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Evolution of natural sea surface films: a new quantification formalism based on multidimensional space vector

机译:天然海面薄膜的演化:基于多维空间向量的新量化形式主义

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摘要

Spatial and temporal variability of natural surfactant sea surface film structural parameters were evaluated from force-area isotherms, film pressure-temperature isochors, dynamic surface tension-time relations performed on samples collected in Baltic Sea shallow coastal waters. The film structure state was postulated as a 10-D dimensionless vector created from the normalized thermodynamic, adsorptive, and viscoelastic film parameters. The normalization procedure is based on the concept of self-corresponding states known in thermodynamics. The values taken by all the reduced parameters indicated a significant deviation from the reference ideal-2D gas behavior. The exhibited deviations of the surface parameters from the background values of the same thermodynamic state of each film were independent on the film-collecting procedure, sample solvent treatment, and temperature. The structural similarity was expressed quantitatively as a (Cartesian, street, and Czebyszew) distance between two vectors of the analyzed film and the standard one from the database, and appeared to be related to environmental conditions, surface-active organic matter production, and migration in the studied coastal sea region. The most distinctive parameters differing the films were y, M w and E isoth, as established from Czebyszew function application. The proposed formalism is of universal concern and could be applied to any natural water surfactant system (seawater, inland water, rain water, and snowmelt water).
机译:天然表面活性剂海表膜结构参数的时空变化是通过对力波等温线,膜压力-温度等温线,在波罗的海浅海中采集的样品进行的动态表面张力-时间关系来评估的。假定薄膜结构状态是根据归一化的热力学,吸附和粘弹性薄膜参数创建的10维无量纲向量。归一化过程基于热力学中已知的自对应状态的概念。所有减少的参数所取的值均表明与参考理想2D气体行为存在显着偏差。表面参数与每个膜的相同热力学状态的背景值之间的偏差与膜收集程序,样品溶剂处理和温度无关。结构相似性定量表示为被分析膜的两个向量与数据库中标准向量之间的(笛卡尔,街道和Czebyszew)距离,并且似乎与环境条件,表面活性有机物的产生和迁移有关在研究的沿海海域。根据Czebyszew函数应用程序确定,与胶片不同的最独特参数是y,M w和E isoth。提议的形式主义是普遍关注的问题,可以应用于任何天然水表面活性剂系统(海水,内陆水,雨水和融雪水)。

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