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杀菌剂多菌灵及相关苯并咪唑的染料敏化光降解

Dye-sensitized photodegradation of the fungicide carbendazim and related benzimidazoles.

作者信息

Escalada Juan P, Pajares Adriana, Gianotti José, Massad Walter A, Bertolotti Sonia, Amat-Guerri Francisco, García Norman A

机构信息

UARG, Universidad Nacional de la Patagonia Austral, 9400 Río Gallegos, Argentine.

出版信息

Chemosphere. 2006 Oct;65(2):237-44. doi: 10.1016/j.chemosphere.2006.02.057. Epub 2006 Apr 27.

Abstract

The present work studies the visible-light-promoted photodegradation of the colorless fungicide carbendazim (methyl 2-benzimidazolecarbamate) and several 2-substituted benzimidazoles (SBZ's), in water or water-methanol solution, in the presence of air and, as a photosensitizer, the synthetic xanthene dye Rose Bengal (RB) or the natural pigment riboflavin (Rf). The results indicate that the degradation of each particular SBZ depends on its chemical structure and on the sensitizer employed. In the presence of RB, the degradation always operates via a singlet molecular oxygen (O(2)((1)Delta(g)))-mediated mechanism, through a highly efficient process, as deduced from the comparison of the rate constants for physical and chemical quenching of O(2)((1)Delta(g)). In the presence of Rf, the visible-light irradiation of any of the studied SBZ's produces a series of competitive processes that depend on the relative concentrations of Rf and SBZ. These processes include the quenching of excited singlet and triplet Rf states by the SBZ and the generation of both O(2)((1)Delta(g)) and superoxide radical anion (O(2)(-)), the latter generated by electron transfer from excited Rf species to the dissolved oxygen. The overall result is the photodegradation of the SBZ and the photoprotection of the sensitizer.

摘要

本研究工作考察了在空气存在下,以合成的呫吨染料孟加拉玫瑰红(RB)或天然色素核黄素(Rf)作为光敏剂,在水或水 - 甲醇溶液中,可见光促进无色杀菌剂多菌灵(甲基2 - 苯并咪唑氨基甲酸酯)和几种2 - 取代苯并咪唑(SBZ)的光降解情况。结果表明,每种特定SBZ的降解取决于其化学结构以及所使用的敏化剂。在RB存在下,降解总是通过单线态分子氧(O₂(¹Δg))介导的机制进行,这是一个高效的过程,这一点可从O₂(¹Δg)的物理和化学猝灭速率常数的比较中推断出来。在Rf存在下,对任何一种所研究的SBZ进行可见光照射会产生一系列竞争过程,这些过程取决于Rf和SBZ的相对浓度。这些过程包括SBZ对激发单重态和三重态Rf态的猝灭以及O₂(¹Δg)和超氧自由基阴离子(O₂⁻)的生成,后者是由激发的Rf物种向溶解氧的电子转移产生的。总体结果是SBZ的光降解和敏化剂的光保护作用。

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