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首页> 外文期刊>Analytical chemistry >Kinetics of Metal-Fulvic Acid Complexation Using a Stopped-Flow Technique and Three-Dimensional Excitation Emission Fluorescence Spectrophotometer
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Kinetics of Metal-Fulvic Acid Complexation Using a Stopped-Flow Technique and Three-Dimensional Excitation Emission Fluorescence Spectrophotometer

机译:停止流技术和三维激发发射荧光分光光度计测定金属-富魏酸络合的动力学

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摘要

A stopped-flow technique and three-dimesional excitation emission (Ex/Em) fluorescence spectrophotometer were used to detect the full fluorescence spectral kinetic changes that occurred during the complexation between fulvic acid (FA) and several metals [Cu(II),Ni(II),Co(II),Cd(II)and Ca(II)].The study was carried out with a fulvic acid isolated from Cavan Bog.Canada.At pH 7,the FA reacted rapidly with all metas studied.Two major kinetically distinguishable binding sites on FA ("fast" and "slow"),having reaction half-lives of 1.3-3.9 and 34.7-69.3s,respectively,were identified using pseudo-first-order kinetic plots.Kinetic changes of Ex and Em wave-lengths of the fluorescence maximums also indicate two major binding sites.For the fast-reacting binding site,the rate constant and the site relative contribution were as follows,Cu~(2+)>Ni~(2+)>Co~(2+)>Cd~(2+)>Ca~(2+),which agrees with the Irving-Williams series,indicating that complexation kinetics are affinity dependent.Within each kinetic phase,both Ex and Em wavelengths of lfuorescence maximums increased with time,indicating the occurrence of structural changes during the binding process.Based on the results obtained,the use of full fluorescence spectra appears to be a promising tool for further understanding metal-FA complexation mechanisms.
机译:停止流技术和三维激发发射(Ex / Em)荧光分光光度计用于检测在富里酸(FA)与几种金属[Cu(II),Ni( II),Co(II),Cd(II)和Ca(II)]。该研究是使用从加拿大Cavan Bog分离出的黄腐酸进行的。在pH值为7时,FA与所研究的所有金属快速反应。使用伪一阶动力学图鉴定了FA上具有动力学区别的结合位点(“快”和“慢”),其反应半衰期分别为1.3-3.9和34.7-69.3s。Ex和Em的动力学变化荧光最大值的波长还指示了两个主要的结合位点。对于快速反应的结合位点,速率常数和位点相对贡献如下:Cu〜(2 +)> Ni〜(2 +)> Co〜 (2 +)> Cd〜(2 +)> Ca〜(2+),与Irving-Williams系列一致,表明络合动力学是依赖于亲和力的。 c阶段,荧光最大值的Ex和Em波长均随时间增加,表明在结合过程中发生了结构变化。基于获得的结果,使用全荧光光谱似乎是进一步了解金属FA的有前途的工具复杂机制。

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