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Readiness of ICOS for Necessities of integrated Global Observations – RINGO

The proposed project “Readiness of ICOS for Necessities of integrated Global Observations” (RINGO) aimed to further develop ICOS RI and ICOS ERIC and to foster its sustainability. The challenges were to advance the readiness of ICOS RI along five principal objectives: Scientific readiness: To support the further consolidation of observational networks and enhance their quality. […]

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Center for Environmental Research and Earth Observation CEO-TERRA

CEO-TERRA was a project co-financed by the European Fund for Regional Development, through the Competitiveness Operational Program 2014-2020, POC-A.1-A.1.1.1-F-2015-152/2016. The aim of the project was to create a world-class infrastructure for observing and characterizing the environment through advanced optoelectronic methods. This infrastructure was relevant for the terrestrial segment of the ESA Earth observation program and

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Tehnical Assistance for a Romania Atmospheric Observation  System (RAMOS)

RAMOS – Technical Assistance For A Romanian Atmospheric Observation System was an ESA-ESTEC project (ESA/4000118115/16/NL/FF/gp) which aimed to develop and integrate a facility based on a combination of ground-based and airborne remote sensing capabilities to retrieve several atmospheric species (greenhouse gases, air pollutants, aerosols) in the context of current and future space-borne Earth observation missions.

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Development of a European HSRL airborne facility – MULTIPLY

MULTIPLY – Development of a European HSRL airborne facility, is a ESA-ESTEC project which proposes the development of a novel multi-wavelength HSRL system (3b + 2a + 3d) for airborne operation, capable of retrieving the aerosol extinction, backscatter and depolarization profile distributions. The system will be designed to be especially compact and robust, both optically and

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Aerosol, clouds and trace gases research infrastructure (ACTRIS): The European research infrastructure supporting atmospheric science

Laj, P., Lund Myhre, C., Riffault, V., Amiridis, V., Fuchs, H., Eleftheriadis, K., Petäjä, T., Salameh, T., Kivekäs, N., Juurola, E., Saponaro, G., Philippin, S., Cornacchia, C., Alados Arboledas, L., Baars, H., Claude, A., De Mazière, M., Dils, B., Dufresne, M., Evangeliou, N., Favez, O., Fiebig, M., Haeffelin, M., Herrmann, H., Höhler, K., Illmann, N.,

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High potential for CH₄ emission mitigation from oil infrastructure in one of EU’s major production regions

Stavropoulou, F., Vinković, K., Kers, B., de Vries, M., van Heuven, S., Korbeń, P., Schmidt, M., Wietzel, J., Jagoda, P., Necki, J. M., Bartyzel, J., Maazallahi, H., Menoud, M., van der Veen, C., Walter, S., Tuzson, B., Ravelid, J., Morales, R. P., Emmenegger, L., Brunner, D., Steiner, M., Hensen, A., Velzeboer, I., van den Bulk,

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Rotational Raman scattering through narrow band interference filters: Investigating uncertainties using a new Rayleigh scattering code developed within ACTRIS

Siomos, N., Binietoglou, I., Adam, M., Wandinger, U., Haarig, M., Gast, B., D’Amico, G., & Freudenthaler, V. (2022, June). Rotational Raman scattering through narrow band interference filters: Investigating uncertainties using a new Rayleigh scattering code developed within ACTRIS. In International Laser Radar Conference (pp. 3–9). Cham: Springer International Publishing. https://doi.org/10.1007/978-3-031-37818-8_1

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