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Electrochemical and photoelectrochemical treatment of 1 -aminonaphthalene-3,6-disulphonic acid

机译:1-氨基萘-3,6-二磺酸的电化学和光电化学处理

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摘要

l-Aminonaphthalene-3,6-disulphonic acid(ANDS)is one of the components in the wastewater produced during the synthesis of H-acid used in production of various dyes.Electrochemical oxidation of this wastewater can be an interesting alternative to other treatment methods,especially if it is combined with photochemical oxidation.Cyclic and differential pulse voltammetry was used in the determination of the kinetic parameters of the process.EIS method was used in the investigation of the adsorption at a platinum electrode.The first step of the ANDS electrooxidation proceeds in at least one step and is irreversible.The substrate is adsorbed at an electrode with the maximum coverage of its surface at the potential of 0.25 V.At the potential of 0.6 V the substrate is desorbed from the surface.An increase in pH causes the reaction of the first step to proceed easier but does not change its rate.Electrochemical oxidation of the substrate causes a decrease in TOC and COD by 18 and 36%,respectively.Results of the ANDS electrochemical oxidation can be improved by combining this method with photochemical oxidation.This yields a decrease in TOC and COD by 40.0 and 58.3%,respectively.
机译:l-氨基萘-3,6-二磺酸(ANDS)是用于生产各种染料的H酸合成过程中产生的废水中的一种成分,该废水的电化学氧化可以替代其他处理方法尤其是如果与光化学氧化法结合使用。循环和差分脉冲伏安法用于测定工艺的动力学参数。EIS方法用于研究铂电极上的吸附。ANDS电氧化的第一步至少一步进行且不可逆。底物被吸附在电极上,其表面在0.25 V的电势下具有最大的覆盖率;在0.6 V的电势下,底物从表面解吸.pH升高导致第一步的反应更容易进行,但不会改变其速率。底物的电化学氧化分别导致TOC和COD降低18%和36%。 y。将该方法与光化学氧化相结合可以改善ANDS电化学氧化的结果,这分别使TOC和COD降低了40.0和58.3%。

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