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Applications: include: Biofuels, Recycling, Biogas.
Key properties: Specially blended formulation to transform your sugarcane biofuel yields whilst preventing inhibitor issues.
Overview: Specially formulated enzyme blend for sugarcane conversion to maximise the release of fermentable sugars from sugarcane juice, molasses, and lignocellulosic residues such as bagasse for bioethanol production. This enzyme system typically includes invertase, cellulase, xylanase, and β-glucosidase. Invertase hydrolyses sucrose into glucose and fructose for rapid fermentation, while cellulase and xylanase act on the fibrous bagasse to break down cellulose and hemicellulose into simple sugars. β-Glucosidase further enhances sugar yield by converting cellobiose to glucose. The key benefits of this enzymatic approach include higher total sugar recovery, improved ethanol yield, reduced energy and chemical inputs, and enhanced process sustainability. By optimising enzyme synergy for both sucrose-rich and fibrous fractions of sugarcane, these tailored blends enable a cost-effective, efficient, and environmentally friendly pathway for large-scale bioethanol production.
- Certification: Biofuel Grade
- Enzymes: Intervtase, exo-Cellulase, endo-Cellulase, Xylanase
- Temperature Range: 15–60°C
- pH Range: 3.5–5.5
- Inhibitor Compatibility: High tolerance

Supporting technical guides
Bioethanol and sugar crops
Sugarcane and Sugar Beet Enzymes: Juice, Molasses and Fibre
Choose enzyme trials for sugarcane and sugar beet by separating sucrose-rich streams from fibrous residues. Measure sugar recovery and fermentation.
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Enzyme science · Deep dive
Enzyme blends: structure, mechanism and industrial uses
Formulated blends combine selected activities to address multiple bonds or sequential reaction steps in food, cleaning and biomass processes.
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Enzyme science · Deep dive
Invertase: structure, mechanism and industrial uses
Sucrose conversion to glucose and fructose supports invert-sugar manufacture, confectionery processing and fermentation feed preparation.
Read technical guide
Enzyme science · Deep dive
Exo-cellulase: structure, mechanism and industrial uses
Cellobiose release complements endoglucanase in biomass saccharification; beta-glucosidase then converts the cellobiose into glucose.
Read technical guide
Enzyme science · Deep dive
Endo-cellulase: structure, mechanism and industrial uses
A limited number of internal cuts can reduce viscosity, loosen fibres or remove surface fibrils before extensive sugar production occurs.
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Enzyme science · Deep dive
Xylanase: structure, mechanism and industrial uses
Cleaving the xylan backbone supports cereal processing, dough modification, pulp treatment and access to fermentable biomass carbohydrates.
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