Bloom Algae Foam — Bloom

Biological model: Cyanobacteria / Blue-Green Algae

Company: Bloom

Harmful algal bloom biomass replaces petroleum-based EVA foam

The challenge

Harmful algal blooms caused by agricultural nutrient runoff devastate freshwater ecosystems and cost billions annually, while their biomass is discarded as waste — and EVA foam production continues to rely on petroleum feedstocks.

Nature's strategy

Cyanobacteria blooms rapidly accumulate solar energy and atmospheric CO₂ into dense lipid-rich biomass, which can be harvested as a manufacturing feedstock rather than treated as ecological waste.

The innovation

Bloom dries and blends harvested algal biomass into EVA foam resin, creating a shoe and yoga mat material that sequesters carbon, remediates waterways, and partially displaces petroleum content — used by Adidas, Vivobarefoot, and Patagonia.

Full case study

Every summer, nutrient-rich runoff from farmland and urban stormwater drives algal blooms across lakes, reservoirs, and coastal waters worldwide. The blooms are ecological disasters — suffocating aquatic life, producing liver toxins, and rendering water undrinkable. Management typically means mechanical harvesting, then landfill or incineration at significant cost. The algal biomass itself, rich in lipids, cellulose, and proteins, is discarded as a liability rather than recognised as a resource. Los Angeles-based Bloom saw a different opportunity. Harvested algal biomass is dried, processed, and blended with ethylene vinyl acetate (EVA) — the petroleum-based foam used in footwear midsoles, yoga mats, and packaging — replacing a fraction of the fossil-fuel content with algae-derived material. The process does not require virgin algae cultivation; it draws exclusively from bloom-remediation programmes that are already collecting and removing algae as a water-quality intervention. Bloom's foam is now used by brands including Adidas, Vivobarefoot, and Patagonia. Each pair of shoes made with Bloom foam sequesters several litres of algae-contaminated water that was cleaned in the harvesting process and diverts CO₂ that the algae had already fixed from the atmosphere. The manufacturing process also uses less energy than standard EVA production because algae-derived cellulose acts as a processing aid that reduces viscosity. The deeper lesson from Bloom is the "waste as feedstock" principle: by treating the most visible symptom of agricultural nutrient pollution — the bloom itself — as a manufacturing input, the company creates a financial incentive for bloom remediation that no regulatory framework alone has been able to generate. Each pair of shoes purchased funds the removal of algae that would otherwise have been an ecological liability.