Temporal fluctuations of non-equilibrium water accessible pathways in polyamide reverse osmosis active layers

聚酰胺反渗透活性层中非平衡水可及路径的时间波动

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Abstract

Molecular-scale simulations of pressure-driven transport through polyamide domains were performed. Analysis revealed the importance of non-equilibrium molecular distributions and the existence of connected pathways from feed to permeate at all times. Individual pathways were found to be ephemeral with an observed upper bound persistence time of 1.75 ns.

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