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DIC Joins Project for Innovative Biomanufacturing Technologies Using CO₂ and H₂

Published on 2023-08-10. Edited By : SpecialChem

TAGS:  Sustainability / Natural Cosmetics   

DIC Joins Project for Innovative Biomanufacturing Technologies Using CO₂ and H₂Sojitz Corporation, Central Research Institute of Electric Power Industry, Green Earth Institute Co., Ltd., DIC Corporation, Toray Industries, Inc., and Daicel Corporation, have concluded an agreement with Japanʼs New Energy and Industrial Technology Development Organization (NEDO) for a joint project focused on the development of revolutionary biomanufacturing technology to engineer hydrogen oxidizing bacteria that utilize CO2.

Promotion of Carbon Recycling Using CO2


This project was selected for sponsorship under NEDOʼs Green Innovation Fund Project category, “Promotion of Carbon Recycling Using CO2 from Biomanufacturing Technology as a Direct Raw Material.”

This project entails R&D for manufacturing a variety of chemical products and feed raw materials from CO2 and H2. This new biomanufacturing technology will be one of the worldʼs first examples of a commercialized bioprocess directly using CO2 and H2 for the production of chemicals and presents a promising option for realizing a carbon-neutral society.

The hydrogen-oxidizing bacterium to be engineered is one of the microorganisms that have the fastest CO2 fixation rate. Leveraging this high fixation capacity through genetic engineering, it is possible to engineer bacterial strains that can produce useful chemical products with high efficiency. The resulting compounds are then used as raw materials in a wide variety of daily applications including plastics, ink, paint, textiles, and cosmetics.

Additionally, the bacterial residues produced in the biomanufacturing process from the biomanufacturing process can be utilized as an alternative protein source for feed which presents a solution to the recent rise in demand for alternative protein sources. This biomanufacturing technology will therefore simultaneously raise the decarbonization value of businesses and provide a solution to food problems.

Alongside the development of bacterial strains, scale-up demonstrations will be conducted to establish a safe and highly efficient gas fermentation method and to accurately measure CO2 reduction effects to add environmental benefits to products.

Project Duration:

  • Consignment contract period: FY2023 – FY2025
  • Total project duration (planned): FY2023 – FY2030

Total Project Costs:

  • Approximately JPY 6.8 billion (FY2023 – FY2030)

All six organizations will combine their acquired expertise, technologies, and functions to realize social implementation of this next generation biomanufacturing technology in order to advance the structural transformation of chemical products and materials industries which address growing decarbonization needs.

Source: DIC Corporation

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