Technical data of must decolorization plants

Technical data of must decolorization plants

Penta-Dec must decolorization plants are specialized adsorption systems designed to remove pigments and phenolic compounds from grape must. By utilizing high-affinity resins, the process ensures a significant reduction in color intensity and improved stability, making the must suitable for high-quality white wine production and other food applications.

What it means

Must decolorization is the selective removal of coloring matter (anthocyanins and melanoidins) from grape must. This treatment is essential for producing “blanc de noirs” or for correcting the color of musts that have undergone excessive oxidation or skin contact.

How it works

The plant passes the must through a bed of macroporous adsorbent resins. These resins trap the large pigment molecules while allowing sugars and acids to pass through unaffected. The result is a clear, bright must with preserved organoleptic properties.

Automation

The Penta-Dec system features fully automated cycles for production, rinsing, and resin regeneration. Integrated sensors monitor the color of the output in real-time, ensuring consistent performance and optimizing the use of regeneration chemicals.

Process concept and operating strategy

The decolorization process is a critical step for wineries aiming for color precision and product stability. Penta-Dec systems are engineered for high efficiency and minimal product loss.

The use of specific adsorbent resins allows for the targeted removal of polyphenols and pigments without stripping the must of its essential flavor precursors or sugar content.

By removing the precursors of browning, the decolorization process significantly enhances the shelf-life and color stability of the final wine, preventing future oxidation issues.

The resins are regenerated using a mild alkaline solution, followed by a thorough rinse. The automated system minimizes water consumption and ensures the resins maintain their adsorption capacity over many seasons.

  • Effective removal of unwanted color and oxidized phenols.
  • Preservation of sugar profile and natural acidity.
  • Improved protein and tartaric stability.
  • Reduced need for traditional fining agents like charcoal.
  • Compact and modular design for easy integration.

Useful references

Adsorption Technology
Wine Phenolics

Sizing inputs:
Initial color intensity (Absorbance at 420/520 nm), total polyphenol content, required flow rate, and desired final color target.

Technical data for must decolorization plants

Model Resin volume (L) ADS (Adsorbent) Instant flow rate (hL/h) Treated volume (hL/day) NaOH 50% consumption (L per cycle) H₂SO₄ 50% consumption (L per cycle) Water consumption (L per cycle) Plant dimensions (L x W x H)
System DEC 375m 375 11.2 Service/regeneration cycles vary depending on product type and color concentration target 12 // 1.300 1.200 x 1.200 x 2.300 mm
System DEC 575m 575 17.5 Service/regeneration cycles vary depending on product type and color concentration target 18 // 2.100 1.400 x 1.300 x 2.300 mm
System DEC 800m 800 24 Service/regeneration cycles vary depending on product type and color concentration target 24 // 2.800 1.500 x 1.200 x 2.400 mm
System DEC 1.000m 1.000 30 Service/regeneration cycles vary depending on product type and color concentration target 30 // 3.500 1.600 x 1.500 x 2.600 mm
System DEC 1.300m 1.300 39 Service/regeneration cycles vary depending on product type and color concentration target 40 // 4.200 1.700 x 1.500 x 2.800 mm
System DEC 2.500m 2.500 75 Service/regeneration cycles vary depending on product type and color concentration target 76 // 8.050 1.900 x 1.900 x 2.800 mm

Three-column decolorization

Model Resin volume (L) ADS (Adsorbent) Instant flow rate (hL/h) Treated volume (hL/day) NaOH 50% consumption (L per cycle) H₂SO₄ 50% consumption (L per cycle) Water consumption (L per cycle) Plant dimensions (L x W x H)
System DEC 175 175 + 175 + 175 5.2 125 15 1.5 1.880 2.400 x 1.200 x 2.300 mm
System DEC 375 375 + 375 + 375 11.2 270 33 3.3 4.000 2.600 x 1.200 x 2.300 mm
System DEC 575 575 + 575 + 575 17.5 420 52 5.2 6.200 3.000 x 1.300 x 2.300 mm
System DEC 800 800 + 800 + 800 24 575 72 7.2 8.600 3.400 x 1.400 x 2.400 mm
System DEC 1.000 1.000 + 1.000 + 1.000 30 720 90 9 10.780 3.600 x 1.500 x 2.600 mm
System DEC 1.300 1.300 + 1.300 + 1.300 39 935 120 12 14.000 4.200 x 1.600 x 2.800 mm
System DEC 2.500 2.500 + 2.500 + 2.500 75 1800 230 23 26.900 5.200 x 1.900 x 2.800 mm

Three columns + color recovery

Model Resin volume (L) ADS (Adsorbent) + K (Purification) Instant flow rate (hL/h) Treated volume (hL/day) NaOH 50% consumption (L per cycle) H₂SO₄ 50% consumption (L per cycle) Water consumption (L per cycle) Plant dimensions (L x W x H)
System DEC 175 175 + 175 + 175 + 200 5.2 125 15 30 1.880 3.500 x 1.200 x 2.300 mm
System DEC 375 375 + 375 + 375 + 400 11.2 270 33 65 3.800 3.800 x 1.200 x 2.300 mm
System DEC 575 575 + 575 + 575 + 600 17.5 420 52 98 5.800 4.300 x 1.300 x 2.300 mm
System DEC 800 800 + 800 + 800 + 825 24 575 72 135 8.600 4.500 x 1.400 x 2.400 mm
System DEC 1.000 1.000 + 1.000 + 1.000 + 1.050 30 720 90 165 10.780 5.500 x 1.500 x 2.600 mm
System DEC 1.300 1.300 + 1.300 + 1.300 + 1.350 39 935 120 220 14.000 6.000 x 1.600 x 2.800 mm
System DEC 2.500 2.500 + 2.500 + 2.500 + 2.500 75 1800 230 420 26.900 7.000 x 1.900 x 2.800 mm

FAQ

No, the adsorbent resins are highly selective for pigments and polyphenols. The sugar content, acidity, and primary aroma precursors remain largely unaffected.

Yes, it is frequently used to produce white or rosé wines from red grapes (blanc de noirs) by removing the anthocyanins extracted during pressing.

With proper regeneration and maintenance, the resins can last for several years, typically covering 5 to 10 production campaigns depending on the must quality.