Tannin characterization and sourcing in historical leathers through FTIR spectroscopy and PCA analysis

Alireza Koochakzaei, Mohammadamin Sabaghian
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引用次数: 1

Abstract

This study aimed to identify and classify the type of plants used for tanning historical leathers using cost-effective Fourier transform infrared (FTIR) spectroscopy. The investigation was carried out on five plants (oak bark, sumac, valonia, tara, and gallnut) and four historical leather samples from book bindings dating back to the Qajar period. Tannin extraction from both plants and leathers was performed using acetone–water solvent, and the samples were then subjected to FTIR spectroscopy. Pre-processing of the spectra included baseline correction, smoothing, and normalization. Principal component analysis (PCA) was used to identify the source of tannins based on FTIR results. FTIR was found to provide a good separation of condensed tannins from hydrolysable ones. However, PCA analysis allowed for the separation and identification of the type of plant used for tannin extraction. The examination of historical leather samples revealed that the primary classification based on the type of tannin is possible, but accurate identification faces challenges due to structural changes and degradation over time.

Graphical abstract

通过FTIR光谱和PCA分析分析历史皮革的单宁特性和来源
本研究旨在利用具有成本效益的傅里叶变换红外(FTIR)光谱识别和分类用于鞣制历史皮革的植物类型。调查对象包括五种植物(橡树皮、漆树、瓦洛兰、度母和五子果)和四种可追溯到卡扎尔时期的书籍装订皮革样品。用丙酮-水溶剂从植物和皮革中提取单宁,并对样品进行傅里叶红外光谱分析。光谱的预处理包括基线校正、平滑和归一化。利用红外光谱(FTIR)对单宁进行主成分分析。FTIR可以很好地分离缩合单宁和水解单宁。然而,主成分分析允许分离和鉴定用于单宁提取的植物类型。对历史皮革样品的检查表明,基于单宁类型的初步分类是可能的,但由于结构变化和降解,准确识别面临挑战。图形抽象
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来源期刊
Journal of Leather Science and Engineering
Journal of Leather Science and Engineering 工程技术-材料科学:综合
CiteScore
12.80
自引率
0.00%
发文量
29
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