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TRATAMIENTO ELECTROQUÍMICO DE COLORANTES BIFUNCIONALES TIPO HEXL EN UN REACTOR FILTRO PRENSA

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NOVEMBER 2012   -  Volume: 87 -  Pages: 679-688

DOI:

https://doi.org/10.6036/4682

Authors:

FRANCISCO JAVIER CASES IBORRA - JAVIER MOLINA PUERTO - JOSE ANTONIO BONASTRE CANO - FRANCISCO ORTS MAIQUES - ANA ISABEL DEL RIO GARCIA

Disciplines:

  • Physical chemistry (ELECTROQUIMICA )

Downloads:   169

Cites in Web of Science:  1

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Received Date :   20 February 2012

Reviewing Date :   26 September 2012

Accepted Date :   1 October 2012


Key words:
Decoloración y degradación de aguas residuales textiles, tratamiento electroquímico, colorantes reactivos, reactor filtro prensa, Reglamento del Dominio Publico Hidraúlico, decoloration and degradation of textile wastewaters, electrochemical treatment, reactive dyes, filter press reactor, Hydraulic Public Dominion Regulation
Article type:
ARTICULO DE INVESTIGACION / RESEARCH ARTICLE
Section:
RESEARCH ARTICLES

In the present work, the electrochemical treatment of reactive bifunctional dyes is investigated. The selected dyes correspond to the tricromy HEXL. These dyes present two azo groups as chromophore groups and two monochlorotriazinic groups as reactive groups. This study has been carried out in two parts: in the first part, synthetic solutions containing just one of these dyes, Procion HEXL, were studied (Solution (1)). Previous investigations have demonstrated that the best process to carry out this study is the oxido-reduction at 125 mA cm-2. Following to this first part, the same study in the same working conditions was performed with solutions containing the three dyes of the tricromy H-EXL (Procion Yellow HEXL , Procion Crimson HEXL and Procion Navy HEXL). In this last case, the concentrations were selected considering the concentrations found in real effluents. In order to evaluate the decoloration/mineralization obtained, Total Organic Carbon (TOC) and the Chemical Oxygen Demand (COD) were measured. These parameters allowed to know the Average Oxidation State (AOS) after each electrolysis and the efficiency at which the process takes place by means of calculating the Carbon Oxidation State (COS) and The Average Current Efficiency (ACE). The UV-Visible spectroscopy permitted to observe the decoloration differences between the initial and final stage. Moreover, the High Performance Liquid Chromatography (HPLC) gave information about the intermediates generated as well as the decoloration kinetics.

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