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Degradation of various textile dyes as wastewater pollutants under dielectric barrier discharge plasma treatment

机译:介质阻挡放电等离子体处理降解多种纺织染料废水污染物

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Textile dyes represent some of the most complicated environmental pollutants due to their variety and complex structure. Plasma oxidation methods have emerged as viable techniques for effective decomposition of these pollutants. We examined the degradation of a wide variety (13 overall) of industrial textile dyes in a pilot dielectric barrier discharge (DBD) semi-continuously operated plasma reactor. Plasma was generated in a quartz tube with central liquid-filled electrode immersed in wastewater; ambient air was used as a feeding gas for the reactor. The performance of the reactor was evaluated based on the production of ozone (gas and liquid phase). The kinetics and by-products of the oxidation process were determined by UV/V1S spectrophotometry, FTIR analysis and toxicity tests. The yield of ozone production ranged between 0.19 mg/s and 0.46 mg/s by varying the discharge power between 3 and 33 W. The demand of energy to decompose separate dyes ranged from 18.7 to 866 kj/g. 10 of 13 dyes were decomposed up to 95% during 300 s of reactor operation. The FTIR analysis revealed that degradation by-products consisted mostly of carboxylic acids, nitrates, amides and amines. The treatment process was found to decrease the toxicity of the wastewater to near-zero values. Low energy consumption and short decolorization time suggested that DBD plasma method may be competitive technology for primary decomposition of hardly degradable textile dyes in wastewater.
机译:纺织染料由于种类繁多且结构复杂,因此代表了一些最复杂的环境污染物。等离子体氧化方法已经成为有效分解这些污染物的可行技术。我们检查了中试介质阻挡放电(DBD)半连续运行的等离子体反应器中多种工业纺织品染料(总共13种)的降解。等离子体是在石英管中产生的,中央充液电极浸入废水中。使用环境空气作为反应器的进料气。根据臭氧的产生(气相和液相)评估反应器的性能。通过UV / V1S分光光度法,FTIR分析和毒性测试确定了氧化过程的动力学和副产物。通过在3至33 W之间改变放电功率,臭氧产生的产量在0.19 mg / s至0.46 mg / s的范围内。分解单独的染料所需的能量范围为18.7至866 kj / g。在300 s反应器运行期间,13种染料中的10种分解高达95%。 FTIR分析显示降解副产物主要由羧酸,硝酸盐,酰胺和胺组成。发现该处理过程将废水的毒性降低到接近零的值。低能耗和短脱色时间表明,DBD等离子体方法可能是废水中难降解的纺织品染料初次分解的竞争技术。

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