Interaction mechanisms of POSS-based adsorbents with VOCs,CO_(2),CH_(4),and H_(2)O:theoretical insights and prediction methodOA
The dual nature of Polyhedral Oligomeric Silsesquioxane(POSS),with its cage framework and substituent groups,enables diverse interactions with liquid and gaseous pollutants.While Quantum Mechanical(QM)methods have been used for simpler POSS variants,evaluating all possible combinations of cages and substituents remains impractical.This study aims to fill the knowledge gap on how the polarity of liquid pollutants and the structural features of POSS influence the efficiency of separating Volatile Organic Compounds(VOCs)from aqueous streams in wastewater treatment processes.Using a comprehensive dataset on liquid-liquid adsorption selectivities,we developed a predictive model for estimating VOC-VOC and VOC-water partition coefficients across 1.424×10^(7)POSS variants,achieving accuracy comparable to expensive QM methods.This model enables users to design novel POSS molecules tailored for wastewater treatment or VOC recovery quickly and efficiently.We explored adsorption mechanisms for CO_(2),H_(2)O,and CH_(4),focusing on interactions between the cage and adsorbates,as well as between substituents and adsorbates.Our findings highlight that substituents are crucial for gas adsorption,with their electrostatic properties being a significant factor.While all substituents exhibited strong CO_(2)/CH_(4)selectivity,this selectivity diminishes in the presence of H_(2)O.Additionally,gaseous pollutants are only effectively encapsulated when the POSS cage size exceeds T10.This work provides a framework for designing optimized POSS materials for specific separation applications,facilitating the efficient selection of structures for targeted gas and liquid capture.
Fang Yu Leong;Liang Ee Low;Irene Mei Leng Chew
Department of Chemical Engineering,School of Engineering,Monash University Malaysia,Jalan Lagoon Selatan,Bandar Sunway,Selangor Darul Ehsan,47500 MalaysiaDepartment of Chemical Engineering,School of Engineering,Monash University Malaysia,Jalan Lagoon Selatan,Bandar Sunway,Selangor Darul Ehsan,47500 Malaysia Monash-Industry Plant Oils Research Laboratory(MIPO),Monash University Malaysia,Jalan Lagoon Selatan,Bandar Sunway,Selangor Darul Ehsan,47500,Malaysia Medical Engineering and Technology(MET)Hub,School of Engineering,Monash University Malaysia,Jalan Lagoon Selatan,Bandar Sunway,Selangor Darul Ehsan,47500,MalaysiaDepartment of Chemical Engineering,School of Engineering,Monash University Malaysia,Jalan Lagoon Selatan,Bandar Sunway,Selangor Darul Ehsan,47500 Malaysia
资源环境
AdsorptionSeparationGaseous pollutantsVolatile organic compoundsRecyclable adsorbent
《Green Chemical Engineering》 2026 (3)
P.275-297,23
financial support from the Fundamental Research Grant Scheme FRGS/1/2018/TK05/MUSM/03/1,FRGS/1/2024/TK09/MUSM/02/3 provided by the Ministry of Higher Education,Malaysia。
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