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DOI10.2136/sssaj2018.06.0227
Carbon-Mercury interactions in Spodosols Assessed through Density Fractionation, Radiocarbon Analysis, and Soil Survey information
Nave, L. E.1,2; Ornelas, A. Covarrubias1; Drevnick, P. E.1,3; Gallo, A.4; Hatten, J. A.4; Heckman, K. A.5; Matosziuk, L.4; Sanclements, M.6,7; Strahm, B. D.8; Veverica, T. J.1; Weiglein, T. L.8; Swanston, C. W.5
发表日期2019
ISSN0361-5995
EISSN1435-0661
卷号83期号:1页码:190-202
英文摘要

Soils comprise the largest terrestrial pool of C and Hg on Earth, and these elements have critical feedbacks to problems ranging from atmospheric pollution and climate change to public health. Empirical evidence suggests these elements cycle closely in a wide range of soils, but mechanistic studies of their interactions within distinct soil organic matter (SOM) pools and between different soil types are needed. Here, we report findings of a novel approach to investigate C-Hg interactions, primarily in Spodosols, in which we: (i) examined density separated topsoil and illuvial horizons of four contrasting Spodosols, and used radiocarbon to investigate interactions between Hg and C cycling in distinct SOM pools; (ii) assessed broader patterns across Spodosols and other soil orders using USDA soil survey laboratory data. Consistent with other studies, C and Hg concentrations of individual soil horizons were positively related across the four contrasting Spodosols. Carbon and Hg were also positively related in the density fractions comprising individual soil horizons, but radiocarbon analysis revealed fundamental differences in Hg retention in modern, C-rich fractions vs. low-C fractions containing less modem radiocarbon. The lack of significant site-to-site variation in C and Hg across these sites (and Spodosols more broadly), contrasted against significant differences between horizons and fractions, su ests processes controlling C-Hg interactions are consistent across the taxonomic order. Furthermore, significant differences between other soil orders indicate that processes controlling soil formation-as represented by soil taxonomy-can explain differences in C-Hg interactions and their distribution across soils.


WOS研究方向Agriculture
来源期刊SOIL SCIENCE SOCIETY OF AMERICA JOURNAL
文献类型期刊论文
条目标识符http://gcip.llas.ac.cn/handle/2XKMVOVA/91300
作者单位1.Univ Michigan, Biol Stn, Pellston, MI 49769 USA;
2.Univ Michigan, Dept Ecol & Evolutionary Biol, Ann Arbor, MI 48109 USA;
3.Alberta Environm & Pk, Calgary, AB T2E 7L7, Canada;
4.Oregon State Univ, Forest Engn Resources & Management, Corvallis, OR 97330 USA;
5.US Forest Serv, USDA, Northern Res Stn, Houghton, MI 49931 USA;
6.Univ Colorado, INSTAAR, Boulder, CO 80303 USA;
7.Natl Ecol Observ Network, Boulder, CO 80301 USA;
8.Virginia Tech, Dept Forest Resources & Environm Conservat, Blacksburg, VA 24061 USA
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Nave, L. E.,Ornelas, A. Covarrubias,Drevnick, P. E.,et al. Carbon-Mercury interactions in Spodosols Assessed through Density Fractionation, Radiocarbon Analysis, and Soil Survey information[J],2019,83(1):190-202.
APA Nave, L. E..,Ornelas, A. Covarrubias.,Drevnick, P. E..,Gallo, A..,Hatten, J. A..,...&Swanston, C. W..(2019).Carbon-Mercury interactions in Spodosols Assessed through Density Fractionation, Radiocarbon Analysis, and Soil Survey information.SOIL SCIENCE SOCIETY OF AMERICA JOURNAL,83(1),190-202.
MLA Nave, L. E.,et al."Carbon-Mercury interactions in Spodosols Assessed through Density Fractionation, Radiocarbon Analysis, and Soil Survey information".SOIL SCIENCE SOCIETY OF AMERICA JOURNAL 83.1(2019):190-202.
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