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首页> 外文期刊>Journal of chromatography, A: Including electrophoresis and other separation methods >A critical evaluation of an asymmetrical flow field-flow fractionation system for colloidal size characterization of natural organic matter
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A critical evaluation of an asymmetrical flow field-flow fractionation system for colloidal size characterization of natural organic matter

机译:非对称流场-流分离系统对天然有机物胶体尺寸表征的关键评估

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摘要

Colloidal retention characteristics, recovery and size distribution of model macromolecules and natural dissolved organic matter (DOM) were systematically examined using an asymmetrical flow field-flow fractionation (AFIFFF) system under various membrane size cutoffs and carrier solutions. Polystyrene sulfonate (PSS) standards with known molecular weights (MW) were used to determine their permeation and recovery rates by membranes with different nominal MW cutoffs (NMWCO) within the AF1FFF system. Based on a >= 90% recovery rate for PSS standards by the AFIFFF system, the actual NMWCOs were determined to be 1.9 kDa for the 0.3 kDa membrane, 2.7 kDa for the 1 kDa membrane, and 33 kDa for the 10 kDa membrane, respectively. After membrane calibration, natural DOM samples were analyzed with the AF1FFF system to determine their colloidal size distribution and the influence from membrane NMWCOs and carrier solutions. Size partitioning of DOM samples showed a predominant colloidal size fraction in the <5 nm or <10 kDa size range, consistent with the size characteristics of humic substances as the main terrestrial DOM component. Recovery of DOM by the AFIFFF system, as determined by UV-absorbance at 254 nm, decreased significantly with increasing membrane NMWCO, from 45% by the 0.3 kDa membrane to 2-3% by the 10 kDa membrane. Since natural DOM is mostly composed of lower MW substances (<10 kDa) and the actual membrane cutoffs are normally larger than their manufacturer ratings, a 0.3 kDa membrane (with an actual NMWCO of 1.9 kDa) is highly recommended for colloidal size characterization of natural DOM. Among the three carrier solutions, borate buffer seemed to provide the highest recovery and optimal separation of DOM. Rigorous calibration with macromolecular standards and optimization of system conditions are a prerequisite for quantifying colloidal size distribution using the flow field-flow fractionation technique. In addition, the coupling of AF1FFF with fluorescence EEMs could provide new insights into DOM heterogeneity in different colloidal size fractions. (C) 2015 Elsevier B.V. All rights reserved.
机译:使用不对称流场-流分馏(AFIFFF)系统在各种膜尺寸截止值和载体溶液下,系统地检查了模型大分子和天然溶解有机物(DOM)的胶体保留特性,回收率和尺寸分布。具有已知分子量(MW)的聚苯乙烯磺酸盐(PSS)标准品用于确定AF1FFF系统中具有不同标称MW截止值(NMWCO)的膜的渗透率和回收率。根据AFIFFF系统对PSS标准品的回收率> == 90%,确定的实际NMWCOs对于0.3 kDa膜为1.9 kDa,对于1 kDa膜为2.7 kDa,对于10 kDa膜为33 kDa。 。膜校准后,使用AF1FFF系统分析天然DOM样品,以确定其胶体尺寸分布以及膜NMWCO和载体溶液的影响。 DOM样品的尺寸划分显示了在<5 nm或<10 kDa尺寸范围内的主要胶体尺寸分数,这与作为主要陆地DOM成分的腐殖质的尺寸特征一致。通过AFIFFF系统在254 nm处的紫外吸收确定的DOM回收率随着膜NMWCO的增加而显着降低,从0.3 kDa膜的45%降至10 kDa膜的2-3%。由于天然DOM主要由分子量较低的物质(<10 kDa)组成,并且实际的膜截留值通常大于制造商的额定值,因此强烈建议使用0.3 kDa的膜(实际NMWCO为1.9 kDa)进行天然胶体尺寸表征DOM。在这三种载体解决方案中,硼酸盐缓冲液似乎可以提供最高的回收率和DOM的最佳分离效果。使用大分子标准物进行严格的校准以及优化系统条件是使用流场-流分馏技术量化胶体尺寸分布的前提。此外,AF1FFF与荧光EEM的耦合可以提供不同胶体大小分数中DOM异质性的新见解。 (C)2015 Elsevier B.V.保留所有权利。

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