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Comparison of Portable and Bench-Top Spectrometers for Mid-Infrared Diffuse Reflectance Measurements of Soils

机译:便携式和台式光谱仪在土壤中红外漫反射测量中的比较

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摘要

Mid-infrared (MIR) spectroscopy has received widespread interest as a method to complement traditional soil analysis. Recently available portable MIR spectrometers additionally offer potential for on-site applications, given sufficient spectral data quality. We therefore tested the performance of the Agilent 4300 Handheld FTIR (DRIFT spectra) in comparison to a Bruker Tensor 27 bench-top instrument in terms of (i) spectral quality and measurement noise quantified by wavelet analysis; (ii) accuracy of partial least squares (PLS) calibrations for soil organic carbon (SOC), total nitrogen (N), pH, clay and sand content with a repeated cross-validation analysis; and (iii) key spectral regions for these soil properties identified with a Monte Carlo spectral variable selection approach. Measurements and multivariate calibrations with the handheld device were as good as or slightly better than Bruker equipped with a DRIFT accessory, but not as accurate as with directional hemispherical reflectance (DHR) data collected with an integrating sphere. Variations in noise did not markedly affect the accuracy of multivariate PLS calibrations. Identified key spectral regions for PLS calibrations provided a good match between Agilent and Bruker DHR data, especially for SOC and N. Our findings suggest that portable FTIR instruments are a viable alternative for MIR measurements in the laboratory and offer great potential for on-site applications.
机译:作为补充传统土壤分析的一种方法,中红外光谱已引起广泛关注。鉴于足够的光谱数据质量,最近可用的便携式MIR光谱仪还为现场应用提供了潜力。因此,我们就(i)通过小波分析量化的频谱质量和测量噪声而言,测试了与Bruker Tensor 27台式仪器相比,Agilent 4300手持式FTIR(DRIFT光谱)的性能; (ii)通过重复交叉验证分析对土壤有机碳(SOC),总氮(N),pH,粘土和沙子含量进行偏最小二乘(PLS)校准的准确性; (iii)通过蒙特卡洛光谱变量选择方法确定的这些土壤特性的关键光谱区域。手持设备的测量和多元校准与配备DRIFT附件的布鲁克产品一样好或略好,但不如通过积分球收集的定向半球反射(DHR)数据准确。噪声的变化并没有明显影响多元PLS校准的准确性。确定的PLS校准关键光谱区域在安捷伦和Bruker DHR数据之间有着很好的匹配,尤其是对于SOC和N。我们的发现表明,便携式FTIR仪器是实验室中MIR测量的可行替代品,并为现场应用提供了巨大潜力。

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