Zobrazeno 1 - 10
of 2 423
pro vyhledávání: '"A. Kouvarakis"'
Autor:
Florou, Kalliopi, Liangou, Aikaterini, Kaltsonoudis, Christos, Louvaris, Evangelos, Tasoglou, Antonios, Patoulias, David, Kouvarakis, Giorgos, Kalivitis, Nikos, Kourtchev, Ivan, Kalberer, Markus, Tsagkaraki, Maria, Mihalopoulos, Nikolaos, Pandis, Spyros N.
Publikováno v:
In Atmospheric Environment 1 May 2024 324
Autor:
Varamogianni-Mamatsi, Despoina, Anastasiou, Thekla I., Vernadou, Emmanouela, Kouvarakis, Nikos, Kagiampaki, Eirini, Kalogerakis, Nicolas, Dailianis, Thanos, Mandalakis, Manolis
Publikováno v:
In Science of the Total Environment 15 November 2023 899
Autor:
Gialesakis, Nikos, Kalivitis, Nikos, Kouvarakis, Giorgos, Ramonet, Michel, Lopez, Morgan, Kwok, Camille Yver, Narbaud, Clement, Daskalakis, Nikos, Mermigkas, Marios, Mihalopoulos, Nikolaos, Kanakidou, Maria
Publikováno v:
In Science of the Total Environment 15 March 2023 864
Autor:
Achilleos, Souzana, Michanikou, Antonis, Kouis, Panayiotis, Papatheodorou, Stefania I., Panayiotou, Andrie G., Kinni, Paraskevi, Mihalopoulos, Nikos, Kalivitis, Nikos, Kouvarakis, Giorgos, Galanakis, Emmanouil, Michailidi, Eleni, Tymvios, Filippos, Chrysanthou, Andreas, Neophytou, Marina, Mouzourides, Petros, Savvides, Chrysanthos, Vasiliadou, Emily, Papasavvas, Ilias, Christophides, Theodoros, Nicolaou, Rozalia, Avraamides, Panayiotis, Kang, Choong-Min, Middleton, Nicos, Koutrakis, Petros, Yiallouros, Panayiotis K.
Publikováno v:
In Science of the Total Environment 10 March 2023 863
Autor:
Violaki, Kalliopi, Tsiodra, Irini, Nenes, Athanasios, Tsagkaraki, Maria, Kouvarakis, Giorgos, Zarmpas, Pavlos, Florou, Kalliopi, Panagiotopoulos, Christos, Ingall, Ellery, Weber, Rodney, Mihalopoulos, Nikos
Publikováno v:
In Science of the Total Environment 15 July 2022 830
Publikováno v:
In Atmospheric Environment 1 May 2022 276
Autor:
D. Bousiotis, F. D. Pope, D. C. S. Beddows, M. Dall'Osto, A. Massling, J. K. Nøjgaard, C. Nordstrøm, J. V. Niemi, H. Portin, T. Petäjä, N. Perez, A. Alastuey, X. Querol, G. Kouvarakis, N. Mihalopoulos, S. Vratolis, K. Eleftheriadis, A. Wiedensohler, K. Weinhold, M. Merkel, T. Tuch, R. M. Harrison
Publikováno v:
Atmospheric Chemistry and Physics, Vol 21, Pp 11905-11925 (2021)
New particle formation (NPF) events occur almost everywhere in the world and can play an important role as a particle source. The frequency and characteristics of NPF events vary spatially, and this variability is yet to be fully understood. In the p
Externí odkaz:
https://doaj.org/article/3c32bade8ef7409ba8a09e459f1b5005
Autor:
D. Bousiotis, J. Brean, F. D. Pope, M. Dall'Osto, X. Querol, A. Alastuey, N. Perez, T. Petäjä, A. Massling, J. K. Nøjgaard, C. Nordstrøm, G. Kouvarakis, S. Vratolis, K. Eleftheriadis, J. V. Niemi, H. Portin, A. Wiedensohler, K. Weinhold, M. Merkel, T. Tuch, R. M. Harrison
Publikováno v:
Atmospheric Chemistry and Physics, Vol 21, Pp 3345-3370 (2021)
Although new particle formation (NPF) events have been studied extensively for some decades, the mechanisms that drive their occurrence and development are yet to be fully elucidated. Laboratory studies have done much to elucidate the molecular proce
Externí odkaz:
https://doaj.org/article/667fe33586a54c08ae72b724253333f0
Autor:
Methymaki, Georgia, Bossioli, Elissavet, Kalogiros, John, Kouvarakis, Giorgos, Mihalopoulos, Nikolaos, Nenes, Athanasios, Tombrou, Maria
Publikováno v:
In Atmospheric Environment 15 June 2020 231
Autor:
P. Laj, A. Bigi, C. Rose, E. Andrews, C. Lund Myhre, M. Collaud Coen, Y. Lin, A. Wiedensohler, M. Schulz, J. A. Ogren, M. Fiebig, J. Gliß, A. Mortier, M. Pandolfi, T. Petäja, S.-W. Kim, W. Aas, J.-P. Putaud, O. Mayol-Bracero, M. Keywood, L. Labrador, P. Aalto, E. Ahlberg, L. Alados Arboledas, A. Alastuey, M. Andrade, B. Artíñano, S. Ausmeel, T. Arsov, E. Asmi, J. Backman, U. Baltensperger, S. Bastian, O. Bath, J. P. Beukes, B. T. Brem, N. Bukowiecki, S. Conil, C. Couret, D. Day, W. Dayantolis, A. Degorska, K. Eleftheriadis, P. Fetfatzis, O. Favez, H. Flentje, M. I. Gini, A. Gregorič, M. Gysel-Beer, A. G. Hallar, J. Hand, A. Hoffer, C. Hueglin, R. K. Hooda, A. Hyvärinen, I. Kalapov, N. Kalivitis, A. Kasper-Giebl, J. E. Kim, G. Kouvarakis, I. Kranjc, R. Krejci, M. Kulmala, C. Labuschagne, H.-J. Lee, H. Lihavainen, N.-H. Lin, G. Löschau, K. Luoma, A. Marinoni, S. Martins Dos Santos, F. Meinhardt, M. Merkel, J.-M. Metzger, N. Mihalopoulos, N. A. Nguyen, J. Ondracek, N. Pérez, M. R. Perrone, J.-E. Petit, D. Picard, J.-M. Pichon, V. Pont, N. Prats, A. Prenni, F. Reisen, S. Romano, K. Sellegri, S. Sharma, G. Schauer, P. Sheridan, J. P. Sherman, M. Schütze, A. Schwerin, R. Sohmer, M. Sorribas, M. Steinbacher, J. Sun, G. Titos, B. Toczko, T. Tuch, P. Tulet, P. Tunved, V. Vakkari, F. Velarde, P. Velasquez, P. Villani, S. Vratolis, S.-H. Wang, K. Weinhold, R. Weller, M. Yela, J. Yus-Diez, V. Zdimal, P. Zieger, N. Zikova
Publikováno v:
Atmospheric Measurement Techniques, Vol 13, Pp 4353-4392 (2020)
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
Externí odkaz:
https://doaj.org/article/19a4fc184512448f83e72c5643d46ccd