TY - JOUR
T1 - Characterization of organic matter in surface sediments of the Mackenzie River Basin, Canada
AU - Carrie, Jesse
AU - Sanei, Hamed
AU - Goodarzi, Fariborz
AU - Stern, Gary
AU - Wang, Feiyue
N1 - Funding Information:
This study was made possible by financial support from ArcticNet, the Polar Continental Shelf Project (PCSP) of Natural Resources Canada, the Northern Scientific Training Program (NSTP) of Indian and Northern Affairs Canada, and the Northern Ecosystem Initiative (NEI) of Environment Canada. The authors thank D. Leitch for the collection of some of the sediment samples, R. Stewart and J. Reyes in sample analysis, and the Department of Fisheries and Oceans Canada (DFO) and the Canadian Coast Guard crew (Eckaloo and Dumit) for logistical support. The coal samples were generously provided by A. Sweet of the Geological Survey of Canada. We thank R.W. Macdonald, K. Peters, J. Hower, and one anonymous reviewer for their comments and suggestions on an earlier version of this manuscript.
PY - 2009/1/31
Y1 - 2009/1/31
N2 - The particulate organic matter in < 63 μm surface sediments from the Mackenzie River and its main tributaries was studied using Rock-Eval pyrolysis and organic petrology. The organic matter in the sediments is dominated by refractory residual organic carbon (RC) of mainly terrigenous nature, as indicated by abundant inertinite, vitrinite, and type III kerogen. Sediments from the tributaries contained significantly more algal-derived organic matter than from the main channel of the river, highlighting the importance of low-energy system dynamics in the tributaries, which allows modest algal production, more accumulation, and better preservation of autochthonous organic matter. This is particularly true for tributaries fed by lacustrine systems, which showed the highest S1 and S2 fractions, and consequently higher total particulate organic carbon (POC) in the basin. Organic petrology of the sediment samples confirms abundant liptinitic materials (i.e., fat-rich structured algae, spores and pollen, cuticles, and resins). Forest fire and coal deposits are also confirmed to contribute to the basin. Assuming that suspended and fine surfacial sediments have a similar OC composition, the Mackenzie River is estimated to deliver a total POC flux of 1.1 Mt C/yr to its delta, of which 85% is residual carbon with liptinitic OC (S1 + S2) and S3 accounting for another 9% and 6%, respectively.
AB - The particulate organic matter in < 63 μm surface sediments from the Mackenzie River and its main tributaries was studied using Rock-Eval pyrolysis and organic petrology. The organic matter in the sediments is dominated by refractory residual organic carbon (RC) of mainly terrigenous nature, as indicated by abundant inertinite, vitrinite, and type III kerogen. Sediments from the tributaries contained significantly more algal-derived organic matter than from the main channel of the river, highlighting the importance of low-energy system dynamics in the tributaries, which allows modest algal production, more accumulation, and better preservation of autochthonous organic matter. This is particularly true for tributaries fed by lacustrine systems, which showed the highest S1 and S2 fractions, and consequently higher total particulate organic carbon (POC) in the basin. Organic petrology of the sediment samples confirms abundant liptinitic materials (i.e., fat-rich structured algae, spores and pollen, cuticles, and resins). Forest fire and coal deposits are also confirmed to contribute to the basin. Assuming that suspended and fine surfacial sediments have a similar OC composition, the Mackenzie River is estimated to deliver a total POC flux of 1.1 Mt C/yr to its delta, of which 85% is residual carbon with liptinitic OC (S1 + S2) and S3 accounting for another 9% and 6%, respectively.
KW - Arctic Ocean
KW - Mackenzie River
KW - Organic carbon
KW - Organic petrology
KW - Recent sediments
KW - Rock-Eval pyrolysis
UR - https://www.scopus.com/pages/publications/58249092825
U2 - 10.1016/j.coal.2008.03.007
DO - 10.1016/j.coal.2008.03.007
M3 - Article
AN - SCOPUS:58249092825
SN - 0166-5162
VL - 77
SP - 416
EP - 423
JO - International Journal of Coal Geology
JF - International Journal of Coal Geology
IS - 3-4
ER -