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February 2, 2026ChemPlusChem0 citationsOpen Access

From Ink to Mockup: An Integrated Study of Historical Gall Ink Formulations and Their Impact on Paper

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MNM. F. NunesJVJoana C. VieiraACA Afonso Costa

Key Points

  • The research aims to assess the physicochemical behavior of iron gall ink formulations and their degradation effects on paper.
  • Characterization of fresh and aged ink formulations using ATR-FT-IR, Raman, and Mössbauer spectroscopies.
  • Analysis of precipitates and supernatant solutions from historical Portuguese sources.
  • Investigation of paper degradation through pH, degree of polymerization, and structural changes.
  • Iron(II) sulphates were identified as the primary crystalline phase in aged precipitates.
  • Structural alterations in Fe(III) complexes were confirmed through Mössbauer parameters.
  • Cellulose oxidation emerged as the main mechanism of paper degradation.
  • Inks with higher ratios of Fe(II) sulphate to gallnuts caused more severe damage.

Abstract

Iron gall inks (IGIs) played a central role as a writing medium in Western countries, leaving behind a vast legacy and significant conservation challenges. This study presents a twofold methodological approach to investigate the physicochemical behaviour of IGI‐based formulations found in historical Portuguese sources. Fresh and 6‐month naturally aged precipitates and supernatant solutions (dried inks) were characterised, and the impact of IGIs on Whatman paper over ageing was studied using attenuated total reflectance Fourier‐transform infrared (ATR‐FT‐IR) spectroscopy, Raman and Mössbauer spectroscopies and X‐ray diffraction (XRD). Iron(II) sulphates comprised the primary crystalline phase in the precipitates, while the dried inks consisted of distinct Fe(III)‐polyphenol (PPh) complexes. Over time, Fe(III) Mössbauer parameters supported complex structural alterations. IGI‐induced degradation on aged mockups was attested by Fe(II) oxalate formation until total depletion of the Fe(III)‐PPh fraction. pH, ATR‐FT‐IR and degree of polymerisation analyses suggested that cellulose oxidation is the primary degradation mechanism, and the physical properties and XRD corroborated that the cellulose structure became disordered over ageing. The ink with the higher weight ratio of Fe(II) sulphate:gallnuts (unbalanced) exhibited the most aggressive action on the support. The results confirm that the more unbalanced the ink composition, the more severe its impact, with ink concentration per surface area also being a critical factor in paper decay.

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Cite This Study

Nunes et al. (2026) studied this question.

synapsesocial.com/papers/6980fe48c1c9540dea810407https://doi.org/10.1002/cplu.202500369
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