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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Carbon dioxide, bicarbonate and carbonate ions in aqueous solutions under deep Earth conditions
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Carbon dioxide, bicarbonate and carbonate ions in aqueous solutions under deep Earth conditions

机译:在深土条件下水溶液中二氧化碳,碳酸氢盐和碳酸盐离子

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We investigate the effect of pressure, temperature and acidity on the composition of water-rich carbon-bearing fluids under thermodynamic conditions that correspond to the Earth's deep crust and upper mantle. Our first-principles molecular dynamics simulations provide mechanistic insight into the hydration shell of carbon dioxide, bicarbonate and carbonate ions, and into the pathways of the acid/base reactions that convert these carbon species into one another in aqueous solutions. At temperatures of 1000 K and higher, our simulations can sample the chemical equilibrium of these acid/base reactions, thus allowing us to estimate the chemical composition of diluted carbon dioxide and (bi)carbonate ions as a function of acidity and thermodynamic conditions. We find that, especially at the highest temperature, the acidity of the solution is essential to determine the stability domain of CO(2)vs. HCO(3)(-)vs. CO32-.
机译:我们在对应于地壳的热力学条件下,研究了压力,温度和酸度对富含水的碳含碳流体组成的影响。 我们的第一原理分子动力学模拟为二氧化碳,碳酸氢盐和碳酸盐离子的水化壳提供机械洞察,以及在水溶液中将这些碳物种转化为彼此的酸/碱反应的途径。 在1000 k和更高的温度下,我们的模拟可以对这些酸/碱反应的化学平衡进行样本,从而允许我们估计作为酸度和热力学条件的函数的稀释二氧化碳和(Bi)碳酸酯离子的化学成分。 我们发现,特别是在最高温度下,解决方案的酸度对于确定CO(2)Vs的稳定性结构域是必不可少的。 HCO(3)( - )vs。 CO32-。

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