The boron isotopic composition of marine carbonates is considered to be a tracer of seawater pH. Use of this proxy benefits from an intimate understanding of chemical kinetics and thermodynamic isotope exchange reactions between the two dominant boron-bearing species in seawater: boric acid B(OH)3 and borate ion B(OH)4−. However, because of our inability to quantitatively separate these species in solution, the degree of boron isotope exchange has only been known through theoretical estimates. In this study, we present results of a spectrophotometric procedure wherein the boron isotope equilibrium constant (11–10KB) is determined empirically from the difference in the dissociation constants of 11B(OH)3 and 10B(OH)3 in pure water, 0.6 mol kg...
Experiments involving boron incorporation into brucite (Mg(OH)(2)) from magnesium-free artificial se...
The boron isotopic ratio of 11B/10B (δ11BSRM951) and trace element composition of marine carbonates ...
Copyright © 2014 John Wiley & Sons, Ltd. RATIONALE The isotopic composition and elemental abundanc...
International audienceThe 11B/10B ratio in calcite and aragonite is an important proxy of oceanic wa...
Significant boron isotope fractionation occurs in nature (-70 aEuro degrees to +75 aEuro degrees) du...
International audienceEquilibrium boron isotopic fractionations between trigonal B(OH)3 and tetragon...
By studying the boron isotope composition of marine carbonates, the effectiveness of the tracer to r...
Boron isotopes in marine carbonates are increasingly used to reconstruct seawater pH and atmospheric...
[[abstract]]The ocean has played a major role in controlling the variation of the CO2 content in the...
International audienceBoron isotopes in marine carbonates are increasingly used to reconstruct seawa...
The boron isotopic composition measured in marine carbonates is considered to be a tracer of seawate...
The aqueous boric, hydrofluoric, and fluoroboric acid systems are key to a variety of applications, ...
Boron isotopes in marine carbonates are increasingly used to reconstruct seawater pH and atmospheric...
The isotopic systems of boron and magnesium are increasingly being used as proxies for a number of e...
The boron isotopic (δ11BSRM951) and trace element composition of marine carbonates are key proxies f...
Experiments involving boron incorporation into brucite (Mg(OH)(2)) from magnesium-free artificial se...
The boron isotopic ratio of 11B/10B (δ11BSRM951) and trace element composition of marine carbonates ...
Copyright © 2014 John Wiley & Sons, Ltd. RATIONALE The isotopic composition and elemental abundanc...
International audienceThe 11B/10B ratio in calcite and aragonite is an important proxy of oceanic wa...
Significant boron isotope fractionation occurs in nature (-70 aEuro degrees to +75 aEuro degrees) du...
International audienceEquilibrium boron isotopic fractionations between trigonal B(OH)3 and tetragon...
By studying the boron isotope composition of marine carbonates, the effectiveness of the tracer to r...
Boron isotopes in marine carbonates are increasingly used to reconstruct seawater pH and atmospheric...
[[abstract]]The ocean has played a major role in controlling the variation of the CO2 content in the...
International audienceBoron isotopes in marine carbonates are increasingly used to reconstruct seawa...
The boron isotopic composition measured in marine carbonates is considered to be a tracer of seawate...
The aqueous boric, hydrofluoric, and fluoroboric acid systems are key to a variety of applications, ...
Boron isotopes in marine carbonates are increasingly used to reconstruct seawater pH and atmospheric...
The isotopic systems of boron and magnesium are increasingly being used as proxies for a number of e...
The boron isotopic (δ11BSRM951) and trace element composition of marine carbonates are key proxies f...
Experiments involving boron incorporation into brucite (Mg(OH)(2)) from magnesium-free artificial se...
The boron isotopic ratio of 11B/10B (δ11BSRM951) and trace element composition of marine carbonates ...
Copyright © 2014 John Wiley & Sons, Ltd. RATIONALE The isotopic composition and elemental abundanc...