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7324539 
Journal Article 
Atmospheric formaldehyde at El Teide and Pic du Midi remote high-altitude sites 
Prados-Roman, C; Fernandez, M; Gomez-Martin, L; Cuevas, E; Gil-Ojeda, M; Marusczak, N; Puentedura, O; Sonke, JE; Saiz-Lopez, A 
2020 
Atmospheric Environment
ISSN: 1352-2310
EISSN: 1873-2844 
Elsevier 
OXFORD 
234 
English 
Formaldehyde (CH₂O) is a tracer of the photochemical activity of the atmosphere. Linked to air quality, CH₂O is an ozone (O₃) precursor and serves as a proxy for natural and anthropogenic reactive organic emissions. As a product of the photooxidation of methane (CH₄) and other hydrocarbons (e.g., isoprene), CH₂O represents an important source of radicals in the remote free troposphere. This work aims at improving the characterization of this part of the troposphere where data are scarce. In particular, this study assesses the presence of CH₂O at two high-altitude remote sites: El Teide (TEI, 3570 m a.s.l., Tenerife, Canary Islands, Spain) and Pic du Midi (PDM, 2877 m a.s.l., French Pyrenees). Through ground-based remote sensing measurements performed during two field campaigns in July (TEI) and September (PDM) 2013, this study presents the vertical distribution of CH₂O at both locations. Results at PDM show that CH₂O mixing ratios follow a decreasing vertical profile with a mean maximum of 0.5 ± 0.2 nmol mol⁻¹ (i.e., ppbv) at the instruments' altitude. At TEI, observations indicate an uplifted layer of CH₂O with a mean maximum of 1.3 ± 0.3 nmol mol⁻¹ at 3.8 km a.s.l. (i.e., 300 m above the instrument's altitude). At both remote sites, the observed CH₂O levels are higher than expected for background methane oxidation (a threefold increase in the case of TEI). Air mass back trajectory analysis links CH₂O observations with abundant natural (e.g. forests) and/or anthropogenic isoprene emissions from the region nearby PDM, while the high CH₂O levels detected at TEI indicate in-plume formation of CH₂O resulting from its precursors emitted from west-African and Canadian fires. Finally, as a key trace gas for O₃ and HOₓ chemistries, we estimate the upper limit of bromine monoxide (BrO) in the free troposphere at TEI and PDM to be 0.8 and 1.5 pmol mol⁻¹ (i.e., pptv) respectively. 
Formaldehyde; Ground-based observations; Remote sensing; Free troposphere; Volatile organic compounds 
ATMOSPHERIC ENVIRONMENT 
IRIS
• Formaldehyde [archived]
     HAWC
          LHP cancer mechanistic
               Excluded
     Search Update 2018-2021
          LHP MOA
               WoS
• IRIS Formaldehyde (Inhalation) [Final 2024]
     Literature Indexing
          WoS
          2021 Systematic Evidence Map
     Literature Identification
          Mechanistic Studies of Lymphohematopoietic Cancer, Genotoxicity
               Excluded