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Toward a Quality-Controlled and Accessible Pitzer Model for Seawater and Related Systems

机译:朝着海水和相关系统的质量控制和可访问的掌柜模型

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We elaborate the need for a quality-controlled chemical speciation model for seawater and related natural waters, work which forms the major focus of SCOR Working Group 145. Model development is based on Pitzer equations for the seawater electrolyte and trace components. These equations can be used to calculate activities of dissolved ions and molecules and, in combination with thermodynamic equilibrium constants, chemical speciation. The major tasks to be addressed are ensuring internal consistency of the Pitzer model parameters (expressing the interactions between pairs and triplets of species, which ultimately determines the calculated activities), assessing uncertainties, and identifying important data gaps that should be addressed by new measurements. It is recognised that natural organic matter plays an important role in many aquatic ecosystems, and options for including this material in a Pitzer-based model are discussed. The process of model development begins with the core components which include the seawater electrolyte and the weak acids controlling pH. This core model can then be expanded by incorporating additional chemical components, changing the standard seawater composition and/or broadening the range of temperature and pressure, without compromising its validity. Seven important areas of application are identified: open ocean acidification; micro-nutrient biogeochemistry and geochemical tracers; micro-nutrient behaviour in laboratory studies; water quality in coastal and estuarine waters; cycling of nutrients and trace metals in pore waters; chemical equilibria in hydrothermal systems; brines and salt lakes.
机译:我们详细阐述了对海水和相关天然水域的质量控制的化学品质模型的需求,形成了全文的主要焦点145.模型开发基于海水电解质和痕量组件的探测器方程。这些等式可用于计算溶解的离子和分子的活性,以及​​与热力学平衡常数,化学物质的相结合。要解决的主要任务是确保Pitzer模型参数的内部一致性(表达物种对和三胞胎之间的相互作用,最终确定计算的活动),评估不确定性,并确定应通过新测量解决的重要数据差距。人们认识到,天然有机物质在许多水生生态系统中起重要作用,并讨论了在基于皮带的模型中包括这种材料的选择。模型开发过程开始于包括海水电解质和控制pH的弱酸的核心组分。然后可以通过掺入额外的化学成分来扩展该核模型,改变标准海水组合物和/或展现温度和压力范围,而不会影响其有效性。鉴定出七个重要申请领域:开阔的海洋酸化;微营养生物地球化学和地球化学示踪剂;实验室研究中的微量营养行为;沿海和河口水域水质;孔隙水中的营养和痕量金属循环;水热系统化学均衡;盐水和盐湖。

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