A multichannel short-wave near-infrared (SW-NIR) spectrometer module based on charge-coupled device (CCD) detection was designed. The design relied on a tungsten lamp enhanced by light emitting diodes, a fixed grating monochromator and a linear CCD array. The main advantages were high optical resolution and an optimized signal-to-noise ratio (0.24nm and 500, resp.) in the whole wavelength range of 650 to 1100nm. An application to alcohol determination using partial least squares calibration and the temperature correction was presented. It was found that the direct transfer method had significant systematic prediction errors due to temperature effect. Generalized least squares weighting (GLSW) method was utilized for temperature correction. After recalibration, the RMSEP found for the 25C model was 0.53% v/v and errors of the same order of magnitude were obtained at other temperatures (15, 35 and 40C). And an r 2 better than 0.99 was achieved for each validation set. The possibility and accuracy of using the miniature SW-NIR spectrometer and GLSW transfer calibration method for alcohol determination at different temperatures were proven. And the analysis procedure was simple and fast, allowing a strict control of alcohol content in the wine industry. Copyright 2012 Qingbo Fu et al.
CITATION STYLE
Fu, Q., Wang, J., Lin, G., Suo, H., & Zhao, C. (2012). Short-wave near-infrared spectrometer for alcohol determination and temperature correction. Journal of Analytical Methods in Chemistry, 1(1). https://doi.org/10.1155/2012/728128
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