Yu Wang, Garrett Roell, Rica Dela Cruz, Michaela Durďáková, Jessica Maruwan, Kexin Rong, Rachel Novotny, Monica Esquivel, Lynne Wilkens, Wei Wen Su, Tao Yan, Kacie Ho, Zhi-Yan Du
Edible algal biomass has emerged as a promising platform for nutritional bioproduct development, but its practical translation depends on compositional variability, intake feasibility, and safety constraints. Here, we integrated biochemical profiling, trace element screening, age-specific intake modeling, and community consumption context to evaluate commercially available and supplier-provided microalgal and seaweed products within realistic application boundaries. Selected products differed substantially in macronutrient composition, fatty acid profiles, pigments, polyphenols, and mineral composition, indicating product- and species-specific roles as nutritional biomass rather than interchangeable ingredients. Across species and age groups, approximately 0.7 to 3.1 g dry biomass provided 20% of age-specific alpha-linolenic acid intake, with approximately 1 g sufficient for several products. Multi-species allocations improved omega-3 representation while remaining within practical intake limits and trace element-based screening thresholds. Community consumption data from Pacific Island children showed low and episodic seaweed intake, highlighting a gap between biomass potential and routine dietary use. These findings support safety-aware modeling as a preliminary screening and decision-support strategy for evaluating edible algal biomass before further product-specific validation.