DOE OSTI · 3337072
Improved Microalgal Carbon Utilization Efficiency via Integrated CO 2 Electro-Conversion to Formate and Microalgal Sequestration
Abstract
This project developed a process to convert industrial carbon dioxide (CO 2 ) emissions into high-value, sustainable products through genetically engineered algae cultivation. While traditional microalgae cultivation depends on sparging CO 2 gas through water, this method is often inefficient because much of the gas escapes into the atmosphere before the algae can consume it. To overcome this challenge, the project designed an integrated system that first uses a CO 2 to formic acid electrolyzer to convert CO 2 into water-soluble formic acid/formate, then introduces formic acid/formate into the algae pond for cultivation, which allows the algae to access and utilize nearly all of the provided carbon, greatly increasing the efficiency of carbon utilization. The project team has successfully scaled up the CO 2 to formic acid electrolyzer from lab-scale to 1000 cm² and demonstrated industrially relevant current densities with the scaled-up electrolyzers using a CO 2 source that simulates industrial CO 2 waste.
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Yang, Hongzhou [Dioxide Materials, Inc., Boca Raton, FL (United States)] (ORCID:0000000226374612), Guarnieri, Michael [National Laboratory of the Rockies (NLR), Golden, CO (United States)], McGowan, John [Arizona Center for Algae Technology and Innovation (AzCATI), Mesa, AZ (United States)], Zeller, Ashton [Algix, Meridian, MS (United States)]. 2026-05-04. Improved Microalgal Carbon Utilization Efficiency via Integrated CO 2 Electro-Conversion to Formate and Microalgal Sequestration. https://doi.org/10.2172/3337072
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