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Microfluidic reactors with immobilized enzymes

Microfluidic Reactors with Immobilized Enzymes for Biocatalytic Transformations... [Pg.357]

Table 10.4 Enzymatic transformations in microfluidic reactors with immobilized enzymes. Table 10.4 Enzymatic transformations in microfluidic reactors with immobilized enzymes.
The second device was a multiplate-stacked microfluidic reactor, originally developed by Hessel, Lowe and co-workers for gas-phase transformations [lb] (Figure 3.2) and now adapted for biocatalytic processing with immobilized enzymes. [Pg.46]

A simple microfluidic reactor system He et al. [124] for the effective synthesis of enzyme-functionalized nanoparticles offers many advantages over batch reactirais, including excelloit enzyme efficiencies. Better control of the process parameters in the microfluidic reactor system ovct batch-based methodologies enables the production of silica nanoparticles with the optimum size for efficient enzyme immobilization with long-term stability. The synthetic approach used glucose oxidase and two different nucleation catalysts of similar molecular mass the natural R5 peptide, and PEI polymer... [Pg.19]


See other pages where Microfluidic reactors with immobilized enzymes is mentioned: [Pg.339]    [Pg.522]    [Pg.1352]    [Pg.1871]    [Pg.291]    [Pg.467]    [Pg.51]    [Pg.74]    [Pg.1874]    [Pg.82]    [Pg.1149]    [Pg.350]   
See also in sourсe #XX -- [ Pg.357 , Pg.358 , Pg.359 , Pg.360 , Pg.361 ]




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Enzyme immobilization

Immobilization enzyme reactor

Immobilized enzyme reactor

Immobilized enzymes

MicroFluidizer

Microfluid

Microfluidic

Microfluidic Reactors with Immobilized Enzymes for Biocatalytic Transformations

Microfluidic immobilized enzyme

Microfluidic immobilized enzyme reactor

Microfluidics

Microfluidization

Microfluidizers

Microfluids

Reactor microfluidic

Reactors immobilizing

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