Distribution characteristics and sources of sedimentary organic matter in the pearl river estuary and adjacent coastal waters, southern China

Ling Zhang , Kedong Yin , Yongqiang Yang , Derong Zhang

Journal of Earth Science ›› 2013, Vol. 24 ›› Issue (2) : 262 -273.

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Journal of Earth Science ›› 2013, Vol. 24 ›› Issue (2) : 262 -273. DOI: 10.1007/s12583-013-0327-0
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Distribution characteristics and sources of sedimentary organic matter in the pearl river estuary and adjacent coastal waters, southern China

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Abstract

Geochemical descriptors (carbon, nitrogen contents, and their isotopes) of sedimentary organic matter (OM) were investigated in the Pearl River estuary (PRE) and adjacent coastal waters. The comprehensive geochemical data of surface and deep sediments were provided, and the sources of sedimentary OM were discussed in this area mainly impacted by human activities. Surface (1–10 cm) and deep (190–200 cm) sedimentary total organic carbon (TOC) were 1.2% and 0.6%, and total nitrogen (TN) contents were 0.09% and 0.05%, with δ13C of −24.3‰ and −24.5‰, on the average, respectively. Higher TOC and TN contents combining with relatively negative δ13C values in surface sediments suggested the increasing OM inputs from rivers in recent years. Terrestrial organic carbon (OC) contents were 0.70% and 0.36%, and marine OC contents were 0.50% and 0.28% on the average, respectively, in surface and deep sediment. Surface terrestrial and marine OC were lower in river outfalls due to the high current energy, and deep terrestrial and marine OC showed the increasing trend away from the coast. Lower δ15N was mainly attributed to the influence of river sewage discharge in this study.

Keywords

organic matter / concentration / isotope / Pearl River estuary

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Ling Zhang, Kedong Yin, Yongqiang Yang, Derong Zhang. Distribution characteristics and sources of sedimentary organic matter in the pearl river estuary and adjacent coastal waters, southern China. Journal of Earth Science, 2013, 24(2): 262-273 DOI:10.1007/s12583-013-0327-0

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References

[1]

Andrews J E, Greenaway A M, Dennis P F. Combined Carbon Isotope and C/N Ratios as Indicators of Source and Fate of Organic Matter in Poorly Flushed, Tropical Estuary: Hunts Bay, Kingston Harbour, Jamaica. Est. Coast. Shelf Sci., 1998, 46: 743-756.

[2]

Cai W J, Dai M H, Wang Y C, . The Biogeochemistry of Inorganic Carbon and Nutrients in the Pearl River Estuary and the Adjacent Northern South China Sea. Cont. Shelf Res., 2004, 24: 1301-1319.

[3]

Castro P, Valiela I, Freitas H. The Use of Sedimentary %C, %N, δ15N, and Pb Concentrations to Assess Historical Changes in Anthropogenic Influence on Portuguese Estuaries. Environ. Pollut., 2007, 147: 706-712.

[4]

Chau K W. Persistent Organic Pollution Characterization of Sediments in Pearl River Estuary. Chemosphere, 2006, 64: 1545-1549.

[5]

Chen Y. Sedimentation Divisions of Pearl River Mouth. Acta Scientiarum Saturalium Universitatis Sunyatseni, 1995, 34(3): 109-114.

[6]

Chen F R, Zhang L, Yang Y Q, . Chemical and Isotopic Alteration of Organic Matter during Early Diagenesis: Evidence from the Coastal Area Off-Shore the Pearl River Estuary, South China. J. Mar. Syst., 2008, 74: 372-380.

[7]

Dai J H, Sun M Y. Organic Matter Sources and Their Use by Bacteria in the Sediments of the Altamaha Estuary during High and Low Discharge Periods. Org. Geochem., 2007, 38: 1-15.

[8]

Freudenthal T, Wagner T, Wenzhöfer F, . Early Diagenesis of Organic Matter from Sediments of the Eastern Subtropical Atlantic: Evidence from Stable Nitrogen and Carbon Isotopes. Geochim. Cosmochim. Acta, 2001, 65(11): 1795-1808.

[9]

Hedges J I, Keil R G, Benner R. What Happens to Terrestrial Organic Matter in the Ocean?. Org. Geochem., 1997, 27(5/6): 195-212.

[10]

Hu J F, Peng P A, Jia G D, . Distribution and Sources of Organic Carbon, Nitrogen and Their Isotopes in Sediments of the Subtropical Pearl River Estuary and Adjacent Shelf, Southern China. Mar. Chem., 2006, 98: 274-285.

[11]

Jasper J P, Gagosian R B. The Sources and Deposition of Organic Matter in the Late Quaternary Pigmy Basin, Gulf of Mexico. Geochim. Cosmochim. Acta, 1990, 54(4): 1117-1132.

[12]

Jia G D, Peng P A, Fu J M. Sedimentary Records of Accelerated Eutrophication for the Last l00 Years at the Pearl River Estuary, Guangzhou. Quat. Sci., 2002, 22(2): 158-165.

[13]

Jia G D, Peng P A. Temporal and Spatial Variations in Signatures of Sedimented Organic Matter in Lingding Bay (Pearl Estuary), Southern China. Mar. Chem., 2003, 82: 47-54.

[14]

Lin R F, Min Y S, Wei K Q, . 210Pb-Dating of Sediment Cores from the Pearl River Mouth and Its Environmental Geochemistry Implication. Geochim., 1998, 27(5): 401-411.

[15]

Liu M, Hou L J, Xu S Y, . Organic Carbon and Nitrogen Stable Isotopes in the Intertidal Sediments from the Yangtze Estuary, China. Mar. Pollut. Bull., 2006, 52: 1625-1633.

[16]

Maksymowska D, Richard P, Piekarek-Jankowska H, . Chemical and Isotopic Composition of the Organic Matter Sources in the Gulf of Gdansk (Southern Baltic Sea). Est. Coast. Shelf Sci., 2000, 51: 585-598.

[17]

Meyers P A. Organic Geochemical Proxies of Paleoceanographic, Paleolimnologic, and Paleoclimatic Processes. Org. Geochem., 1997, 27(5/6): 213-250.

[18]

Müller A, Voss M. The Palaeoenvironments of Coastal Lagoons in the Southern Baltic Sea: II. δ13C and δ15N Ratios of Organic Matter—Sources and Sediments. Palaeogeogr., Palaeoclimatol., Palaeoecol., 1999, 145: 17-32.

[19]

Qian H L, Liang S. Study on the Red Tide in the Pearl River Estuary and Its Near Waters. Mar. Environ. Sci., 1999, 18(3): 69-74.

[20]

Roberts P, Chan R C K. A Tale of Two Regions: Strategic Planning for Sustainable Development in East and West. Int. Plann. Stud., 1997, 2(1): 45-62.

[21]

Sampaio L, Freitas R, Máguas C, . Coastal Sediments under the Influence of Multiple Organic Enrichment Sources: An Evaluation Using Carbon and Nitrogen Stable Isotopes. Mar. Pollut. Bull., 2010, 60: 272-282.

[22]

Schmidt F, Hinrichs K U, Elvert M. Sources, Transport, and Partitioning of Organic Matter at a Highly Dynamic Continental Margin. Mar. Chem., 2010, 118: 37-55.

[23]

Sun X S, Peng P A, Song J Z, . Sedimentary Record of Black Carbon in the Pearl River Estuary and Adjacent Northern South China Sea. Appl. Geochem., 2008, 23: 3464-3472.

[24]

Thornton S F, McManus J. Application of Organic Carbon and Nitrogen Stable Isotope and C/N Ratios as Source Indicators of Organic Matter Provenance in Estuarine Systems: Evidence from the Tay Estuary, Scotland. Est. Coast. Shelf Sci., 1994, 38(3): 219-233.

[25]

Tian X P. The Distribution Characteristics of Temperature in the Lingdingyang, Estuary of Zhujiang. J. Trop. Ocean., 1994, 13: 76-80.

[26]

Usui T, Nagao S, Yamamoto M, . Distribution and Sources of Organic Matter in Surficial Sediments on the Shelf and Slope off Tokachi, Western North Pacific, Inferred from C and N Stable Isotopes and C/N Ratios. Mar. Chem., 2006, 98: 241-259.

[27]

Zhang J, Yu Z G, Wang J L, . The Subtropical Zhujiang (Pearl River) Estuary: Nutrient, Trace Species and Their Relationship to Photosynthesis. Est. Coast. Shelf Sci., 1999, 49: 385-400.

[28]

Zhang J, Wu Y, Jennerjahn T C, . Distribution of Organic Matter in the Changjiang (Yangtze River) Estuary and Their Stable Carbon and Nitrogen Isotopic Ratios: Implications for Source Discrimination and Sedimentary Dynamics. Mar. Chem., 2007, 106: 111-126.

[29]

Zhang S R, Lu X X, Sun H G, . Geochemical Characteristics and Fluxes of Organic Carbon in a Human-Disturbed Mountainous River (the Luodingjiang River) of the Zhujiang (Pearl River), China. Sci. Total Environ., 2009, 407: 815-825.

[30]

Zhang S, Peng P, Huang W, . PCDD/PCDF Pollution in Soils and Sediments from the Pearl River Delta of China. Chemosphere, 2009, 75: 1186-1195.

[31]

Zhang L, Yin K D, Wang L, . The Sources and Accumulation Rate of Sedimentary Organic Matter in the Pearl River Estuary and Adjacent Coastal Area, Southern China. Est. Coast. Shelf Sci., 2009, 85: 190-196.

[32]

Zimmerman A R, Canuel E A. Sediment Geochemical Records of Eutrophication in the Mesohaline Chesapeake Bay. Limnol. Oceanogr., 2002, 47(4): 1084-1093.

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