Techno-Economic Assessment of Liquefaction Mitigation by Microbially Induced Desaturation

Author:

Hall Caitlyn A.12332,van Paassen Leon A.12332,Kamalzare Soheil12332,Parmantier Dominic12332,Kavazanjian Edward12332

Affiliation:

1. Center for Bio-Mediated and Bio-Inspired Geotechnics and Biodesign Swette Center for Environmental Biotechnology, Arizona State Univ., Tempe, AZ.

2. Center for Bio-Mediated and Bio-Inspired Geotechnics, Arizona State Univ., Tempe, AZ.

3. Condon-Johnson & Associates, Inc., Kent, WA.

Publisher

American Society of Civil Engineers

Reference27 articles.

1. Nitrite inhibition of denitrification byPseudomonas fluorescens

2. Chu, J., Ivanov, V., He, J., and Naeimi, M. (2015). “Use of biogeotechnologies for disaster mitigation.” in Geotechnics for Catastrophic Flooding Events, Nowakowski, T., Młyńczak, M., Jodejko-Pietruczuk, A. and Werbińska-Wojciechowska, S., eds. Taylor and Francis Group, London, UK, 49–56.

3. Soil-cement mixture properties and design considerations for reinforced excavation

4. Denitrification kinetics of high nitrate concentration water: pH effect on inhibition and nitrite accumulation

5. Hall C. A. van Paassen L. A. Rittmann B. E. Kavazanjian E. DeJong J. T. and Wilson D. W. (2018). “Predicting desaturation by biogenic gas formation via denitrification during centrifugal loading.” Proc. 7th International Conference on Unsaturated Soil Mechanics. Hong Kong: ISSMGE. 1–6.

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