THE DEEP OCEAN DISPOSAL OF CARBON-DIOXIDE

被引:30
作者
WILSON, TRS
机构
[1] Institute of Oceanographic Sciences Deacon Laboratory, Godalming, Surrey GU8 5UB England, Brook Road, Wormley
关键词
CARBON DIOXIDE; OCEAN MIXING; PCO2; PH; CO2-HYDRATE; CALCITE; CALCIUM CARBONATE; FOSSIL FUEL;
D O I
10.1016/0196-8904(92)90065-5
中图分类号
O414.1 [热力学];
学科分类号
摘要
Once released to the environment, carbon dioxide equilibrates within the ocean-atmosphere pool. Because the mixing of surface seawater is relatively slow, release to the atmosphere causes a transient peak in atmospheric carbon dioxide concentration. If the release could be transferred to the ocean, this transient might be avoided. In addition, interaction with the large carbon pool contained within the ocean sediment would be accelerated. The resultant increase in ocean alkalinity would tend to reduce equilibrium P(CO2) values. The dynamics of the processes involved are complex and not yet understood in detail. This paper reviews deep ocean carbonate chemistry and mixing, and estimates their relative importance for the prediction of atmospheric carbon dioxide concentrations resulting from deep ocean release. Predictions based on mathematical modelling suggest that disposal into the surface ocean (< 1 km depth) would permit equilibration with the atmosphere within a few years to decades and would therefore offer little advantage. Disposal into ocean basins greater than 3km in depth would delay equilibration with the atmosphere for several hundred years, eliminating the atmospheric concentration transient. Resultant interaction with calcite-rich sediments could probably reduce the long-term (> 2000 year) atmospheric enrichment by a significant amount (approximately 50%)
引用
收藏
页码:627 / 633
页数:7
相关论文
共 11 条
[1]  
Clark, Carbon Dioxide Review 1982, (1982)
[2]  
Emerson, Archer, Calcium Carbonate preservation in the ocean, Philosophical Transactions of the Royal Society A: Mathematical, Physical and Engineering Sciences, 331 A, pp. 29-40, (1990)
[3]  
Ennever, McElroy, Changes in atmospheric CO<sub>2</sub>: factors regulating the glacial to interglacial transition, : natural variations Archean to present, pp. 154-162, (1985)
[4]  
Hoffert, Wey, Callegari, Broecker, Atmospheric response to deep-sea injection of fossil-fuel carbon dioxide, Climatic Change, 2, pp. 53-68, (1979)
[5]  
Marchetti, On geoengineering the CO<sub>2</sub> problem, Climatic Change, 1, pp. 59-68, (1977)
[6]  
Sakai, Gamo, Kim, Tsutsumi, Tanaka, Ishibashi, Wakita, Yamano, Oomori, Venting of carbon dioxide-rich fluid and hydrate formation in mid-Okinawa Trough Back-arc Basin, Science, 248, 4959, pp. 1093-1096, (1990)
[7]  
Sunquist, Geologic analogs: their value and limitations in carbon dioxide research, The Changing Carbon Cycle, a Global Analysis, pp. 371-402, (1986)
[8]  
Toggweiler, Sarmiento, Glacial to interglacial changes in atmospheric carbon dioxide: the critical role of ocean surface water in high latitudes, The Carbon cycle and atmospheric CO2: natural variations Archean to present, pp. 163-184, (1985)
[9]  
Wenk, Siegenthaler, The high-latitude ocean as a control of atmospheric CO2, : natural variations Archean to present, pp. 185-194, (1985)
[10]  
Whitmarsh, Hunter, Kenyon, Topographic implications of ocean disposal of carbon dioxide, Report prepared for British Coal under contract CRE/CON 1169 by IOSDL, (1992)