Projects

Dezvoltarea capacitatilor de calibrare lidar la Centrul ACTRIS pentru Teledetectia Aerosolilor LiCARS

Cod proiect: PN-III-P1-1.1-TE-2021-0714 Nr contractului: TE 103 Perioada contractului: 15/05/2022- 14/05/2024 Bugetul proiectului: 450.000,00 RON Titlul proiectului: Dezvoltarea capacitatilor de calibrare lidar la Centrul ACTRIS pentru Teledetectia Aerosolilor LiCARS Director de proiect: Dr. Fiz. Livio Belegante Scurta descriere Infrastructura de cercetare a aerosolilor, norilor si gazelor minore (ACTRIS) este o infrastructura pan-europeana distribuita, avand misiunea de a […]

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The RI-URBANS Project

RI-URBANS is aiming to demonstrate how Service Tools (STs) from atmospheric Research Infrastructures (RIs) can be adapted and enhanced to better address the challenges and societal needs concerning air quality (AQ) in European cities and industrial hotspots. RI-URBANS is responding to urgent needs to substantially reduce air pollution across the EU by providing enhanced AQ

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The ReCoN-nect Project

Societies have historically underinvested in research, either because it is a long-term process and the results were not easily visible, or because of the complexity of this enterprise. This, along with other difficulties, weighed on researchers who often lacked the will or power to become more engaged in public life, which further affected trust in

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The ATMO-ACCESS Project

ATMO-ACCESS is the organized response of distributed atmospheric research facilities that is aiming to develop a pilot for a new model of Integrating Activities. The project is intended to deliver a series of recommendations for establishing a comprehensive and sustainable framework for access to distributed atmospheric Research Infrastructures (RIs), ensuring integrated access to and optimized

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Strengthening the participation of the ACTRIS-RO consortium in the pan-European research infrastructure ACTRIS – ACTRIS-ROc

This funding application outlined the project ‘Strengthening the participation of the ACTRIS-RO consortium in the pan-European research infrastructure ACTRIS.’ Led by the National Institute for R&D in Optoelectronics (INOE 2000), the project involved a consortium including the ‘Elie Carafoli’ National Institute for Aerospace R&D (INCAS) and Babeș-Bolyai University (UBB). The primary goal was to consolidate

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Assessment of the relationship between Biomass Burning typology and the Aerosol intensive optical properties from LIDAR measurements during smoke transport (ABBA)

PN-III-P2-2.1-PED-2019-1816 Implementation period: 02/11/2020-01/11/2022 Objective: To develop a methodology which quantifies the relationship between the biomass burning typology and the smoke measurements acquired by lidar in remote locations. Biomass burning typology (or smoke typology) will refer to the vegetation type (land cover). The smoke measurements by lidar (observations) are quantified in terms of IOPs. The analysis will

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Understanding convective storms and their perils in the current and future climate (TEMPEST) 

Scopul proiectului de cercetare TEMPEST (Studiul furtunilor convective și pericolelor asociate acestora în climatul actual și viitor) a fost acela de a îmbunatați cunoștințele actuale despre furtunile convective severe din Europa luând în considerare riscul, impactul și predictibilitatea acestora. Proiectul a fost împărțit în trei etape. În continuare pentru fiecare dintre aceste etape de lucru sunt prezentate

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LocAl and long-Range transported Aerosols types, composition and properties (LARA)

PN-III-P1-1.1-TE-2019-0340, ctr. TE 71/2020 Implementation period: September 2020-August 2022 Objective: To assess the aerosols properties and to quantify their possible sources using a combination of remote sensing and in-situ measurements The project aims to identify the sources of aerosols in Romania and to characterize them from chemical and optical point of view. This assessment will improve the

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Comprehensive Approach to support Precision Agriculture and environmental management through satellite technologies and classic methods of investigation (CAPA)

The overall project objective was the development and implementation of an alert system for precision agriculture and environmental management related to the identification of air pollution and extreme weather events. The project aimed to deliver a near real-time alerting system for precision agriculture through a comprehensive integrated online platform, where near real-time satellite-based products and

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