The effect of sediment mixing on mercury dynamics in two intertidal mudflats at Great Bay Estuary, New Hampshire, USA

被引:9
作者
Brown, Lauren E. [1 ]
Chen, Celia Y. [2 ]
Voytek, Mary A. [3 ]
Amirbahman, Aria [1 ]
机构
[1] Univ Maine, Dept Civil & Environm Engn, Orono, ME 04469 USA
[2] Dartmouth Coll, Dept Biol Sci, Hanover, NH 03755 USA
[3] NASA, Astrobiol Program, Washington, DC 20546 USA
基金
美国国家科学基金会;
关键词
Mercury; Methylmercury; Sediment; Estuary; DISSOLVED ORGANIC-MATTER; PENOBSCOT RIVER ESTUARY; METHYL MERCURY; METHYLMERCURY PRODUCTION; SURFACE SEDIMENTS; WATER EXCHANGE; BOSTON HARBOR; PORE-WATER; SALT-MARSH; SULFIDE;
D O I
10.1016/j.marchem.2015.10.011
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Estuarine sediments store particulate contaminants including mercury (Hg). We studied Hg sediment dynamics in two intertidal mudflats at Great Bay estuary, NH, over multiple years. Sediments at both mudflats were physically mixed down to similar to 10 cm, as determined by Be-7 measurements, albeit via different mechanisms. Portsmouth mudflat (PT) sediments were subject to bioturbation by infaunal organisms and Squamscott mudflat (SQ) sediments were subject to erosion and redeposition. The presence of higher concentrations of fresh Fe(III) hydroxide at PT suggested bioirrigation by the polychaetes (Nereis virens). At depths where infaunal bioirrigation was observed, pore-water inorganic Hg (Hg-i) and methylmerculy (MeHg) were lower potentially due to their interaction with Fe(III) hydroxide. Methylmercury concentrations increased immediately below this zone in some samples, suggesting that the observed increase in material flux in bioirrigated sediments may initiate from lower depths. Pore water in sediment at PT also had higher fractions of more protein-like and labile DOC than those at SQ that can lead to increased MeHg production in PT, especially at depths where Hg, is not removed from solution by Fe(III) hydroxide. Where sediment erosion and redeposition were observed at SQ Hg species distribution was extended deeper into the sediment column. Moreover, methyl coenzyme M reductase (MCR) and mercury reductase (mer-A) genes were higher at SQthan PT suggesting differences in conditions for Hg cycling. Results showed that the near-surface region of high MeHg concentrations commonly observed in unmixed sediments does not exist in physically mixed sediments that are common in many estuarine environments. (C) 2015 Elsevier BM. All rights reserved.
引用
收藏
页码:731 / 741
页数:11
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