Publications
- 4 results
- Tag: ClO2
- Tag: Network
- Tag: Weather
- Clear all
2020, Leuenberger, D., Haefele, A., Omanovic, N., Fengler, M., Martucci, G., Calpini, B., Fuhrer, O., and Rossa, A., Improving high-impact numerical weather prediction with lidar and drone observations, Bulletin of the American Meteorological Society, https://doi.org/10.1175/BAMS-D-19-0119.1
Tags: Lidar, Weather
2008, Gardiner, T., Forbes, A., De Mazière, M., Vigouroux, C., Mahieu, E., Demoulin, P., Velazco, V., Notholt, J., Blumenstock, T., Hase, F., Kramer, I., Sussmann, R., Stremme, W., Mellqvist, J., Strandberg, A., Ellingsen, K., and Gauss, M., Trend analysis of greenhouse gases over Europe measured by a network of ground-based remote FTIR instruments, Atmospheric Chemistry and Physics, 8, 6719-6727
Tags: FTIR, Network, Trends
1993, Solomon, S., R.W. Sanders, R.R. Garcia, J.G. Keys, Increased chlorine dioxide over Antarctica caused by volcanic aerosols from Mount Pinatubo, Nature, 363, 245- 248
Tags: Aerosol, ClO2, UVVis, Volcano
1991, Miller, A.J., Monitoring the stratosphere with satellites and the network for detection of stratospheric change, Global and Planetary Change, 4: 69-71, https://doi.org/10.1016/0921-8181(91)90072-5
Tags: Historical, Network, Satellite