Vibrational spectroscopic applications for detecting of consolidated harakeke fibres in conservation
Traditional Māori textiles are mostly composed of harakeke fibres (Phormium tenax, New Zealand flax) and coloured by various natural dyes. Fibres are dyed black (paru) with iron tannate compounds [1]. These textiles are liable to degradation which is believed to occur via acid catalysed hydrolysis a...
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sg-ntu-dr.10356-1443252020-11-13T00:59:53Z Vibrational spectroscopic applications for detecting of consolidated harakeke fibres in conservation Samanali, Garagoda Arachchige P. Paasi, I. Dunne, Henry Lowe, Bronwyn J. Smith, Catherine A. Fraser-Miller, Sara J. Gordon, Keith C. Asian Spectroscopy Conference 2020 Institute of Advanced Studies Science::Chemistry Raman Spectroscopy Infrared Spectroscopy Traditional Māori textiles are mostly composed of harakeke fibres (Phormium tenax, New Zealand flax) and coloured by various natural dyes. Fibres are dyed black (paru) with iron tannate compounds [1]. These textiles are liable to degradation which is believed to occur via acid catalysed hydrolysis and iron catalysed oxidation [1, 2]. To mitigate this degradation, these textiles are treated with different consolidants. There is however a poor understanding of the mode of action of consolidants at a molecular level. In this study, paru dyed and non-dyed harakeke fibre samples treated with the common consolidants; sodium alginate, zinc alginate, Paraloid B-72™, TriFunori™, and MethocelA4C™ were assessed by bulk Raman and infrared (IR) spectroscopic techniques. These consolidated fibers were artificially aged using light ageing to evaluate for potential protective effects from the consolidants [3]. Also, non-dyed, consolidated fibres were studied by Raman microscopic analysis to detect the consolidant distribution within the sample. These data were analysed using; band integrals analysis, principal component analysis, and true component analysis, was applied to understand subtle variances in the samples of bulk and microscopic analysis (Fig. 1). Published version 2020-10-28T07:17:20Z 2020-10-28T07:17:20Z 2020 Conference Paper Samanalia, G. A. P., Paasi, I., Dunne, H., Lowe, B. J., Smith, C. A., Fraser-Miller, S. J., & Gordon, K. C. (2020). Vibrational spectroscopic applications for detecting of consolidated harakeke fibres in conservation. Proc. Of the 7th Asian Spectroscopy Conference (ASC 2020). doi:10.32655/ASC_8-10_Dec2020.59 https://hdl.handle.net/10356/144325 10.32655/ASC_8-10_Dec2020.59 en © 2020 Nanyang Technological University. application/pdf |
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Science::Chemistry Raman Spectroscopy Infrared Spectroscopy Samanali, Garagoda Arachchige P. Paasi, I. Dunne, Henry Lowe, Bronwyn J. Smith, Catherine A. Fraser-Miller, Sara J. Gordon, Keith C. Vibrational spectroscopic applications for detecting of consolidated harakeke fibres in conservation |
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Traditional Māori textiles are mostly composed of harakeke fibres (Phormium tenax, New Zealand flax) and coloured by various natural dyes. Fibres are dyed black (paru) with iron tannate compounds [1]. These textiles are liable to degradation which is believed to occur via acid catalysed hydrolysis and iron catalysed oxidation [1, 2]. To mitigate this degradation, these textiles are treated with different consolidants. There is however a poor understanding of the mode of action of consolidants at a molecular level.
In this study, paru dyed and non-dyed harakeke fibre samples treated with the common consolidants; sodium alginate, zinc alginate, Paraloid B-72™, TriFunori™, and MethocelA4C™ were assessed by bulk Raman and infrared (IR) spectroscopic techniques. These consolidated fibers were artificially aged using light ageing to evaluate for potential protective effects from the consolidants [3]. Also, non-dyed, consolidated fibres were studied by Raman microscopic analysis to detect the consolidant distribution within the sample. These data were analysed using; band integrals analysis, principal component analysis, and true component analysis, was applied to understand subtle variances in the samples of bulk and microscopic analysis (Fig. 1). |
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Asian Spectroscopy Conference 2020 |
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Asian Spectroscopy Conference 2020 Samanali, Garagoda Arachchige P. Paasi, I. Dunne, Henry Lowe, Bronwyn J. Smith, Catherine A. Fraser-Miller, Sara J. Gordon, Keith C. |
format |
Conference or Workshop Item |
author |
Samanali, Garagoda Arachchige P. Paasi, I. Dunne, Henry Lowe, Bronwyn J. Smith, Catherine A. Fraser-Miller, Sara J. Gordon, Keith C. |
author_sort |
Samanali, Garagoda Arachchige P. |
title |
Vibrational spectroscopic applications for detecting of consolidated harakeke fibres in conservation |
title_short |
Vibrational spectroscopic applications for detecting of consolidated harakeke fibres in conservation |
title_full |
Vibrational spectroscopic applications for detecting of consolidated harakeke fibres in conservation |
title_fullStr |
Vibrational spectroscopic applications for detecting of consolidated harakeke fibres in conservation |
title_full_unstemmed |
Vibrational spectroscopic applications for detecting of consolidated harakeke fibres in conservation |
title_sort |
vibrational spectroscopic applications for detecting of consolidated harakeke fibres in conservation |
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2020 |
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https://hdl.handle.net/10356/144325 |
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1688665606082002944 |