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A Study of the Performance of Dielectric Barrier Discharge under Different Conditions for Nitrobenzene Degradation

机译:不同条件下硝基苯降解的介电阻挡放电性能研究

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Water scarcity and water contamination due to the extensive use of organic compounds in industries trigger us to adopt modern techniques for wastewater treatment. In this research, we developed a new dielectric barrier discharge (DBD) system which was evaluated for the degradation of nitrobenzene in water under different experimental arrangements. DBD produces an enormous amount of active species like O 3 , ? O, O 2 + and O 2 ? and ? OH to degrade the pollutants. In this study, NB (Nitrobenzene) was treated from wastewater by changing the gas flow rate, adopting different carrier gas, by adding inhibitors and promoters and the effect of applied voltage on the production of active species to check the effectiveness of the DBD system. The DBD system was evaluated based on input power, degradation efficiency and energy yield compared with other advanced oxidation processes. The energy yield of the DBD system was 1.253 mg/kWh for the degradation of 20 mg/L of NB to 75% in 60 min with the discharge power of 0.538 W, which displays better results in comparison with the other AOPs regarding energy yield and the degradation efficiency of the pollutant. The results illustrate the significance of the system and further suggest its application to industrial-scale treatment.
机译:由于工业中广泛使用有机化合物而导致的水资源短缺和水污染促使我们采用现代技术进行废水处理。在这项研究中,我们开发了一种新的介电势垒放电(DBD)系统,该系统在不同实验条件下可评估水中硝基苯的降解。 DBD会产生大量的活性物质,例如O 3? O,O 2 +和O 2?和? OH降解污染物。在这项研究中,通过改变气体流速,采用不同的载气,添加抑制剂和促进剂以及施加电压对活性物质生产的影响来检测废水中的NB(硝基苯),以检查DBD系统的有效性。与其他高级氧化工艺相比,根据输入功率,降解效率和能量产率对DBD系统进行了评估。 DBD系统的能量产量为1.253 mg / kWh,在60分钟内将20 mg / L的NB降解为75%,放电功率为0.538 W,与其他AOP相比,在能量产量和功率方面显示出更好的结果。污染物的降解效率。结果说明了该系统的重要性,并进一步建议将其应用于工业规模的处理。

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