International audienceIn their late stages of evolution, peraluminous granitic melts exsolve large amounts of fluidswhich can modify the chemical composition of granitic whole-rock samples. The niobium/tantalum (Nb/Ta) ratio is expected to decrease during the magmatic differentiation of graniticmelts, but the behavior of both elements at the magmatic-hydrothermal transition remainsunclear. Using a compilation of whole-rock geochemical data available in the literature, wedemonstrate that fractional crystallization alone is not sufficient to explain the distribution ofNb-Ta in most peraluminous granites. However, we notice that most of the granitic samplesdisplaying evidence of interactions with fluids have Nb/Ta < 5. We propose that the decr...
International audienceWe thank A. Stepanov and co-authors (Stepanov et al., 2016) forgiving us the o...
International audienceWe thank A. Stepanov and co-authors (Stepanov et al., 2016) forgiving us the o...
International audienceWe thank A. Stepanov and co-authors (Stepanov et al., 2016) forgiving us the o...
International audienceIn their late stages of evolution, peraluminous granitic melts exsolve large a...
International audienceIn their late stages of evolution, peraluminous granitic melts exsolve large a...
International audienceIn their late stages of evolution, peraluminous granitic melts exsolve large a...
International audienceIn their late stages of evolution, peraluminous granitic melts exsolve large a...
International audienceIn their late stages of evolution, peraluminous granitic melts exsolve large a...
International audienceIn their late stages of evolution, peraluminous granitic melts exsolve large a...
International audienceIn their last stages of evolution (i.e. at themagmatic-hydrothermal transition...
International audienceIn their last stages of evolution (i.e. at themagmatic-hydrothermal transition...
International audienceIn their last stages of evolution (i.e. at themagmatic-hydrothermal transition...
International audienceIn their last stage of evolution, highly evolved peraluminous melts can exsolv...
International audienceIn their last stage of evolution, highly evolved peraluminous melts can exsolv...
International audienceIn their last stage of evolution, highly evolved peraluminous melts can exsolv...
International audienceWe thank A. Stepanov and co-authors (Stepanov et al., 2016) forgiving us the o...
International audienceWe thank A. Stepanov and co-authors (Stepanov et al., 2016) forgiving us the o...
International audienceWe thank A. Stepanov and co-authors (Stepanov et al., 2016) forgiving us the o...
International audienceIn their late stages of evolution, peraluminous granitic melts exsolve large a...
International audienceIn their late stages of evolution, peraluminous granitic melts exsolve large a...
International audienceIn their late stages of evolution, peraluminous granitic melts exsolve large a...
International audienceIn their late stages of evolution, peraluminous granitic melts exsolve large a...
International audienceIn their late stages of evolution, peraluminous granitic melts exsolve large a...
International audienceIn their late stages of evolution, peraluminous granitic melts exsolve large a...
International audienceIn their last stages of evolution (i.e. at themagmatic-hydrothermal transition...
International audienceIn their last stages of evolution (i.e. at themagmatic-hydrothermal transition...
International audienceIn their last stages of evolution (i.e. at themagmatic-hydrothermal transition...
International audienceIn their last stage of evolution, highly evolved peraluminous melts can exsolv...
International audienceIn their last stage of evolution, highly evolved peraluminous melts can exsolv...
International audienceIn their last stage of evolution, highly evolved peraluminous melts can exsolv...
International audienceWe thank A. Stepanov and co-authors (Stepanov et al., 2016) forgiving us the o...
International audienceWe thank A. Stepanov and co-authors (Stepanov et al., 2016) forgiving us the o...
International audienceWe thank A. Stepanov and co-authors (Stepanov et al., 2016) forgiving us the o...