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Balancing out Cellulase Protein Components


Fungal Cellulases contain specific percentages of exo and endo cellulase  proteins designed to hydrolyse complex substrates like wood in nature. Industrial need of modifying specialized cellulose substrates like Crystalline Cotton or highly Amorphous Mixed Tropical Hard-Wood dictates suitably modifying the Hemicellulase-Cellulase mix.

Epygen scientists conduct study of unique industrial substrares subjected to purified enzyme hydrolysis by carefully selecting strains, proteins and formulations.

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Mathematical Model and Predictability of Cellulase

 

With an effort to simulate the biocatalysis in a complex industrial environment, Epygen Scientists are involved in mathematical modeling of Laboratory Scale Enzyme Hydrolysis (Assays) of Standard Substrates.

Multi-dimensional process disturbances are considered in designing the models to minimize error of predictability. Epygen Industrial Enzyme Application Units are based on Mathematical models which has variables of multiple order and dynamic nature.

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Study of Particulate Microdynamics


Technical enzymes are involved in modification of wood fibre in the paper industry where the hydrodynamics of wood fines are studied in details.

Blocking active sites and generating sticky ends in substrates has been found influence overall drainage capability of pulp.

 

  


Collagen Modification

 

Collagen behavior in wet blue hides against new strains of Proteolytic enzymes developed by classical genetics. Retaining proteins of interest to facilitate special leather finishes.

  


Enzymatic Deinking and Surfactants

 

Review on enzyme stability with non-ionic surfactant at various formulaton pH

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