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Extraction of chemical information of suspensions using radiative transfer theory to remove multiple scattering effects : application to a model multicomponent system

机译:使用辐射转移理论去除悬浮液的化学信息以消除多重散射效应:在模型多组分系统中的应用

摘要

The effectiveness of a scatter correction approach based on decoupling absorption and scattering effects through the use of the radiative transfer theory to invert a suitable set of measurements is studied by considering a model multicomponent suspension. The method was used in conjunction with partial least-squares regression to build calibration models for estimating the concentration of two types of analytes: an absorbing (nonscattering) species and a particulate (absorbing and scattering) species. The performances of the models built by this approach were compared with those obtained by applying empirical scatter correction approaches to diffuse reflectance, diffuse transmittance, and collimated transmittance measurements. It was found that the method provided appreciable improvement in model performance for the prediction of both types of analytes. The study indicates that, as long as the bulk absorption spectra are accurately extracted, no further empirical preprocessing to remove light scattering effects is required.
机译:通过考虑模型多组分悬架,研究了基于解耦吸收和散射效应的散射校正方法的有效性,该方法通过使用辐射转移理论来反转一组合适的测量值。该方法与偏最小二乘回归结合使用,建立了用于估计两种类型分析物浓度的校准模型:一种吸收(非散射)物质和一种微粒(吸收和散射)物质。将通过这种方法建立的模型的性能与通过将经验散射校正方法应用于漫反射率,漫透射率和准直透射率测量获得的性能进行了比较。已经发现,该方法在预测两种类型的分析物的模型性能方面提供了相当大的改进。研究表明,只要准确地提取了体吸收光谱,就不需要进一步的经验预处理来消除光散射效应。

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