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首页> 外文期刊>Environmental Pollution >Using two-dimensional correlation size exclusion chromatography (2D-CoSEC) to explore the size-dependent heterogeneity of humic substances for copper binding
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Using two-dimensional correlation size exclusion chromatography (2D-CoSEC) to explore the size-dependent heterogeneity of humic substances for copper binding

机译:使用二维相关尺寸排阻色谱法(2D-CoSEC)探索腐殖质与铜结合的尺寸依赖性异质性

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Knowledge of the heterogeneous distribution of humic substances (HS) reactivities along a continuum of molecular weight (MW) is crucial for the systems where the HS MW is subject to change. In this study, two dimensional correlation spectroscopy combined with size exclusion chromatography (2D-CoSEC) was first utilized to obtain a continuous and heterogeneous presence of copper binding characteristics within bulk HS with respect to MW. HS solutions with varying copper concentrations were directly injected into a size exclusion chromatography (SEC) system with Tris-HCI buffer as a mobile phase. Several validation tests confirmed neither structural disruption of HS nor competition effect of the mobile phase used. Similar to batch systems, fluorescence quenching was observed in the chromatograms over a wide range of HS MW. 2D-CoSEC maps of a soil-derived HS (Elliot soil humic acid) showed the greater fluorescence quenching degrees with respect to the apparent MW on the order of 12500 Da > 10600 Da > 7000 Da > 15800 Da. The binding constants calculated based on modified Stern-Volmer equation were consistent with the 2D-CoSEC results. More heterogeneity of copper binding affinities within bulk HS was found for the soil-derived HS versus an aquatic HS. The traditional fluorescence quenching titration method using ultrafiltered HS size fractions failed to delineate detailed distribution of the copper binding characteristics, exhibiting a much shorter range of the binding constants than those obtained from the 2D-CoSEC. Our proposed technique demonstrated a great potential to describe metal binding characteristics of HS at high MW resolution, providing a clear picture of the size-dependent metal-HS interactions. (C) 2017 Elsevier Ltd. All rights reserved.
机译:沿连续分子量(MW)的腐殖质(HS)反应性异质分布的知识对于HS MW可能发生变化的系统至关重要。在这项研究中,二维相关光谱结合尺寸排阻色谱法(2D-CoSEC)首次用于获得相对于MW的本体HS内铜结合特征的连续和异质存在。将具有不同铜浓度的HS溶液直接注入以Tris-HCl缓冲液为流动相的尺寸排阻色谱(SEC)系统中。多项验证测试均未确认HS的结构破坏或所用流动相的竞争效果。类似于批处理系统,在宽范围的HS MW色谱图中观察到荧光猝灭。土壤来源的HS(艾略特土壤腐殖酸)的2D-CoSEC图谱显示,相对于表观MW,荧光猝灭程度更高,约为12500 Da> 10600 Da> 7000 Da> 15800 Da。基于改进的Stern-Volmer方程计算的结合常数与2D-CoSEC结果一致。与水生HS相比,土壤HS的散装HS中铜结合亲和力的异质性更高。使用超滤HS尺寸级分的传统荧光猝灭滴定方法无法描述铜结合特性的详细分布,与从2D-CoSEC获得的结合常数相比,其结合常数的范围要短得多。我们提出的技术证明了在高MW分辨率下描述HS的金属结合特性的巨大潜力,提供了与尺寸有关的金属与HS相互作用的清晰图片。 (C)2017 Elsevier Ltd.保留所有权利。

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