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Updated: Sep 26, 2026

Preparation of Cross-Linked Sodium Alginate Microspheres with Different Metal Ions Using the Microfluidic Electrospray Technology
Published on: June 7, 2024
A slow-release ionic crosslinking strategy for a sprayable ceramifiable sodium alginate hydrogel toward sustainable
Fangtong Xiong1, Xin Jiang1, Xinyu Liu2
1State Key Laboratory of Fire Science, University of Science and Technology of China, Hefei, Anhui, 230026, PR China.
Abstract:
Developing spray-applied fire-retardant materials for wildfire suppression requires rapid deployment, effective surface retention, and sustained protection after water loss and during prolonged heating. This poses a significant challenge to traditional water-based fire-retardant materials, whose protective effectiveness often decreases as water evaporates. Herein, a sprayable ceramifiable sodium alginate-based hydrogel is developed, enabled by the gradual release of Ca2+ from the CaCO3/GDL system under ambient conditions. The hydrogel retained water for up to 17 h at 60 °C. Among all formulations, the incorporation of montmorillonite provided the best overall fire-protection performance, prolonging the ignition time to 215 s and reducing the peak heat release rate, total heat release, and total smoke release by 67.3%, 21.5%, and 62.7%, respectively. During combustion, the sodium alginate/Ca2+ gel network progressively transformed into a compact carbonaceous-inorganic residue, forming a ceramic-like barrier through the integration of carbonaceous and aluminosilicate-containing components. This work establishes a practical strategy for designing low-cost, spray-applied, bio-based-polymer fire-protection materials for sustainable wildfire prevention.
