AbstractTo deconvolve the effect of growth rate and temperature on the boron partitioning into calcite and its isotope fractionation, seeded calcite precipitation experiments were performed at a constant temperature and various growth rates and at a constant growth rate and various temperatures. We show that boron partitioning increases with increasing growth rate and decreases with increasing temperature. The B isotope fractionation between calcite and B(OH)4− increases with increasing growth rate favoring the lighter B isotope for incorporation into calcite whereas no effect of temperature was observed within the temperature range investigated (12°C to 32°C). At the lowest temperature and growth rate δ11B of the calcite almost equals that...
Precipitation of carbonate minerals is ubiquitous in the near-surface environment, and the isotopic ...
Current interest in boron incorporation into carbonates arises from the observation that the isotopi...
A surface reaction kinetic model is developed for predicting Ca isotope fractionation and metal/Ca r...
To deconvolve the effect of growth rate and temperature on the boron partitioning into calcite and i...
To deconvolve the effect of growth rate and temperature on the boron partitioning into calcite and i...
AbstractTo deconvolve the effect of growth rate and temperature on the boron partitioning into calci...
International audienceThe boron isotopic and chemical content of carbonates (expressed as δ11B and B...
The boron concentration (B/Ca ratio) and isotopic composition (δ11B) of biogenic calcite are widely ...
Ca isotope fractionation during inorganic calcite formation was experimentally studied by spontaneou...
The Sr/Ca ratio of biogenic carbonate is widely used as a proxy for paleotemperature. This applicati...
Microscopic mechanisms operating at the mineral-aqueous interface control rates of growth and dissol...
Considerable efforts have been made to calibrate the δ47 paleothermometer, which derives from the qu...
To study the incorporation of magnesium (Mg) and strontium (Sr) in calcite precipitated over synthet...
Magnesium (Mg) isotopes in carbonate minerals are a useful proxy for paleoclimate studies, but inter...
International audienceAlthough adsorption at the solid surface is the first step controlling boron i...
Precipitation of carbonate minerals is ubiquitous in the near-surface environment, and the isotopic ...
Current interest in boron incorporation into carbonates arises from the observation that the isotopi...
A surface reaction kinetic model is developed for predicting Ca isotope fractionation and metal/Ca r...
To deconvolve the effect of growth rate and temperature on the boron partitioning into calcite and i...
To deconvolve the effect of growth rate and temperature on the boron partitioning into calcite and i...
AbstractTo deconvolve the effect of growth rate and temperature on the boron partitioning into calci...
International audienceThe boron isotopic and chemical content of carbonates (expressed as δ11B and B...
The boron concentration (B/Ca ratio) and isotopic composition (δ11B) of biogenic calcite are widely ...
Ca isotope fractionation during inorganic calcite formation was experimentally studied by spontaneou...
The Sr/Ca ratio of biogenic carbonate is widely used as a proxy for paleotemperature. This applicati...
Microscopic mechanisms operating at the mineral-aqueous interface control rates of growth and dissol...
Considerable efforts have been made to calibrate the δ47 paleothermometer, which derives from the qu...
To study the incorporation of magnesium (Mg) and strontium (Sr) in calcite precipitated over synthet...
Magnesium (Mg) isotopes in carbonate minerals are a useful proxy for paleoclimate studies, but inter...
International audienceAlthough adsorption at the solid surface is the first step controlling boron i...
Precipitation of carbonate minerals is ubiquitous in the near-surface environment, and the isotopic ...
Current interest in boron incorporation into carbonates arises from the observation that the isotopi...
A surface reaction kinetic model is developed for predicting Ca isotope fractionation and metal/Ca r...