Freeze-Dissolving Method: A Fast Green Technology for Producing Nanoparticles and Ultrafine Powder
Author(s) -
Qiushuo Yu,
Yingchen Wang,
Jiaqi Luo,
Huaiyu Yang
Publication year - 2022
Publication title -
acs sustainable chemistry and engineering
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.878
H-Index - 109
ISSN - 2168-0485
DOI - 10.1021/acssuschemeng.2c02270
Subject(s) - dissolution , nanoparticle , freeze drying , ammonium bicarbonate , aqueous solution , chemical engineering , materials science , solvent , chemistry , nanotechnology , chromatography , organic chemistry , raw material , engineering
A new technology, a freeze-dissolving method, has been developed to isolate nanoparticles or ultrafine powder and is a more efficient and sustainable method than the traditional freeze-drying method. In this work, frozen spherical ice particles were produced with an aqueous solution of sodium bicarbonate or ammonium dihydrogen phosphate at various concentrations to generate nanoparticles of NaHCO 3 or (NH 4 )(H 2 PO 4 ). The freeze-drying method sublimates ice, and nanoparticles of NaHCO 3 or (NH 4 )(H 2 PO 4 ) in the ice templates remain. The freeze-dissolving method dissolves ice particles in a low freezing point solvent at temperatures below 0 °C, and then, nanoparticles of NaHCO 3 or (NH 4 )(H 2 PO 4 ) can be isolated after filtration. The freeze-dissolving method is 100 times faster with about 100 times less energy consumption than the freeze-drying method as demonstrated in this work with a much smaller facility footprint and produces the same quantity of nanoparticles with a more uniform size distribution.
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