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February 8, 20260 citationsOpen Access

Innovations in Tannin-Based Phenolic Foams: A Review of the Research

AAAntónio G. AbreuJCJoana J. CostaPSP. Filipe Santos

Key Points

  • The research aims to systematically review tannin-based phenolic foams with a focus on sustainability and properties.
  • Reviewed existing literature on tannin-based foams.
  • Analyzed life cycle assessment studies for sustainability analysis.
  • Evaluated the impact of various formulations and additives on foam properties.
  • Identified tannins and their natural sources significantly influence foam properties.
  • Sustainable alternatives to formaldehyde improve foam characteristics without health risks.
  • Additives enhance mechanical and fire performance of tannin foams.

Abstract

Research on tannin-based foams has shown promising results. However, all developments in this field have not been addressed from different perspectives, in a systematic way, and with an emphasis on sustainability. This work discusses different formulations, emphasizing their bio-based components and how modifications influence key properties. It examines life cycle assessment (LCA) studies through a sustainability lens and identifies major commercial phenolic products to highlight the practical use of tannin foams for thermal insulation. The type of tannins, as well as their sources, influences the key properties of these foams. The replacement of formaldehyde, a crosslinking agent known for its health risks, is possible, particularly through more sustainable alternatives that allow for foams with better properties than those obtained with formaldehyde. Substitution of diethyl ether with less hazardous alternatives results in foams with improved thermal and mechanical performance. The elimination of the blowing agent—the green alternative—also leads to foams with good performance. The presence of additives (surfactants, plasticizers, and fillers), some of which are sustainable, improves the mechanical properties of the foams. The performance in fire-related applications, already promising, is also enhanced by the presence of additives. An increase in understanding, combined with the sustainable nature of the various alternatives, makes tannin-based foams promising candidates for next-generation insulation and structural materials in construction.

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Cite This Study

Abreu et al. (2026) studied this question.

synapsesocial.com/papers/698828210fc35cd7a88474e5https://doi.org/10.3390/macromol6010010
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