Using high-frequency soil oxygen sensors to predict greenhouse gas emissions from wetlands. Read more about Using high-frequency soil oxygen sensors to predict greenhouse gas emissions from wetlands.
Plant species and hydrology as controls on constructed wetland methane fluxes. Read more about Plant species and hydrology as controls on constructed wetland methane fluxes.
Seasonal salinization decreases spatial heterogeneity of sulfate reducing activity. Read more about Seasonal salinization decreases spatial heterogeneity of sulfate reducing activity.
Reply to Wassmann et al.: More data at high sampling intensity from medium-and intense-intermittently flooded rice farms is crucial. Read more about Reply to Wassmann et al.: More data at high sampling intensity from medium-and intense-intermittently flooded rice farms is crucial.
Improved monitoring strategies for understanding greenhouse gas emissions from variable saturated landscapes. Read more about Improved monitoring strategies for understanding greenhouse gas emissions from variable saturated landscapes.
Before the storm: Antecedent conditions as regulators of hydrologic and biogeochemical response to extreme climate events. Read more about Before the storm: Antecedent conditions as regulators of hydrologic and biogeochemical response to extreme climate events.
Reply to Wassmann et al: More data at high sampling intensity from medium- and intense-intermittently flooded rice farms is crucial. Read more about Reply to Wassmann et al: More data at high sampling intensity from medium- and intense-intermittently flooded rice farms is crucial.
Reply to Yan and Akiyama: Nitrous oxide emissions from rice and their mitigation potential depend on the nature of intermittent flooding. Read more about Reply to Yan and Akiyama: Nitrous oxide emissions from rice and their mitigation potential depend on the nature of intermittent flooding.
High nitrous oxide fluxes from rice indicate the need to manage water for both long- and short-term climate impacts. Read more about High nitrous oxide fluxes from rice indicate the need to manage water for both long- and short-term climate impacts.
Seasonal salinization decreases spatial heterogeneity of sulfate reducing activity. Read more about Seasonal salinization decreases spatial heterogeneity of sulfate reducing activity.