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Simultaneous determination of sulfur, nitrogen and ash for vegetable tannins using ATR-FTIR spectroscopy and multivariate regression

机译:用ATR-FTIR光谱法同时测定植物单宁植物单宁的硫,氮和灰分测定

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摘要

The quantification of sulfur, nitrogen and ash content in tannins of mimosa (Acacia mearnsii) and quebracho (Schinopsis sp.) is of fundamental importance for its industrial use. Thus, an analytical method capable of identifying these properties by attenuated total reflection-Fourier transform infrared spectroscopy (ATR-FTIR) was developed using multivariate regression methods. Partial least squares regression (PIS) method was used as well as the interval partial least squares (iPLS) and the synergy interval partial least squares (siPLS). The developed models were compared based on the root of the mean square errors (RMSE) and determination coefficients (R-2). The results showed that both the iPLS and the siPLS, using the infrared data, obtained satisfactory results, but having a small improvement with the use of the siPLS. In general, the proposed method does not require reagent consumption, being much faster than traditional techniques, allowing potential applications for simultaneous determination of sulfur, nitrogen and ash contents for routine analysis of plant tannins by FTIR data.
机译:Mimosa(Acacia Mearnsii)和Quebracho(Schinopsis sp)的单宁中硫,氮和灰分含量的定量对其工业用途具有根本重要性。因此,使用多元回归方法开发了能够通过减弱的总反射傅立叶变换红外光谱(ATR-FTIR)来识别这些性质的分析方法。使用局部最小二乘回归(PIS)方法以及间隔部分最小二乘(IPLS)和协同间隔部分最小二乘(SIPLS)。基于均方误差(RMSE)和确定系数(R-2)的根来进行比较开发的模型。结果表明,使用红外数据,IPLS和SIPLS都获得了令人满意的结果,但使用SIPLS的使用很小。通常,该方法不需要试剂消耗,比传统技术快得多,允许通过FTIR数据同时测定含硫,氮和灰分的常规分析植物单宁的常规分析。

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