A 21 000-year record of fluorescent organic matter markers in the WAIS Divide ice core

被引:45
作者
D'Andrilli, Juliana [1 ,2 ]
Foreman, Christine M. [1 ,2 ]
Sigl, Michael [3 ]
Priscu, John C. [4 ]
McConnell, Joseph R. [3 ]
机构
[1] Montana State Univ, Dept Chem & Biol Engn, Bozeman, MT 59717 USA
[2] Montana State Univ, Ctr Biofilm Engn, Bozeman, MT 59717 USA
[3] Desert Res Inst, Div Hydrol Sci, Reno, NV 89512 USA
[4] Montana State Univ, Dept Land Resources & Environm Sci, Bozeman, MT 59717 USA
基金
美国国家科学基金会;
关键词
DOME-C; GREENLAND; CARBON; WATER; SPECTROSCOPY; CLIMATE; SEA; IDENTIFICATION; TERRESTRIAL; VARIABILITY;
D O I
10.5194/cp-13-533-2017
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Englacial ice contains a significant reservoir of organic material (OM), preserving a chronological record of materials from Earth's past. Here, we investigate if OM composition surveys in ice core research can provide paleoecological information on the dynamic nature of our Earth through time. Temporal trends in OM composition from the early Holocene extending back to the Last Glacial Maximum (LGM) of the West Antarctic Ice Sheet Divide (WD) ice core were measured by fluorescence spectroscopy. Multivariate parallel factor (PARAFAC) analysis is widely used to isolate the chemical components that best describe the observed variation across three-dimensional fluorescence spectroscopy (excitation-emission matrices; EEMs) assays. Fluorescent OM markers identified by PARAFAC modeling of the EEMs from the LGM (27.0-18.0 kyr BP; before present 1950) through the last deglaciation (LD; 18.0-11.5 kyr BP), to the mid-Holocene (11.5-6.0 kyr BP) provided evidence of different types of fluorescent OM composition and origin in the WD ice core over 21.0 kyr. Low excitation-emission wavelength fluorescent PARAFAC component one (C1), associated with chemical species similar to simple lignin phenols was the greatest contributor throughout the ice core, suggesting a strong signature of terrestrial OM in all climate periods. The component two (C2) OM marker, encompassed distinct variability in the ice core describing chemical species similar to tannin-and phenylalanine-like material. Component three (C3), associated with humic-like terrestrial material further resistant to biodegradation, was only characteristic of the Holocene, suggesting that more complex organic polymers such as lignins or tannins may be an ecological marker of warmer climates. We suggest that fluorescent OM markers observed during the LGM were the result of greater continental dust loading of lignin precursor (monolignol) material in a drier climate, with lower marine influences when sea ice extent was higher and continents had more expansive tundra cover. As the climate warmed, the record of OM markers in the WD ice core changed, reflecting shifts in carbon productivity as a result of global ecosystem response.
引用
收藏
页码:533 / 544
页数:12
相关论文
共 60 条
[1]  
Acree W.E., 1991, POLY AROM COMPD, V2, P75, DOI DOI 10.1080/10406639108048933
[2]  
Aiken G. R., 1985, Humic substances in soil, sediment, and water: geochemistry, isolation and characterization., DOI 10.1002/gj.3350210213
[3]   Paleodust variability since the Last Glacial Maximum and implications for iron inputs to the ocean [J].
Albani, S. ;
Mahowald, N. M. ;
Murphy, L. N. ;
Raiswell, R. ;
Moore, J. K. ;
Anderson, R. F. ;
McGee, D. ;
Bradtmiller, L. I. ;
Delmonte, B. ;
Hesse, P. P. ;
Mayewski, P. A. .
GEOPHYSICAL RESEARCH LETTERS, 2016, 43 (08) :3944-3954
[4]  
Alley RichardB., 2002, The Two-Mile Time Machine: Ice Cores, Abrupt Climate Change, and Our Future
[5]  
Arash B, 2014, SCI REP-UK, V4, DOI [10.1038/srep06479, 10.1038/srep05848, 10.1038/srep04770]
[6]   Stream dissolved organic matter bioavailability and composition in watersheds underlain with discontinuous permafrost [J].
Balcarczyk, Kelly L. ;
Jones, Jeremy B., Jr. ;
Jaffe, Rudolf ;
Maie, Nagamitsu .
BIOGEOCHEMISTRY, 2009, 94 (03) :255-270
[7]   Spatial and temporal variability in snow accumulation at the West Antarctic Ice Sheet Divide over recent centuries [J].
Banta, J. Ryan ;
McConnell, Joseph R. ;
Frey, Markus M. ;
Bales, Roger C. ;
Taylor, Kendrick .
JOURNAL OF GEOPHYSICAL RESEARCH-ATMOSPHERES, 2008, 113 (D23)
[8]   Chemical analysis of ice vein microenvironments: II. Analysis of glacial samples from Greenland and Antarctica [J].
Barletta, Robert E. ;
Priscu, John C. ;
Mader, Heidy M. ;
Jones, Warren L. ;
Roe, Christopher H. .
JOURNAL OF GLACIOLOGY, 2012, 58 (212) :1109-1118
[9]  
Battin TJ, 2008, NAT GEOSCI, V1, P95, DOI 10.1038/ngeo101
[10]   PARAFAC. Tutorial and applications [J].
Bro, R .
CHEMOMETRICS AND INTELLIGENT LABORATORY SYSTEMS, 1997, 38 (02) :149-171