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用于定量测定硫醇和表征其尺寸以及分析富含有机物的天然水中汞的尺寸形态的不对称流场-流分级方法。

Asymmetrical Flow Field-Flow Fractionation Methods for Quantitative Determination and Size Characterization of Thiols and for Mercury Size Speciation Analysis in Organic Matter-Rich Natural Waters.

作者信息

Worms Isabelle A M, Kavanagh Killian, Moulin Elodie, Regier Nicole, Slaveykova Vera I

机构信息

Environmental Biogeochemistry and Ecotoxicology, Department F.-A. Forel for Environmental and Aquatic Sciences, School of Earth and Environmental Sciences, Faculty of Science, University of Geneva, Genève, Switzerland.

出版信息

Front Chem. 2022 Feb 16;10:800696. doi: 10.3389/fchem.2022.800696. eCollection 2022.

Abstract

Asymmetrical flow field-flow fractionation (AF4) efficiently separates various macromolecules and nano-components of natural waters according to their hydrodynamic sizes. The online coupling of AF4 with fluorescence (Fluo) and UV absorbance (UV) detectors (FluoD and UVD, respectively) and inductively coupled plasma-mass spectrometry (ICP-MS) provides multidimensional information. This makes it a powerful tool to characterize and quantify the size distributions of organic and inorganic nano-sized components and their interaction with trace metals. In this study, we developed a method combining thiol labeling by monobromo(trimethylammonio)bimane bromide (qBBr) with AF4-FluoD to determine the size distribution and the quantities of thiols in the macromolecular dissolved organic matter (DOM) present in highly colored DOM-rich water sampled from Shuya River and Lake Onego, Russia. We found that the qBBr-labeled components of DOM (qB-DOM) were of humic type, characterized by a low hydrodynamic size (  < 2 nm), and have concentrations <0.3 μM. After enrichment with mercury, the complexes formed between the nano-sized components and Hg were analyzed using AF4-ICP-MS. The elution profile of Hg followed the distribution of the UV-absorbing components of DOM, characterized by slightly higher sizes than qB-DOM. Only a small proportion of Hg was associated with the larger-sized components containing Fe and Mn, probably inorganic oxides that were identified in most of the samples from river to lake. The size distribution of the Hg-DOM complexes was enlarged when the concentration of added Hg increased (from 10 to 100 nM). This was explained by the presence of small iron oxides, overlapping the size distribution of Hg-DOM, on which Hg bound to a small proportion. In addition, to provide information on the dispersion of macromolecular thiols in colored DOM-rich natural water, our study also illustrated the potential of AF4-FluoD-UVD-ICP-MS to trace or quantify dynamic changes while Hg binds to the natural nano-colloidal components of surface water.

摘要

非对称流场流分馏(AF4)可根据天然水中各种大分子和纳米组分的流体动力学尺寸进行有效分离。AF4与荧光(Fluo)和紫外吸光度(UV)检测器(分别为FluoD和UVD)以及电感耦合等离子体质谱(ICP-MS)的在线联用可提供多维信息。这使其成为表征和量化有机和无机纳米级组分的尺寸分布及其与痕量金属相互作用的有力工具。在本研究中,我们开发了一种将单溴(三甲基铵)双甲川溴化物(qBBr)进行硫醇标记与AF4-FluoD相结合的方法,以确定从俄罗斯舒亚河和奥涅加湖采集的富含高色度溶解性有机物(DOM)的水中,大分子溶解有机物(DOM)中硫醇的尺寸分布和含量。我们发现,DOM的qBBr标记组分(qB-DOM)为腐殖质类型,其流体动力学尺寸较小(<2 nm),浓度<0.3 μM。用汞富集后,使用AF4-ICP-MS分析纳米级组分与汞形成的络合物。汞的洗脱曲线遵循DOM中紫外吸收组分的分布,其尺寸略大于qB-DOM。只有一小部分汞与含有铁和锰的较大尺寸组分相关,这些组分可能是在从河流到湖泊的大多数样品中鉴定出的无机氧化物。当添加汞的浓度增加(从10 nM到100 nM)时,汞-DOM络合物的尺寸分布扩大。这是由于存在与汞-DOM尺寸分布重叠的小铁氧化物,汞在其上有少量结合。此外,为了提供关于大分子硫醇在富含高色度DOM的天然水中分散情况的信息,我们的研究还展示了AF4-FluoD-UVD-ICP-MS在汞与地表水天然纳米胶体组分结合时追踪或量化动态变化的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6825/8888841/7c3243089eac/fchem-10-800696-g001.jpg

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