| Literature DB >> 35412785 |
Brian J Riley1, Saehwa Chong1, Julian Schmid2, José Marcial1, Emily T Nienhuis1, Mrinal K Bera3, Sungsik Lee4, Nathan L Canfield1, Sungmin Kim2, Miroslaw A Derewinski5, Radha Kishan Motkuri1.
Abstract
This study evaluated zeolite-based sorbents for iodine gas [I2(g)] capture. Based on the framework structures and porosities, five zeolites, including two faujasite (FAU), one ZSM-5 (MFI), one mesoMFI, one ZSM-22 (TON), as well as two mesoporous materials, were evaluated for I2(g) capture at room temperature and 150 °C in an iodine-saturated environment. From these preliminary studies, the three best-performing zeolites were ion-exchanged with Ag+ and evaluated for I2(g) capture under similar conditions. Energy-dispersive X-ray spectroscopy data suggest that Ag-FAU frameworks were the materials with the highest capacity for I2(g) in this study, showing ∼3× higher adsorption compared to Ag-mordenite (Ag-MOR) at room temperature, but X-ray diffraction measurements show that the faujasite structure collapsed during the adsorption studies because of dealumination. The Ag-MFI zeolites are decent sorbents in real-life applications, showing both good sorption capacities and higher stability. In-depth analyses and characterizations, including synchrotron X-ray absorption spectroscopy, revealed the influence of structural and chemical properties of zeolites on the performance for iodine adsorption from the gas phase.Entities:
Keywords: X-ray absorption spectroscopy; adsorption; aluminosilicate zeolites; framework type; iodine; porosity
Year: 2022 PMID: 35412785 DOI: 10.1021/acsami.2c01179
Source DB: PubMed Journal: ACS Appl Mater Interfaces ISSN: 1944-8244 Impact factor: 9.229