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ZHANG Yan, LU Xueqiang, LIU Honglei, LIU Qiongqiong, YU Dan. Identifying the sources of organic matter in marine and riverine sediments of Bohai Bay and its catchment using carbon and nitrogen stable isotopes[J]. Journal of Oceanology and Limnology, 2015, 33(1): 204-209

Identifying the sources of organic matter in marine and riverine sediments of Bohai Bay and its catchment using carbon and nitrogen stable isotopes

ZHANG Yan, LU Xueqiang, LIU Honglei, LIU Qiongqiong, YU Dan
Tianjin Academy of Environmental Sciences, Tianjin 300191, China
Abstract:
Carbon and nitrogen stable isotopes are useful tracers for distinguishing marine and terrestrial plant sources of sedimentary organic matter (OM), and for identifying OM from different types of plants. By analyzing the carbon and nitrogen stable isotopes of marine and riverine sediments from Bohai Bay and its catchment, we were able to identify the source of OM in these sediments. The stable carbon isotope values of Bohai Bay sediments were between -22.94‰ and -23.90‰, while those of riverine sediments were from -24.45‰ to -32.50‰. Marine algae were the main source of OM in Bohai Bay sediments. However, lacustrine algae were the main source of riverine sediments, not terrestrial OM. The nitrogen isotopes in Bohai Bay sediments decreased in eastward direction, with increasing distance from the coastline, which suggested a higher degree of impact from human activities along the coast.
Key words:    stable isotope|source of organic matter|human impact|Bohai Bay   
Received: 2014-03-26   Revised: 2014-04-28
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References:
Bocaniov S A, Barton D R, Schiff S L, Smith R E. 2013. Impact of tributary DOM and nutrient inputs on the nearshore ecology of a large, oligotrophic lake (Georgian Bay, Lake Huron, Canada). Aquatic Sciences, 75 (2): 321- 332.
Croué, J P, Benedetti, M F, Violleau D, Leenheer J A. 2003. Characterization and copper binding of humic and nonhumic organic matter isolated from the South Platte River: Evidence for the presence of nitrogenous binding site. Environ. Sci. Technol., 37 (2): 328-336.
Duong C N, Schlenk D, Chang N I, Kim S D. 2009. The effect of particle size on the bioavailability of estrogenic chemicals from sediments. Chemosphere, 76 (3): 395-401.
Derse E, Knee K L, Wankel S D, Kendall C, Berg C J, Paytan A. 2007. Identifying sources of nitrogen to Hanalei Bay, Kauai, utilizing the nitrogen isotope signature of macroalgae. Environ. Sc i. Technol., 41 (15): 5 217-5 223.
Dunn R J K, Welsh D T, Teasdale P R, Lee S Y, Lemckert C J, Méziane T. 2008. Investigating the distribution and sources of organic matter in surface sediment of Coombabah Lake (Australia) using elemental, isotopic and fatty acid biomarkers. Cont. Shelf Res., 28 (18): 2 535- 2 549.
Fontugne M R, Jouanneau J M. 1987. Modulation of the particulate organic carbon flux to the ocean by a macrotidal estuary: evidence from measurements of carbon isotopes in organic matter from the Gironde system. Estua. Coast. Shelf S., 24 (3): 377-387.
Gearing J N. 1988. The use of stable isotope ratios for tracing the nearshore-offshore exchange of organic matter. Lecture Notes on Coastal and Estuarine Studies, 22: 69- 101.
Gettel G M, Giblin A E, Howarth R W. 2013. Controls of benthic nitrogen fixation and primary production from nutrient enrichment of oligotrophic, Arctic lakes. Ecosystems, 16 (8): 1 550-1 564.
Hayes J M. 1993. Factors controlling 13 C contents of sedimentary organic compounds: principles and evidence. Mar. Geo., 113 (1): 111-125.
Hu W, Zhai S, Zhu Z, Han H. 2008. Impacts of the Yangtze River water transfer on the restoration of Lake Taihu. Ecolo. Eng., 34 (1): 30-49.
Hur J, Kim G. 2009. Comparison of the heterogeneity within bulk sediment humic substances from a stream and reservoir via selected operational descriptors. C hemosphere, 75 (4): 483-490.
Kan W J, Zhang Q F, Hu Y Z, Shi H M, Bo W J. 2010. Preliminary analysis on the state of organic pollution and eutrophication in Bohai Bay. Mar. Sci. Bulle t., 29: 172- 175. (in Chinese with English abstract)
Liu L, Song C, Yan Z, Li F. 2009. Characterizing the release of different composition of dissolved organic matter in soil under acid rain leaching using three-dimensional excitation-emission matrix spectroscopy. Chemosphere, 77 (1): 15-21.
Lu X Q, Matsumoto E. 2005 Recent sedimentation rates derived from 210 Pb and 137 Cs methods in Ise Bay, Japan. Estua. Coast. Shelf S., 65 (1): 83-93.
Maioli O L G, de Oliveira C R, Dal Sasso M A, Madureira L A D S, de Almeida Azevedo D, de Aquino Neto F R. 2012. Evaluation of the organic matter sources using the δ13C composition of individual n-alkanes in sediments from Brazilian estuarine systems by GC/C/IRMS. Estua. Coast. Shelf S., 114: 140-147.
Meyers P A. 1994. Preservation of elemental and isotopic source identification of sedimentary organic matter. Chem. Geo., 114 (3): 289-302.
Meyers P A. 1997. Organic geochemical proxies of paleoceanographic, paleolimnologic, and paleoclimatic processes. Org. Geochem., 27 (5-6): 213-250.
Ortega-Retuerta E, Reche I, Pulido-Villena E, Agustí S, Duarte C M. 2010. Distribution and photoreactivity of chromophoric dissolved organic matter in the Antarctic Peninsula (Southern Ocean). Ma r. Chem., 118 (3): 129- 139.
Ruiz-Fernández A C, Hillaire-Marcel C, Ghaleb B, Soto- Jiménez M, Páez-Osuna F. 2002. Recent sedimentary history of anthropogenic impacts on the Culiacan River Estuary, northwestern Mexico: geochemical evidence from organic matter and nutrients. Environ. Pollut., 118 (3): 365-377.
Ruttenberg K C, Goni M A. 1997. Phosphorus distribution, C:N:P ratios, and δ 13 C oc in arctic, temperate, and tropical coastal sediments: tools for characterizing bulk sedimentary organic matter. Mar. Geo., 139 (1): 123-145.
State Environmental Protection Administration. 2002. Standard Methods for Water and Wastewater Monitoring and Analysis. China Environmental Science Press, Beijing, China. p.200-284. (in Chinese)
Viana I G, Fernández J A, Aboal J R, Carballeira A. 2011. Measurement of δ15N in macroalgae stored in an environmental specimen bank for regional scale monitoring of eutrophication in coastal areas. Ecol. Indic., 11 (3): 888-895.
Yamamuro M. 2000. Chemical tracers of sediment organic matter origins in two coastal lagoons. J. Marine Syst., 26 (2): 127-134.
Yu B H, Liu H L, Lu X Q, Wang Z L, Shao X L, Yuan M, Zhao F, Li X J, Liu X, Jiang W Y. 2013. Characteristics of heavy metals and radionuclides in surface sediments from the inner Bohai Bay (Tianjin coastal sea). China Environ. Sci., 33 (6): 1 053-1 059. (in Chinese)
Zhang W, Yu L, Lu M, Hutchinson S M, Feng H. 2007. Magnetic approach to normalizing heavy metal concentrations for particle size effects in intertidal sediments in the Yangtze Estuary, China. Environ. Pollut., 147 (1): 238-244.
Zhou J, Wu Y, Zhang J, Kang Q, Liu Z. 2006. Carbon and nitrogen composition and stable isotope as potential indicators of source and fate of organic matter in the salt marsh of the Changjiang Estuary, China. Chemosphere, 65 (2): 310-317.
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