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孔雀石绿的脱色作用、臭氧-孔雀石绿的脱色动力学和化学计量学以及臭氧化过程对抗菌活性的去除作用。

Decolorization of malachite green, decolorization kinetics and stoichiometry of ozone-malachite green and removal of antibacterial activity with ozonation processes.

机构信息

Chemistry Department, Arts and Sciences Faculty, Cukurova University, Adana, Turkey.

出版信息

J Hazard Mater. 2011 Feb 15;186(1):133-43. doi: 10.1016/j.jhazmat.2010.10.100. Epub 2010 Nov 2.

DOI:10.1016/j.jhazmat.2010.10.100
PMID:21115218
Abstract

This study aimed to identify degradation intermediates and to investigate the stoichiometry of decolorization and degradation, decolorization kinetics, and removal of antibacterial activity of malachite green (MG) using ozonization processes. The decolorization of MG was optimal at an acidic pH value of 3 based on molecular ozone attack on MG molecules. The stoichiometric ratio of decolorization between ozone and MG was calculated to be 7.0 with a regression coefficient of 0.995, whereas the ratio for degradation was calculated as 13.1 with a regression coefficient of 0.998. With MG concentrations in the range of 0.30-1.82 mM, the concentration of decolorized MG increased with higher initial concentrations of MG, whereas the ozonolytic decolorization rates of MG, decreased with increasing initial concentration. The pseudo-first-order degradation rate constants (k') decreased with the initial concentration and ranged from 0.769 to 0.223 min(-1). Twelve different intermediates were produced during the ozonation of MG with ozonation times between 5 min and 30 min and were identified by GC-MS. Although 86% of MG in the reaction mixture was removed by ozonation after 10 min, the decrease of antibacterial activity was very low (10%) for Bacillus subtilis and Staphylococcus epidermidis because the degradation intermediates, phenol and benzoic acid, also have antibacterial activity. The antibacterial activity of both MG and its intermediates were removed successfully with ozonation times above 26 min.

摘要

本研究旨在鉴定孔雀石绿(MG)的降解中间产物,并考察其臭氧化脱色和降解的化学计量比、脱色动力学以及对MG 抗菌活性的去除。基于分子臭氧对 MG 分子的攻击,MG 的最佳脱色条件为酸性 pH 值 3。臭氧化脱色过程中臭氧与 MG 的化学计量比计算为 7.0,回归系数为 0.995,而降解过程的化学计量比计算为 13.1,回归系数为 0.998。当 MG 浓度在 0.30-1.82 mM 范围内时,随着初始 MG 浓度的增加,脱色 MG 的浓度增加,而 MG 的臭氧化脱色速率降低。拟一级降解速率常数(k')随初始浓度降低,范围为 0.769-0.223 min(-1)。在 MG 的臭氧化过程中,在 5-30 min 的臭氧化时间内生成了 12 种不同的中间产物,并通过 GC-MS 进行了鉴定。尽管反应混合物中的 86%的 MG 在 10 min 的臭氧化后被去除,但对枯草芽孢杆菌和表皮葡萄球菌的抗菌活性降低很小(10%),因为降解中间产物苯酚和苯甲酸也具有抗菌活性。当臭氧化时间超过 26 min 时,MG 及其中间产物的抗菌活性均被成功去除。

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