Modelling of Microfluidic Devices for Analysis of Radionuclides
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Elsevier
Reference6 articles.
1. Liquid - liquid extraction of uranium(VI) with Aliquat 336 from HCl media in microfluidic devices:Combination of micro-unit operations and online ICP-MS determination;Hellé;Talanta,2015
2. The use of microfluid devices in solvent extraction;Ciceri;J. Chem. Technol. Biotechnol,2014
3. Development of the innovative nuclide separation system for high-level radioactive waste using microchannel chip - extraction behavior of metal ions from aqueous phase to organic phase in microchannel;Hotokezaka;Prog. Nucl.Energy,2005
4. Extraction of Am(III) at the interface of organic-aqueous two-layer flow in a microchannel;Ban;J. Nucl. Sci. Technol,2011
5. Partitioning of actinides from high-level waste streams of PUREX process using mixtures of CMPO and TBP in dodecane;Mathur;Waste management,1993
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1. Rapid prototyping Lab-on-Chip devices for the future: A numerical optimisation of bulk optical parameters in microfluidic systems;Sensors and Actuators A: Physical;2023-09
2. Design optimization of microfluidic-based solvent extraction systems for radionuclides detection;Nuclear Engineering and Design;2021-11
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