The mechanical strength of gelatin gels insolubilized by crosslinking with formaldehyde was measured at various gelatin percentages and formaldehyde-to-gelatin ratio. This property was shown to be related to the characteristic sponge-like structure of the insolubilized gelatin gel, a structure that unexpectedly is also responsible for the resistance to substrate and product diffusion. A comparison between immobilizates of invertase and invertase-like yeast cells prepared with different gelatin concentrations showed that the enzyme, in contrast to cells, is deeply involved in the gel insolubilization process. The catalytic behavior of agar, k-carrageenan, alginate, and gelatin immobilizates was compared under the same conditions of cell loading

Mechanical stability and diffusional resistance of a polymeric gel used for biocatalyst immobilization

PARASCANDOLA, Palma
1990-01-01

Abstract

The mechanical strength of gelatin gels insolubilized by crosslinking with formaldehyde was measured at various gelatin percentages and formaldehyde-to-gelatin ratio. This property was shown to be related to the characteristic sponge-like structure of the insolubilized gelatin gel, a structure that unexpectedly is also responsible for the resistance to substrate and product diffusion. A comparison between immobilizates of invertase and invertase-like yeast cells prepared with different gelatin concentrations showed that the enzyme, in contrast to cells, is deeply involved in the gel insolubilization process. The catalytic behavior of agar, k-carrageenan, alginate, and gelatin immobilizates was compared under the same conditions of cell loading
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11386/3017776
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