P. Agrinier and M. Cannat, Oxygen-isotope constraints on serpentinization processes in ultramafic rocks from the mid-atlantic ridge (23EN), Proc. Ocean Drill. Program, Sci. Results, vol.153, pp.381-388, 1997.

P. Agrinier, C. Mével, and J. Girardeau, Hydrothermal alteration of the peridotites cored at the ocean/continent boundary of the Iberian margin: petrologic and stable isotope evidence, Proc. Ocean Drill. Program, Sci. Results, vol.103, pp.225-233, 1988.

B. Anselmi, M. Mellini, and C. Viti, Chlorine in the Elba, Monti Livornesi and Murlo serpentines: Evidence for seawater interaction, Eur. J. Mineral, vol.12, pp.137-146, 2000.
DOI : 10.1127/ejm/12/1/0137

G. Berger, J. Schott, and C. Guy, Behaviour of Li, Rb and Cs during basalt glass and olivine dissolution and chlorite, smectite and zeolite precipitation from seawater: Experimental investigations and modelization between 50° and 300°C, Chem. Geol, vol.71, pp.297-312, 1988.
DOI : 10.1016/0009-2541(88)90056-3

E. Bonatti, J. R. Lawrence, and N. Morandi, Serpentinization of oceanic peridotites: temperature dependence of mineralogy and boron content, Earth Planet. Sci. Lett, vol.70, pp.88-94, 1984.

R. A. Brooker, R. H. James, and J. D. Blundy, Subductionrelated mantle pyroxenites at Zabargad Island, Red Sea: Evidence from Li isotopes and trace element geochemistry, 10 th Annual V.M. Goldschmidt Conference, vol.5, p.249, 2000.

L. H. Chan and J. M. Edmond, Variation of lithium isotope composition in the marine environment: a preliminary report, Geochim. Cosmochim. Acta, vol.52, pp.1711-1717, 1988.

L. H. Chan, J. M. Edmond, G. Thompson, and K. Gillis, Lithium isotopic composition of submarine basalts: Implications for the lithium cycle in the ocean, Earth Planet. Sci. Lett, vol.108, pp.151-160, 1992.

L. H. Chan, J. M. Edmond, and G. Thompson, A lithium isotope study of hot springs and metabasalts from mid-ocean ridge hydrothermal systems, J. Geophys. Res, vol.98, pp.9653-9659, 1993.

L. H. Chan, L. Zhang, and J. R. Hein, Lithium isotope characteristics of marine sediments, Eos Trans. AGU, vol.75, p.314, 1994.
DOI : 10.1029/2005gc001202

URL : http://onlinelibrary.wiley.com/doi/10.1029/2005GC001202/pdf

M. Chaussidon, F. Robert, D. Mangin, P. Hanon, and E. Rose, Analytical procedures for the measurement of boron isotope compositions by ion microprobe in meteorites and mantle rocks, Geostand. News. J. Geostand. Geoanal, vol.21, pp.7-17, 1997.

A. J. Coulton, G. D. Harper, and D. S. O'hanley, Oceanic versus emplacement age serpentinization in the Josephine ophiolite: Implications for the nature of the Moho at intermediate and slow spreading ridges, J. Geophys. Res, vol.100, pp.245-267, 1995.

E. Deloule, C. France-lanord, and F. Albarède, D/H analysis of minerals by ion probe, in Stable Isotope Geochemistry: A Tribute to Samuel Epstein, Geochem. Soc. Spec. Publ, vol.3, pp.53-62, 1991.

E. Deloule, M. Chaussidon, and P. Allé, Instrumental limitations for isotope measurements with a Cameca ims-3f ion microprobe: Example of H, B, S and Sr, Chem. Geol, vol.101, pp.187-192, 1992.

C. Demets, R. G. Gordon, D. F. Argus, and C. Stein, Current plate motion, Geophys. J. Int, vol.101, pp.425-478, 1990.

J. M. Edmond, C. Measures, R. E. Mcduff, L. H. Chan, R. Collier et al., Ridge crest hydrothermal activity and the balances of the major and minor elements in the ocean: The Galapagos data, Int. J. Mass Spectrom. Ion Phys, vol.46, pp.265-272, 1973.

G. L. Früh-green, A. Plas, and C. Lécuyer, Petrologic and stable isotope constraints on hydrothermal alteration and serpentinization of the EPR shallow mantle at Hess Deep (Site 895), Proc. Ocean Drill. Program, Sci. Results, vol.147, pp.255-291, 1996.

Y. Huh, L. H. Chan, L. Zhang, and J. M. Edmond, Lithium and its isotopes in major world rivers: Implications for weathering and the oceanic budget, Geochim. Cosmochim. Acta, vol.62, pp.2039-2051, 1998.
DOI : 10.1016/s0016-7037(98)00126-4

R. J. James and M. R. Palmer, The lithium isotope composition of international rock standards and solutions, Chem. Geol, vol.166, pp.319-326, 2000.

R. J. James, H. Elderfield, and M. R. Palmer, The chemistry of hydrothermal fluids from Broken Spur site, 29°N MidAtlantic Ridge, Geochim. Cosmochim. Acta, vol.59, pp.651-659, 1995.

K. L. Kimball and D. Gerlach, Sr isotopic constraints on hydrothermal alteration of ultramafic rocks in two oceanic fracture zones from the South Atlantic Ocean, Earth Planet. Sci. Lett, vol.78, pp.177-188, 1986.

K. L. Kimball, F. S. Spear, and H. J. Dick, High temperature alteration of abyssal ultramafics from the Islas Orcadas fracture zone, Contrib. Mineral. Petrol, vol.91, pp.307-320, 1985.

C. Lécuyer and S. Fourcade, Oxygen isotope evidence for multi-stage hydrothermal alteration at a fossil slow-spreading center, The Silurian Trinity ophiolite, vol.87, pp.231-246, 1991.

A. H. Macdonald and W. S. Fyfe, Rate of serpentinization in seafloor environments, Tectonophysics, vol.116, pp.123-135, 1985.

T. M. Mccollom and E. Shock, Fluid-rock interactions in the lower oceanic crust: thermodynamic models of hydrothermal alteration, J. Geophys. Res, vol.103, pp.547-575, 1998.

C. Mével, , 1997.

N. P. Morozov, Geochemistry of rare alkaline elements in the oceans and seas, Oceanology, vol.8, pp.169-178, 1968.

H. M. Prichard, A petrographic study of the processes of serpentinization in ophiolites and the ocean crust, Contrib. Mineral. Petrol, vol.68, pp.231-241, 1979.

J. C. Rucklidge, Chlorine in partially serpentinized dunite, Econ. Geol, vol.67, pp.38-40, 1972.

J. G. Ryan and C. H. Langmuir, The systematics of lithium abundances in young volcanic rocks, Geochim. Cosmochim. Acta, vol.51, pp.1727-1741, 1987.

H. Seitz and A. B. Woodland, The distribution of lithium in peridotitic and pyroxenitic mantle lithologies-An indicator of magmatic and metasomatic processes, Chem. Geol, vol.166, pp.47-64, 2000.

W. E. Seyfried, D. R. Janecky, and M. J. Mottl, Alteration of the oceanic crust: implications for geochemical cycles of lithium and boron, Geochim. Cosmochim. Acta, vol.48, pp.557-569, 1984.

A. M. Steuber, W. H. Huang, and W. D. Johns, Chlorine and fluorine in ultramafic rocks, Geochim. Cosmochim. Acta, vol.32, pp.353-358, 1968.

P. Stoffyn-egli and F. T. Mackenzie, Mass balance of dissolved lithium in the oceans, Geochim. Cosmochim. Acta, vol.48, pp.859-872, 1984.

D. A. Teagle, J. C. Alt, H. Chiba, S. E. Humphris, and A. N. Halliday, Strontium and oxygen isotopic constraints on fluid mixing, alteration and mineralization in the TAG hydrothermal deposit, Chem. Geol, vol.149, pp.1-24, 1998.

V. Damm, K. L. , B. Grant, and J. M. Edmond, Preliminary report on the chemistry of hydrothermal solutions at 21°N, East Pacific Rise, Hydrothermal Processes at Seafloor Spreading Centers, p.369, 1983.

D. B. Wenner and H. P. Taylor, Temperatures of serpentinization of ultramafic rocks based on 18 O/ 16 O fractionation between coexisting serpentine and magnetite, Contrib. Mineral. Petrol, vol.32, pp.165-185, 1971.

F. J. Wicks, E. J. Whittaker, C. F. , L. H. Chan, A. J. Spivack et al., Lithium, boron, and their isotopes in sediments and pore waters of ocean drilling program Site 808, Nankai Trough: Implications for fluid expulsion in accretionary prisms, Can. Mineral, vol.15, pp.37-40, 1977.

L. Zhang, L. H. Chan, and J. M. Gieskes, Lithium isotope geochemistry of pore waters from Ocean Drilling Program Sites 918 and 919, Irminger Basin, Geochim. Cosmochim. Acta, vol.62, pp.2437-2450, 1998.