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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Speciation in Aqueous MgSO4 Fluids at High Pressures and High Temperatures from ab Initio Molecular Dynamics and Raman Spectroscopy
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Speciation in Aqueous MgSO4 Fluids at High Pressures and High Temperatures from ab Initio Molecular Dynamics and Raman Spectroscopy

机译:从头算分子动力学和拉曼光谱研究高压和高温下MgSO4流体的形态

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Ab initio molecular dynamics simulations and in situ Raman spectroscopy are used to study the speciation in two molal aqueous MgSO4 solutions at high pressures, P, and temperatures, T. While at ambient conditions the fluid is dominated by dissociated SO4~(2-)(aq) ions and solvent-separated ion pairs, ion association strongly increases with increasing temperature and pressure along a 1.33 g/cm~3 isochore. At T = 450 ℃ and P = 1.4 GPa, the v1(SO4~(2-)) Raman band is well described by three Gaussian + Lorentzian components of about equal intensity with peaks at about 980, 995, and 1005 cm~(-1). Analysis of the simulations, however, indicates the coexistence of more than three species, including dissociated SO4~(2-)(aq) ions, and contact and triple ion pairs as well as larger complexes. In addition, the sulfate groups may be bonded to Mg as monodentate or bidentate ligands. The frequencies of the associated species seem to depend mainly on the type and number of Mg-SO4 bonds. We interpret the two rather broad high-frequency Raman components as a single "Mg-SO4 contact" component with variable frequency distribution. As a consequence, the v1(SO4~(2-)) Raman band provides only information on the molecular environment of the sulfate group; i.e., individual species cannot be resolved. At fluid densities less than about 1.2 g/cm~3 and temperatures above 400 ℃, the formation of HSO4~-(aq)-containing species is observed in both simulations and experiments, which may be accompanied by a change in pH and electrical conductivity.
机译:从头算分子动力学模拟和原位拉曼光谱研究了两种摩尔浓度的MgSO4水溶液在高压P和温度T下的形态。在环境条件下,流体以离解的SO4〜(2-)( aq)离子和溶剂分离的离子对,离子缔合随着温度和压力的增加而沿1.33 g / cm〜3等时线强烈增加。在T = 450℃和P = 1.4 GPa时,v1(SO4〜(2-))拉曼谱带由强度大约相等的三个高斯+洛伦兹分量很好地描述,并且峰值分别在980、995和1005 cm〜(- 1)。然而,对模拟的分析表明存在三种以上的物种共存,包括离解的SO4〜(2-)(aq)离子,接触和三重离子对以及更大的络合物。另外,硫酸根可以作为单齿或双齿配体结合到Mg上。相关物种的频率似乎主要取决于Mg-SO4键的类型和数量。我们将两个相当宽泛的高频拉曼成分解释为具有可变频率分布的单个“ Mg-SO4接触”成分。结果,v1(SO4〜(2-))拉曼谱带仅提供有关硫酸根基团分子环境的信息。即单个物种无法解析。在流体密度小于约1.2 g / cm〜3且温度高于400℃时,在模拟和实验中均观察到了含有HSO4〜-(aq)的物质的形成,这可能伴随着pH和电导率的变化。

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