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KERAKOLL

Fugabella Eco Porcelana 0-5 Pergamon 5 kg bag

€15.40
€13.86 Save 10%
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Color: Pergamon

Grouting: 0 to 5 mm

Format: 5 kg

Packaging type: paper bag

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Fugabella Eco Porcelana 0-5 Pergamon 5 kg bag

  • Color: Pergamon
  • Grouting: 0 to 5 mm
  • Format: 5 kg
  • Packaging type: paper bag

Certified, eco-friendly, natural bacteriostatic and fungistatic mineral filler stabilized with pure natural NHL 5 lime for high color fastness joints from 0 to 5 mm, ideal for use in GreenBuilding. Single-component with very low volatile organic compound emissions, contains recycled raw materials. Recyclable as an inert material at the end of its life.

Fugabella® Eco Porcelana 0-5 develops an extra-fine micro-granular finish with an anti-engraving surface hardness that enhances the play of light reflection ensuring maximum affinity to the design of ceramics, glass mosaics and natural stones.

PRODUCT USE:

• Indoor and outdoor floors and walls

• Low absorption water repellent

• High color fastness tested by CATAS

• Color uniformity

• Three collections of 28 colors: Classic, Design and Colors

• Ideal for decorating rectified slabs

• Suitable for porcelain stoneware, ceramics, low thickness slabs and natural stones

• Easy cleaning and maintenance

• Suitable for heated floors

• Approved for naval use

INTENDED USE

Grouting joints from 0 to 5 mm with high resistance, extra-fine finish, high hardness and reduced water absorption.

Materials to be grouted:

- Porcelain stoneware, low thickness slabs, ceramic tiles, klinker, terracotta, glass and ceramic mosaic, of all types and sizes

- Natural stones, recomposed materials, marble Floors and walls, internal and external, for civil, commercial, industrial and urban furnishing use, in environments with intense traffic, swimming pools, tubs and fountains, even in areas subject to temperature changes and frost.

DO NOT USE

For joints greater than 5 mm in width, in floors and walls where specific chemical resistances are required, total non-absorbency to water; for filling elastic expansion or fractionation joints; on substrates with high deformability, not perfectly dry and subject to rising damp.

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