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Are Extracted Materials Truly Representative of Original Samples? Impact of C18 Extraction on CDOM Optical and Chemical Properties

机译:提取的材料是否真正代表原始样品? C18萃取对CDOM光学和化学性质的影响

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摘要

Some properties of dissolved organic matter (DOM) and chromophoric dissolved organic matter (CDOM) can be easily measured directly on whole waters, while others require sample concentration and removal of natural salts. To increase CDOM content and eliminate salts, solid phase extraction (SPE) is often employed. Biases following extraction and elution are inevitable, thus raising the question of how truly representative the extracted material is of the original. In this context, we investigated the wavelength dependence of extraction efficiency for C18 cartridges with respect to CDOM optical properties using samples obtained from the Middle Atlantic Bight (MAB) and the Equatorial Atlantic Ocean (EAO). Further, we compared the optical changes of C18 extracts and the corresponding whole water following chemical reduction with sodium borohydride (NaBH4). C18 cartridges preferentially extracted long-wavelength absorbing/emitting material for samples impacted by riverine input. Extraction efficiency overall decreased with offshore distance away from riverine input. Spectral slopes of C18-OM samples were also almost always lower than those of their corresponding CDOM samples supporting the preferential extraction of higher molecular weight absorbing material. The wavelength dependence of the optical properties (absorption, fluorescence emission, and quantum yield) of the original water samples and their corresponding extracted material were very similar. C18 extracts and corresponding water samples further exhibited comparable optical changes following NaBH4 reduction, thus suggesting a similarity in nature (structure) of the optically active extracted material, independent of geographical locale. Altogether, these data suggested a strong similarity between C18 extracts and corresponding whole waters, thus indicating that extracts are representative of the CDOM content of original waters.
机译:溶解有机物(DOM)和发色溶解有机物(CDOM)的某些特性可以很容易地在整个水域中直接测量,而其他特性则需要样品浓缩和去除天然盐。为了增加CDOM含量并消除盐分,经常采用固相萃取(SPE)。提取和洗脱之后的偏差是不可避免的,因此提出了这样一个问题,即所提取的材料如何真正代表原始材料。在这种情况下,我们使用从中大西洋湾(MAB)和赤道大西洋(EAO)获得的样品研究了C18滤芯相对于CDOM光学特性的提取效率的波长依赖性。此外,我们比较了用硼氢化钠(NaBH4)化学还原后C18提取物和相应的整个水的光学变化。 C18滤芯优先提取长波吸收/发射材料,用于受到河流输入影响的样品。总体而言,开采效率随着远离河道输入的海上距离而降低。 C18-OM样品的光谱斜率也几乎总是低于其相应CDOM样品的光谱斜率,从而支持优先提取高分子量吸收材料。原始水样及其相应提取物的光学特性(吸收,荧光发射和量子产率)的波长依赖性非常相似。在NaBH4还原后,C18提取物和相应的水样品还表现出可比的光学变化,因此表明旋光性提取物质的性质(结构)相似,而与地理位置无关。总而言之,这些数据表明C18提取物与相应的整个水域之间具有很强的相似性,因此表明这些提取物代表了原始水域中CDOM的含量。

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