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The use of two-dimensional correlation spectroscopy to characterise the differences in research grade instruments

机译:使用二维相关光谱法表征研究级仪器的差异

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The major question about the newer instruments is "are they more capable than the instruments we have been using for decades"? In looking for a way to examine the utility of commercial instrumentation capable of performing the measurement of stickiness in cotton, a method was required for evaluating the way these instruments performed compared with the research grade spectrometer which was first successfully used to measure stickiness. While all of the instruments had the potential analytical capability of measuring sticky cotton, all would require even more costly hardening to be used in a cotton gin or spinning plant. Regardless, the calibration would need to be transferred to any of these new instruments. While there are existing algorithms to do this, it is imperative to understand the differences between instrument platforms. Two-dimensional correlation spectroscopy (2DCOS) has been used to characterise instrumental differences which will affect performance, stability and reliability. The 2DCOS programs were re-written in Matlab ver. 6.51 to provide a common format with the newer instruments and the special purpose instruments which utilise Matlab for data functions. The instruments used in the complete calibration studies of sticky cotton were evaluated for their instrument function parameters. The possibilities for using 2DCOS for instrument characterisation was explored in concert with available spectral technologies.
机译:有关新型仪器的主要问题是“它们比我们几十年来一直使用的仪器更强大”吗?在寻找一种方法来检验能够执行棉花粘性测量的商用仪器的实用性时,需要一种与最初成功用于测量粘性的研究级光谱仪相比来评估这些仪器的执行方式的方法。尽管所有仪器都具有测量粘棉的潜在分析能力,但要在轧棉厂或纺纱厂中使用,所有仪器都将需要更昂贵的硬化处理。无论如何,校准都需要转移到任何这些新仪器中。尽管已有算法可以做到这一点,但必须了解仪器平台之间的差异。二维相关光谱法(2DCOS)已用于表征会影响性能,稳定性和可靠性的仪器差异。 2DCOS程序在Matlab版本中进行了重写。 6.51提供使用Matlab进行数据功能的新型仪器和专用仪器的通用格式。评估了用于粘性棉的全面校准研究的仪器的仪器功能参数。与可用的光谱技术一起,探索了使用2DCOS进行仪器表征的可能性。

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