Decolorization of tar dye aqueous solution by atmospheric-pressure plasma jet

T. Inoue, Toshitaka Tsugane, H. Kuwahata, Yoshiki Oda
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引用次数: 1

Abstract

The decolorization of tar dye aqueous solution by the irradiation of an atmospheric-pressure plasma jet was examined by absorbance spectrum measurement and nuclear magnetic resonance (NMR) and mass spectrometry (MS) analyses. An atmospheric-pressure argon (Ar) plasma jet was generated at a frequency of 10 kHz with an applied voltage of 10 kV and an Ar gas flow rate of 10 L/min. When 10 mL of 100 mg/L tartrazine aqueous solution was irradiated with this plasma jet, the yellow solution gradually became lighter with increasing irradiation time and was almost completely decolorized after 50 min of irradiation. In addition, the results of MS analysis revealed that tartrazine molecules with a mass-to-charge ratio ( m / z ) of 579 were decomposed mainly into unidentified substances with m / z = 271. This result indicated that the decolorization was caused by the destruction of the azo bond in the tartrazine molecules.
常压等离子体射流对焦油染料水溶液的脱色
采用吸光度、核磁共振、质谱等方法研究了常压等离子体射流辐照对焦油染料水溶液的脱色效果。在10 kHz频率、10 kV电压和10 L/min氩气流量条件下,产生了常压氩等离子体射流。用该等离子体射流辐照10 mL的100 mg/L酒黄石水溶液,随着辐照时间的增加,黄色溶液逐渐变浅,辐照50 min后几乎完全脱色。此外,质谱分析结果显示,质荷比(m / z)为579的酒黄石分子主要被分解为m / z = 271的未知物质。结果表明,脱色是由于酒黄石分子中偶氮键的破坏引起的。
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