GLACIAL-HOLOCENE BIOGENIC SEDIMENTATION PATTERNS IN THE SOUTH CHINA SEA: PRODUCTIVITY VARIATIONS AND SURFACE WATER pCO(2)

被引:129
作者
Thunell, R. C. [1 ]
Miao Qingmin [1 ]
Calvert, S. E. [2 ]
Pedersen, T. F. [2 ]
机构
[1] Univ S Carolina, Dept Geol Sci, Columbia, SC 29208 USA
[2] Univ British Columbia, Dept Oceanog, Vancouver, BC V6T 1W5, Canada
来源
PALEOCEANOGRAPHY | 1992年 / 7卷 / 02期
基金
加拿大自然科学与工程研究理事会;
关键词
D O I
10.1029/92PA00278
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
A bathymetric transect of cores in the South China Sea extending from 4200-m to less than 1000-m water depth has been examined for glacial-interglacial changes in carbonate and organic carbon sedimentation. Typical "Pacific carbonate cycles" (high carbonate content during glacials and low carbonate content during interglacials) characterize cores from water depths deeper than 3500 m. In contrast, "Atlantic carbonate cycles" (low carbonate during glacials and high carbonate during interglacials) are observed in cores from depths shallower than 3000 m as a result of increased dilution of carbonate by terrigenous material during glacial low stands of sea level. Glacial-interglacial changes in the carbonate chemistry of South China Sea intermediate and deep waters resulted in significant changes in the positions of the carbonate compensation depth (CCD) and the aragonite compensation depth (ACD). During the last glacial the CCD and ACD were at least 400 and 1200 m deeper, respectively, than at present. Organic carbon accumulation rates in the South China Sea were approximately 2 times higher during the last glacial than the Holocene. Carbon isotope analyses and C/N ratios of the organic matter indicate that only a small fraction of the increase in glacial organic carbon accumulation can be attributed to input of terrestrial carbon. On the basis of this we conclude that surface water productivity in the South China Sea was approximately 2 times higher during the last glacial maximum. This is consistent with previous studies which have demonstrated that glacial productivity studies which have demonstrated that glacial productivity was higher in low- to mid-latitude regions of the Atlantic and eastern Pacific. The deglacial decrease in organic carbon accumulation is accompanied by a decrease in delta C-13(org). Using the relationship between delta C-13(org) and [CO2]((aq)) developed by Popp et al. [1989], we estimate that surface water pCO(2) values in the South China Sea during the last 25,000 years were very similar to atmospheric CO2 concentrations.
引用
收藏
页码:143 / 162
页数:20
相关论文
共 79 条
[11]   DEEP CIRCULATION OF THE NORTH-ATLANTIC OVER THE LAST 200,000 YEARS - GEOCHEMICAL EVIDENCE [J].
BOYLE, EA ;
KEIGWIN, LD .
SCIENCE, 1982, 218 (4574) :784-787
[12]   COMPARISON OF ATLANTIC AND PACIFIC PALEOCHEMICAL RECORDS FOR THE LAST 215,000 YEARS - CHANGES IN DEEP OCEAN CIRCULATION AND CHEMICAL INVENTORIES [J].
BOYLE, EA ;
KEIGWIN, LD .
EARTH AND PLANETARY SCIENCE LETTERS, 1985, 76 (1-2) :135-150
[13]  
BRAMLETTE M. N., 1961, PUBL AMER ASSOC ADVANCE SCI, V67, P345
[14]   THE ROLE OF CaCO3 COMPENSATION THE GLACIAL TO INTERGLACIAL ATMOSPHERIC CO2 CHANGE [J].
Broecker, Wallace ;
Peng, Tsung-Hung .
GLOBAL BIOGEOCHEMICAL CYCLES, 1987, 1 (01) :15-29
[15]   GLACIAL TO INTERGLACIAL CHANGES IN OCEAN CHEMISTRY [J].
BROECKER, WS .
PROGRESS IN OCEANOGRAPHY, 1982, 11 (02) :151-197
[16]  
BROECKER WS, 1974, STUDIES PALEO OCEANO, V20, P44
[17]  
CALVERT SE, 1992, PRODUCTIVITY ACCUMUL
[18]  
CHESTER R, 1990, MARINE CHEM
[19]  
CLIMAP, 1981, GEOL SOC AM MC
[20]   CHANGES IN THE DISTRIBUTION OF partial derivative C-13 OF DEEP WATER Sigma CO2 BETWEEN THE LAST GLACIATION AND THE HOLOCENE [J].
Curry, W. B. ;
Duplessy, J. C. ;
Labeyrie, L. D. ;
Shackleton, N. J. .
PALEOCEANOGRAPHY, 1988, 3 (03) :317-341