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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Hydrogen isotope exchange kinetics between H2O and H4SiO4 from ab initio calculations [Review]
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Hydrogen isotope exchange kinetics between H2O and H4SiO4 from ab initio calculations [Review]

机译:从头算计算H2O和H4SiO4之间的氢同位素交换动力学[综述]

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Hydrogen isotope exchange between water and orthosilicic acid (H4SiO4) was modeled using B3LYP calculations and classical transition-state theory. Configurations of 1, 2, 3 and 7 water molecules and H4SiO4 were used to investigate energetically viable reaction pathways. An upper-bound of 71 kJ/mol was assumed for the zero-point energy corrected barrier (ZPECB) because this is the experimentally determined activation energy for Si-O bond breaking (Rimstidt and Barnes, 1980) and ZPECB is expected to be close to this value. Long range solvation forces were accounted for using the integral equation formalism polarized continuum model (IEFPCM; Cances et al., 1997). Primary and secondary isotope effects were computed by exchanging hydrogen atoms with deuterium. Results show that reaction mechanisms involving 3 and 7 water molecules have ZPECB of 34 to 38 kJ/mol, whereas those involving 1 and 2 water molecules have ZPECB in excess of the set upper-bound. The lower range of ZPECB with 3 or 7 water molecules is reasonable to explain rapid hydrogen isotope exchange with silicates. Rate constant calculations accounting for tunneling, anharmonicity and scaling factors indicate that the reaction is fast and equilibrium can be assumed under most geologic conditions. Copyright (C) 2003 Elsevier Science Ltd. [References: 105]
机译:水和原硅酸(H4SiO4)之间的氢同位素交换使用B3LYP计算和经典过渡态理论进行建模。用1、2、3和7个水分子和H4SiO4的构型来研究在能量上可行的反应途径。零点能量校正势垒(ZPECB)假定为71 kJ / mol的上限,因为这是实验确定的Si-O键断裂的活化能(Rimstidt and Barnes,1980),并且ZPECB有望接近达到这个值。使用积分方程形式主义极化连续谱模型(IEFPCM; Cances等人,1997)解释了远距离溶剂化力。通过将氢原子与氘交换来计算一级和二级同位素效应。结果表明,涉及3和7个水分子的反应机理的ZPECB为34至38 kJ / mol,而涉及1和2个水分子的反应机理的ZPECB超过设定的上限。具有3或7个水分子的ZPECB的较低范围可以合理地解释与硅酸盐的快速氢同位素交换。考虑隧道效应,非谐性和比例因子的速率常数计算表明,该反应是快速的,并且在大多数地质条件下都可以假定平衡。版权所有(C)2003 Elsevier Science Ltd. [参考:105]

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