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A global database of lake surface temperatures collected by in situ and satellite methods from 1985-2009.

Sharma, S.; Gray, D. K.; Read, J. S.; O'Reilly, C. M.; Schneider, P.; Qudrat, A.; Gries, C.; Stefanoff, S.; Hampton, S. E.; Hook, S.; Lenters, J. D.; Livingstone, D. M.; Mcintyre, P. B.; Adrian, R.; Allan, M. G.; Anneville, O.; Arvola, L.; Austin, J.; Bailey, J.; Baron, J. S.; Brookes, J.; Chen, Y.; Daly, R.; Dokulil, M.; Dong, B.; Ewing, K.; De Eyto, E.; Hamilton, D.; Havens, K.; Haydon, S.; Hetzenauer, H.; Heneberry, J.; Hetherington, A. L.; Higgins, S. N.; Hixson, E.; Izmest'eva, L. R.; Jones, B. M.; Kangur, K.; Kasprzak, P.; Köster, O.; Kraemer, B. M.; Kumagai, M.; Kuusisto, E.; Leshkevich, G.; May, L.; Macintyre, S.; Müller-Navarra, D.; Naumenko, M.; Noges, P.; Noges, T.; Niederhauser, P.; North, R. P.; Paterson, A. M.; Plisnier, P.-D.; Rigosi, A.; Rimmer, A.; Rogora, M.; Rudstam, L.; Rusak, J. A.; Salmaso, N.; Samal, N. R.; Schindler, D. E.; Schladow, G.; Schmidt, S. R.; Schultz, T.; Silow, E. A.; Straile, D.; Teubner, K.; Verburg, P.; Voutilainen, A.; Watkinson, A.; Weyhenmeyer, G. A.; Williamson, C. E.; Woo, K. H.

2015

A global assessment of precipitation chemistry and deposition of sulfur, nitrogen, sea salt, base cations, organic acids, acidity and pH, and phosphorus.

Vet, R.; Artz, R.S.; Carou, S.; Shaw, M.; Ro, C.-U.; Aas, W.; Baker, A.; Bowersox, V.C.; Dentener, F.; Galy-Lacaux, C.; Hou, A.; Pienaar, J.J.; Gillett, R.; Forti, M.C.; Gromov, S.; Hara, H.; Khodzher, T.; Mahowald, N.M, Nickovic, S.; Rao, P.S.P.; Reid, N.W.

2014

A global assemblage of regional prescribed burn records — GlobalRx

Hsu, Alice; Jones, Matthew W.; Thurgood, Jane R.; Smith, Adam J. P.; Carmenta, Rachel; Abatzoglou, John T.; Anderson, Liana O.; Clarke, Hamish; Doerr, Stefan H.; Fernandes, Paulo M.; Kolden, Crystal A.; Santín, Cristina; Strydom, Tercia; Quéré, Corinne Le; Ascoli, Davide; Castellnou, Marc; Goldammer, Johann G.; Guiomar, Nuno Ricardo Gracinhas Nunes; Kukavskaya, Elena A.; Rigolot, Eric; Tanpipat, Veerachai; Varner, Morgan; Yamashita, Youhei; Baard, Johan; Barreto, Ricardo; Becerra, Javier; Brunn, Egbert; Bergius, Niclas; Carlsson, Julia; Cheney, Chad; Druce, Dave; Elliot, Andy; Evans, Jay; Falleiro, Rodrigo De Moraes; Prat-Guitart, Nuria; Hiers, J. Kevin; Kaiser, Johannes; Macher, Lisa; Morris, Dave; Park, Jane; Robles, César; Román-Cuesta, Rosa María; Rücker, Gernot; Senra, Francisco; Steil, Lara; Valverde, Jose Alejandro Lopez; Zerr, Emma

Abstract Prescribed burning (RxB) is a land management tool used widely for reducing wildfire hazard, restoring biodiversity, and managing natural resources. However, RxB can only be carried out safely and effectively under certain seasonal or weather conditions. Under climate change, shifts in the frequency and timing of these weather conditions are expected but analyses of climate change impacts have been restricted to select few regions partly due to a paucity of RxB records at global scale. Here, we introduce GlobalRx, a dataset including 204,517 RxB records from 1979–2023, covering 16 countries and 209 terrestrial ecoregions. For each record, we add a comprehensive suite of meteorological variables that are regularly used in RxB prescriptions by fire management agencies, such as temperature, humidity, and wind speed. We also characterise the environmental setting of each RxB, such as land cover and protected area status. GlobalRx enables the bioclimatic range of conditions suitable for RxB to be defined regionally, thus unlocking new potential to study shifting opportunities for RxB planning and implementation under future climate.

2025

A global analysis of climate-relevant aerosol properties retrieved from the network of Global Atmosphere Watch (GAW) near-surface observatories

Laj, Paolo; Bigi, Alessandro; Rose, Clemence; Andrews, Elisabeth; Myhre, Cathrine Lund; Coen, Martine Collaud; Lin, Yong; Wiedensohler, Alfred; Schulz, Michael; Ogren, John A.; Fiebig, Markus; Gliss, Jonas; Mortier, Augustin; Pandolfi, Marco; Petäjä, Tuukka; Kim, Sang-Woo; Aas, Wenche; Putaud, Jean-Philippe; Mayol-Bracero, Olga; Keywood, Melita; Labrador, Lorenzo; Aalto, Pasi; Ahlberg, Erik; Arboledas, Lucas Alados; Alastuey, Andrés; Andrade, Marcos; Artiñano, Begoña; Ausmeel, Stina; Arsov, Todor; Asmi, Eija; Backman, John; Baltensprenger, Urs; Bastian, Susanne; Bath, Olaf; Beukes, Johan Paul; Brem, Benjamin T.; Bukowiecki, Nicolas; Conil, Sébastien; Couret, Cedric; Day, Derek; Dayantolis, Wan; Degorska, Anna; Eleftheriadis, Konstantinos; Fetfatzis, Prodromos; Favez, Olivier; Flentje, Harald; Gini, Maria I.; Gregorič, Asta; Gysel-Beer, Martin; Hallar, A. Gannet; Hand, Jenny; Hoffer, András; Hueglin, Christoph; Hooda, Rakesh K.; Hyvärinen, Antti; Kalapov, Ivo; Kalivitis, Nikos; Kasper-Giebl, Anne; Kim, Jeong Eun; Kouvarakis, Giorgos; Kranjc, Irena; Krejci, Radovan; Kulmala, Markku; Labuschagne, Casper; Lee, Hae-Jung; Lihavainen, Heikki; Lin, Neng-Huei; Löschau, Gunter; Luoma, Krista; Marinoni, Angela; Santos, Sebastiao Martins Dos; Meinhardt, Frank; Merkel, Maik; Metzger, Jean-Marc; Mihalopoulos, Nikolaos; Nguyen, Nhat Anh; Ondráček, Jakub; Pérez, Noemi; Perrone, Maria Rita; Petit, Jean-Eudes; Picard, David; Pichon, Jean-Marc; Pont, Veronique; Prats, Natalia; Prenni, Anthony; Reisen, Fabienne; Romano, Salvatore; Sellegri, Karine; Sharma, Sangeeta; Schauer, Gerhard; Sheridan, Patrick; Sherman, James Patrick; Schütze, Maik; Schwerin, Andreas; Sohmer, Ralf; Sorribas, Mar; Steinbacher, Martin; Sun, Junying; Titos, Gloria; Toczko, Barbara; Tuch, Thomas; Tulet, Pierre; Tunved, Peter; Vakkari, Ville; Velarde, Fernando; Velasquez, Patricio; Villani, Paolo; Vratolis, Sterios; Wang, Sheng-Hsiang; Weinhold, Kay; Weller, Rolf; Yela, Margarita; Yus-Diez, Jesus; Ždímal, Vladimir; Zieger, Paul; Ziková, Naděžda

Aerosol particles are essential constituents of the Earth's atmosphere, impacting the earth radiation balance directly by scattering and absorbing solar radiation, and indirectly by acting as cloud condensation nuclei. In contrast to most greenhouse gases, aerosol particles have short atmospheric residence times, resulting in a highly heterogeneous distribution in space and time. There is a clear need to document this variability at regional scale through observations involving, in particular, the in situ near-surface segment of the atmospheric observation system. This paper will provide the widest effort so far to document variability of climate-relevant in situ aerosol properties (namely wavelength dependent particle light scattering and absorption coefficients, particle number concentration and particle number size distribution) from all sites connected to the Global Atmosphere Watch network. High-quality data from almost 90 stations worldwide have been collected and controlled for quality and are reported for a reference year in 2017, providing a very extended and robust view of the variability of these variables worldwide. The range of variability observed worldwide for light scattering and absorption coefficients, single-scattering albedo, and particle number concentration are presented together with preliminary information on their long-term trends and comparison with model simulation for the different stations. The scope of the present paper is also to provide the necessary suite of information, including data provision procedures, quality control and analysis, data policy, and usage of the ground-based aerosol measurement network. It delivers to users of the World Data Centre on Aerosol, the required confidence in data products in the form of a fully characterized value chain, including uncertainty estimation and requirements for contributing to the global climate monitoring system.

2020

A global analysis of climate-relevant aerosol properties retrieved from the network of GAW near-surface observatories

Laj, Paolo; Rose, Clemence; Bigi, Alessandro; Coen, Martine Collaud; Andrews, Elisabeth; Myhre, Cathrine Lund; Fiebig, Markus; Aas, Wenche; Wiedensohler, Alfred; Schulz, Michael; Mortier, Augustin; Gliss, Jonas; Putaud, Jean-Philippe; Kim, Sang-Woo; Mayol, Olga; Keywood, Melita; Petäjä, Tuukka; Pandolfi, Marco; Labrador, Lorenzo; Ogren, John; team, The SARGAN

2020

A GIS based Air Quality Management System. NILU F

Sivertsen, B.; Naseer, A.A.

2000

A geostationary thermal infrared sensor to monitor the lowermost troposphere: O3 and CO retrieval studies.

Claeyman, M.; Attié, J.-L.; Peuch, V.-H.; El Amraoui, L.; Lahoz, W.A.; Josse, B.; Ricaud, P.; von Clarmann, T.; Höpfner, M.; Orphal, J.; Flaud, J.-M.; Edwards, D.P.; Chance, K.; Liu, X.; Pasternak, F.; Cantié, R.

2011

A generic database for earth observation data. The ESA campaign data service.

Vik, A.F.; Krognes, T, Bjørndalsæter, S.; Stoll, C.; Walker, S.E.; Gloslie, B.; Paltiel, R.; Bårde, T.; Våler, R.L.

2005

A framework for advancing independent air quality sensor measurements via transparent data generating process classification

Diez, Sebastiàn; Bannan, Thomas J.; Chacón-Mateos, Miriam; Edwards, Pete M.; Ferracci, Valerio; Kilic, Dogushan; Lewis, Alastair C.; Malings, Carl; Martin, Nicholas A.; Popoola, Olalekan; Rosales, Colleen Marciel F.; Schmitz, Sean; Schneider, Philipp; Schneidemesser, Erika von

We propose operational definitions and a classification framework for air quality sensor-derived data, thereby aiding users in interpreting and selecting suitable data products for their applications. We focus on differentiating independent sensor measurements (ISM) from other data products, emphasizing transparency and traceability. Recommendations are provided for manufacturers, academia, and standardization bodies to adopt these definitions, fostering data product differentiation and incentivizing the development of more robust, reliable sensor hardware.

2025

A flexible algorithm for network design based on information theory

Thompson, Rona Louise; Pisso, Ignacio

A novel method for atmospheric network design is presented, which is based on information theory. The method does not require calculation of the posterior uncertainty (or uncertainty reduction) and is therefore computationally more efficient than methods that require this. The algorithm is demonstrated in two examples: the first looks at designing a network for monitoring CH4 sources using observations of the stable carbon isotope ratio in CH4 (δ13C), and the second looks at designing a network for monitoring fossil fuel emissions of CO2 using observations of the radiocarbon isotope ratio in CO2 (Δ14CO2).

2023

A first risk assessment of pharmaceuticals and additives in personal care products in effluents and recipient waters from Faroe Islands, Iceland and Greenland. NILU PP

Huber, S.; Goetsch, A.; Remberger, M.; Davanger, K.; Kaj, L.; Herzke, D.; Schlabach, M.; Jørundsdóttir, H.Ó.; Vester, J.; Arnórsson, M.; Mortensen, I.; Schwartson, R.; Dam, M.

2014

A first evaluation of the usefulness of feathers of nestling predatory birds for non-destructive biomonitoring of persistent organic pollutants.

Eulaers, I.; Covaci, A.; Herzke, D.; Eens, M.; Sonne, C.; Moum, T.; Schnug, L.; Hanssen, S.A.; Johnsen, T.V.; Bustnes, J.O.; Jaspers, V.L.B.

2011

A First Estimate of Present and Future Shortwave Radiative Forcing due to Tyre and Brake Wear Microplastics

Kylling, Arve; Evangeliou, Nikolaos; Eckhardt, Sabine; Stohl, Andreas

2022

A European exposure modelling aproach: Impact of socio-demiographic factors on time-use. NILU PP

Yang, A.; Loh, M.; Kuhn, A.; Bartonova, A.; Gerharz, L.

2010

A European aerosol phenomenology. Physical and chemical characteristics of particulate matter at kerbside, urban, rural and background sites in Europe. EUR 20411 EN

Putaud, J.-P.; Van Dinegen, R.; Battensberger, U.; Brüggemann, E.; Charron, A.; Facchini, M.C.; Decesari, S.; Fuzzi, S.; Gehrig, R.; Hansson, H.-C.; Harrison, R.M.; Jones, A.M.; Laj, P.; Lorbeer, G.; Maenhaut, W.; Mihalopoulos, N.; Müller, K.; Palmgren, F.; Querol, X.; Rodriguez, S.; Schneider, J.; Spindler, G.; ten Brink, H.; Tunved, P.; Tørseth, K.; Wehner, B.; Weingartner, E.; Wiedensohler, A.; Wählin, P.; Raes, F.

2003

A European aerosol phenomenology-4: Harmonized concentrations of carbonaceous aerosol at 10 regional background sites across Europe.

Cavalli, F.; Alastuey, A.; Areskoug, H.; Ceburnis, D.; Cech, J.; Genberg, J.; Harrison, R.M.; Jaffrezo, J.L.; Kiss, G.; Laj, P.; Mihalopoulos, N.; Perez, N.; Quincey, P.; Schwarz, J.; Sellegri, K.; Spindler, G.; Swietlicki, E.; Theodosi, C.; Yttri, K.E.; Aas, W.; Putaud, J.P.

2016

A European aerosol phenomenology-2: chemical characteristics of particulate matter at kerbside, urban, rural and background sites in Europe.

Putaud, J.P.; Raes, F.; Van Dingenen, R.; Brüggemann, E.; Facchini, M.C.; Decesari, S.; Fuzzi, S.; Gehrig, R.; Huglin, C.; Laj, P.; Lorbeer, G.; Maenhaut, W.; Mihalopoulos, N.; Müller, K.; Querol, X.; Rodriguez, S.; Schneider, J.; Spindler, G.; ten Brink, H.; Tørseth, K.; Wiedensohler, A.

2004

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