The design of microdevices in which components with magnetic character must be separated and recovered from reactive media benefits from the advantages of microfluidics and meets the criteria for process intensification; however, there are open questions, such as the design of the most appropriate magnet arrangement, that need further research in order to increase the magnetic gradient exerted on the particles. Herein, we focus on the continuous recovery of magnetic microparticles, that can be used as support to facilitate the recovery of biocatalysts (magnetic microcatalysts, MMCs) from biological fluids. We analyze and compare the performance of two typical magnetophoretic microdevices for addressing bead recovery: (i) annular channels wi...
Magnetic beads can be functionalized to capture and separate target pathogens from blood for extraco...
International audienceFluidization, a process in which a granular solid phase behaves like a fluid u...
Simultaneous washing and concentration of magnetic microparticles was demonstrated using a rotationa...
The use of functionalized magnetic particles for the detection or separation of multiple chemicals a...
The successful application of magnetic nanoparticles (MN) is highly dependent of their effective cle...
Microfluidics, as the technology for continuous flow processing in microscale, is being increasingly...
Enzymatic parameter determination is an essential step in biocatalytic process development. Therefor...
A better understanding of the deactivation processes taking place within solid catalysts is vital to...
We present a gas-liquid microfluidic system as a reactor to obtain magnetite nanoparticles with an e...
The production of active pharmaceutical ingredients (APIs) and fine chemicals is accelerating due to...
In this work, we report a numerical flow-focused study of bead magnetophoresis inside a continuous-f...
AbstractPurification of magnetic microparticles was demonstrated, with a purification efficiency of ...
Magnetic microparticles have seen increasing interest in (bio)chemical processes in recent years due...
The use of magnetic biocatalysts is highly beneficial in bioprocesses technology, as it allows their...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 2004.Page 178...
Magnetic beads can be functionalized to capture and separate target pathogens from blood for extraco...
International audienceFluidization, a process in which a granular solid phase behaves like a fluid u...
Simultaneous washing and concentration of magnetic microparticles was demonstrated using a rotationa...
The use of functionalized magnetic particles for the detection or separation of multiple chemicals a...
The successful application of magnetic nanoparticles (MN) is highly dependent of their effective cle...
Microfluidics, as the technology for continuous flow processing in microscale, is being increasingly...
Enzymatic parameter determination is an essential step in biocatalytic process development. Therefor...
A better understanding of the deactivation processes taking place within solid catalysts is vital to...
We present a gas-liquid microfluidic system as a reactor to obtain magnetite nanoparticles with an e...
The production of active pharmaceutical ingredients (APIs) and fine chemicals is accelerating due to...
In this work, we report a numerical flow-focused study of bead magnetophoresis inside a continuous-f...
AbstractPurification of magnetic microparticles was demonstrated, with a purification efficiency of ...
Magnetic microparticles have seen increasing interest in (bio)chemical processes in recent years due...
The use of magnetic biocatalysts is highly beneficial in bioprocesses technology, as it allows their...
Thesis (Ph. D.)--Massachusetts Institute of Technology, Dept. of Chemical Engineering, 2004.Page 178...
Magnetic beads can be functionalized to capture and separate target pathogens from blood for extraco...
International audienceFluidization, a process in which a granular solid phase behaves like a fluid u...
Simultaneous washing and concentration of magnetic microparticles was demonstrated using a rotationa...