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Iodine emissions from the sea ice of the Weddell Sea

机译:来自韦德尔大海的海冰的碘排放

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Iodine compounds were measured above, below and within the sea ice of the Weddell Sea during a cruise in 2009, to make progress in elucidating the mechanism of local enhancement and volatilisation of iodine. I2 mixing ratios of up to 12.4 pptv were measured 10 m above the sea ice, and up to 31 pptv was observed above surface snow on the nearby Brunt Ice Shelf – large amounts. Atmospheric IO of up to 7 pptv was measured from the ship, and the average sum of HOI and ICl was 1.9 pptv. These measurements confirm the Weddell Sea as an iodine hotspot. Average atmospheric concentrations of CH3I, C2H5I, CH2ICl, 2-C3H7I, CH2IBr and 1-C3H7I were each 0.2 pptv or less. On the Brunt Ice Shelf, enhanced concentrations of CH3I and C2H5I (up to 0.5 and 1 pptv respectively) were observed in firn air, with a diurnal profile that suggests the snow may be a source. In the sea ice brine, iodocarbons concentrations were over 10 times those of the sea water below. The sum of iodide + iodate was depleted in sea ice samples, suggesting some missing iodine chemistry. Flux calculations suggest I2 dominates the iodine atom flux to the atmosphere, but models cannot reconcile the observations and suggest either a missing iodine source or other deficiencies in our understanding of iodine chemistry. The observation of new particle formation, consistent with the model predictions, strongly suggests an iodine source. This combined study of iodine compounds is the first of its kind in this unique region of sea ice rich in biology and rich in iodine chemistry.
机译:在2009年的巡航期间,在Weddell海的海冰中测量碘化合物,在追踪中,以阐明促进碘的局部增强和挥发的机制。 I2混合比率最高12.4 pptv在海冰上方10米测量,在附近的冰架上的表面雪上观察到高达31个PPTV - 大量。从船上测量最多7个PPTV的大气IO,HOI和ICL的平均总和为1.9 pptV。这些测量确认了Weddell海作为碘热点。 CH3i,C 2 H 5,CH 2 CH 2 CH 2 -2-C3H7I,CH2IB和1-C3H7i的平均大气浓度为0.2 pptv或更低。在配交焊料架上,在FIRN AIR中观察到增强的CH3I和C 2 H 5(分别为C 2 H 5(高达0.5和1 pptv),其中昼夜曲线表明雪可能是源。在海冰盐水中,碘碳酸浓度超过了下面的海水的10倍。碘化物+碘化物的总和在海冰上耗尽,表明一些缺少碘化学。助焊剂计算表明I2将碘原子通量占主导地位,但模型不能调和观察结果,并表明我们对碘化学了解的缺失的碘来源或其他不足。观察新颗粒形成,与模型预测一致,强烈提出了碘源。这种碘化合物的联合研究是其在富含生物学和富含碘化学中的海冰区的独特区域中的首先。

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