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纤维素纸张老化的非接触式谐振腔介电谱研究

Contactless Resonant Cavity Dielectric Spectroscopic Studies of Cellulosic Paper Aging.

作者信息

Kombolias Mary, Obrzut Jan, Postek Michael T, Poster Dianne L, Obeng Yaw S

机构信息

Testing and Technical Services, Plant Operations, United States Government Publishing Office, Northwest, Washington, DC, USA.

Materials Measurement Laboratory, National Institute of Standards and Technology, Gaithersburg, MD, USA.

出版信息

Anal Lett. 2019;53(3). doi: 10.1080/00032719.2019.1655648.

Abstract

The current analytical techniques for characterizing printing and graphic arts substrates, particularly those used to date and authenticate provenance, are destructive. This limits the amount of data that can be captured from an individual sample. For samples being evaluated in forensic and archeological investigations, any loss or degradation of the materials is undesirable. Furthermore, it is difficult to produce statistically relevant data for such analytes. We have shown elsewhere that a contactless microwave resonant cavity dielectric spectroscopy technique can discriminate between paper samples made from different plant fiber species based on their lignin content. In this publication, we demonstrate the utility of the contactless resonant cavity dielectric spectroscopy (RCDS) technique in the characterization of naturally and artificially aged paper samples. Based on our experimental results, we suggest that the technique could be used in forensic and archeological investigations of unique paper products.

摘要

目前用于表征印刷和平面艺术基材的分析技术,尤其是那些用于确定日期和鉴定出处的技术,具有破坏性。这限制了从单个样本中获取的数据量。对于在法医和考古调查中评估的样本,材料的任何损失或降解都是不可取的。此外,很难为此类分析物生成具有统计相关性的数据。我们在其他地方已经表明,一种非接触式微波谐振腔介电谱技术可以根据木质素含量区分由不同植物纤维种类制成的纸张样本。在本出版物中,我们展示了非接触式谐振腔介电谱(RCDS)技术在表征自然老化和人工老化纸张样本方面的实用性。基于我们的实验结果,我们建议该技术可用于对独特纸制品的法医和考古调查。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c9f9/7047761/bbf869dd6744/nihms-1541700-f0001.jpg

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