Microbially Induced Calcium Carbonate Precipitation by Sporosarcina pasteurii : a Case Study in Optimizing Biological CaCO 3 Precipitation

Author:

Carter Michael S.12ORCID,Tuttle Matthew J.12ORCID,Mancini Joshua A.12ORCID,Martineau Rhett12ORCID,Hung Chia-Suei1ORCID,Gupta Maneesh K.1ORCID

Affiliation:

1. Materials and Manufacturing Directorate Air Force Research Lab, Wright-Patterson Air Force Base, Dayton, Ohio, USA

2. Biological and Nanoscale Technologies Division, UES, Inc., Dayton, Ohio, USA

Abstract

Current production of traditional concrete requires enormous energy investment that accounts for approximately 5 to 8% of the world’s annual CO 2 production. Biocement is a building material that is already in industrial use and has the potential to rival traditional concrete as a more convenient and more environmentally friendly alternative.

Funder

Air Force Research Laboratory Seedlings for Disruptive Capabilities Program

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

Reference173 articles.

1. On the history of Portland cement after 150 years

2. Global CO<sub>2</sub> emissions from cement production

3. Lehne J, Preston F. 2018. Making concrete change innovation in low-carbon cement and concrete. Chatham House, The Royal Institute of International Affairs, London, UK.

4. Biomineralization and Successive Regeneration of Engineered Living Building Materials

5. Growth Kinetics of Bacillus pasteurii in Solid-Free Drilling Fluids

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