Gå til innhold
  • Send

  • Kategori

  • Sorter etter

  • Antall per side

Fant 9758 publikasjoner. Viser side 212 av 391:

Publikasjon  
År  
Kategori

Integrating soil moisture satellite retrievals in land surface simulations.

Bakketun, Å.; Blyverket, J.; Lahoz, W.; Luijting, H.; Homleid, M.; Aspelien, T.; Kristiansen, J.; Stordal, F.

2017

Integrating LUCAS data with AI-driven models for predicting soil Salinization across the EU

Zarif, Mohammad Aziz; Hassani, Amirhossein; Panagos, Panos; Lebron, Inma; Robinson, David A.; Shokri, Nima

2024

Integrating Low-cost Sensor Systems and Networks to Enhance Air Quality Applications

Amegah, Kofi; Basart, Sara; Diez, Sebastiàn; Rosales, Colleen Marciel F.; Zimmerman, Naomi; Archer, Jan-Michael; Barreto, África; Bi, Jianzhao; Biggs, Russ; Castell, Nuria; deSouza, Priyanka; Dye, Tim; Fujita, Ryo; Giordano, Michael R.; Gonzalez, Marisa E.; Hasenkopf, Christa; Hassani, Amirhossein; Hodoli, Collins Gameli; Hofman, Jelle; Huneeus, Nicolás Jorge; Jayaratne, Rohan; Kroll, Jesse H.; Labrador, Lorenzo; Legri, Radouane; Levy, Robert C.; Marques, Tomas; Martins, Leila Droprinchinski; McMahon, Ethan; Mead, Mohammed Iqbal; Molina, Luisa T.; Montgomery, Anastasia; Morawska, Lidia; Ning, Zhi; Peltier, Richard; Popoola, Olalekan; Rojas, Néstor; Retama, Armando; Schneider, Philipp; Shairsing, Kerolyn; Strużewska, Joanna; Tang, Beiming; Van Poppel, Martine; Westervelt, Daniel M.; Zhang, Yang; Zheng, Mei

Low-cost air quality sensor systems (LCS) are emerging technologies for policy-relevant air quality analysis, including pollution levels, source identification, and forecasting. This report discusses LCS use in networks and alongside other data sources for comprehensive air quality applications, complementing other WMO publications on LCS operating principles, calibration, performance assessment, and data communication.

The LCS’s utility lies in their ability to provide new insights into air quality that existing data sources may not offer. While LCS data must be verified, their integration with other data sources can enhance understanding and management of air quality. In areas without reference-grade monitors, LCS can identify factors affecting local air quality and guide future monitoring efforts. Combining LCS data with satellite and other air quality systems can improve data reliability and establish corroborating evidence for observed trends. LCS can extend the spatial coverage of existing monitoring networks, offering localized insights and supporting effective air quality management policies. Co-locating LCS with reference-grade monitors helps quantify measurement uncertainties and apply LCS data appropriately for forecasting, source impact analysis, and community engagement.

World Meteorological Organization

2024

Integrated water vapor during rain and rain-free conditions above the Swiss Plateau

Hocke, Klemens; Bernet, Leonie; Wang, Wenyue; Mätzler, Christian; Hervo, Maxime; Haefele, Alexander

Water vapor column density, or vertically-integrated water vapor (IWV), is monitored by ground-based microwave radiometers (MWR) and ground-based receivers of the Global Navigation Satellite System (GNSS). For rain periods, the retrieval of IWV from GNSS Zenith Wet Delay (ZWD) neglects the atmospheric propagation delay of the GNSS signal by rain droplets. Similarly, it is difficult for ground-based dual-frequency single-polarisation microwave radiometers to separate the microwave emission of water vapor and cloud droplets from the rather strong microwave emission of rain. For ground-based microwave radiometry at Bern (Switzerland), we take the approach that IWV during rain is derived from linearly interpolated opacities before and after the rain period. The intermittent rain periods often appear as spikes in the time series of integrated liquid water (ILW) and are indicated by ILW ≥ 0.4 mm. In the present study, we assume that IWV measurements from radiosondes are not affected by rain. We intercompare the climatologies of IWV(rain), IWV(no rain), and IWV(all) obtained by radiosonde, ground-based GNSS atmosphere sounding, ground-based MWR, and ECMWF reanalysis (ERA5) at Payerne and Bern in Switzerland. In all seasons, IWV(rain) is 3.75 to 5.94 mm greater than IWV(no rain). The mean IWV differences between GNSS and radiosonde at Payerne are less than 0.26 mm. The datasets at Payerne show a better agreement than the datasets at Bern. However, the MWR at Bern agrees with the radiosonde at Payerne within 0.41 mm for IWV(rain) and 0.02 mm for IWV(no rain). Using the GNSS and rain gauge measurements at Payerne, we find that IWV(rain) increases with increase of the precipitation rate during summer as well as during winter. IWV(rain) above the Swiss Plateau is quite well estimated by GNSS and MWR though the standard retrievals are limited or hampered during rain periods.

MDPI

2021

Integrated testing for safety of nanoparticles.

Dusinska, M.; El Yamani, N.; Fjellsbø, L.M.; Rundén-Pran E.

2016

Integrated systems for forecasting urban meteorology, air pollution and population exposure.

Baklanov, A.; Hänninen, O.; Slørdal, L.H.; Kukkonen, J.; Bjergene, N.; Fay, B.; Finardi, S.; Hoe, S.C.; Jantunen, M.; Karppinen, A.; Rasmussen, A.; Skouloudis, A.; Sokhi, R.S.; Sørensen, J.H.; Ødegaard, V.

2007

Integrated systems for forecasting urban meteorology, air pollution and population exposure: FUMAPEX achievements.

Baklanov, A.; Bjergene, N.; Deserti, M.; Fay, B.; Finardi, S.; Hanninen, O.; Jantunen, M.; Hoe, S.; Kukkonen, J.; Lollobrigida, F.; Millan, M.; Rasmussen, A.; Rosland, P.; Skouloudis, A.; Slørdal, L. H.; Sokhi, R.

2005

Integrated monitoring: review of case study in PCBs in Slovak Republic. NILU PP

Liu, H.-Y.; Bartonova, A.; Trnovec, T.

2010

Integrated monitoring program on acidification of Chinese terrestrial systems (impacts) - A Chinese-Norwegian cooperation project .

Tang, D.; Lydersen, E.; Seip, H.M.; Angell, V.; Eilertsen, O.; Larssen, T.; Liu, X.; Kong, G.; Mulder, J.; Semb, A.; Solberg, S.; Tørseth, K.; Vogt, R.D.; Xiao, J.; Zhao, D.

2001

Integrated Monitoring Program on Acidification of Chinese Terrestrial Systems - IMPACTS. Annual Report - Results 2003.

Larssen, T.; Dagang, T.; Yi, H. (editors). Authors: Aas, W. (NILU), Tørseth, K. (NILU) et al.

2004

Integrated modeling and monitoring of emerging organic contaminants in the Nordic region. NILU F

Krogseth, I.S.; Breivik, K.; Schlabach, M.; McLachlan, M.S.; Wania, F.; Arnot, J.

2013

Integrated modeling and monitoring of emerging organic contaminants in the Nordic region. NILU F

Krogseth, I.S.; Breivik, K.; Schlabach, M.; McLachlan, M.S.; Wania, F.; Arnot, J.

2013

Integrated modeling and monitoring of emerging organic contaminants in the Nordic region. NILU F

Krogseth, I.S.; Breivik, K.; Schlabach, M.,McLachlan, M.S.; Wania, F.; Arnot, J.

2012

Integrated exposure assessment of northern goshawk (Accipiter gentilis) nestlings to legacy and emerging organic pollutants using non-destructive samples

Briels, Nathalie; Torgersen, Lene Norstrand; Castano-Ortíz, Jose M.; Løseth, Mari Engvig; Herzke, Dorte; Nygård, Torgeir; Bustnes, Jan Ove; Ciesielski, Tomasz Maciej; Poma, Giulia; Malarvannan, Govindan; Covaci, Adrian; Jaspers, Veerle

Elsevier

2019

Integrated assessment of releases of heavy metals in Europe.

Friedrich, R.; Pacyna, J.; Theloke, J.; Nitter, S.; Dutchak, S.; Fantke, P.; Fudala, J.; Hawiczka, S.; Huck, I.; Munthe, J.; Searl, A.; Strzelecka-Jastrzab, E.; Travnikov, O.

2009

Integrated assessment of noise and air quality in European cities. Methodology.

Peris, Eulàlia; Öztürk, Evrim Dogan; Gsella, Artur; Blanes, Núria; Sáinz de la Maza, Miquel; Domingues, Francisco; Soares, Joana; Guerreiro, Cristina; Horálek, Jan

The resulting index provides spatial information on the areas most affected combining noise and air pollution across European urban areas. This information can build on and contribute to the EEA’s integrated assessments and it is going to be used to disseminate information on the European environment to policy makers and to European citizens.

ETC/ATNI

2022

Publikasjon
År
Kategori