Organic Matter Degradation in Energy-Limited Subsurface Environments—A Bioenergetics-Informed Modeling Approach
Bijendra Man Bajracharya, Christina M. Smeaton, Igor Markelov, Ekaterina Markelova, Chuanhe Lu, Olaf A. Cirpka, Philippe Van Cappellen
Abstract
Microbial degradation of organic matter is a key driver of subsurface biogeochemistry. Here, we present a bioenergetics-informed kinetic model for the anaerobic degradation of macromolecular organi...- Cite:
- Bijendra Man Bajracharya, Christina M. Smeaton, Igor Markelov, Ekaterina Markelova, Chuanhe Lu, Olaf A. Cirpka, and Philippe Van Cappellen. 2021. Organic Matter Degradation in Energy-Limited Subsurface Environments—A Bioenergetics-Informed Modeling Approach. Geomicrobiology Journal, Volume 39, Issue 1, 39(1):1–16.
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@article{Bajracharya-2021-Organic, title = "Organic Matter Degradation in Energy-Limited Subsurface Environments{---}A Bioenergetics-Informed Modeling Approach", author = "Bajracharya, Bijendra Man and Smeaton, Christina M. and Markelov, Igor and Markelova, Ekaterina and Lu, Chuanhe and Cirpka, Olaf A. and Cappellen, Philippe Van", journal = "Geomicrobiology Journal, Volume 39, Issue 1", volume = "39", number = "1", year = "2021", publisher = "Informa UK Limited", url = "https://gwf-uwaterloo.github.io/gwf-publications/G21-44001", doi = "10.1080/01490451.2021.1998256", pages = "1--16", abstract = "Microbial degradation of organic matter is a key driver of subsurface biogeochemistry. Here, we present a bioenergetics-informed kinetic model for the anaerobic degradation of macromolecular organi...", }
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%0 Journal Article %T Organic Matter Degradation in Energy-Limited Subsurface Environments—A Bioenergetics-Informed Modeling Approach %A Bajracharya, Bijendra Man %A Smeaton, Christina M. %A Markelov, Igor %A Markelova, Ekaterina %A Lu, Chuanhe %A Cirpka, Olaf A. %A Cappellen, Philippe Van %J Geomicrobiology Journal, Volume 39, Issue 1 %D 2021 %V 39 %N 1 %I Informa UK Limited %F Bajracharya-2021-Organic %X Microbial degradation of organic matter is a key driver of subsurface biogeochemistry. Here, we present a bioenergetics-informed kinetic model for the anaerobic degradation of macromolecular organi... %R 10.1080/01490451.2021.1998256 %U https://gwf-uwaterloo.github.io/gwf-publications/G21-44001 %U https://doi.org/10.1080/01490451.2021.1998256 %P 1-16
Markdown (Informal)
[Organic Matter Degradation in Energy-Limited Subsurface Environments—A Bioenergetics-Informed Modeling Approach](https://gwf-uwaterloo.github.io/gwf-publications/G21-44001) (Bajracharya et al., GWF 2021)
- Organic Matter Degradation in Energy-Limited Subsurface Environments—A Bioenergetics-Informed Modeling Approach (Bajracharya et al., GWF 2021)
ACL
- Bijendra Man Bajracharya, Christina M. Smeaton, Igor Markelov, Ekaterina Markelova, Chuanhe Lu, Olaf A. Cirpka, and Philippe Van Cappellen. 2021. Organic Matter Degradation in Energy-Limited Subsurface Environments—A Bioenergetics-Informed Modeling Approach. Geomicrobiology Journal, Volume 39, Issue 1, 39(1):1–16.