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Temperature, turbidity, and the inner filter effect correction methodology for analyzing fluorescent dissolved organic matter in urban sewage

机译:用于分析城市污水中荧光溶解有机物质的温度,浊度和内部滤波器效果校正方法

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摘要

Dissolved organic matter (DOM) will be increasingly monitored by means of in situ fluorescence spectroscopy devices in order to supervise wastewater treatment plant efficiency, due to their ease of implementation and high-frequency measurement capacity. However, fluorescence spectroscopy measurements are reported to be sensitive to the sample matrix effects of temperature, the inner filter effect (IFE), and turbidity. Matrix effect estimation tests and signal correction have been developed for DOM (tyrosine-like, tryptophan-like, and humic substances-like fluorescent compounds) fluorescence measurements in unfiltered urban sewage samples. All such tests are conducted in temperature, absorbance, and turbidity ranges representative of urban sewage. For all fluorophores studied, an average of 1% fluorescence intensity decrease per degree (degrees C) of temperature increase could be observed. Protein-like fluorescent compound signals were found to be significantly affected by turbidity (0 to 210 NTU) and IFE (absorbance 254 nm > 0.200). Only temperature needs to be corrected for humic substances-like fluorescent compounds since other effects were not observed over the studied ranges of absorbance and turbidity. The fluorescence intensity correction method was applied first to each matrix effect separately and then combined by using a sequential mathematical correction methodology. An efficient methodology for determining the matrix effect correction equations for DOM fluorescence analysis into unfiltered urban sewage samples has been highlighted and could be used for in situ fluorescence measurement devices.
机译:通过原位荧光光谱装置越来越多地监测溶解的有机物质(DOM),以便监督废水处理厂效率,因为它们的实施方便和高频测量能力。然而,据报道荧光光谱测量值对温度的样品矩阵效应敏感,内部滤波器效应(IFE)和浊度。在未过滤的城市污水样本中,已经为DOM(酪氨酸样,色氨酸样和腐殖质物质样荧光化合物)荧光测量开发了基质效应估计测试和信号校正。所有这些测试都是在城市污水的温度,吸光度和浊度范围内进行的。对于所研究的所有荧光团,可以观察到每度(℃)的温度增加的平均荧光强度降低,可以观察到温度升高。发现蛋白质样荧光复合信号被浊度(0至210 NTU)和IFE(吸光度254nm> 0.200)显着影响。仅需要纠正腐殖质的荧光化合物的温度,因为在研究的吸光度和浊度范围内未观察到其他效果。首先将荧光强度校正方法分开地应用于每个基质效果,然后通过使用顺序数学校正方法组合。用于确定DOM荧光分析的基质效应校正方程的有效方法已经突出显示,并且可以用于原位荧光测量装置。

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