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Electrochemical treatment of industrial wastewater and effluent reuse at laboratory and semi-industrial scale

机译:实验室和半工业规模的电化学处理工业废水和废水回用

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This study is based on the electrochemical decolouration of exhausted dyeing effluents which contain dyes and salts. The treated effluents were reconstituted and reused in a new dyeing process.Initially, synthetic effluents containing one of the reactive dyes Novacron Yellow, Ruby and Deepnight were treated in the laboratory pilot. In all cases, the dye decolouration follows a pseudo-first order reaction.Subsequently, seven industrial effluents which contain mixtures of these dyes were collected in a Spanish mill and treated in the laboratory pilot. Two methods for the electrochemical treatment and further effluent reconstitution and reuse were studied. The first method consisted of an electrochemical treatment followed by an acidification and a stripping step to remove the carbonate ions. In the second method, the acidification was carried out before the electrochemical treatment; subsequently, the generated CO_2 was removed during the decolouration process.Finally, the optimised process was applied in situ in a Spanish mill by means of a semi-industrial pilot plant (400 L). No significant colour differences were appreciated between reference dyeings and the fabrics dyed with the treated exhausted effluents. The reuse of the dyeing effluent achieves the reduction of 70% process water consumption and 60% salt discharge.
机译:这项研究基于含有染料和盐的废染废水的电化学脱色。经过处理的废水经过重组后可以在新的染色过程中重复使用。最初,在实验室中对含有活性染料Novacron Yellow,Ruby和Deepnight中的一种的合成废水进行处理。在所有情况下,染料的脱色都遵循伪一级反应。随后,在西班牙一家工厂中收集了七种含有这些染料混合物的工业废水,并在实验室进行了中试处理。研究了两种电化学处理方法以及进一步的废水重构和再利用方法。第一种方法包括电化学处理,然后进行酸化和汽提步骤以除去碳酸根离子。在第二种方法中,酸化是在电化学处理之前进行的。随后,在脱色过程中去除了生成的CO_2。最后,通过半工业中试工厂(400升)在西班牙工厂现场应用了优化工艺。在参考染料和用处理过的废液染色的织物之间没有发现明显的颜色差异。染色废水的再利用可减少70%的工艺用水量和60%的盐分排放量。

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