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PMID: 40806507 Published · epublish English Journal Article

Short-Term Morphological Response of Polypropylene Membranes to Hypersaline Lithium Fluoride Solutions: A Multiscale Modeling Approach.

International journal of molecular sciences ·Vol. 26 ·No. 15 ·2025-07-30

Prenesti G, Perri P, Anoja A, Lauria A, Rizzuto C, Cassano A, Tocci E, Caravella A

Abstract

Understanding the early-stage physical interactions between polymeric membranes and supersaturated salt solutions is crucial for advancing membrane-assisted crystallization (MCr) processes. In this study, we employed molecular dynamics (MD) simulations to investigate the short-term morphological response of an isotactic polypropylene (PP) membrane in contact with LiF solutions at different concentrations (5.8 M and 8.9 M) and temperatures (300-353 K), across multiple time points (0, 150, and 300 ns). These data were used as input for computational fluid dynamics (CFD) analysis to evaluate structural descriptors of the membrane, including tortuosity, connectivity, void fraction, anisotropy, and deviatoric anisotropy, under varying thermodynamic conditions. The results show subtle but consistent rearrangements of polymer chains upon exposure to the hypersaline environment, with a marked reduction in anisotropy and connectivity, indicating a more compact and isotropic local structure. Surface charge density analyses further suggest a temperature- and concentration-dependent modulation of chain mobility and terminal group orientation at the membrane-solution interface. Despite localized rearrangements, the membrane consistently maintains a net negative surface charge. This electrostatic feature may influence ion-membrane interactions during the crystallization process. While these non-reactive, short-timescale simulations do not capture long-term degradation or fouling mechanisms, they provide mechanistic insight into the initial physical response of PP membranes under MCr-relevant conditions. This study lays a computational foundation for future investigations bridging atomistic modeling and membrane performance in real-world applications.

Keywords
computational fluid dynamics simulations membrane morphology membrane-assisted crystallization molecular dynamics simulations
MeSH 主题词
Polypropylenes/chemistry Molecular Dynamics Simulation Lithium Compounds/chemistry Membranes, Artificial Fluorides/chemistry Crystallization Solutions Temperature Thermodynamics Anisotropy
化学物质
Polypropylenes Lithium Compounds Membranes, Artificial lithium fluoride Fluorides Solutions
作者与单位
共 8 位作者,点击展开单位 / ORCID
Prenesti Giuseppe ORCID
Department of Computer Engineering, Modelling, Electronics and System Engineering (DIMES), University of Calabria, Via P. Bucci 42C, 87036 Rende, CS, Italy. | Institute on Membrane Technology-National Research Council of Italy (CNR-ITM), Via P. Bucci 17C, 87036 Rende, CS, Italy.
Perri Pierfrancesco
Department of Civil, Chemical, Environmental and Materials Engineering (DICAM), Alma Mater Studiorum University of Bologna, Via Zamboni 33, 40126 Bologna, BO, Italy.
Anoja Alessia ORCID
Department of Computer Engineering, Modelling, Electronics and System Engineering (DIMES), University of Calabria, Via P. Bucci 42C, 87036 Rende, CS, Italy.
Lauria Agostino ORCID
Department of Engineering for Innovation, University of Salento (UNISALENTO), Corpo Z, Campus Ecotekne, SP.6 per Monteroni, 73047 Lecce, LE, Italy.
Rizzuto Carmen ORCID
Institute on Membrane Technology-National Research Council of Italy (CNR-ITM), Via P. Bucci 17C, 87036 Rende, CS, Italy.
Cassano Alfredo ORCID
Institute on Membrane Technology-National Research Council of Italy (CNR-ITM), Via P. Bucci 17C, 87036 Rende, CS, Italy.
Tocci Elena ORCID
Institute on Membrane Technology-National Research Council of Italy (CNR-ITM), Via P. Bucci 17C, 87036 Rende, CS, Italy.
Caravella Alessio ORCID
Department of Computer Engineering, Modelling, Electronics and System Engineering (DIMES), University of Calabria, Via P. Bucci 42C, 87036 Rende, CS, Italy. | Institute on Membrane Technology-National Research Council of Italy (CNR-ITM), Via P. Bucci 17C, 87036 Rende, CS, Italy.
Article Info
Journal
International journal of molecular sciences
Abbr.
Int J Mol Sci
ISSN
1422-0067
Published
2025-07-30
电子出版
2025-00-30
Language
English
Country/Region
Switzerland
NLM ID
101092791
基金资助
Next Generation EU-Italian NRRP, Mission 4, Component 2, In-vestment 1.5, call for the creation and strengthening of 'Innovation Ecosystems', building 'Territorial R&D Leaders' (Directorial Decree n. 2021/3277) - project Tech4You - Technologies for climat · ECS0000009
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