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An Aqueous Thermodynamic Model for Polymerized Silica Species to High Ionic Strenth

机译:高离子强度聚合二氧化硅物种的水热力学模型

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摘要

The development of an aqueous thermodynamic model for polymerized silica species is presentedm, which is valid for high ionic strengths and high dissolved silica concentration (~0.1 m) at low temperature (22-25 deg C). The model is based on the Pitzer equations and has been parameterized from solubility, electromotive force (emf), and nuclear magnetic resonance (NMR) data. The description of the silica speciation reactions at high dissolved silica and basic conditions (Ph > 10) required the inclusion of monomeric, dimeric, trimeric (linear, cyclic, and substituted), tetrameric (linear and cyclic), and hexameric (prismatic) species. The standard state equilibrium constants for the formation of these species , as well as the necessary Pitzer ion-interaction parameters to describe the ionic strength dependence of the formation reactions were detemined.
机译:提出了聚合二氧化硅种类的水热力学模型的开发,该模型对于低温(22-25摄氏度)下的高离子强度和高溶解二氧化硅浓度(〜0.1 m)有效。该模型基于Pitzer方程,并已根据溶解度,电动势(emf)和核磁共振(NMR)数据进行了参数化。对高溶解度二氧化硅和碱性条件(Ph> 10)下的二氧化硅形态反应的描述要求包括单体,二聚体,三聚体(直链,环状和取代),四聚体(直链和环状)和六聚体(棱柱) 。确定了这些物质形成的标准状态平衡常数,以及描述形成反应的离子强度依赖性所必需的Pitzer离子相互作用参数。

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