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A Method for Measuring Degradation of Individual Components in Multicomponent Biodegradable Plastics by Fourier Transform Infrared Spectrometry
Authors:Sherald H. Gordon  Syed H. Imam  Christopher James
Affiliation:(1) United States Department of Agriculture, Plant Polymer Research Unit, National Center for Agricultural Utilization Research, Agricultural Research Service, Peoria, Illinois, 61604;(2) United States Department of Agriculture, Plant Polymer Research Unit, National Center for Agricultural Utilization Research, Agricultural Research Service, Peoria, Illinois, 61604
Abstract:A new chemometric method based on Beer's law was derived that uses peak ratios from Fourier transform infrared spectra of neat polymers and their composite plastics to quantify degradation of the individual polymers after biodegradation. The method affords direct measurement of polymer concentrations and weight losses without prior calibration against known composites. Unlike traditional chemometric methods, this method does not require sampling of as many or more different composites as the number of polymers in the composite being analyzed. When the neat polymer spectra are known, only two measurements, one before and one after biodegradation, are needed. A potentially major advance is that the method allows automation of analytical infrared wavelength selection by computer from all possible wavelength combinations. In this paper, the theoretical basis and derivation of the mathematical model for multicomponent systems is presented. The validity of the model was proved initially by applying the method to simulated two-polymer and three-polymer composites and finally by comparing test results with known samples of biodegradable composites prepared in the laboratory. Potential future development of the method for more challenging multicomponent plastics is discussed.
Keywords:Biodegradable plastics  polymers  multicomponent analysis  chemometric method  infrared spectrometry  r-matrix
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