Macroscopic models of soil organic matter (SOM) turnover have faced difficulties in reproducing SOM dynamics or in predicting the spatial distribution of carbon stocks. These models are based on a largely inadequate linear response of soil microorganisms to bulk concentrations of nutrients and it is clear that a new approach to SOM modelling is required. Introducing explicit microbial activity and organic matter (OM) reactivity in macroscopic models represents a challenge because of the fine spatial scales at which the processes occur. To get a better grasp on interactions that take place at the microscale, a new generation of SOM models have been developed at the spatial scale of the soil microenvironments where microorganisms evolve. Thes...
Microbes influence soil organic matter decomposition and the long-term stabilization of carbon (C) i...
Over the last 60 years, soil microbiologists have accumulated a wealth of experimental data showing ...
Understanding the coupling of nitrogen (N) and carbon (C) cycles of land ecosystems requires underst...
International audienceMacroscopic models of soil organic matter (SOM) turnover have faced difficulti...
International audienceMacroscopic models of soil organic matter (SOM) turnover have faced difficulti...
Over the last decades, a new generation of microscale models has been developed to simulate soil mic...
The extreme heterogeneity of soils constituents, architecture and inhabitants at the microscopic sca...
The microscale physical characteristics of microbial habitats considerably affect the decomposition ...
Present gaps in the representation of key soil biogeochemical processes such as the partitioning of ...
International audienceThe reduction of greenhouse gas emissions by improving the efficiency of agric...
Soils contain more carbon (C) than terrestrial (above ground) and atmospheric carbon combined. Misma...
Accounting for microbial habitats in modeling soil organic matter dynamics. EGU 2017, European Geoph...
The role of organo-mineral interactions, microbial dynamics, and vertical plant input profiles are h...
International audienceThe microscale physical characteristics of microbial habitats considerably aff...
Soil organic matter (SOM) turnover increasingly is conceptualized as a tension between accessibility...
Microbes influence soil organic matter decomposition and the long-term stabilization of carbon (C) i...
Over the last 60 years, soil microbiologists have accumulated a wealth of experimental data showing ...
Understanding the coupling of nitrogen (N) and carbon (C) cycles of land ecosystems requires underst...
International audienceMacroscopic models of soil organic matter (SOM) turnover have faced difficulti...
International audienceMacroscopic models of soil organic matter (SOM) turnover have faced difficulti...
Over the last decades, a new generation of microscale models has been developed to simulate soil mic...
The extreme heterogeneity of soils constituents, architecture and inhabitants at the microscopic sca...
The microscale physical characteristics of microbial habitats considerably affect the decomposition ...
Present gaps in the representation of key soil biogeochemical processes such as the partitioning of ...
International audienceThe reduction of greenhouse gas emissions by improving the efficiency of agric...
Soils contain more carbon (C) than terrestrial (above ground) and atmospheric carbon combined. Misma...
Accounting for microbial habitats in modeling soil organic matter dynamics. EGU 2017, European Geoph...
The role of organo-mineral interactions, microbial dynamics, and vertical plant input profiles are h...
International audienceThe microscale physical characteristics of microbial habitats considerably aff...
Soil organic matter (SOM) turnover increasingly is conceptualized as a tension between accessibility...
Microbes influence soil organic matter decomposition and the long-term stabilization of carbon (C) i...
Over the last 60 years, soil microbiologists have accumulated a wealth of experimental data showing ...
Understanding the coupling of nitrogen (N) and carbon (C) cycles of land ecosystems requires underst...