Department of Environment and Geography, University of Manitoba, Center for Earth Observation Science, Winnipeg, Manitoba R3T 2N2, Canada.
Environ Sci Technol. 2011 Mar 1;45(5):1866-72. doi: 10.1021/es103434c. Epub 2011 Feb 2.
The Arctic sea-ice environment has been undergoing dramatic changes in the past decades; to which extent this will affect the deposition, fate, and effects of chemical contaminants remains virtually unknown. Here, we report the first study on the distribution and transport of mercury (Hg) across the ocean-sea-ice-atmosphere interface in the Southern Beaufort Sea of the Arctic Ocean. Despite being sampled at different sites under various atmospheric and snow cover conditions, Hg concentrations in first-year ice cores were generally low and varied within a remarkably narrow range (0.5-4 ng L(-1)), with the highest concentration always in the surface granular ice layer which is characterized by enriched particle and brine pocket concentration. Atmospheric Hg depletion events appeared not to be an important factor in determining Hg concentrations in sea ice except for frost flowers and in the melt season when snowpack Hg leaches into the sea ice. The multiyear ice core showed a unique cyclic feature in the Hg profile with multiple peaks potentially corresponding to each ice growing/melting season. The highest Hg concentrations (up to 70 ng L(-1)) were found in sea-ice brine and decrease as the melt season progresses. As brine is the primary habitat for microbial communities responsible for sustaining the food web in the Arctic Ocean, the high and seasonally changing Hg concentrations in brine and its potential transformation may have a major impact on Hg uptake in Arctic marine ecosystems under a changing climate.
在过去几十年中,北极海冰环境发生了巨大变化;这在何种程度上会影响化学污染物的沉积、归宿和效应,目前实际上还不得而知。在这里,我们报告了在北冰洋南波弗特海的海洋-海冰-大气界面上汞(Hg)分布和传输的首次研究。尽管在不同的地点,在不同的大气条件和积雪覆盖条件下进行了采样,但多年冰芯中的 Hg 浓度通常较低,且变化范围非常狭窄(0.5-4ng/L),浓度最高的总是在表面粒状冰层中,该层的特点是颗粒和卤水口袋浓度富集。大气 Hg 消耗事件似乎不是决定海冰中 Hg 浓度的重要因素,除了霜花和积雪季节雪层 Hg 浸入海冰中之外。多年冰芯中的 Hg 分布呈现出独特的周期性特征,多个峰值可能对应每个冰生长/融化季节。海冰卤水的 Hg 浓度最高(高达 70ng/L),并随着融化季节的进行而降低。由于卤水是维持北冰洋食物网的微生物群落的主要栖息地,因此高浓度且季节性变化的 Hg 浓度及其潜在转化可能会对气候变化下北极海洋生态系统中的 Hg 吸收产生重大影响。