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直接红 81 染料/铜(II)-菲咯啉体系的研究。

Study of the Direct Red 81 Dye/Copper(II)-Phenanthroline System.

机构信息

Univ. Grenoble Alpes, CNRS, Grenoble INP, LGP2, 461 rue de la Papeterie-CS 10065, 38402 Saint Martin d'Hères Cedex, F-38000 Grenoble, France.

Univ. Grenoble Alpes, CNRS, DCM, CS 40700, 38058 Grenoble Cedex 9, F-38000 Grenoble, France.

出版信息

Molecules. 2018 Jan 25;23(2):242. doi: 10.3390/molecules23020242.

Abstract

Recovered papers contain several chromophores, such as wood lignin and dyes. These have to be eliminated during paper recycling in order to produce white paper. Hydrogen peroxide under alkaline conditions is generally used to decolorize lignin, but its effect on dyes is limited. Copper(II)-phenanthroline (Cu-Phen) complexes can activate the oxidation of lignin by hydrogen peroxide. Hydrogen peroxide may also be activated during recycled fiber bleaching, thus enhancing its color-stripping efficiency towards unoxidizable azo dyes. The purpose of this paper was to determine the effect of Cu-Phen complexes on a model azo dye, Direct Red 81 (DR81), in aqueous solution. Different Cu-Phen solutions (with different initial Cu:Phen molar ratios) were prepared and mixed with the dye at different pHs. The geochemical computer program PHREEQC allowed precise calculation of the theoretical distribution between different possible coordinates (CuPhenOH⁺, Cu(Phen)₂, CuPhen(OH)₂, Cu(Phen)₃, etc.) depending on pH and initial concentrations. UV-vis spectroscopic measurements were correlated with the major species theoretically present in each condition. The UV absorbance of the system was mainly attributed to the Cu-Phen complex and the visible absorbance was only due to the dye. Cu-Phen appeared to reduce the color intensity of the DR81 dye aqueous solution under specific conditions (more effective at pH 10.7 with Cu:Phen = 1:1), probably owing to the occurrence of a coordination phenomenon between DR81 and Cu-Phen. Hence, the ligand competition between phenanthroline and hydroxide ions would be disturbed by a third competitor, which is the dye molecule. Further investigation proved that the DR81 dye is able to form a complex with copper-phenanthroline, leading to partial color-stripping. This new "color-stripping effect" may be a new opportunity in paper and textile industries for wastewater treatment.

摘要

回收的纸张中含有几种发色团,如木质素和染料。为了生产白纸,这些发色团必须在纸张回收过程中去除。在碱性条件下,过氧化氢通常用于脱木质素,但对染料的效果有限。铜(II)-菲咯啉(Cu-Phen)配合物可以激活木质素的过氧化氢氧化,但在回收纤维漂白过程中也可能激活过氧化氢,从而提高其对不可氧化偶氮染料的脱色效率。本文旨在确定 Cu-Phen 配合物对模型偶氮染料直接红 81(DR81)在水溶液中的影响。不同的 Cu-Phen 溶液(具有不同的初始 Cu:Phen 摩尔比)被制备并在不同的 pH 值下与染料混合。地球化学计算机程序 PHREEQC 允许根据 pH 和初始浓度精确计算不同可能配位(CuPhenOH⁺、Cu(Phen)₂、CuPhen(OH)₂、Cu(Phen)₃ 等)之间的理论分布。UV-vis 光谱测量与每种条件下理论存在的主要物种相关联。该系统的紫外吸光度主要归因于 Cu-Phen 配合物,可见光吸光度仅归因于染料。在特定条件下(在 pH 10.7 时 Cu:Phen = 1:1 时效果更好),Cu-Phen 似乎降低了 DR81 染料水溶液的颜色强度,可能是由于 DR81 和 Cu-Phen 之间发生了配位现象。因此,与氢氧根离子的配体竞争将被第三种竞争物,即染料分子所干扰。进一步的研究证明,DR81 染料能够与铜-菲咯啉形成配合物,导致部分脱色。这种新的“脱色效果”可能为造纸和纺织工业的废水处理提供新的机会。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1af/6017580/894fcbbf4834/molecules-23-00242-g001.jpg

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