首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Theoretical isotopic fractionation between structural boron in carbonates and aqueous boric acid and borate ion
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Theoretical isotopic fractionation between structural boron in carbonates and aqueous boric acid and borate ion

机译:碳酸盐和硼酸水性硼和硼酸硼离子结构硼之间的理论同位素分级

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摘要

The B-11/B-10 ratio in calcite and aragonite is an important proxy of oceanic water pH. However, the physico-chemical mechanisms underpinning this approach are still poorly known. In the present study, we theoretically determine the equilibrium isotopic fractionation properties of structural boron species in calcium carbonates, BO33-, BO2(OH)(2-) and B(OH)(4)(-) anions substituted for carbonate groups, as well as those of B(OH)(4)(-) and B(OH)(3) species in vacuum. Significant variability of equilibrium isotopic fractionation properties is observed among these structural species which is related to their contrasted coordination state, BAO bond lengths and atomic-scale environment. The isotopic composition of structural boron does not only depend on its coordination number but also on its medium range environment, i.e. farther than its first coordination shell. The isotopic fractionation between aqueous species and their counterparts in vacuum are assessed using previous investigations based on similar quantum-mechanical modeling approaches. At 300 K, the equilibrium isotope composition of structural trigonal species is 7-15% lighter than that of aqueous boric acid molecules, whereas substituted tetrahedral borate ions are heavier than their aqueous counterparts by 10-13%. Although significant uncertainties are known to affect the theoretical prediction of fractionation factors between solids and solutions, the usually assumed lack of isotopic fractionation during borate incorporation in carbonates is challenged by these theoretical results. The present theoretical equilibrium fractionation factors between structural boron and aqueous species differ from those inferred from experiments which may indicate that isotopic equilibrium, unlike chemical equilibrium, was not reached in most experiments. Further research into the isotopic fractionation processes at the interface between calcium carbonates and aqueous solution as well as long duration experiments aimed at inve
机译:方解石和金属石中的B-11 / B-10比例是海水pH的重要代理。然而,基于这种方法的物理化学机制仍然是众所周知的。在本研究中,我们从理论上测定碳酸钙,BO33-,BO2(OH)(2)和B(OH)(4)( - )阴离子中的结构硼种类的平衡同位素分馏性能,如以及B(OH)(4)( - )和B(OH)(3)种真空的那些。这些结构种类中观察到平衡同位素分馏性能的显着变化,其与其对比的协调状态,包键长度和原子级环境有关。结构硼的同位素组成不仅取决于其协调数,而且仅取决于其中等范围环境,即比其第一个协调壳更远。使用基于类似量子机械建模方法的先前的研究,评估水物质与其对应物之间的同位素分馏。在300k时,结构三角形物种的平衡同位素组成比硼酸分子的较轻较轻7-15%,而取代的四面体硼酸盐离子比其水对应物更重10-13%。虽然已知显着的不确定性会影响固体和溶液之间分级因子的理论预测,但是通过这些理论结果攻击硼酸盐掺入期间通常假设的同位素分级。在大多数实验中,结构硼和含水物质之间的本理论平衡分馏因子与从实验推断的那些不同的实验不同。进一步研究在碳酸钙和水溶液之间的界面处的同位素分级过程以及旨在导航的长时间实验

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