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Free radicals / Organic compounds / Smog / Hydroxyl radical / Functional group / Radical / Carbon monoxide / Ozonolysis / Ozone / Chemistry / Environmental chemistry / Biological processes


Atmos. Chem. Phys., 15, 6745–6765, 2015 www.atmos-chem-phys.netdoi:acp © Author(sCC Attribution 3.0 License. Formation of highly oxidized multifunctional compounds:
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Document Date: 2015-06-18 04:43:24


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City

Helsinki / Jülich / /

Company

HOM / Airmodus Ltd / Cox / Aerodyne Research Inc. & Tofwerk AG / /

Country

Germany / Finland / /

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Facility

University of Helsinki / stable HOM / L reactor / /

IndustryTerm

gas molecules / chemical ionization / termination products / alcohol / acetyl / reaction chain / hydroperoxy / ozonolysis products / chemical character / chemical structures / carbonyl termination products / terminal / hydroxy groups / functional / aldehyde / hydroxy and hydroperoxy termination products / hydroxy termination products / carbonyl termination product / analogous product / methyl-oxo / hydroperoxy termination products / stable termination products / gas-phase atmospheric chemistry / less important termination products / gas phase / /

Organization

European Geosciences Union / Department of Chemistry / Institut für Energie / University of Helsinki / Institut für Bio / /

Person

Mikael Ehn / /

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Position

selected model and representative / COO / /

Product

iRiver H10 Portable Audio Device / /

ProvinceOrState

Ohio / /

Region

southern Finland / /

Technology

SOA / APi / recombination / /

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http /

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