Diatom Water Purification: Algae-Based Filtration — Aquammodate

Biological model: Diatoms (Bacillariophyceae class)

Company: Aquammodate

Aquammodate harnesses diatom algae for water purification. Diatoms naturally filter and clean water while removing contaminants and accumulating nutrients, enabling low-cost, low-energy water treatment.

The challenge

Water purification requires energy-intensive chemical treatment and mechanical filtration; accessible, low-cost water treatment is needed for developing regions

Nature's strategy

Diatoms (Bacillariophyceae class) and their natural filtration and nutrient absorption

What was emulated

Diatom natural filtration, nutrient absorption, and water purification in ecosystems

The innovation

Using living diatom algae cultures for passive, biological water purification

Full case study

Diatoms are single-celled algae with silica shells (frustules) that are naturally porous and micro-structured. Diatoms naturally filter water, absorbing nutrients and contaminants while producing oxygen. In aquatic systems, diatoms perform filtration, nutrient absorption, and oxygenation essential to ecosystem health. Aquammodate applies this principle to water purification: living diatom cultures are used to treat contaminated water. The process is passive and biological: water passes through diatom-rich systems where the algae naturally remove contaminants, absorb excess nutrients (nitrogen, phosphorus), and oxygenate the water. The treated water is clean; the diatoms can be harvested and used as animal feed, fertilizer, or biofuel. Advantages are compelling: no chemical treatment required, no energy-intensive mechanical filtration, removes nutrients (addressing agricultural runoff pollution), produces biomass (economic co-product), and can scale from household to municipal scales. The approach is particularly valuable for wastewater treatment in developing regions where chemical treatment is expensive or inaccessible. Challenges include scaling, maintaining stable algae cultures, and processing the harvested biomass. The system represents true biomimicry: using living organisms in their natural ecological role to perform purification services that humans have typically delegated to energy-intensive industrial processes.