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- W4378679131 abstract "Micro-technology has become prominent over the past two decades due to its efficacy and performance in processing fluids for analyses, reactions, and separations in a most convenient and controllable manner. This has led to the development and design of novel microscale devices, and with this unique feature of microscale flow phenomena, specific tasks can be performed in biopharmaceuticals, fine chemicals, chemical and biological analysis, food preparation, and environmental evaluation, in which separation and purification techniques are important. These devices can process micro-volumes with high heat and mass transfer and good process control, and are less energy-intensive and reduce waste generation compared with conventional methods of separation. Microparticles should be separated in a continual way using active, passive, and sorting procedures, according to the literature. This chapter gives an insight into the working of microfluidic devices, and the advantages of using liquid-liquid extraction in microfluidic devices. This chapter also provides an overview about microfluidics-based passive and active separation techniques along with their basic theories and performances, with experimental details. Finally, the chapter highlights the biocompatible, cost-effective, and green alternative sorting techniques applicable for the separation of biomolecules." @default.
- W4378679131 created "2023-05-30" @default.
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- W4378679131 date "2023-01-01" @default.
- W4378679131 modified "2023-09-27" @default.
- W4378679131 title "Microfluidic devices" @default.
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- W4378679131 doi "https://doi.org/10.1016/b978-0-323-91684-4.00031-1" @default.
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