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首页> 外文期刊>Separation and Purification Technology >Degradation of chloramphenicol by pulsed discharge plasma with heterogeneous Fenton process using Fe3O4 nanocomposites
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Degradation of chloramphenicol by pulsed discharge plasma with heterogeneous Fenton process using Fe3O4 nanocomposites

机译:用Fe3O4纳米复合材料通过脉冲排出等离子体降解脉冲排出等离子体

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摘要

Pulsed discharge plasma (PDP) was coupled with Fe3O4 nanocomposites for promoting degradation of chloramphenicol (CAP) based on Fenton reaction. The prepared Fe3O4 nanocomposites were characterized by scanning electron microscope, transmission electron microscope, X-ray diffraction, X-ray photoelectron spectroscopy and vibrating sample magnetometer. The results showed that Fe3O4 could be successfully prepared by hydrothermal method with reasonable composition. The magnetic intensity reached 71.99 emu/g, which could be easily separated from the solution when an external magnet was applied. Compared to PDP alone, the removal efficiency, kinetic constant and energy efficiency enhanced when Fe3O4 was added. Synergetic effect was achieved between PDP and Fe3O4. The optimal catalytic performance was obtained when the dosage was 0.26 g/ L. CAP was beneficial to decomposition with higher peak voltage, lower initial solution concentration and lower initial pH value. With increasing air flow rate, the removal efficiency enhanced firstly and then declined. Although four times use, Fe(3)O(4 )still maintained a higher stability. The concentration of H2O2 and O-3 generated by PDP were all declined when Fe3O4 was added. With the treatment time prolonged, the pH value declined but conductivity improved. The conjugate heterocyclic structures were destroyed during CAP degradation. The degradation pathway mainly related to the cleavage of phenyl-nitryl, C-OH, C-Cl and C-N bonds, resulting in the formation of intermediates containing benzene ring. The benzene ring of intermediates were underwent rupture and transformed to small organic acids and inorganic acids, which were mineralized into Cl-, NO3-, CO2 and H2O finally. The toxicity of CAP was alleviated after plasma-catalytic treatment. The overall findings provided a new insight into wastewater treatment by PDP with heterogeneous Fenton catalyst.
机译:脉冲放电等离子体(PDP)与Fe3O4纳米复合材料偶联,用于基于Fenton反应促进氯霉素(帽)的降解。通过扫描电子显微镜,透射电子显微镜,X射线衍射,X射线光电子体光谱和振动样品磁力计表征制备的Fe3O4纳米复合材料。结果表明,通过具有合理组成的水热法成功制备Fe 3 O 4。磁性强度达到71.99 emu / g,当施加外部磁铁时,可以容易地与溶液分离。与单独的PDP相比,加入Fe 3O4时,去除效率,动力常数和能效增强。在PDP和Fe3O4之间实现了协同效应。当剂量为0.26g / L时,获得最佳催化性能。帽是有益于分解的峰值电压,初始溶液浓度较低,初始pH值较低。随着空气流量的增加,首先提高了去除效率,然后下降。虽然使用四次使用,Fe(3)O(4)仍保持更高的稳定性。加入Fe 3 O 4时,PDP产生的H 2 O 2和O-3的浓度全部下降。随着治疗时间延长,pH值下降但导电性改善。在帽降解期间缀合杂环结构被破坏。降解途径主要与苯基 - NITRYL,C-OH,C-C1和C-N键的切割有关,导致形成含有苯环的中间体。中间体的苯环被破裂并转化为小有机酸和无机酸,最终矿化成Cl-,No3-,CO 2和H 2 O。血浆催化处理后盖帽的毒性被缓解。整体调查结果提供了通过PDP与非均相Fenton催化剂的废水处理新的洞察。

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