首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Dissolution kinetics as a function of the Gibbs free energy of reaction: An experimental study based on albite feldspar
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Dissolution kinetics as a function of the Gibbs free energy of reaction: An experimental study based on albite feldspar

机译:溶解动力学与吉布斯反应自由能的关系:基于钠长石长石的实验研究

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Here we report on an experimental investigation of the relation between the dissolution rate of albite feldspar and the Gibbs free energy of reaction, Delta G(r). The experiments were carried out in a continuously stirred flow-through reactor at 150 degrees C and pH((150) (degrees C)) 9.2. The dissolution rates R are based on steady-state Si and Al concentrations and sample mass loss. The overall relation between Delta G(r) and R was determined over a free energy range of -150 < Delta G(r) < -15.6 kJ mol(-1). The data define a continuous and highly non-linear, sigmoidal relation between R and Delta G(r) that is characterized by three distinct free energy regions. The region furthest from equilibrium, delimited by -150 < Delta G(r) < -70 kJ mol(-1), represents an extensive dissolution rate plateau with an average rate (R) over bar = 1.0 x 10(-8) mol m(-2) s(-1). In this free energy range the rates of dissolution are constant and independent of Delta G(r), as well as [Si] and [Al]. The free energy range delimited by -70 <= Delta G(r) <= -25 kJ mol(-1), referred to as the 'transition equilibrium' region, is characterized by a sharp decrease in dissolution rates with increasing Delta G(r,) indicating a very strong inverse dependence of the rates on free energy. Dissolution nearest equilibrium, defined by Delta G(r) > -25 kJ mol(-1), represents the 'near equilibrium' region where the rates decrease as chemical equilibrium is approached, but with a much weaker dependence on Delta G(r). The lowest rate measured in this study, R = 6.2 x 10(-11) mol m(-2) s(-1) at Delta G(r) = -16.3 kJ mol(-1), is more than two orders of magnitude slower than the plateau rate. The data have been fitted to a rate equation (adapted from Burch et al. [Burch, T. E., Nagy, K. L., Lasaga, A. C., 1993. Free energy dependence of albite dissolution kinetics at 80 degrees C and pH 8.8. Chem. Geol. 105, 137-162)) that represents the sum of two parallel reactions
机译:在这里,我们报道了钠长石长石的溶解速率与吉布斯反应自由能Delta G(r)之间的关系的实验研究。在连续搅拌的流通式反应器中于150摄氏度和pH((150)(摄氏度))9.2进行实验。溶解速率R基于稳态的Si和Al浓度以及样品质量损失。在-150 -25 kJ mol(-1)定义的最近溶解平衡表示“接近平衡”区域,在该区域,速率随着接近化学平衡而降低,但对Delta G(r)的依赖性弱得多。在这项研究中测得的最低速率为Delta G(r)= -16.3 kJ mol(-1)时R = 6.2 x 10(-11)mol m(-2)s(-1),大于两个数量级幅度比平稳率慢。数据已拟合为速率方程(改编自Burch等人[Burch,TE,Nagy,KL,Lasaga,AC,1993。在80℃和pH 8.8时钠长石溶解动力学的自由能依赖性。 105,137-162)),代表两个平行反应的总和

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