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芘荧光探针与天然和合成腐殖质物质的相互作用:从光物理和界面过程研究局部分子组织。

Interaction of pyrene fluoroprobe with natural and synthetic humic substances: Examining the local molecular organization from photophysical and interfacial processes.

机构信息

Ecole des Métiers de l'Environnement, Campus de Ker Lann, Avenue Schuman, Bruz, France.

出版信息

Chemosphere. 2010 Jun;80(3):228-34. doi: 10.1016/j.chemosphere.2010.04.035. Epub 2010 May 7.

Abstract

The direct and indirect interaction mechanisms of pyrene with: (i) various molecular weight fractions of a synthetic humic-like substance (SyHA) and (ii) extracts of natural humic acids (NHA) from Moselle River suspended matter were investigated using quenching fluorescence and surface tension measurements. Humic materials were characterized in a previous study. The Stern-Volmer associative constants were determined from the quenching technique. Surface tension measurements revealed an increase in surface activity as a function of concentration for each humic fraction independently of the pyrene presence in solution, even during the formation of humic micelles. The results obtained suggest the possibility of specific intermolecular interactions occurring during pyrene entrapment within humic acids. In addition, we show that molecular weight, aliphatic chains (especially those containing nitrogen groups) and number of acidic groups are determinant characteristics for pollutant entrapment capacity at concentrations below the critical micellar concentration (CMC) of humic substances.

摘要

使用荧光猝灭和表面张力测量方法研究了芘与

(i)合成类腐殖质物质(SyHA)的各种分子量级分和(ii)来自摩泽尔河悬浮物的天然腐殖酸(NHA)提取物的直接和间接相互作用机制。腐殖质材料在之前的研究中进行了表征。从猝灭技术确定了 Stern-Volmer 缔合常数。表面张力测量结果表明,每种腐殖质级分的表面活性均随浓度的增加而增加,这与溶液中是否存在芘无关,即使在形成腐殖质胶束时也是如此。所得结果表明,在芘被腐殖酸捕获的过程中可能会发生特定的分子间相互作用。此外,我们还表明,分子量、脂肪族链(特别是含氮基团的脂肪族链)和酸性基团的数量是在低于腐殖质物质临界胶束浓度(CMC)的浓度下污染物捕获能力的决定因素。

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