    {"instituterec":{"StatusID":1,"InsID":408,"StandardName":"Belgisch Instituut voor Ruimte-Aeronomie","OrigName":"Royal Belgian Institute for Space Aeronomy","OrigNameLangCode":"en","OrigNameLangID":15,"Acronym":"BIRA","HigherInsID":null,"VlizCoreFlag":1,"AdrID":111336,"Line1":"Ringlaan 3","Line2":"1180 Brussel","Line3":null,"Line4":null,"Phone":null,"GSM":null,"Email":null,"Lat":"50.7994800","Lon":"4.3577270","OrigNameLang":"English","OrigNameLangNL":"Engels","AbstractEnglish":null,"AbstractOtherLang":null,"AbstractLangCode":null,"AbstractLangID":null,"AbstractLang":null,"AbstractLangNL":null,"SuccessorOfInsID":null,"DateLastModified":{"date":"2024-06-04 01:34:19.073000","timezone_type":1,"timezone":"+00:00"},"PrevIns":null,"PrevAcro":null,"PublicFlag":1,"CheckedFlag":0,"ParID":null,"InstituteType":"Scientific","EnvName":"Belgium","ISO3166":"BE","LevelName":null,"ND":"2003-11-26","UD":"2009-02-17","EncAddress":", Ringlaan 3, 1180 Brussel, Belgium"},"parent":null,"institutes":null,"references":[{"BRefID":382701,"RR":"<b>Chen, Y.Y.; Liu, S.; Zhu, L.; Seo, S.; Richter, A.; Li, X.C.; Ding, A.; Sun, W.F.; Shu, L.; Wang, X.; Valks, P.; Hendrick, F.; Koenig, T.K.; Volkamer, R.; Bai, B.; Wang, D.K.; Pu, D.C.; Sun, S.; Li, J.; Zuo, X.X.; Fu, W.T.; Li, Y.L.; Zhang, P.; Yang, X.; Fu, T.M.</b> (2023). Global observations of tropospheric Bromine monoxide (BrO) columns from TROPOMI. <i>JGR: Atmospheres 128(24)</i>: e2023JD039091. <a href=\"https://dx.doi.org/10.1029/2023JD039091\" target=\"_blank\">https://dx.doi.org/10.1029/2023JD039091</a>","PeerRev":1},{"BRefID":363478,"RR":"<b>Dayton-Oxland, R.; Huybrighs, H.L.F.; Winterhalder, T.O.; Mahieux, A.; Goldstein, D.</b> (2023). In-situ detection of Europa's water plumes is harder than previously thought. <i>Icarus 395</i>: 115488. <a href=\"https://dx.doi.org/10.1016/j.icarus.2023.115488\" target=\"_blank\">https://dx.doi.org/10.1016/j.icarus.2023.115488</a>","PeerRev":1},{"BRefID":363516,"RR":"<b>Kluge, F.; Hüneke, T.; Lerot, C.; Rosanka, S.; Rotermund, M.K.; Taraborrelli, D.; Weyland, B.; Pfeilsticker, K.</b> (2023). Airborne glyoxal measurements in the marine and continental atmosphere: comparison with TROPOMI observations and EMAC simulations. <i>Atmos. Chem. Phys. 23(2)</i>: 1369-1401. <a href=\"https://dx.doi.org/10.5194/acp-23-1369-2023\" target=\"_blank\">https://dx.doi.org/10.5194/acp-23-1369-2023</a>","PeerRev":1},{"BRefID":382785,"RR":"<b>Van Roy, W.; Van Roozendael, B.; Vigin, L.; Van Nieuwenhove, A.; Scheldeman, K.; Merveille, J.B.; Weigelt, A.; Mellqvist, J.; Van Vliet, J.; van Dinther, D.; Beecken, J.; Tack, F.; Theys, N.; Maes, F.</b> (2023). International maritime regulation decreases sulfur dioxide but increases nitrogen oxide emissions in the North and Baltic Sea. <i>Commun. Earth Environ. 4(1)</i>: 391. <a href=\"https://dx.doi.org/10.1038/s43247-023-01050-7\" target=\"_blank\">https://dx.doi.org/10.1038/s43247-023-01050-7</a>","PeerRev":1},{"BRefID":382899,"RR":"<b>Wales, P.A.; Keller, C.A.; Knowland, K.E.; Pawson, S.; Choi, S.; Hendrick, F.; Van Roozendael, M.; Salawitch, R.J.; Sulieman, R.; Swanson, W.F.</b> (2023). Application of satellite-based detections of Arctic bromine explosion events within GEOS-Chem. <i>J. Adv. Model. Earth Syst. 15(8)</i>: e2022MS003465. <a href=\"https://dx.doi.org/10.1029/2022MS003465\" target=\"_blank\">https://dx.doi.org/10.1029/2022MS003465</a>","PeerRev":1},{"BRefID":361493,"RR":"<b>Inness, A.; Aben, I.; Ades, M.; Borsdorff, T.; Flemming, J.; Jones, L.; Landgraf, J.; Langerock, B.; Nédélec, P.; Parrington, M.; Ribas, R.</b> (2022). Assimilation of S5P/TROPOMI carbon monoxide data with the global CAMS near-real-time system. <i>Atmos. Chem. Phys. 22(21)</i>: 14355-14376. <a href=\"https://dx.doi.org/10.5194/acp-22-14355-2022\" target=\"_blank\">https://dx.doi.org/10.5194/acp-22-14355-2022</a>","PeerRev":1},{"BRefID":353116,"RR":"<b>Mascaut, F.; Pujol, O.; Verreyken, B.; Peroni, R.; Metzger, J.M.; Blarel, L.; Podvin, T.; Goloub, P.; Sellegri, K.; Thornberry, T.; Duflot, V.; Tulet, P.; Brioude, J.</b> (2022). Aerosol characterization in an oceanic context around Reunion Island (AEROMARINE field campaign). <i>Atmos. Environ. (1994) 268</i>: 118770. <a href=\"https://dx.doi.org/10.1016/j.atmosenv.2021.118770\" target=\"_blank\">https://dx.doi.org/10.1016/j.atmosenv.2021.118770</a>","PeerRev":1},{"BRefID":352550,"RR":"<b>Takashima, H.; Kanaya, Y.; Kato, S.; Friedrich, M.M.; Van Roozendael, M.; Taketani, F.; Miyakawa, T.; Komazaki, Y.; Cuevas, C.A.; Saiz-Lopez, A.; Sekiya, T.</b> (2022). Full latitudinal marine atmospheric measurements of iodine monoxide. <i>Atmos. Chem. Phys. 22(6)</i>: 4005-4018. <a href=\"https://dx.doi.org/10.5194/acp-22-4005-2022\" target=\"_blank\">https://dx.doi.org/10.5194/acp-22-4005-2022</a>","PeerRev":1},{"BRefID":352779,"RR":"<b>Taylor, T.E.; O’Dell, C.W.; Crisp, D.; Kuze, A.; Lindqvist, H.; Wennberg, P.O.; Chatterjee, A.; Gunson, M.; Eldering, A.; Fisher, B.; Kiel, M.; Nelson, R.N.; Merrelli, A.; Osterman, G.; Chevallier, F.; Palmer, P.I.; Feng, L.; Deutscher, N.M.; Dubey, M.K.; Feist, D.G.; García, O.E.; Griffith, D.W.T.; Hase, F.; Iraci, L.T.; Kivi, R.; Liu, C.; De Mazière, M.; Morino, I.; Notholt, J.; Oh, Y.-S.; Ohyama, H.; Pollard, D.F.; Rettinger, M.; Schneider, M.; Roehl, C.M.; Sha, M.K.; Shiomi, K.; Strong, K.; Sussmann, R.; Té, Y.; Velazco, V.A.; Vrekoussis, M.; Warneke, T.; Wunch, D.</b> (2022). An 11-year record of XCO<sub>2</sub> estimates derived from GOSAT measurements using the NASA ACOS version 9 retrieval algorithm. <i>ESSD 14(1)</i>: 325-360. <a href=\"https://dx.doi.org/10.5194/essd-14-325-2022\" target=\"_blank\">https://dx.doi.org/10.5194/essd-14-325-2022</a>","PeerRev":1},{"BRefID":352775,"RR":"<b>Van Malderen, R.; Pottiaux, E.; Stankunavicius, G.; Beirle, S.; Wagner, T.; Brenot, H.; Bruyninx, C.; Jones, J.</b> (2022). Global spatiotemporal variability of integrated water vapor derived from GPS, GOME/SCIAMACHY and ERA-Interim: annual cycle, frequency distribution and linear trends. <i>Remote Sens. 14(4)</i>: 1050. <a href=\"https://dx.doi.org/10.3390/rs14041050\" target=\"_blank\">https://dx.doi.org/10.3390/rs14041050</a>","PeerRev":1},{"BRefID":353153,"RR":"<b>Dhooghe, F.; De Keyser, J.; Hänni, N.; Altwegg, K.; Cessateur, G.; Jehin, E.; Maggiolo, R.; Rubin, M.; Wurz, P.</b> (2021). Chlorine-bearing species and the <sup>37</sup>Cl/<sup>35</sup>Cl isotope ratio in the coma of comet 67P/Churyumov-Gerasimenko. <i>Monthly Notices of the Royal Astronomical Society 508(1)</i>: 1020-1032. <a href=\"https://dx.doi.org/10.1093/mnras/stab1732\" target=\"_blank\">https://dx.doi.org/10.1093/mnras/stab1732</a>","PeerRev":1},{"BRefID":353578,"RR":"<b>Noël, S.; Reuter, M.; Buchwitz, M.; Borchardt, J.; Hilker, M.; Bovensmann, H.; Burrows, J.P.; Di Noia, A.; Suto, H.; Yoshida, Y.; Buschmann, M.; Deutscher, N.M.; Feist, D.G.; Griffith, D.W.T.; Hase, F.; Kivi, R.; Morino, I.; Notholt, J.; Ohyama, H.; Petri, C.; Podolske, J.R.; Pollard, D.F.; Sha, M.K.; Shiomi, K.; Sussmann, R.; Té, Y.; Velazco, V.A.; Warneke, T.</b> (2021). XCO<sub>2</sub> retrieval for GOSAT and GOSAT-2 based on the FOCAL algorithm. <i>AMT 14(5)</i>: 3837-3869. <a href=\"https://dx.doi.org/10.5194/amt-14-3837-2021\" target=\"_blank\">https://dx.doi.org/10.5194/amt-14-3837-2021</a>","PeerRev":1},{"BRefID":353046,"RR":"<b>Pseftogkas, A.; Koukouli, M.-E.; Skoulidou, I.; Balis, D.; Meleti, C.; Stavrakou, T.; Falco, L.; van Geffen, J.; Eskes, H.; Segers, A.; Manders, A.</b> (2021). A new separation methodology for the maritime sector emissions over the Mediterranean and Black Sea regions. <i>Atmosphere 12(11)</i>: 1478. <a href=\"https://dx.doi.org/10.3390/atmos12111478\" target=\"_blank\">https://dx.doi.org/10.3390/atmos12111478</a>","PeerRev":1},{"BRefID":353169,"RR":"<b>Sha, M.K.; Langerock, B.; Blavier, J.-F.L.; Blumenstock, T.; Borsdorff, T.; Buschmann, M.; Dehn, A.; De Mazière, M.; Deutscher, N.M.; Feist, D.G.; García, O.E.; Griffith, D.W.T.; Grutter, M.; Hannigan, J.W.; Hase, F.; Heikkinen, P.; Hermans, C.; Iraci, L.T.; Jeseck, P.; Jones, N.; Kivi, R.; Kumps, N.; Landgraf, J.; Lorente, A.; Mahieu, E.; Makarova, M.V.; Mellqvist, J.; Metzger, J.-M.; Morino, I.; Nagahama, T.; Notholt, J.; Ohyama, H.; Ortega, I.; Palm, M.; Petri, C.; Pollard, D.F.; Rettinger, M.; Robinson, J.; Roche, S.; Roehl, C.M.; Röhling, A.N.; Rousogenous, C.; Schneider, M.; Shiomi, K.; Smale, D.; Stremme, W.; Strong, K.; Sussmann, R.; Té, Y.; Uchino, O.; Velazco, V.A.; Vigouroux, C.; Vrekoussis, M.; Wang, P.; Warneke, T.; Wizenberg, T.; Wunch, D.; Yamanouchi, S.; Yang, Y.; Zhou, M.</b> (2021). Validation of methane and carbon monoxide from Sentinel-5 Precursor using TCCON and NDACC-IRWG stations. <i>AMT 14(9)</i>: 6249-6304. <a href=\"https://dx.doi.org/10.5194/amt-14-6249-2021\" target=\"_blank\">https://dx.doi.org/10.5194/amt-14-6249-2021</a>","PeerRev":1},{"BRefID":353015,"RR":"<b>Simu, S.A.; Miyazaki, Y.; Tachibana, E.; Finkenzeller, H.; Brioude, J.; Colomb, A.; Magand, O.; Verreyken, B.; Evan, S.; Volkamer, R.; Stavrakou, T.</b> (2021). Origin of water-soluble organic aerosols at the Maido high-altitude observatory, Reunion Island, in the tropical Indian Ocean. <i>Atmos. Chem. Phys. 21(22)</i>: 17017-17029. <a href=\"https://dx.doi.org/10.5194/acp-21-17017-2021\" target=\"_blank\">https://dx.doi.org/10.5194/acp-21-17017-2021</a>","PeerRev":1},{"BRefID":353269,"RR":"<b>Verreyken, B.; Amelynck, C.; Schoon, N.; Müller, J.-F.; Brioude, J.; Kumps, N.; Hermans, C.; Metzger, J.-M.; Colomb, A.; Stavrakou, T.</b> (2021). Measurement report: source apportionment of volatile organic compounds at the remote high-altitude Maido observatory. <i>Atmos. Chem. Phys. 21(17)</i>: 12965-12988. <a href=\"https://dx.doi.org/10.5194/acp-21-12965-2021\" target=\"_blank\">https://dx.doi.org/10.5194/acp-21-12965-2021</a>","PeerRev":1},{"BRefID":337417,"RR":"<b>Yver-Kwok, C.; Philippon, C.; Bergamaschi, P.; Biermann, T.; Calzolari, F.; Chen, H.; Conil, S.; Cristofanelli, P.; Delmotte, M.; Hatakka, J.; Heliasz, M.; Hermansen, O.; Kominkova, K.; Kubistin, D.; Kumps, N.; Laurent, O.; Laurila, T.; Lehner, I.; Levula, J.; Lindauer, M.; Lopez, M.; Mammarella, I.; Manca, G.; Marklund, P.; Metzger, J.-M.; Mölder, M.; Platt, S.M.; Ramonet, M.; Rivier, L.; Scheeren, B.; Sha, M.K.; Smith, P.; Steinbacher, M.; Vítková, G.; Wyss, S.</b> (2021). Evaluation and optimization of ICOS atmosphere station data as part of the labeling process. <i>AMT 14(1)</i>: 89-116. <a href=\"https://hdl.handle.net/10.5194/amt-14-89-2021\" target=\"_blank\">https://hdl.handle.net/10.5194/amt-14-89-2021</a>","PeerRev":1},{"BRefID":337602,"RR":"<b>Bougoudis, I.; Blechschmidt, A.-M.; Richter, A.; Seo, S.; Burrows, J.P.; Theys, N.; Rinke, A.</b> (2020). Long-term time series of Arctic tropospheric BrO derived from UV-VIS satellite remote sensing and its relation to first-year sea ice. <i>Atmos. Chem. Phys. 20(20)</i>: 11869-11892. <a href=\"https://hdl.handle.net/10.5194/acp-20-11869-2020\" target=\"_blank\">https://hdl.handle.net/10.5194/acp-20-11869-2020</a>","PeerRev":1},{"BRefID":337609,"RR":"<b>Ding, J.; van der A, R.J.; Eskes, H.J.; Mijling, B.; Stavrakou, T.; van Geffen, J.H.G.M.; Veefkind, J.P.</b> (2020). NO<sub>x</sub> emissions reduction and rebound in China due to the COVID-19 crisis. <i>Geophys. Res. Lett. 47(19)</i>: e2020GL089912. <a href=\"https://hdl.handle.net/10.1029/2020GL089912\" target=\"_blank\">https://hdl.handle.net/10.1029/2020GL089912</a>","PeerRev":1},{"BRefID":337796,"RR":"<b>Huang, J.; Jaeglé, L.; Chen, Q.; Alexander, B.; Sherwen, T.; Evans, M.J.; Theys, N.; Choi, S.</b> (2020). Evaluating the impact of blowing-snow sea salt aerosol on springtime BrO and O<sub>3</sub> in the Arctic. <i>Atmos. Chem. Phys. 20(12)</i>: 7335-7358. <a href=\"https://hdl.handle.net/10.5194/acp-20-7335-2020\" target=\"_blank\">https://hdl.handle.net/10.5194/acp-20-7335-2020</a>","PeerRev":1},{"BRefID":322718,"RR":"<b>Reuter, M.; Buchwitz, M.; Schneising, O.; Noël, S.; Bovensmann, H.; Burrows, J.P.; Boesch, H.; Di Noia, A.; Anand, J.; Parker, R.J.; Somkuti, P.; Wu, L.; Hasekamp, O.P.; Aben, I.; Kuze, A.; Suto, H.; Shiomi, K.; Yoshida, Y.; Morino, I.; Crisp, D.; O’Dell, C.W.; Notholt, J.; Petri, C.; Warneke, T.; Velazco, V.A.; Deutscher, N.M.; Griffith, D.W.T.; Kivi, R.; Pollard, D.F.; Hase, F.; Sussmann, R.; Té, Y.V.; Strong, K.; Roche, S.; Sha, M.K.; De Mazière, M.; Feist, D.G.; Iraci, L.T.; Roehl, C.M.; Retscher, C.; Schepers, D.</b> (2020). Ensemble-based satellite-derived carbon dioxide and methane column-averaged dry-air mole fraction data sets (2003-2018) for carbon and climate applications. <i>AMT 13(2)</i>: 789-819. <a href=\"https://dx.doi.org/10.5194/amt-13-789-2020\" target=\"_blank\">https://dx.doi.org/10.5194/amt-13-789-2020</a>","PeerRev":1},{"BRefID":337907,"RR":"<b>Tirelli, C.; Ceccherini, S.; Zoppetti, N.; Del Bianco, S.; Gai, M.; Barbara, F.; Cortesi, U.; Kujanpää, J.; Huan, Y.; Dragani, R.</b> (2020). Data fusion analysis of Sentinel-4 and Sentinel-5 simulated ozone data. <i>J. Atmos. Oceanic. Technol. 37(4)</i>: 573-587. <a href=\"https://hdl.handle.net/10.1175/JTECH-D-19-0063.1\" target=\"_blank\">https://hdl.handle.net/10.1175/JTECH-D-19-0063.1</a>","PeerRev":1},{"BRefID":337490,"RR":"<b>Verreyken, B.; Amelynck, C.; Brioude, J.; Müller, J.-F.; Schoon, N.; Kumps, N.; Colomb, A.; Metzger, J.-M.; Lee, C.F.; Koenig, T.K.; Volkamer, R.; Stavrakou, T.</b> (2020). Characterisation of African biomass burning plumes and impacts on the atmospheric composition over the south-west Indian Ocean. <i>Atmos. Chem. Phys. 20(23)</i>: 14821-14845. <a href=\"https://hdl.handle.net/10.5194/acp-20-14821-2020\" target=\"_blank\">https://hdl.handle.net/10.5194/acp-20-14821-2020</a>","PeerRev":1},{"BRefID":311411,"RR":"<b>Eleftheratos, K.; Zerefos, C.S.; Balis, D.S.; Koukouli, M.-E.; Kapsomenakis, J.; Loyola, D.G.; Valks, P.; Coldewey-Egbers, M.; Lerot, C.; Frith, S.M.; Haslerud, A.S.; Isaksen, I.S.A.; Hassinen, S.</b> (2019). The use of QBO, ENSO, and NAO perturbations in the evaluation of GOME-2 MetOp A total ozone measurements. <i>AMT 12(2)</i>: 987-1011. <a href=\"https://dx.doi.org/10.5194/amt-12-987-2019\" target=\"_blank\">https://dx.doi.org/10.5194/amt-12-987-2019</a>","PeerRev":1},{"BRefID":323217,"RR":"<b>Kivimäki, E.; Lindqvist, H.; Hakkarainen, J.; Laine, M.; Sussmann, R.; Tsuruta, A.; Detmers, R.; Deutscher, N.M.; Dlugokencky, E.J.; Hase, F.; Hasekamp, O.; Kivi, R.; Morino, I.; Notholt, J.; Pollard, D.F.; Roehl, C.; Schneider, M.; Sha, M.K.; Velazco, V.A.; Warneke, T.; Wunch, D.; Yoshida, Y.; Tamminen, J.</b> (2019). Evaluation and analysis of the seasonal cycle and variability of the trend from GOSAT methane retrievals. <i>Remote Sens. 11(7)</i>: 882. <a href=\"https://dx.doi.org/10.3390/rs11070882\" target=\"_blank\">https://dx.doi.org/10.3390/rs11070882</a>","PeerRev":1},{"BRefID":285384,"RR":"<b>Dehant, V.; Asael, D.; Baland, R.-M.; Baludikay, B.K.; Beghin, J.; Belza, J.; Beuthe, M.; Breuer, D.; Chernonozhkin, S.; Claeys, P.; Cornet, Y.; Cornet, L.; Coyette, A.; Debaille, V.; Delvigne, C.; Deproost, M.H.; De Winter, N.; Duchemin, C.; El Atrassi, F.; François, C.; De Keyser, J.; Gillmann, C.; Gloesener, E.; Goderis, S.; Hidaka, Y.; Höning, D.; Huber, M.; Hublet, G.; Javaux, E.J.; Karatekin, O.; Kodolanyi, J.; Lobo Revilla, L.; Maes, L.; Maggiolo, R.; Mattielli, N.; Maurice, M.; McKibbin, S.; Morschhauser, A.; Neumann, W.; Noack, L.; Pham, L.B.S.; Pittarello, L.; Plesa, A.C.; Rivoldini, A.; Robert, S.; Rosenblatt, P.; Spohn, T.; Storme, J.-Y.; Tosi, N.; Trinh, A.; Valdes, M.; Vandaele, A.C.; Vanhaecke, F.; Van Hoolst, T.; Van Roosbroek, N.; Wilquet, V.; Yseboodt, M.</b> (2016). PLANET TOPERS: Planets, Tracing the Transfer, Origin, Preservation, and Evolution of their ReservoirS. <i>Orig. Life Evol. Biosph. 46(4)</i>: 369-384. <a href=\"https://dx.doi.org/10.1007/s11084-016-9488-z\" target=\"_blank\">https://dx.doi.org/10.1007/s11084-016-9488-z</a>","PeerRev":1},{"BRefID":256720,"RR":"<b>Legrand, M.; Yang, X.; Preunkert, S.; Theys, N.</b> (2016). Year-round records of sea salt, gaseous, and particulate inorganic bromine in the atmospheric boundary layer at coastal (Dumont d'Urville) and central (Concordia) East Antarctic sites. <i>JGR: Atmospheres 121(2)</i>: 997-1023. <a href=\"https://dx.doi.org/10.1002/2015JD024066\" target=\"_blank\">https://dx.doi.org/10.1002/2015JD024066</a>","PeerRev":1},{"BRefID":256730,"RR":"<b>Smith, G.; Roy, F.; Reszka, M.; Colan, D.; He, Z.; Deacu, D.; Belanger, J.; Skachko, S.; Liu, Y.; Dupont, F.; Lemieux, J.; Beaudoin, C.; Tranchant, B.; Drevillon, M.; Garric, G.; Testut, C.; Lellouche, J.; Pellerin, P.; Ritchie, H.; Lu, Y.; Davidson, F.; Buehner, M.; Caya, A.; Lajoie, M.</b> (2016). Sea ice forecast verification in the Canadian Global Ice Ocean Prediction System. <i>Q. J. R. Meteorol. Soc. 142(695)</i>: 659-671. <a href=\"http://dx.doi.org/10.1002/qj.2555\" target=\"_blank\">dx.doi.org/10.1002/qj.2555</a>","PeerRev":1},{"BRefID":295780,"RR":"<b>Zhou, M.; Dils, B.; Wang, P.; Detmers, R.; Yoshida, Y.; O'Dell, C.W.; Feist, D.G.; Velazco, V.A.; Schneider, M.; De Mazière, M.</b> (2016). Validation of TANSO-FTS/GOSAT XCO<sub>2</sub> and XCH<sub>4</sub> glint mode retrievals using TCCON data from near-ocean sites. <i>AMT 9(3)</i>: 1415-1430. <a href=\"https://dx.doi.org/10.5194/amt-9-1415-2016\" target=\"_blank\">https://dx.doi.org/10.5194/amt-9-1415-2016</a>","PeerRev":1},{"BRefID":295836,"RR":"<b>Altwegg, K.; Balsiger, H.; Bar-Nun, A.; Berthelier, J.J.; Bieler, A.; Bochsler, P.; Briois, C.; Calmonte, U.; Combi, M.; De Keyser, J.; Eberhardt, P.; Fiethe, B.; Fuselier, S.; Gasc, S.; Gombosi, T.I.; Hansen, K.C.; Hassig, M.; Jackel, A.; Kopp, E.; Korth, A.; Leroy, L.; Mall, U.; Marty, B.; Mousis, O.; Neefs, E.; Owen, T.; Reme, H.; Rubin, M.; Semon, T.; Tzou, C.-Y.; Waite, H.; Wurz, P.</b> (2015). 67P/Churyumov-Gerasimenko, a Jupiter family comet with a high D/H ratio. <i>Science (Wash.) 347(6220)</i>: 3. <a href=\"https://dx.doi.org/10.1126/science.1261952\" target=\"_blank\">https://dx.doi.org/10.1126/science.1261952</a>","PeerRev":1},{"BRefID":246801,"RR":"<b>Lawson, J; Selleck, W; Galbally, E; Keywood, D; Harvey, J; Lerot, C.; Helmig, D; Ristovski, Z</b> (2015). Seasonal in situ observations of glyoxal and methylglyoxal over the temperate oceans of the Southern Hemisphere. <i>Atmos. Chem. Phys. 15(1)</i>: 223-240. <a href=\"http://dx.doi.org/10.5194/acp-15-223-2015\" target=\"_blank\">dx.doi.org/10.5194/acp-15-223-2015</a>","PeerRev":1},{"BRefID":247402,"RR":"<b>Jones, E; Wolff, W; Brough, N; Bauguitte, B; Weller, R; Yela, M; Navarro-Comas, M; Ochoa, A; Theys, N.</b> (2013). The spatial scale of ozone depletion events derived from an autonomous surface ozone network in coastal Antarctica. <i>Atmos. Chem. Phys. 13(3)</i>: 1457-1467. <a href=\"http://dx.doi.org/10.5194/acp-13-1457-2013\" target=\"_blank\">dx.doi.org/10.5194/acp-13-1457-2013</a>","PeerRev":1},{"BRefID":261639,"RR":"<b>Dehant, V.; Breuer, D; Claeys, P.; Debaille, V.; De Keyser, J.; Javaux, E.; Goderis, S.; Karatekin, O.; Spohn, T; Vandaele, A.C.; Vanhaecke, F.; Van Hoolst, T.; Wilquet, V.</b> (2012). 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