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Mitigating Complexity: Cohesion Parameters and Related Topics. I: The Hildebrand Solubility Parameter

机译:缓解复杂性:凝聚力参数和相关主题。 我:Hildebrand Solubility参数

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The objective of this review in two parts is to present a compact overview of the development of the solubility parameter $$left( {delta_{i} } ight)$$ δ i concept: from the seminal work of van Laar in 1910, to the contributions of Scatchard , Hildebrand , Scott and Prausnitz , leading finally to the generalized multi - component ( multi - dimensional ) cohesion parameters, with the Hansen solubility parameter being the most prominent representative. In this first part, physico-chemical aspects concerning $$delta_{i}$$ δ i -related models in solution chemistry and chemical engineering will be presented, and recent theoretical efforts in this field, that is, equation-of-state approaches and computer simulation methods for the estimation of solubility parameters, will be indicated. Indeed, prediction of thermodynamic properties of liquid nonelectrolyte solutions from properties of the corresponding pure constituents has come a long way since the classic studies by Hildebrand and by Scatchard leading to regular solution theory (RST), in which the solubility parameter is the property of central importance. Selected aspects of RST will be discussed, including the influence of T and of P on $$delta_{i}$$ δ i and their reliable estimation, thereby clearing up misconceptions and pointing out pitfalls not generally recognized. Extending the dicussion to supercritical conditions, the use of solubility parameters in supercritical fluid (SCF) technologies will be indicated, focusing on practical implications of some of the unique phenomena happening in the near supercritical region, which provide the basis of SCF extraction in industries devoted to food-processing, nutraceuticals, pharmaceuticals and biotechnology.
机译:两部分审查的目的是概述溶解度参数的发展概述$$ 左({ delta_ {i}} 右)$$Δi概念:从van拉拉尔的开创性工作1910年,施工螺旋,希尔德兰,斯科特和斯科特尼茨,最终领先广义多组分(多维)内聚力参数,随着汉森溶解度参数是最突出的代表。在第一个部分中,展示了关于$$ delta_ {i} $$δi的物理化学方面,将展示解决方案化学和化学工程中的策略模型,以及该领域的最近理论努力,即状态方程将指出用于估计溶解度参数的方法和计算机仿真方法。实际上,自相关纯纯成分的性质从Hildebrand的经典研究和通过旋气导致定期解决方案理论(RST)的经典研究,预测液体非电解质溶液的热力学性能已经是长途的,其中溶解度参数是中央的性质重要性。将讨论RST的选定方面,包括T和P在$$ delta_ {i} $$δi的影响及其可靠的估计,从而清除误解并指出不普遍识别的陷阱。将延伸到超临界条件,将指出超临界流体(SCF)技术中的溶解度参数,专注于在近期超临界区域中发生的一些独特现象的实际意义,这为致力于行业的SCF提取提供了基础食品加工,营养保健品,药品和生物技术。

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