Mercury isotope compositions across North American forests

被引:181
作者
Zheng, Wang [1 ,2 ]
Obrist, Daniel [3 ]
Weis, Dominique [4 ]
Bergquist, Bridget A. [1 ]
机构
[1] Univ Toronto, Dept Earth Sci, Toronto, ON, Canada
[2] Arizona State Univ, Sch Earth & Space Explorat, Tempe, AZ 85281 USA
[3] Desert Res Inst, Div Atmospher Sci, Reno, NV USA
[4] Univ British Columbia, Dept Earth Ocean & Atmospher Sci, Pacific Ctr Isotop & Geochem Res, Vancouver, BC, Canada
基金
美国国家科学基金会; 加拿大自然科学与工程研究理事会;
关键词
MASS-INDEPENDENT FRACTIONATION; TERRESTRIAL BACKGROUND SURFACES; REACTIVE GASEOUS MERCURY; ELEMENTAL MERCURY; ATMOSPHERIC MERCURY; SPATIAL-PATTERNS; ORGANIC-MATTER; AIR/SURFACE EXCHANGE; WET DEPOSITION; NUCLEAR VOLUME;
D O I
10.1002/2015GB005323
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
Forest biomass and soils represent some of the largest reservoirs of actively cycling mercury (Hg) on Earth, but many uncertainties exist regarding the source and fate of Hg in forest ecosystems. We systematically characterized stable isotope compositions of Hg in foliage, litter, and mineral soil horizons across 10 forest sites in the contiguous United States. The mass-independent isotope signatures in all forest depth profiles are more consistent with those of atmospheric Hg(0) than those of atmospheric Hg(II), indicating that atmospheric Hg(0) is the larger source of Hg to forest ecosystems. Within litter horizons, we observed significant enrichment in Hg concentration and heavier isotopes along the depth, which we hypothesize to result from additional deposition of atmospheric Hg(0) during litter decomposition. Furthermore, Hg isotope signatures in mineral soils closely resemble those of the overlying litter horizons suggesting incorporation of Hg from litter as a key source of soil Hg. The spatial distribution of Hg isotope compositions in mineral soils across all sites is modeled by isotopic mixing assuming atmospheric Hg(II), atmospheric Hg(0), and geogenic Hg as major sources. This model shows that northern sites with higher precipitation tend to have higher atmospheric Hg(0) deposition than other sites, whereas drier sites in the western U.S. tend to have higher atmospheric Hg(II) deposition than the rest. We attribute these differences primarily to the higher litterfall Hg input at northern wetter sites due to increased plant productivity by precipitation. These results allow for a better understanding of Hg cycling across the atmosphere-forest-soil interface.
引用
收藏
页码:1475 / 1492
页数:18
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