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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Isotopic fractionation of noble gases by diffusion in liquid water: Molecular dynamics simulations and hydrologic applications
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Isotopic fractionation of noble gases by diffusion in liquid water: Molecular dynamics simulations and hydrologic applications

机译:稀有气体的同位素分馏(通过在水中扩散):分子动力学模拟和水文应用

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摘要

Despite their great importance in low-temperature geochemistry, diffusion coefficients of noble gas isotopes in liquid water (D) have been measured only for the major isotopes of helium, neon, krypton and xenon. Data on the diffusion coefficients of minor noble gas isotopes are essentially non-existent and so typically have been estimated by a kinetic-theory model in which D varies as the inverse square root of the isotopic mass (m): D proportional to m(-0.5). To examine the validity of the kinetic-theory model, we performed molecular dynamics (MD) simulations of the diffusion of noble gases in ambient liquid water. Our simulation results agree with available experimental data on the solvation structure and diffusion coefficients of the major noble gas isotopes and reveal for the first time that the isotopic mass-dependence of all noble gas self-diffusion coefficients has the power-law form D proportional to m(-beta) with 0
机译:尽管它们在低温地球化学中具有重要意义,但仅针对氦,氖,k和氙的主要同位素测量了惰性气体同位素在液态水(D)中的扩散系数。关于次要稀有气体同位素的扩散系数的数据基本上不存在,因此通常通过动力学理论模型进行估算,其中D随着同位素质量(m)的平方根反比而变化:D与m(- 0.5)。为了检查动力学理论模型的有效性,我们对稀有气体在环境液态水中的扩散进行了分子动力学(MD)模拟。我们的模拟结果与主要稀有气体同位素的溶剂化结构和扩散系数的可用实验数据相符,并首次揭示所有稀有气体自扩散系数的同位素质量相关性的幂律形式D与m(-beta),0

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