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电化学氧化法处理活性染料后的纺织废水的生物处理。

Biological treatment of a textile effluent after electrochemical oxidation of reactive dyes.

机构信息

INTEXTER, Institute of Textile Research, Technical University of Catalonia, Terrassa, Spain.

出版信息

Water Environ Res. 2010 Feb;82(2):176-82. doi: 10.2175/106143009x447902.

Abstract

In this work, a synthetic textile effluent containing a reactive dye (C.I. Reactive Orange 4) was treated in an electrochemical cell with titanium covered by platinum oxide (Ti/PtOx) electrodes to remove color. The discolored effluent was mixed with other textile mill process effluents (scouring, bleaching, washing, etc.), according to the rate of each effluent in the mill, and was submitted to biological treatment (activated sludge plant). Two biological plants were run simultaneously to evaluate the influence of oxidant products generated during the electrochemical treatment. The final chemical oxygen demand (COD) removal in both plants was 65 to 72%. The yield of the activated sludge plants was not affected by the addition of 10% of the discolored dyeing effluent (even when oxidants products were not removed), which indicates that the previous electrochemical treatment do not produce inhibition effects on the biological plant. However, in the case of direct addition of the discolored effluent, the biological treatment plant required a longer adaptation period. In addition, the electrolytic respirometry tests showed that all the biodegradable organic matter was removed, which implies that the yield in organic matter removal was the maximum possible for this type of treatment.

摘要

在这项工作中,使用钛覆盖的铂氧化物 (Ti/PtOx) 电极在电化学电池中处理含有活性染料 (C.I. 活性橙 4) 的合成纺织废水,以去除颜色。将有色废水与其他纺织厂工艺废水(精练、漂白、洗涤等)按厂内每种废水的比例混合,并进行生物处理(活性污泥厂)。同时运行两个生物工厂,以评估电化学处理过程中产生的氧化剂产物的影响。两个工厂的最终化学需氧量 (COD) 去除率均为 65%至 72%。添加 10%的有色染色废水(即使未去除氧化剂产物)并未影响活性污泥厂的产率,这表明先前的电化学处理不会对生物厂产生抑制作用。然而,在直接添加有色废水的情况下,生物处理厂需要更长的适应期。此外,电解呼吸计测试表明,所有可生物降解的有机物都被去除,这意味着这种处理类型的有机物去除率达到了最大值。

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