Iodine speciation in snow during the MOSAiC expedition and its implications for Arctic iodine emissions

IF 3.1 3区 化学 Q2 Chemistry Faraday Discussions Pub Date : 2024-12-06 DOI:10.1039/D4FD00178H
Lucy V. Brown, Ryan J. Pound, Matthew R. Jones, Matthew J. Rowlinson, Rosie Chance, Hans-Werner Jacobi, Markus M. Frey, Stephen D. Archer, Stefanie Arndt, Johannes G. M. Barten, Byron W. Blomquist, Ruzica Dadic, Laurens N. Ganzeveld, Henna-Reetta Hannula, Detlev Helmig, Matthias Jaggi, Daniela Krampe, Amy R. Macfarlane, Shaun Miller, Martin Schneebeli and Lucy J. Carpenter
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Abstract

Photochemical release of iodine from snow has been suggested as a source of reactive iodine to the Arctic atmosphere, however understanding of the underlying mechanism and potential source strength is hindered by a lack of measurements of iodine concentration and speciation in snow. Moreover, the origin of snow iodine is also unknown. Here, we report iodine speciation measurements in Arctic snow on sea ice at a range of snow depths from 177 samples, representing 80 sampling events, from December 2019 to October 2020 collected during the Multidisciplinary drifting Observatory for the Study of Arctic Climate (MOSAiC) expedition. We demonstrate that while there appears to be a source of iodine, in particular iodate, to the base of the snow over first year ice, this does not influence iodine concentration in the surface snow. There is instead evidence of a top-down source of iodine, potentially from iodine-enriched marine aerosol, as well as some evidence for episodic influx of iodate with dust. The potential for photochemical release of molecular iodine (I2) from iodide in surface snow was investigated, and it was demonstrated that this could provide an iodine emission flux to the Arctic atmosphere comparable to oceanic fluxes. Knowledge of the prevalence and speciation of iodine in Arctic snow will contribute to better understanding of its contribution to observed concentrations of polar iodine oxide (IO), and hence its contribution to the depletion of tropospheric ozone in the Arctic.

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马赛克探险期间雪中的碘物种形成及其对北极碘排放的影响。
雪中碘的光化学释放被认为是北极大气中活性碘的一个来源,然而,由于缺乏对雪中碘浓度和物种形成的测量,对其潜在机制和潜在来源强度的理解受到阻碍。此外,雪碘的来源也不得而知。在这里,我们报告了2019年12月至2020年10月在北极气候研究多学科漂流观测站(MOSAiC)考察期间收集的177个样本,代表80个采样事件,在不同雪深的海冰上对北极积雪中的碘物种形成的测量结果。我们证明,虽然在第一年的冰上,似乎有一个碘的来源,特别是碘酸盐,到雪的底部,这并不影响表面雪中的碘浓度。相反,有证据表明碘的来源是自上而下的,可能来自富含碘的海洋气溶胶,还有一些证据表明碘酸盐随灰尘偶尔流入。研究了表面雪中的碘化物光化学释放分子碘(I2)的可能性,并证明这可以向北极大气提供与海洋通量相当的碘排放通量。了解北极雪中碘的普遍性和形态将有助于更好地了解其对观测到的极地氧化碘(IO)浓度的贡献,从而有助于了解其对北极对流层臭氧消耗的贡献。
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来源期刊
Faraday Discussions
Faraday Discussions CHEMISTRY, PHYSICAL-
CiteScore
4.90
自引率
0.00%
发文量
259
审稿时长
2.8 months
期刊介绍: Discussion summary and research papers from discussion meetings that focus on rapidly developing areas of physical chemistry and its interfaces
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Back cover List of participants Poster list Interfaces at the nano scale: general discussion Back cover
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