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DAIRY

The processing industry is indeed under increasing pressure to evolve towards more sustainable and efficient practices. Process intensification, cleaner production, and continuous optimization are key strategies that address these challenges by aiming to make industrial processes more effective and environmentally friendly.

Food processing equipment

APPLICATIONS

The processing industry is indeed under increasing pressure to evolve towards more sustainable and efficient practices. Process intensification, cleaner production, and continuous optimization are key strategies that address these challenges by aiming to make industrial processes more effective and environmentally friendly.

PROCESS METHOD

The processing industry is indeed under increasing pressure to evolve towards more sustainable and efficient practices. Process intensification, cleaner production, and continuous optimization are key strategies that address these challenges by aiming to make industrial processes more effective and environmentally friendly.

TYPICAL PROCESS

  • Effective self-cleaning to minimize dead zones, product accumulation and product degradation

  • Excellent kneading and mixing for better homogenization

  • Effective heat transfer

  • High surface renewal efficiency

  • Large free vapor volume

  • Precise and uniform temperature control due to large heat transfer areas

  • Continuous or batch processing

  • Process intensification

  • Processing of sticky and highly viscous products

  • Residence time is independent from agitator speed, wide and flexible range of average residence times

  • Reliable process scale-up from pilot to industrial units

  • Large production capacities, economy of scale

  • Maximum process yield per unit volume

  • Reliable, robust design

  • Short return of investment

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DAIRY
food processing industry equipment

FEATURES

  • Effective self-cleaning to minimize dead zones, product accumulation and product degradation

  • Excellent kneading and mixing for better homogenization

  • Effective heat transfer

  • High surface renewal efficiency

  • Large free vapor volume

  • Precise and uniform temperature control due to large heat transfer areas

  • Continuous or batch processing

  • Process intensification

  • Processing of sticky and highly viscous products

  • Residence time is independent from agitator speed, wide and flexible range of average residence times

  • Reliable process scale-up from pilot to industrial units

  • Large production capacities, economy of scale

  • Maximum process yield per unit volume

  • Reliable, robust design

  • Short return of investment

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