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http://dx.doi.org/10.5806/AST.2012.25.2.121

The study of quantitative analytical method for pH and moisture of Hanji record paper using non-destructive FT-NIR spectroscopy  

Shin, Yong-Min (National Archives of Korea Archives Management Division)
Park, Soung-Be (National Archives of Korea Archives Management Division)
Lee, Chang-Yong (National Archives of Korea Archives Management Division)
Kim, Chan-Bong (Bruker Optics Korea. Co., Ltd.)
Lee, Seong-Uk (Bruker Optics Korea. Co., Ltd.)
Cho, Won-Bo (Bruker Optics Korea. Co., Ltd.)
Kim, Hyo-Jin (College of Pharmacy, Dongduck Women's University)
Publication Information
Analytical Science and Technology / v.25, no.2, 2012 , pp. 121-126 More about this Journal
Abstract
It is essential to evaluate the quality of Hanji record paper without damaging the record paper by previous destructive methods. The samples were Hanji record paper produced in the 1900s. Near-infrared (NIR) spectrometer was used as a non destructive method for evaluating the quality of record papers. Fourier transform (FT) spectrometer was used with 12,500 to 4,000 $cm^{-1}$ wavenumber range for quantitative analysis and it has high accuracy and good signal-to-noise ratio. The acidity and moisture content of Hanji record paper were measured by integrating sphere as diffuse reflectance type. The acidity (pH) of chemical factors as a quality evaluated factor of Hanji was correlated to NIR spectrum. The NIR spectrum was pretreated to obtain the coefficients of optimum correlation. Multiplicative scatter correction (MSC) and First derivative of Savitzky-Golay were used as pretreated methods. The coefficients of optimum correlation were calculated by PLSR (partial least square regression). The correlation coefficients ($R^2$) of acidity had 0.92 on NIR spectra without pretreatment. Also the standard error of prediction (SEP) of pH was 0.24. And then the NIR spectra with pretreatment would have better correlation coefficient ($R^2$ = 0.98) and 0.19 as SEP on pH. For moisture contents, the linearity correlation without pretreatment was higher than the case with pretreatment (MSC, $1^{st}$ derivative). As the best result, the $R^2$ was 0.99 and SEP was 0.45. This indicates that it is highly proper to evaluate the quality of Hanji record papers speedily with integrated sphere and FT NIR analyzer as a non-destructive method.
Keywords
FT-NIR spectroscopy; Hanji record paper; pH; moisture;
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