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深入评估叠氮化钠对溶解有机物光学性质的影响。

In-Depth Assessment of the Effect of Sodium Azide on the Optical Properties of Dissolved Organic Matter.

机构信息

Department of Environment & Energy, Sejong University, Seoul, 05006, South Korea.

出版信息

J Fluoresc. 2019 Jul;29(4):877-885. doi: 10.1007/s10895-019-02398-w. Epub 2019 Jun 19.

Abstract

Treatment and preservation of samples are critical issues in measuring the optical properties of dissolved organic matter (DOM) due to their high sensitivity to physical and chemical changes upon sample handling. In this study, we rigorously assessed the potential interferences of sodium azide (NaN) on DOM absorption and fluorescence. A wide range of different samples were poisoned with varying NaN concentrations. Several commonly used optical parameters derived from absorbance and fluorescence spectroscopy were compared at different samples and conditions to assess the interfering effect of NaN. Our results showed that NaN altered the original features of absorbance and fluorescence even at the lowest level of the addition. The absorption coefficients of NaN-treated samples increased up to 2608% at 254 nm and 66% at 280 nm relative to the untreated control. Fluorescence data revealed both a quenching effect and an enhancement in fluorescence. The effect of NaN on fluorescence was highly variable and affected by the NaN concentrations added, and the sources and the concentrations of DOM samples. None of these factors exhibited a clear linear behavior with NaN levels, making it difficult to develop a correction method. It can be recommended from the findings not to use NaN in preserving DOM samples for optical measurements.

摘要

由于样品在处理过程中对物理和化学变化非常敏感,因此在测量溶解有机质(DOM)的光学性质时,样品的处理和保存是至关重要的问题。在本研究中,我们严格评估了叠氮化钠(NaN)对 DOM 吸收和荧光的潜在干扰。我们用不同浓度的 NaN 对多种不同的样品进行了毒害,比较了在不同样品和条件下从吸光度和荧光光谱得出的几种常用光学参数,以评估 NaN 的干扰效应。我们的结果表明,即使在最低添加水平下,NaN 也会改变吸收和荧光的原始特征。NaN 处理的样品在 254nm 处的吸收系数相对于未处理的对照增加了 2608%,在 280nm 处增加了 66%。荧光数据显示,NaN 不仅具有荧光猝灭效应,而且还增强了荧光。NaN 对荧光的影响变化很大,受添加的 NaN 浓度、DOM 样品的来源和浓度的影响。这些因素都没有表现出与 NaN 水平的明显线性关系,因此很难开发出一种校正方法。从研究结果可以建议,在进行光学测量时,不要在 DOM 样品中使用 NaN 来保存。

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