Guangzhou Eric Wei Chemical Co., Ltd.
Guangzhou Eric Wei Chemical Co., Ltd.

Dow BACote TX-016M Building Coating Emulsion

Dow BACote TX-016M is a high-performance acrylic building coating emulsion from Dow’s BACote series, engineered for superior weatherability, alkali resistance, and film integrity. It delivers excellent scrub resistance, low VOC content, and strong adhesion on diverse substrates—ideal for premium interior/exterior architectural paints and renders.
  • dow bacote tx 016m building coating emulsion_c926f64b
  • dow bacote tx 016m building coating emulsion_c926f64b

Features Of Dow BACote TX-016M Building Coating Emulsion

  1. Acrylic copolymer emulsion engineered for high durability and weather resistance in exterior architectural coatings.

  2. Excellent alkali resistance, enabling stable performance in cementitious and mineral-based substrates.

  3. Low VOC formulation compliant with major global regulatory standards for sustainable building products.

  4. Superior film formation at ambient temperatures, supporting consistent application and early water resistance.

  5. Good compatibility with common pigments, fillers, and rheology modifiers used in decorative and protective coatings.

Typical Applications Of Dow BACote TX-016M Building Coating Emulsion

  1. Exterior wall coatings for residential and commercial buildings.

  2. Mineral-based facade systems including silicate-acrylic hybrid coatings.

  3. Textured decorative finishes and elastomeric coating bases.

  4. Low-dust, high-hiding masonry primers and topcoats.

  5. Sustainable façade solutions requiring LEED or similar green building certification support.

Specifications Of Dow BACote TX-016M Building Coating Emulsion

Chemical TypeAcrylic copolymer emulsion
Product FormAqueous emulsion
AppearanceWhite to off-white, opaque liquid
Primary ApplicationsExterior architectural coatings, mineral-based façade systems
Key FeaturesAlkali resistance, low VOC, ambient film formation
BenefitsEnhanced durability, substrate compatibility, sustainability compliance
pH (as received)7.5 – 8.5
Minimum Film Formation Temperature (MFFT)≈ 12 °C


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