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Use of mid- and near-infrared spectroscopy to track degradation of bio-based eating utensils during composting

机译:使用中红外光谱和近红外光谱跟踪堆肥过程中生物基餐具的降解

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摘要

Near-infrared spectroscopy (NIRS) and mid-infrared spectroscopy (MIRS) have been used for quantitative and/or qualitative analysis of a wide range of materials. The objective of this study was to investigate the potential of MIRS and NIRS for following the degradation of bio-based food utensils during composting. Polylactide (PLA)-based forks lost 34% of their initial mass and were reduced to small friable fragments after 7. weeks of composting. NIRS and MIRS spectra of forks that were incubated for 7. weeks were nearly identical to spectra of untreated forks. NIRS and MIRS were more useful in following the degradation of a starch/polypropylene (PP) polymer. Spectral results demonstrated that the starch component degraded during composting and that the PP component was recalcitrant. These results confirm that MIRS and NIRS are useful in determining the composition of biobased materials. However, the spectra did not provide useful information about the extent of PLA polymer degradation.
机译:近红外光谱(NIRS)和中红外光谱(MIRS)已用于多种材料的定量和/或定性分析。这项研究的目的是研究堆肥过程中MIRS和NIRS跟踪生物基食品餐具降解的潜力。基于聚丙交酯(PLA)的叉子损失了其初始质量的34%,并且在堆肥7周后被分解成小的易碎碎片。孵育7周的叉子的NIRS和MIRS光谱与未经处理的叉子的光谱几乎相同。 NIRS和MIRS在跟踪淀粉/聚丙烯(PP)聚合物的降解过程中更有用。光谱结果表明,堆肥过程中淀粉成分降解,PP成分具有顽固性。这些结果证实,MIRS和NIRS可用于确定生物基材料的成分。但是,光谱没有提供有关PLA聚合物降解程度的有用信息。

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