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固相萃取水中有机物:负载量相关的化学分级分离与自组装

Solid-Phase Extraction of Aquatic Organic Matter: Loading-Dependent Chemical Fractionation and Self-Assembly.

机构信息

Alfred Wegener Institute Helmholtz Centre for Polar and Marine Research, Am Handelshafen 12, 27570 Bremerhaven, Germany.

University of Applied Sciences, 27568 Bremerhaven, Germany.

出版信息

Environ Sci Technol. 2021 Nov 16;55(22):15495-15504. doi: 10.1021/acs.est.1c04535. Epub 2021 Nov 4.

Abstract

Dissolved organic matter (DOM) is an important component in marine and freshwater environments and plays a fundamental role in global biogeochemical cycles. In the past, optical and molecular-level analytical techniques evolved and improved our mechanistic understanding about DOM fluxes. For most molecular chemical techniques, sample desalting and enrichment is a prerequisite. Solid-phase extraction has been widely applied for concentrating and desalting DOM. The major aim of this study was to constrain the influence of sorbent loading on the composition of DOM extracts. Here, we show that increased loading resulted in reduced extraction efficiencies of dissolved organic carbon (DOC), fluorescence and absorbance, and polar organic substances. Loading-dependent optical and chemical fractionation induced by the altered adsorption characteristics of the sorbent surface (styrene divinylbenzene polymer) and increased multilayer adsorption (DOM self-assembly) can fundamentally affect biogeochemical interpretations, such as the source of organic matter. Online fluorescence monitoring of the permeate flow allowed to empirically model the extraction process and to assess the degree of variability introduced by changing the sorbent loading in the extraction procedure. Our study emphasizes that it is crucial for sample comparison to keep the relative DOC loading (DOC [wt %]) on the sorbent always similar to avoid chemical fractionation.

摘要

溶解有机物(DOM)是海洋和淡水环境中的重要组成部分,在全球生物地球化学循环中起着基础性的作用。过去,光学和分子水平的分析技术不断发展和完善,增进了我们对 DOM 通量的机制理解。对于大多数分子化学技术来说,样品脱盐和浓缩是前提。固相萃取已广泛应用于浓缩和脱盐 DOM。本研究的主要目的是限制固载量对 DOM 提取物组成的影响。在这里,我们表明,随着固载量的增加,溶解有机碳(DOC)、荧光和吸光度以及极性有机物的提取效率降低。由于吸附剂表面(苯乙烯二乙烯基苯聚合物)吸附特性的改变和多层吸附(DOM 自组装)引起的负载依赖性光学和化学分馏,从根本上会影响生物地球化学解释,例如有机质的来源。透过液的在线荧光监测可以对提取过程进行经验建模,并评估在提取过程中改变固载量所引入的可变性程度。我们的研究强调,对于样品比较来说,保持固载上的相对 DOC 负载(DOC [wt%])始终相似以避免化学分馏是至关重要的。

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