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EU-Förderung (6.999.140 €): Photonisch genaue und tragbare Sensorsysteme, die photoakustische und photothermische Spektroskopie für die Echtzeitüberwachung der Luftverschmutzung im Freien nutzen Hor09.12.2020 EU-Rahmenprogramm für Forschung und Innovation "Horizont"

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Photonisch genaue und tragbare Sensorsysteme, die photoakustische und photothermische Spektroskopie für die Echtzeitüberwachung der Luftverschmutzung im Freien nutzen

Air pollution in terms of toxic gas molecules and particulate matter is a major cause of morbidity and premature mortality, resulting in an estimated 4.2 million deaths per year. Real time pollution monitoring with high spatial resolution and public alerts is vital to minimise the exposure of the population, particularly the vulnerable, to air pollution. Direct access to high quality, trustworthy data will allow optimisation of daily schedules to reduce exposure. The availability of actionable data, which will, if necessary, stand up in court and with government, will drive long term changes in the behaviour of both the public and industry. Ambient pollutant reference detectors are impractical for widespread or mobile deployment. Miniature, low cost electrochemical generally are still not stable or sensitive enough for monitoring ambient pollutants reliably. PASSEPARTOUT will advance the development and deployment of miniature, hyperspectral optical based sensors based on Quartz Enhanced Photo-acoustic Spectroscopy and Photo-Thermal Interferometry for a wide range of ambient pollutants. The PASSEPARTOUT optical sensors operate in the mid-IR or NIR spectral range and allow calibration free methodologies as quantification is based on the well-known optical constants of the target analytes and will be compatible with the rigorous certification process. PASSEPARTOUT will realise the first 3D mobile optical gas analyser network capable of operating in an urban area. Innovative and high-performance technologies for high accuracy and flexible environmental air quality monitoring will be built into robust drone-mounted, low-cost vehicle-mounted and stationary sensors. The network will provide real-time information about the concentration of polluting gases (NOx, SO2, NH3, CH4, CO, CO2) and black carbon within urban areas, around landfills and seaports with extremely high precision and excellent spatial resolution.


Geförderte Unternehmen:

Firmenname Förderungssumme
A.U.G Signals Hellas Technology Developments AND Applications Hellas Single Member Private Company 311.666 €
Argotech AS 440.125 €
Centre National de la Recherche Scientifique CNRS 210.030 €
Comune Di Bari 50.000 €
Ecospray Technologies Srl 151.006 €
ETG Risorse E Tecnologia Srl 402.353 €
Fachhochschule Nordwestschweiz FHNW 300.000 €
Green LAB Magyarorszag Mernoki Iroda kft. 360.343 €
Haze Instruments, Razvoj IN Proizvodnja Merilnih Instrumentov d.o.o. 337.838 €
Le Verre Fluore 291.373 €
Munster Technological University 834.918 €
Nanoplus Advanced Photonics Gerbrunn GmbH 414.398 €
Nanoplus Nanosystems AND Technologies GmbH 520.748 €
Politecnico Di Bari 605.000 €
Technische Universitaet Muenchen 406.044 €
Technische Universitaet Wien 363.750 €
Techno SKY Srl Technologies FOR AIR Traffic Management 174.825 €
Universita Degli Studi Di Bari Aldo Moro 632.500 €
Universite Cote d'Azur 0,00 €
University College Cork - National University of Ireland, Cork 0,00 €
Vario-Optics AG 192.224 €

Quelle: https://cordis.europa.eu/project/id/101016956

Diese Bekanntmachung wurde von Englisch nach Deutsch übersetzt. Die Bekanntmachung bezieht sich auf einen vergangenen Zeitpunkt, und spiegelt nicht notwendigerweise den heutigen Stand wider.