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- W3150415022 abstract "Abstract. Volatile organic compounds (VOCs) are ubiquitous in the atmosphere and are important for atmospheric chemistry. Large uncertainties remain in the role of the ocean in the atmospheric VOC budget because of poorly constrained marine sources and sinks. There are very few direct measurements of air–sea VOC fluxes near the coast, where natural marine emissions could influence coastal air quality (i.e. ozone, aerosols) and terrestrial gaseous emissions could be taken up by the coastal seas. To address this, we present air–sea flux measurements of acetone, acetaldehyde and dimethylsulfide (DMS) at the coastal Penlee Point Atmospheric Observatory (PPAO) in the south-west UK during the spring (April–May 2018). Fluxes of these gases were measured simultaneously by eddy covariance (EC) using a proton-transfer-reaction quadrupole mass spectrometer. Comparisons are made between two wind sectors representative of different air–water exchange regimes: the open-water sector facing the North Atlantic Ocean and the terrestrially influenced Plymouth Sound fed by two estuaries. Mean EC (± 1 standard error) fluxes of acetone, acetaldehyde and DMS from the open-water wind sector were −8.0 ± 0.8, −1.6 ± 1.4 and 4.7 ± 0.6 µmol m−2 d−1 respectively (“−” sign indicates net air-to-sea deposition). These measurements are generally comparable (same order of magnitude) to previous measurements in the eastern North Atlantic Ocean at the same latitude. In comparison, the Plymouth Sound wind sector showed respective fluxes of −12.9 ± 1.4, −4.5 ± 1.7 and 1.8 ± 0.8 µmol m−2 d−1. The greater deposition fluxes of acetone and acetaldehyde within the Plymouth Sound were likely to a large degree driven by higher atmospheric concentrations from the terrestrial wind sector. The reduced DMS emission from the Plymouth Sound was caused by a combination of lower wind speed and likely lower dissolved concentrations as a result of the estuarine influence (i.e. dilution). In addition, we measured the near-surface seawater concentrations of acetone, acetaldehyde, DMS and isoprene from a marine station 6 km offshore. Comparisons are made between EC fluxes from the open-water and bulk air–sea VOC fluxes calculated using air and water concentrations with a two-layer (TL) model of gas transfer. The calculated TL fluxes agree with the EC measurements with respect to the directions and magnitudes of fluxes, implying that any recently proposed surface emissions of acetone and acetaldehyde would be within the propagated uncertainty of 2.6 µmol m−2 d−1. The computed transfer velocities of DMS, acetone and acetaldehyde from the EC fluxes and air and water concentrations are largely consistent with previous transfer velocity estimates from the open ocean. This suggests that wind, rather than bottom-driven turbulence and current velocity, is the main driver for gas exchange within the open-water sector at PPAO (depth of ∼ 20 m)." @default.
- W3150415022 created "2021-04-13" @default.
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- W3150415022 date "2021-07-06" @default.
- W3150415022 modified "2023-10-01" @default.
- W3150415022 title "Air–sea exchange of acetone, acetaldehyde, DMS and isoprene at a UK coastal site" @default.
- W3150415022 cites W1485504984 @default.
- W3150415022 cites W1543896459 @default.
- W3150415022 cites W1563424411 @default.
- W3150415022 cites W1644713641 @default.
- W3150415022 cites W1921302553 @default.
- W3150415022 cites W1922639098 @default.
- W3150415022 cites W1940408347 @default.
- W3150415022 cites W1965341288 @default.
- W3150415022 cites W1971882177 @default.
- W3150415022 cites W1974677838 @default.
- W3150415022 cites W1980702780 @default.
- W3150415022 cites W1982254235 @default.
- W3150415022 cites W1986177075 @default.
- W3150415022 cites W1987449184 @default.
- W3150415022 cites W1987938310 @default.
- W3150415022 cites W1993512252 @default.
- W3150415022 cites W1993795153 @default.
- W3150415022 cites W1995871939 @default.
- W3150415022 cites W1998157624 @default.
- W3150415022 cites W1999135145 @default.
- W3150415022 cites W2001146206 @default.
- W3150415022 cites W2002501100 @default.
- W3150415022 cites W2002570697 @default.
- W3150415022 cites W2013430729 @default.
- W3150415022 cites W2019356278 @default.
- W3150415022 cites W2020369156 @default.
- W3150415022 cites W2030965685 @default.
- W3150415022 cites W2034048706 @default.
- W3150415022 cites W2035616341 @default.
- W3150415022 cites W2036114027 @default.
- W3150415022 cites W2038577812 @default.
- W3150415022 cites W2040790252 @default.
- W3150415022 cites W2042714191 @default.
- W3150415022 cites W2043634783 @default.
- W3150415022 cites W2044724516 @default.
- W3150415022 cites W2047144286 @default.
- W3150415022 cites W2050045649 @default.
- W3150415022 cites W2051690611 @default.
- W3150415022 cites W2059038589 @default.
- W3150415022 cites W2062095746 @default.
- W3150415022 cites W2069149636 @default.
- W3150415022 cites W2082678750 @default.
- W3150415022 cites W2084728522 @default.
- W3150415022 cites W2085379277 @default.
- W3150415022 cites W2097552944 @default.
- W3150415022 cites W2098531686 @default.
- W3150415022 cites W2105296937 @default.
- W3150415022 cites W2106200606 @default.
- W3150415022 cites W2106976345 @default.
- W3150415022 cites W2107842672 @default.
- W3150415022 cites W2110760577 @default.
- W3150415022 cites W2112099970 @default.
- W3150415022 cites W2113658035 @default.
- W3150415022 cites W2114213385 @default.
- W3150415022 cites W2114388830 @default.
- W3150415022 cites W2117050166 @default.
- W3150415022 cites W2125744254 @default.
- W3150415022 cites W2127945798 @default.
- W3150415022 cites W2132518942 @default.
- W3150415022 cites W2140869764 @default.
- W3150415022 cites W2144536872 @default.
- W3150415022 cites W2144991312 @default.
- W3150415022 cites W2149932227 @default.
- W3150415022 cites W2150447146 @default.
- W3150415022 cites W2156631100 @default.
- W3150415022 cites W2157203601 @default.
- W3150415022 cites W2161024838 @default.
- W3150415022 cites W2163052017 @default.
- W3150415022 cites W2163418722 @default.
- W3150415022 cites W2165985158 @default.
- W3150415022 cites W2170038491 @default.
- W3150415022 cites W2201973567 @default.
- W3150415022 cites W2286823774 @default.
- W3150415022 cites W2326124498 @default.
- W3150415022 cites W2404184775 @default.
- W3150415022 cites W2466303847 @default.
- W3150415022 cites W2510393046 @default.
- W3150415022 cites W2514382052 @default.
- W3150415022 cites W2587311926 @default.
- W3150415022 cites W2589303404 @default.
- W3150415022 cites W2596723786 @default.
- W3150415022 cites W2597278582 @default.
- W3150415022 cites W2605873390 @default.
- W3150415022 cites W2605989784 @default.
- W3150415022 cites W2617263832 @default.