Ricci Eleonora, Minelli Matteo, De Angelis Maria Grazia
Department of Civil, Chemical, Environmental and Materials Engineering (DICAM), Alma Mater Studiorum-University of Bologna, 40126 Bologna, Italy.
Institute for Materials and Processes, School of Engineering, University of Edinburgh, Edinburgh EH9 3FB, UK.
Membranes (Basel). 2022 Aug 31;12(9):857. doi: 10.3390/membranes12090857.
Professor Giulio C. Sarti has provided outstanding contributions to the modelling of fluid sorption and transport in polymeric materials, with a special eye on industrial applications such as membrane separation, due to his Chemical Engineering background. He was the co-creator of innovative theories such as the Non-Equilibrium Theory for Glassy Polymers (NET-GP), a flexible tool to estimate the solubility of pure and mixed fluids in a wide range of polymers, and of the Standard Transport Model (STM) for estimating membrane permeability and selectivity. In this review, inspired by his rigorous and original approach to representing membrane fundamentals, we provide an overview of the most significant and up-to-date modeling tools available to estimate the main properties governing polymeric membranes in fluid separation, namely solubility and diffusivity. The paper is not meant to be comprehensive, but it focuses on those contributions that are most relevant or that show the potential to be relevant in the future. We do not restrict our view to the field of macroscopic modelling, which was the main playground of professor Sarti, but also devote our attention to Molecular and Multiscale Hierarchical Modeling. This work proposes a critical evaluation of the different approaches considered, along with their limitations and potentiality.
朱利奥·C·萨尔蒂教授在聚合物材料中流体吸附和传输建模方面做出了杰出贡献。鉴于他的化学工程背景,他特别关注诸如膜分离等工业应用。他是一些创新理论的共同创造者,如玻璃态聚合物非平衡理论(NET-GP),这是一种用于估算纯流体和混合流体在多种聚合物中溶解度的灵活工具;还有用于估算膜渗透率和选择性的标准传输模型(STM)。在这篇综述中,受他严谨且独到的膜基本原理表述方法的启发,我们概述了用于估算流体分离中控制聚合物膜的主要性质(即溶解度和扩散系数)的最重要且最新的建模工具。本文并非全面涵盖,而是聚焦于那些最相关或显示出未来可能相关的贡献。我们的视野不仅限于宏观建模领域(这是萨尔蒂教授的主要研究领域),还关注分子和多尺度层次建模。这项工作对所考虑的不同方法进行了批判性评估,以及它们的局限性和潜力。