Composition of the depleted mantle

被引:1542
作者
Salters, VJM [1 ]
Stracke, A
机构
[1] Florida State Univ, Natl High Magnet Field Lab, Tallahassee, FL 32312 USA
[2] Florida State Univ, Dept Geol Sci, Tallahassee, FL 32312 USA
[3] Univ Cambridge, Dept Earth Sci, Cambridge CB2 3EQ, England
关键词
mantle geochemistry; geochemistry : chemical evolution; geochemistry : composition of the mantle; geochemistry : isotopic composition/chemistry;
D O I
10.1029/2003GC000597
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
We present an estimate for the composition of the depleted mantle (DM), the source for mid-ocean ridge basalts (MORBs). A combination of approaches is required to estimate the major and trace element abundances in DM. Absolute concentrations of few elements can be estimated directly, and the bulk of the estimates is derived using elemental ratios. The isotopic composition of MORB allows calculation of parent-daughter ratios. These estimates form the "backbone'' of the abundances of the trace elements that make up the Coryell-Masuda diagram ( spider diagram). The remaining elements of the Coryell-Masuda diagram are estimated through the composition of MORB. A third group of estimates is derived from the elemental and isotopic composition of peridotites. The major element composition is obtained by subtraction of a low-degree melt from a bulk silicate Earth (BSE) composition. The continental crust (CC) is thought to be complementary to the DM, and ratios that are chondritic in the CC are expected to also be chondritic in the DM. Thus some of the remaining elements are estimated using the composition of CC and chondrites. Volatile element and noble gas concentrations are estimated using constraints from the composition of MORBs and ocean island basalts (OIBs). Mass balance with BSE, CC, and DM indicates that CC and this estimate of the DM are not complementary reservoirs.
引用
收藏
页数:27
相关论文
共 111 条
[1]   THE SM/ND SECULAR EVOLUTION OF THE CONTINENTAL-CRUST AND THE DEPLETED MANTLE [J].
ALBAREDE, F ;
BROUXEL, M .
EARTH AND PLANETARY SCIENCE LETTERS, 1987, 82 (1-2) :25-35
[2]   CHEMICAL-STRUCTURE AND EVOLUTION OF THE MANTLE AND CONTINENTS DETERMINED BY INVERSION OF ND AND SR ISOTOPIC DATA .2. NUMERICAL EXPERIMENTS AND DISCUSSION [J].
ALLEGRE, CJ ;
HART, SR ;
MINSTER, JF .
EARTH AND PLANETARY SCIENCE LETTERS, 1983, 66 (1-3) :191-213
[3]   CHEMICAL-STRUCTURE AND EVOLUTION OF THE MANTLE AND CONTINENTS DETERMINED BY INVERSION OF ND AND SR ISOTOPIC DATA .1. THEORETICAL METHODS [J].
ALLEGRE, CJ ;
HART, SR ;
MINSTER, JF .
EARTH AND PLANETARY SCIENCE LETTERS, 1983, 66 (1-3) :177-190
[4]   RUBIDIUM-87/STRONTIUM-87 AGE OF JUVINAS BASALTIC ACHONDRITE AND EARLY IGNEOUS ACTIVITY IN SOLAR-SYSTEM [J].
ALLEGRE, CJ ;
BIRCK, JL ;
FOURCADE, S ;
SEMET, MP .
SCIENCE, 1975, 187 (4175) :436-438
[5]  
[Anonymous], P 27 INT GEOL C
[6]   INVERSE RELATIONSHIP BETWEEN SR ISOTOPE DIVERSITY AND RATE OF OCEANIC VOLCANISM HAS IMPLICATIONS FOR MANTLE HETEROGENEITY [J].
BATIZA, R .
NATURE, 1984, 309 (5967) :440-441
[7]   MANTLE HETEROGENEITY FROM TRACE-ELEMENTS - MAR TRIPLE JUNCTION NEAR 14-DEGREES-N [J].
BOUGAULT, H ;
DMITRIEV, L ;
SCHILLING, JG ;
SOBOLEV, A ;
JORON, JL ;
NEEDHAM, HD .
EARTH AND PLANETARY SCIENCE LETTERS, 1988, 88 (1-2) :27-36
[8]   Ridge-hotspot interaction along the Mid-Atlantic Ridge between 37 degrees 30' and 40 degrees 30'N: The U-Th disequilibrium evidence [J].
Bourdon, B ;
Langmuir, CH ;
Zindler, A .
EARTH AND PLANETARY SCIENCE LETTERS, 1996, 142 (1-2) :175-189
[9]  
BOURDON B, 1993, EOS T AGU, V74, P632