Diamond Member Pelican Press 0 Posted April 2, 2024 Diamond Member Share Posted April 2, 2024 Unlocking membrane-based He/H₂ separation with AI by KeAi Communications Co. How the separation performance enhanced. Credit: Zhang. S. et al. Technological advancement and data proliferation have deemed artificial intelligence (AI)-driven innovation as a growth opportunity for the development of breakthrough materials for special applications, especially in the field of gas separation. One of the main challenges associated with this process is the extremely close kinetic diameters of the two gas molecules, resulting in low membrane selectivity. In a study This is the hidden content, please Sign In or Sign Up in Green Chemical Engineering, a group of researchers from China came up with a novel approach to explore materials with enhanced helium extraction efficiency—with the aid of AI. In particular, the researchers investigated structure-performance relationships, elucidated separation mechanisms and identified crucial factors influencing the separation performance to design metal-organic framework (MOF)-based membranes. The pore limiting diameter (PLD) and void fraction (φ) were revealed as the most important physical features for determining the membrane selectivity and He permeability, respectively. “Traditional material development faces constraints, but AI is revolutionizing the field,” says Zhengqing Zhang, lead investigator of the study “Our approach not only reveals hidden mechanisms but also uncovers new insights.” The team hopes that their results will encourage scientists to continue investigating the intersection of AI and material science, opening doors to unprecedented technological advancements. More information: Shitong Zhang et al, Machine learning aided investigation on the structure-performance correlation of MOF for membrane-based He/H2 separation, Green Chemical Engineering (2024). This is the hidden content, please Sign In or Sign Up Provided by KeAi Communications Co. Citation: Unlocking membrane-based He/H₂ separation with AI (2024, April 2) retrieved 2 April 2024 from This document is subject to copyright. Apart from any fair dealing for the purpose of private study or research, no part may be reproduced without the written permission. The content is provided for information purposes only. This is the hidden content, please Sign In or Sign Up Science, Physics News, Science news, Technology News, Physics, Materials, Nanotech, Technology, Science #Unlocking #membranebased #HeH₂ #separation This is the hidden content, please Sign In or Sign Up Link to comment https://hopzone.eu/forums/topic/10016-unlocking-membrane-based-heh%E2%82%82-separation-with-ai/ Share on other sites More sharing options...
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