HYDROTHERMAL LEAD TRANSFER FROM MANTLE TO CONTINENTAL-CRUST - THE ROLE OF METALLIFEROUS SEDIMENTS

被引:60
作者
PEUCKEREHRENBRINK, B [1 ]
HOFMANN, AW [1 ]
HART, SR [1 ]
机构
[1] WOODS HOLE OCEANOG INST,DEPT GEOL & GEOPHYS,WOODS HOLE,MA 02543
关键词
D O I
10.1016/0012-821X(94)90211-9
中图分类号
P3 [地球物理学]; P59 [地球化学];
学科分类号
0708 ; 070902 ;
摘要
The amount of lead annually transferred from oceanic crust to metalliferous sediments was estimated in order to test the hypothesis that a non-magmatic flux of lead causes the Pb surplus in the continental crust. A Pb surplus has been inferred from global crust-mantle lead mass balances derived from lead concentration correlations with other trace elements and from lead isotope systematics in oceanic basalts. DSDP/ODP data on the amount of metalliferous sediments in the Pacific Ocean and along a South Atlantic traverse are used to calculate the mean worldwide thickness of 3(+/-1) m for purely metalliferous sediment components. Lead isotope ratios of 39 metalliferous sediments from the Pacific define mixing lines between continent-derived (seawater) and mantle-derived (basaltic) lead, with the most metal-rich sediments usually having the most mantle-like Pb isotope composition. We used this isotope correlation and the Pb content of the 39 metalliferous sediments to derive an estimate of 130(+/-70) mug/g for the concentration of mantle-derived lead in the purely metalliferous end-member. Mass balance calculations show that at least 12(+/-8)% of the lead, annually transferred from upper mantle to oceanic crust at the ocean ridges, is leached out by hydrothermal processes and re-deposited in marine sediments. If all of the metalliferous lead is ultimately transferred to the continental crust during subduction, the annual flux of this lead from mantle to continental crust is 2.6(+/-2.0) x 1(0)6 kg. Assuming this transfer rate to be proportional to the rate of oceanic plate production, one can fit the lead transfer to models of plate production rate variations through time. Integrating over 4 Ga, hydrothermal lead transfer to the continental crust accounts for a significant portion of the Pb surplus in the continental crust. It therefore appears to be one of the main reasons for the anomalous behavior of lead in the global crust-mantle system.
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页码:129 / 142
页数:14
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共 74 条
[41]   HYPSOMETRY OF OCEAN BASIN PROVINCES [J].
MENARD, HW ;
SMITH, SM .
JOURNAL OF GEOPHYSICAL RESEARCH, 1966, 71 (18) :4305-+
[42]   HYDROTHERMAL URANIUM UPTAKE AT RIDGE CRESTS [J].
MICHARD, A ;
ALBAREDE, F .
NATURE, 1985, 317 (6034) :244-246
[43]   CERIUM LEAD AND LEAD-ISOTOPE RATIOS IN ARC MAGMAS AND THE ENRICHMENT OF LEAD IN THE CONTINENTS [J].
MILLER, DM ;
GOLDSTEIN, SL ;
LANGMUIR, CH .
NATURE, 1994, 368 (6471) :514-520
[44]   A DUAL ORIGIN FOR THE HYDROTHERMAL COMPONENT IN A METALLIFEROUS SEDIMENT CORE FROM THE MID-ATLANTIC RIDGE [J].
MILLS, R ;
ELDERFIELD, H ;
THOMSON, J .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 1993, 98 (B6) :9671-9681
[45]   SILICA AND GERMANIUM IN PACIFIC-OCEAN HYDROTHERMAL VENTS AND PLUMES [J].
MORTLOCK, RA ;
FROELICH, PN ;
FEELY, RA ;
MASSOTH, GJ ;
BUTTERFIELD, DA ;
LUPTON, JE .
EARTH AND PLANETARY SCIENCE LETTERS, 1993, 119 (03) :365-378
[46]   A MID-OCEAN RIDGE THERMAL-MODEL - CONSTRAINTS ON THE VOLUME OF AXIAL HYDROTHERMAL HEAT-FLUX [J].
MORTON, JL ;
SLEEP, NH .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS, 1985, 90 (NB13) :1345-1353
[47]   SIDEROPHILE AND CHALCOPHILE ELEMENT ABUNDANCES IN OCEANIC BASALTS, PB-ISOTOPE EVOLUTION AND GROWTH OF THE EARTHS CORE [J].
NEWSOM, HE ;
WHITE, WM ;
JOCHUM, KP ;
HOFMANN, AW .
EARTH AND PLANETARY SCIENCE LETTERS, 1986, 80 (3-4) :299-313
[48]   THE STRONTIUM ISOTOPE BUDGET OF THE MODERN OCEAN [J].
PALMER, MR ;
EDMOND, JM .
EARTH AND PLANETARY SCIENCE LETTERS, 1989, 92 (01) :11-26
[49]   CAUSES AND CONSEQUENCES OF THE RELATION BETWEEN AREA AND AGE OF THE OCEAN-FLOOR [J].
PARSONS, B .
JOURNAL OF GEOPHYSICAL RESEARCH, 1982, 87 (NB1) :289-302
[50]  
PEUCKEREHRENBRI.B, UNPUB