PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
March 27, 2026Progress in Organic Coatings0 citationsOpen Access

Development of flame-retardant waterborne alkyd resins for wood coating

View Full Paper
MPMaddalen PuyadenaIEIdoia EtxeberriaGOGurutze Ortega

Key Points

  • The aim is to develop phosphorus-containing waterborne alkyd resins that are transparent and flame-retardant for wood coatings.
  • Synthesis involved alcoholysis followed by esterification.
  • Incorporation of reactive flame-retardant polyethylene glycol phosphate ester.
  • Addition of ammonium polyphosphate additives with varying particle sizes.
  • Chemical characterization was performed to confirm synthesis and analyze molar mass distribution.
  • Fire performance evaluated using cone calorimetry.
  • Significant reduction in peak heat release rate for phosphorus-containing systems.
  • Increased char residue compared to the reference resin.
  • Additive flame retardants showed better fire resistance with pronounced reduction in total heat release.
  • Reactive systems allowed incorporation into the polymer backbone without compromising coating performance.

Abstract

Phosphorus-containing water-borne alkyd resins were developed as transparent flame-retardant wood coatings. The synthesis consisted of alcoholysis followed by esterification, incorporating the reactive flame-retardant polyethylene glycol phosphate ester (Exolit OP550). In addition, ammonium polyphosphate additives of different particle sizes (Exolit AP422 and Exolit AP423) were introduced into the reference alkyd resin. Chemical characterisation confirmed successful synthesis and showed that the reactive flame retardant influenced the esterification process and the resulting molar mass distribution. Fire performance evaluation by cone calorimetry demonstrated a significant reduction in peak heat release rate and an increase in char residue for the phosphorus-containing systems compared to the reference resin. The flame retardants also affected thermal stability and coating properties, including transparency, adhesion, gloss, hardness, and water sensitivity. Both reactive and additive phosphorus flame retardants improved fire performance compared to the reference resin. The additive systems showed a more pronounced reduction in total heat release under the tested conditions, while reactive systems enabled chemical incorporation into the polymer backbone while maintaining coating performance. Differences between the two ammonium polyphosphate grades highlight the influence of particle size on dispersion, residue formation, and overall fire behaviour, underlining the importance of formulation strategy in waterborne alkyd systems. • Waterborne alkyd resin for fire resistance wood coatings • Reactive and additive flame retardants • 7 wt% phosphorus resulted in worthy flame-retardant properties • Better fire resistance with additive flame retardants (ammonium polyphosphate)

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

Puyadena et al. (2026) studied this question.

synapsesocial.com/papers/69c6209315a0a509bde191fdhttps://doi.org/10.1016/j.porgcoat.2026.110141
Ask AI
Helpful
Bookmark
Share
View Full Paper