A twelve-station tower-based observation network measuring CO2, CH4, and CO was deployed in and around the Indianapolis, IN metropolitan area as part of the Indianapolis Flux Experiment (INFLUX). Measurements began in 2010 and the full network was deployed by 2013. Observations were made at heights ranging from 39 to 136 m above ground level using existing communication towers. Several towers in the network had multiple measurement levels. Cavity ring-down spectrometers (CRDS) were used at all twelve sites and at least one calibrated reference tank was sampled daily at each site. Real time data communications were performed via cellular modems and data were transmitted daily for processing and quality assurance checks. Data quality control ...
Improved quantification of carbon-cycle sources and sinks is an important requirement for determinin...
To monitor the continental carbon cycle, a fully automated low maintenance measurement system is ins...
Ground-based measurements of atmospheric trace gas species and criteria pollutants are essential for...
A twelve-station tower-based observation network measuring CO2, CH4, and CO was deployed in and arou...
A network of three tall tower measurement stations was set up in 2012 across the United Kingdom to e...
A network of three tall tower measurement stations was set up in 2012 across the United Kingdom to ...
In order to constrain the regional flux of greenhouse gases, an automated measurement system was bui...
International audienceResults from the Trainou tall tower measurement station installed in 2006 are ...
The understanding of the continental carbon budget is essential to predict future climate change. In...
We have developed an automated observatory for measuring atmospheric column abundances of CO_2 and O...
Quasi-continuous, in-situ measurements of atmospheric CO<sub>2</sub>, O-2/N-2, CH<sub>4</sub>, CO, N...
International audienceTo monitor the continental carbon cycle, a fully automated low maintenance mea...
Very accurate long-term measurements of atmospheric CO2 concentrationsbi are needed to understand th...
Looking at seasonality and overall trends for different greenhouse gases allows scientists develop m...
Improved quantification of carbon-cycle sources and sinks is an important requirement for determinin...
To monitor the continental carbon cycle, a fully automated low maintenance measurement system is ins...
Ground-based measurements of atmospheric trace gas species and criteria pollutants are essential for...
A twelve-station tower-based observation network measuring CO2, CH4, and CO was deployed in and arou...
A network of three tall tower measurement stations was set up in 2012 across the United Kingdom to e...
A network of three tall tower measurement stations was set up in 2012 across the United Kingdom to ...
In order to constrain the regional flux of greenhouse gases, an automated measurement system was bui...
International audienceResults from the Trainou tall tower measurement station installed in 2006 are ...
The understanding of the continental carbon budget is essential to predict future climate change. In...
We have developed an automated observatory for measuring atmospheric column abundances of CO_2 and O...
Quasi-continuous, in-situ measurements of atmospheric CO<sub>2</sub>, O-2/N-2, CH<sub>4</sub>, CO, N...
International audienceTo monitor the continental carbon cycle, a fully automated low maintenance mea...
Very accurate long-term measurements of atmospheric CO2 concentrationsbi are needed to understand th...
Looking at seasonality and overall trends for different greenhouse gases allows scientists develop m...
Improved quantification of carbon-cycle sources and sinks is an important requirement for determinin...
To monitor the continental carbon cycle, a fully automated low maintenance measurement system is ins...
Ground-based measurements of atmospheric trace gas species and criteria pollutants are essential for...