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首页> 外文期刊>International Journal of Molecular Sciences >Effect of Dissolved Humic Substances on the Photochemical Degradation Rate of 1-Aminopyrene Atrazine
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Effect of Dissolved Humic Substances on the Photochemical Degradation Rate of 1-Aminopyrene Atrazine

机译:腐殖质的溶解对1-氨基py阿特拉津光化学降解速率的影响

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摘要

Humic substances (HS) are ubiquitous in the environment, and can act as photosensitizers in the redox reactions of some photochemical processes. The influence of HS in these reactions varies with the HS type and concentration. The total organic carbon content (TOC) of some commercial HS (such as soil and river humic acid, and fulvic acid) was studied. 1-Aminopyrene (1-AP) and 1-hydoxypyrene (1-HP) are carcinogenic and slightly water-soluble polycyclic aromatic hydrocarbons (PAH). The impact of PAH on natural environment is related to their photolysis rates and photoproducts; therefore, it is of interest to study the photolysis of these compounds. Our previous study showed that the photolysis rate of 1-HP was inhibited by HS. In this study, photolysis of 1-AP was conducted with pure water, natural river water, and pure water containing commercial HS. It was found that the photolysis rate of 1-AP can be inhibited or enhanced by HS, depending on the type and concentration. The first order photolysis rate constant of 1-AP (10 μM) in phosphate buffer (pH 7.0, 1 mM) containing a humic acid (20-80 ppm) was enhanced by up to 5 folds. With a fulvic acid (20-80 ppm), it was enhanced by about 2 folds. With a soil humic acid, it was enhanced by about 2 folds at the concentration of 20 ppm and was inhibited by up to 4 folds at the concentration of 80 ppm.   Atrazine (2-chloro-4-ethylamine-6-isopropylamino-s-triazine) is a widely used herbicide. It is toxic, often bioaccumulative and persistent. In this study, the effect of HS on the photochemical fate of atrazine was also studied. The results showed that photolysis of atrazine can be enhanced by humic acid, depending on the type and concentration of humic acid. The fulvic acid has no effect on its photolysis within 10 days.
机译:腐殖质(HS)在环境中无处不在,并且可以在某些光化学过程的氧化还原反应中充当光敏剂。 HS在这些反应中的影响随HS类型和浓度而变化。研究了一些商业性HS(例如土壤和河流的腐殖酸,黄腐酸)的总有机碳含量(TOC)。 1-氨基py(1-AP)和1-羟基py(1-HP)是致癌的且微溶于水的多环芳烃(PAH)。 PAH对自然环境的影响与其光解速率和光产物有关。因此,研究这些化合物的光解是令人感兴趣的。我们以前的研究表明,HS抑制了1-HP的光解速率。在这项研究中,使用纯水,天然河水和含有商业HS的纯水对1-AP进行光解。发现1-AP的光解速率可以被HS抑制或提高,这取决于类型和浓度。在含有腐殖酸(20-80 ppm)的磷酸盐缓冲液(pH 7.0,1 mM)中,1-AP(10μM)的一级光解速率常数提高了5倍。用富里酸(20-80ppm),它被增强了约2倍。使用土壤腐殖酸时,浓度为20 ppm时,腐殖酸含量提高了约2倍,而浓度为80 ppm时,腐殖酸含量却提高了约4倍。阿特拉津(2-氯-4-乙基胺-6-异丙基氨基-s-三嗪)是一种广泛使用的除草剂。它有毒,经常具有生物蓄积性和持久性。在这项研究中,还研究了HS对阿特拉津光化学命运的影响。结果表明,取决于腐殖酸的类型和浓度,腐殖酸可以促进at去津的光解作用。黄腐酸在10天内对其光解没有影响。

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