Cotinuous precision separation of gold using a metal–organic framework/polymer composite

被引:0
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作者
Mitchell, Emily [1 ,2 ]
Hernandez, Dana [1 ,2 ]
Deatherage, Ashlin [1 ,2 ]
Coull, Martin [1 ]
Altoé, M. Virginia [2 ]
Klivansky, Liana [2 ]
Witman, Matthew [1 ]
Sun, Daniel T [1 ,2 ]
机构
[1] Sunchem Inc., 395 South Van Ness Ave, San Francisco,CA,94103, United States
[2] Molecular Foundry, Lawrence Berkeley National Laboratory, 1 Cyclotron Rd, Berkeley,CA,94720, United States
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Nanocomposites;
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摘要
Critical metals of environmental and economic relevance can be found within complex mixtures, such as mine tailings, electronic waste and wastewater, at trace amounts. Specifically, gold is a critical metal that carries desired redox active properties in various applications, including modern electronics, medicine and chemical catalysis. Here we report the structuring of submicron Fe-BTC/PpPDA crystallites into larger 250 μm or 500 μm granules for continuous packed bed experiments for the precision separation of gold. The Structured Fe-BTC/PpPDA is highly crystalline and porous with a BET surface area of 750 m2 g−1. Further, the hybrid nanocomposite material maintains its selectivity for gold ions over common inorganic interferents. The structuring approach reported prevents excessive pressure drop and ensures stability over time and operation in a packed bed column. Further, we demonstrate that the Structured Fe-BTC/PpPDA can concentrate at least 42 wt% of gold under a dynamic continuous flow operation. These findings highlight the potential of Structured Fe-BTC/PpPDA for practical applications in industry, particularly in the selective capture of gold from complex mixtures. © 2024 IOP Publishing Ltd.
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