Advances in Biochemical Engineering, Volume 10 by Wayne H. Pitcher Jr. (auth.)

By Wayne H. Pitcher Jr. (auth.)

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The stability of glucoamylase was linearly dependent on starch concentration, as a result of substrate protection, whereas the glucose isomerase stability showed a sigmoidal dependence on fructose concentration. 5 and 55 °. Biotechnology of Immobilized MultienzymeSystems 39 Since many glucose isomerase preparations consist of cell aggregates it would be of considerable interest to examine the characteristics of such cell aggregates with a starch hydrolysing enzyme such as glucoamylase attached to the outer surface of the aggregate.

In general the dual immobilized enzyme system would be favoured by use of high activities and large panicles with small pore sizes. 0 mm) impregnated with a copolymer of phenylenediamine and glutaraldehyde. The oxidation of glucose was then studied in a differential bed reactor [20]. Increase in the flow rate of glucose led to an increase in reaction rate for the total system. In the reactor the ratio of specific reaction rate in oxygen compared to air was dependent on flow rate and somewhat higher than in an ideal stirred system.

27 28 34 45 47 47 1 Introduction A wide diversity of immobilized multienzyme systems are now available if the widest interpretation of this concept is applied. The ingenuity of the research worker is boundless in the manner in which such enzymes may be presented. For example the following possibilities are available for cellular based systems: (i) The whole cell either in the form of a microbial film or in the less restricted flocculated form where the cell is still capable of respiration and cell reproduction.

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