Incubation experiments to examine the production and loss of CH3I in surface seawater

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Main Authors: Shi, Qiang, Marandino, Christa A, Petrick, Gert, Quack, Birgit, Wallace, Douglas WR
Format: Dataset Open Access
Language:en
Published: PANGAEA 2014
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author Shi, Qiang
Marandino, Christa A
Petrick, Gert
Quack, Birgit
Wallace, Douglas WR
author_facet Shi, Qiang
Marandino, Christa A
Petrick, Gert
Quack, Birgit
Wallace, Douglas WR
collection Datos científicos de ciencias marinas y ambientales
contents In order to investigate production pathways of methyl iodide and controls on emissions from the surface ocean, a set of repeated in-vitro incubation experiments were performed over an annual cycle in the context of a time-series of in-situ measurements in Kiel Fjord (54.3 N, 10.1E). The incubation experiments revealed a diurnal variation of methyl iodide in samples exposed to natural light, with maxima during day time and losses during night hours. The amplitude of the daily accumulation varied seasonally and was not affected by filtration (0.2µm), consistent with a photochemical pathway for CH3I production. The methyl iodide loss rate during night time correlated with the concentration accumulated during daytime. Daily (24 hour) net production (Pnet) was similar in magnitude between in vitro and in situ mass balances. However, the estimated gross production (Pgross) of methyl iodide ranged from -0.07 to 2.24 pmol/day and were 5 times higher in summer than Pnet calculated from the in-situ study [Shi et al., 2014]. The large excess of Pgross over Pnet revealed by the in-vitro (incubation) experiments in summer is a consequence of large losses of CH3I by as-yet uncharacterized processes (e.g. biological degradation or chemical pathways other than Cl- substitution).
format Dataset Open Access
id pangaea_https___doi_org_10_1594_PANGAEA_833268
institution PANGAEA
language en
publishDate 2014
publisher PANGAEA
record_format pangaea
spellingShingle Incubation experiments to examine the production and loss of CH3I in surface seawater
Shi, Qiang
Marandino, Christa A
Petrick, Gert
Quack, Birgit
Wallace, Douglas WR
DATE/TIME; Iodomethane; SOPRAN; Surface Ocean Processes in the Anthropocene; Time in hours; Treatment; Type
In order to investigate production pathways of methyl iodide and controls on emissions from the surface ocean, a set of repeated in-vitro incubation experiments were performed over an annual cycle in the context of a time-series of in-situ measurements in Kiel Fjord (54.3 N, 10.1E). The incubation experiments revealed a diurnal variation of methyl iodide in samples exposed to natural light, with maxima during day time and losses during night hours. The amplitude of the daily accumulation varied seasonally and was not affected by filtration (0.2µm), consistent with a photochemical pathway for CH3I production. The methyl iodide loss rate during night time correlated with the concentration accumulated during daytime. Daily (24 hour) net production (Pnet) was similar in magnitude between in vitro and in situ mass balances. However, the estimated gross production (Pgross) of methyl iodide ranged from -0.07 to 2.24 pmol/day and were 5 times higher in summer than Pnet calculated from the in-situ study [Shi et al., 2014]. The large excess of Pgross over Pnet revealed by the in-vitro (incubation) experiments in summer is a consequence of large losses of CH3I by as-yet uncharacterized processes (e.g. biological degradation or chemical pathways other than Cl- substitution).
title Incubation experiments to examine the production and loss of CH3I in surface seawater
topic DATE/TIME; Iodomethane; SOPRAN; Surface Ocean Processes in the Anthropocene; Time in hours; Treatment; Type
url https://doi.org/10.1594/PANGAEA.833268