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首页> 外文期刊>Geochimica et Cosmochimica Acta: Journal of the Geochemical Society and the Meteoritical Society >Alkali feldspar dissolution and secondary mineral precipitation in batch systems: 3. Saturation states of product minerals and reaction paths
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Alkali feldspar dissolution and secondary mineral precipitation in batch systems: 3. Saturation states of product minerals and reaction paths

机译:分批系统中的长石溶解和二次矿物沉淀:3.产物矿物的饱和状态和反应路径

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In order to evaluate the complex interplay between dissolution and precipitation reaction kinetics, we examined the hypothesis of partial equilibria between secondary mineral products and aqueous solutions in feldspar water systems. Speciation and solubility geochemical modeling was used to compute the Saturation indices (SI) for product minerals in batch feldspar dissolution experiments at elevated temperatures and pressures and to trace the reaction paths on activity-activity diagrams. The modeling results demonstrated: (1) the experimental aqueous Solutions were supersaturated with respect to product minerals for almost the entire duration of the experiments; (2) the aqueous Solution chemistry did not evolve along the phase boundaries but crossed the phase boundaries at oblique angles; and (3) the earlier precipitated product minerals did not dissolve but Continued to precipitate even after the solution chemistry had evolved into the stability fields of minerals lower in the paragenesis sequence. These three lines of evidence signify that product mineral precipitation is a slow kinetic process and partial equilibria between aqueous Solution and product minerals were not held. In contrast, the experimental evidences are consistent with the hypothesis of strong Coupling of mineral dissolution/precipitation kinetics [e.g., Zhu C., Blum A. E. and Veblen D. R. (2004a) Feldspar dissolution rates and clay precipitation in the Navajo aquifer at Black Mesa, Arizona, USA. In Water-Rock Interaction (eds. R. B. Wanty and R. R. I. Sea]). A.A. Balkema, Saratoga Springs, New York. pp. 895-899]. In all batch experiments examined, the time of congruent feldspar dissolution was short and supersaturation with respect to the product minerals was reached within it short period of time. The experimental system progressed from a dissolution driven regime to a precipitation limited regime in it short order. The results of this study suggest a complex feedback between dissolution and precipitation reaction kinetics, which needs to be considered in the interpretation of field based dissolution rates.
机译:为了评估溶解和沉淀反应动力学之间复杂的相互作用,我们检验了长石水系统中次生矿物质和水溶液之间部分平衡的假设。形态和溶解度地球化学模型用于计算在高温和高压下批量长石溶解实验中产品矿物的饱和指数(SI),并在活性-活性图上追踪反应路径。建模结果表明:(1)在几乎整个实验过程中,实验水溶液相对于产品矿物质都是过饱和的; (2)水溶液化学不是沿着相界发展,而是以斜角越过相界。 (3)较早析出的产物矿物质不溶解,但即使在溶液化学已经演变成在共生序列中较低的矿物质的稳定场之后,仍继续析出。这三个证据表明,产品矿物沉淀是一个缓慢的动力学过程,水溶液和产品矿物之间没有部分平衡。相比之下,实验证据与矿物质溶解/沉淀动力学的强耦合假设相符[例如,Zhu C.,Blum AE和Veblen DR(2004a)在亚利桑那州黑梅萨的纳瓦霍含水层中的长石溶解速率和粘土沉淀。 , 美国。在《水与岩石的相互作用》中(R. B. Wanty和R. R. I. Sea编辑)。 A.A.纽约州萨拉托加斯普林斯的巴尔基玛(Balkema)。 895-899页]。在所有检查的批次实验中,长石的全同溶解时间都很短,并且在短时间内达到了产品矿物质的过饱和状态。实验系统在短时间内从溶解驱动机制发展到降水受限机制。这项研究的结果表明溶解和沉淀反应动力学之间存在复杂的反馈,在基于现场的溶解速率的解释中需要考虑这一点。

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