mechanisms of oxytetracycline degradation in an electro-Fenton system with a modified graphite felt cathode

机译:修饰石墨毡阴极的电子芬顿体系中土霉素降解的动力学和机理

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摘要

The removal of trace antibiotics from the aquatic environment has received great interest. In this investigation, NaOH activated graphite felt (NaOH-GF) was characterized by multiple-methods, including scanning electron microscopy (SEM), X-ray photoelectron spectroscopy (XPS), contact angle, linear sweep voltammetry (LSV) and electron paramagnetic resonance (EPR). The NaOH-GF was then used as the cathode in the electro-Fenton process for oxytetracycline (OTC) degradation, the experiment was carried out in an undivided and light-proof beaker with a Pt anode and a NaOH-GF cathode at pH 3. The results showed that the modification with NaOH enhanced the antibiotics degradation efficiency of graphite felt by increasing the oxygen reduction capacity and hydroxyl radicals yielding rate. Complete OTC removal was achieved at 5.17 mA cm~(-2) after 40, 60 and 90 s with initial OTC concentration of 22, 44, and 66 μM, respectively. With an initial OTC concentration of 44 uM, after 30 min the removal rates of chemical oxygen demand (COD) by Raw-GF and NaOH-GF were 59.18% and 83.75%, respectively. The proposed degradation mechanism of OTC was an EF process, which consisted of hydroxylation, secondary alcohol oxidation, demethylation, decarbonylation, dehydration and deamination. This study demonstrates that NaOH activated GF cathode possesses high degradation capacity and good stability. It provides insight into the removal of non-biodegradable antibiotics and may shed light on future to its practical application.
机译:从水生环境中去除微量抗生素引起了极大的兴趣。在这项研究中,NaOH活化石墨毡(NaOH-GF)具有多种方法的特征,包括扫描电子显微镜(SEM),X射线光电子能谱(XPS),接触角,线性扫描伏安法(LSV)和电子顺磁共振(EPR)。然后将NaOH-GF用作电Fenton工艺中的阴极以降解土霉素(OTC),该实验在不分隔且不透光的烧杯中进行,该烧杯具有Pt阳极和NaOH-GF阴极,pH为3。结果表明,NaOH修饰通过提高氧还原能力和羟基自由基的生成速率,提高了石墨毡的抗菌降解效率。 40、60和90 s后,分别在5.17 mA cm〜(-2)处完成OTC的完全去除,初始OTC浓度分别为22、44和66μM。在初始OTC浓度为44 uM的情况下,经过30分钟后,Raw-GF和NaOH-GF的化学需氧量(COD)去除率分别为59.18%和83.75%。提出的OTC降解机理是一种EF工艺,包括羟基化,仲醇氧化,脱甲基,脱羰基,脱水和脱氨基。该研究表明,NaOH活化的GF阴极具有较高的降解能力和良好的稳定性。它为去除不可生物降解的抗生素提供了见识,并可能为将来的实际应用提供启示。

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