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Quantum cascade laser modulation for correction of matrix-induced background changes in aqueous samples

机译:量子级联激光调制用于校正水样中基质引起的背景变化

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A robust method for the determination of carbon dioxide in sugar containing solutions using a single distributed feedback quantum cascade laser (QCL) has been developed. By switching the driving current between two selected values, 1.6 and 1 A, emission wavelengths at 2341.4 and 2341.6 cm~(-1) could be achieved. The method is based on absorbance measurements in transmission and the calculation of the absorbance differences between both wavenumbers. This allows the elimination of indirect matrix interference produced on carbon dioxide measurements with increasing sugar concentrations. A flow injection setup was employed to produce carbon dioxide standards from a series of bicarbonate solutions (0-3 g/l) by adjusting the pH with a sodium hydroxide/citric acid buffer solution to pH 3.13. Different concentrations (0-90 g/l) of sugar were also mixed on line with the analyte to study their influence on carbon dioxide measurement. As the difference in the two evaluated wavelengths is small compared to the absorption peak of CO_2, the analytical readout of the QCL modulation can be seen as a proportional parameter to the first derivative of FTIR spectra in this spectral region.
机译:已开发出一种可靠的方法,可使用单分布式反馈量子级联激光器(QCL)测定含糖溶液中的二氧化碳。通过在两个选定值1.6和1 A之间切换驱动电流,可以实现2341.4和2341.6 cm〜(-1)处的发射波长。该方法基于透射中的吸光度测量和两个波数之间吸光度差的计算。这样可以消除由于糖浓度增加而在二氧化碳测量中产生的间接基质干扰。通过使用氢氧化钠/柠檬酸缓冲溶液将pH值调节至3.13,采用流动注射装置从一系列碳酸氢盐溶液(0-3 g / l)中生产二氧化碳标样。还在线上将不同浓度(0-90 g / l)的糖与分析物混合,以研究其对二氧化碳测量的影响。由于与CO_2的吸收峰相比,两个评估波长的差异较小,因此QCL调制的分析读数可以看作是该光谱区域中FTIR光谱的一阶导数的比例参数。

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