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Kinetics of anaerobic biodecolourisation of azo dyes

机译:偶氮染料厌氧生物脱色的动力学

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Kinetics of anaerobic biodecolourisation (methanogenic environment) of four azo dyes (Acid Orange 6, Acid Orange 7, Methyl Orange and Methyl Red) was investigated with regard to their electrochemical properties as well as under variation of dye and sludge concentrations, pH and temperature. Cyclic voltammetry revealed a correlation between the potential of irreversible reduction peak of the dye and its first-order decolorisation constant. For each dye tested, this decolourisation constant was adversely proportional to dye concentration (0.086 - 1.7 mM) and had a saturation (hyperbolic) dependency on sludge concentration (0.04 - 1.1 g VSS/l, a bell-shape dependency on pH (4.0 - 9.0) and Arrhenius dependency on temperature (24-40 degrees C). Transfer from methanogenic to sulphate reducing environment led to an increase of decolorisation constant for all the dyes investigated due to the abundant presence of sulphide as a reducing agent in the reaction medium. Similar transfer to a denitrifying environment resulted in an almost complete decease of decolourisation because nitrate easily outcompetes azo dyes as an electron acceptor.
机译:研究了四种偶氮染料(酸性橙6,酸性橙7,甲基橙和甲基红)的厌氧生物脱色动力学(甲烷生成环境),研究了它们的电化学性质以及在染料和污泥浓度,pH和温度变化下的厌氧生物脱色动力学。循环伏安法揭示了染料不可逆还原峰的电位与其一阶脱色常数之间的相关性。对于每种测试的染料,该脱色常数与染料浓度(0.086-1.7 mM)成反比,并且对污泥浓度具有饱和度(双曲线)依赖性(0.04-1.1 g VSS / l,对pH呈钟形依赖性(4.0-1.0) 9.0)和Arrhenius依赖于温度(24-40摄氏度)。由于反应介质中大量存在硫化物作为还原剂,因此从产甲烷的环境向硫酸盐还原环境的转移导致所有所研究染料的脱色常数增加。相似的转移至反硝化环境导致几乎完全脱色,因为硝酸盐很容易超过作为电子受体的偶氮染料。

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