<p>N<sub>2</sub>O emission in soils is a consequence of the activity of nitrifying and denitrifying microorganisms and potentially abiotic processes. However, the <span>large</span> microscale variability of the soil characteristics that influence these processes and in particular the location of anoxic microsites, limits prediction efforts. Better understanding of denitrification activity on microscopic scales is required to improve predictions of N<sub>2</sub>O emissions.</p><p>This study explored the role of soil microstructure on N<sub>2</sub>O emission. To fulfill this objective we sampled 24 soil columns (5 cm diameter, 6 cm height) in the surface layer of a same plot i...
Soil-borne nitrous oxide (N2O) emissions have a high spatial and temporal variability which is commo...
Nitrous oxide (N<sub>2</sub>O) is of major importance as a greenhouse gas and precursor of ozone (O...
Soil-borne nitrous oxide (N2O) emissions have a high spatial and temporal variability which is commo...
<p>N<sub>2</sub>O emission in soils is a consequence of the activity of nitrifying...
International audienceN2O emission in soils is a consequence of the activity of nitrifying and denit...
International audienceN2O emission in soils is a consequence of the activity of nitrifying and denit...
International audienceN2O emission in soils is a consequence of the activity of nitrifying and denit...
International audienceN2O emission in soils is a consequence of the activity of nitrifying and denit...
International audienceN2O emission in soils is a consequence of the activity of nitrifying and denit...
N2O is a highly potent greenhouse gas and arable soils represent its major anthropogenic source. Fie...
N2O is a highly potent greenhouse gas and arable soils represent its major anthropogenic source. Fie...
N2O is a highly potent greenhouse gas and arable soils represent its major anthropogenic source. Fie...
N2O is a highly potent greenhouse gas and arable soils represent its major anthropogenic source. Fie...
Non-Peer ReviewedUnderstanding the production pathways of potent greenhouse gases, such as nitrous o...
Soil-borne nitrous oxide (N2O) emissions have a high spatial and temporal variability which is commo...
Soil-borne nitrous oxide (N2O) emissions have a high spatial and temporal variability which is commo...
Nitrous oxide (N<sub>2</sub>O) is of major importance as a greenhouse gas and precursor of ozone (O...
Soil-borne nitrous oxide (N2O) emissions have a high spatial and temporal variability which is commo...
<p>N<sub>2</sub>O emission in soils is a consequence of the activity of nitrifying...
International audienceN2O emission in soils is a consequence of the activity of nitrifying and denit...
International audienceN2O emission in soils is a consequence of the activity of nitrifying and denit...
International audienceN2O emission in soils is a consequence of the activity of nitrifying and denit...
International audienceN2O emission in soils is a consequence of the activity of nitrifying and denit...
International audienceN2O emission in soils is a consequence of the activity of nitrifying and denit...
N2O is a highly potent greenhouse gas and arable soils represent its major anthropogenic source. Fie...
N2O is a highly potent greenhouse gas and arable soils represent its major anthropogenic source. Fie...
N2O is a highly potent greenhouse gas and arable soils represent its major anthropogenic source. Fie...
N2O is a highly potent greenhouse gas and arable soils represent its major anthropogenic source. Fie...
Non-Peer ReviewedUnderstanding the production pathways of potent greenhouse gases, such as nitrous o...
Soil-borne nitrous oxide (N2O) emissions have a high spatial and temporal variability which is commo...
Soil-borne nitrous oxide (N2O) emissions have a high spatial and temporal variability which is commo...
Nitrous oxide (N<sub>2</sub>O) is of major importance as a greenhouse gas and precursor of ozone (O...
Soil-borne nitrous oxide (N2O) emissions have a high spatial and temporal variability which is commo...