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Characteristic of phenol and 2,4-dichlorophenol synthetic wastewater degradation in a DBD (dielectric barrier discharge) reactor

机译:DBD(介电阻挡排出)反应器中苯酚和2,4-二氯苯酚合成废水降解的特征

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In this study the content of phenol and 2,4-DCP (2,4-dichlorophenol) in synthetic wastewater was decomposed using the excitation technique of a mixture of waste liquid and air in a cold plasma Dielectric Barrier Discharge (DBD) reactor. The purpose of this study was to study the degradation process of organic compounds of phenol and 2,4-DCP liquid waste into simpler compounds. Plasma technology applied to the liquid-air mixture in the DBD reactor has the ability to oxidize and degrade organic synthetic wastewater into simpler compounds with relatively faster processing times without forming new waste compounds. Plasma air (excited air) will degrade wastewater by breaking the atomic bonds of synthetic wastewater compounds at high voltages between 220 - 330 V. The performance of the degradation process of synthetic waste can be known through analysis of phenolic compounds, hydroxyl and dissolved ozone, COD, and the final product. The parameters studied in this study are air gas flow rate 2 - 2.5 L/min, waste water flow rate 52 - 100 mL/min, plasma voltage between 220 - 330 V, and volume of waste water. This study also compared the degradation process of phenol and 2,4-DCP in cold plasma DBD reactor with the degradation process in multiinjection bubble column reactor. The removal efficiency of the process achieved 57.5% for phenol and 89.55% for 2,4-DCP.
机译:在本研究中,使用冷等离子体介电阻挡放电(DBD)反应器中的废液和空气混合物的激发技术分解合成废水中苯酚和2,4-二氯苯酚)的含量。本研究的目的是研究苯酚和2,4-DCP液体废弃物的有机化合物的降解过程更简单。施加到DBD反应器中的液体空气混合物的等离子体技术具有氧化和降解有机合成废水的能力,以更快的加工时间而不形成,而不形成新的废化合物。等离子体空气(激发空气)将通过在220-330V的高电压下破坏合成废水化合物的原子键来降解废水。通过分析酚类化合物,羟基和溶解的臭氧可以是已知的合成废物的降解过程的性能, COD和最终产品。本研究中研究的参数是气体流量2-2.5L / min,废水流​​速52-100ml / min,等离子体电压在220-330 V和废水量之间。该研究还将苯酚和2,4-DCP的降解过程与多射起气泡柱反应器中的降解过程进行了冷等离子体DBD反应器中的降解过程。该方法的去除效率达到苯酚的57.5%,2,4-DCP的89.55%。

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