Sakhi Ghelichi, Behdad Shokrollahi Yancheshmeh, Marie Karen Tracy Hong Lin, Charlotte Jacobsen
This study investigated high internal phase Pickering emulsions (HIPPEs) of algal oil stabilized with particles from red seaweed. The particles featured a favorable contact angle (81.5°), 43.2 % β-sheet content, and irregular morphology with rough surfaces. These features enabled the formation of HIPPEs at 0.5–2.0 % particle concentrations in the aqueous phase. All formulations had highly negative zeta potentials (∼ −70 to −74 mV), indicating strong electrostatic stabilization. Droplet size decreased significantly with increasing concentration ( p < 0.05) and plateaued at 1.5–2.0 % on day 1 (D 3,2 –2.7 μm). Emulsions with 1.5 % and 2.0 % particles (E-1.5 and E-2.0) exhibited higher physical stability (Turbiscan Stability Index: 3.63 and 2.12, respectively) and dominant elastic behavior. Higher particle loads enhanced viscosity, microstructural resistance, and oxidative stability, with E-2.0 maintaining the lowest peroxide value (21.06 meq/kg oil) and reduced α-tocopherol degradation and oxidation volatiles. These findings support seaweed-derived particles as natural Pickering stabilizers in ω-3-rich emulsions. • Seaweed-derived particles were used as Pickering stabilizers for HIPPEs. • Higher particle levels increased physical stability, viscosity, and elasticity. • Increased particles led to firmer structure and higher interfacial coverage. • Elevated particle loads reduced oxidative volatiles in HIPPEs of ω-3 algal oil. • Red seaweed particles offer a novel, natural antioxidant Pickering colloid.