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K-KAT 348

  • Metal Type Bismuth carboxylate
  • % Active 25
  • Market Application Resin synthesis
  • Catalyst (tin-free) Efficient alternative to DBTDL in 2K and 1K PU systems. A non-persistent catalyst that is effective for resin synthesis. Similar properties to DBTDL without environmental drawbacks.

K-KAT 5218

  • Metal Type Aluminum chelate
  • % Active 65
  • Market Application 2K PU
  • Catalyst (tin-free) Provides fast dry time and increased pot life when used in combination with 2,4 pentanedione. Recommended for 2K PU, pultrusion and RIM applications.

K-KAT 6212

  • Metal Type Zirconium
  • % Active 2
  • Market Application 2K PU
  • Catalyst (tin-free) A selective catalyst for solventborne and waterborne 2K PU coatings as well as for adhesives, RIM and resin synthesis

K-SPERSE 131

  • Application Advantage Faster dispersion times
  • Market Application Alkyds
  • Market Application Urethanes
  • Wetting/ dispersing agent Use in formulas containing driers or accelerators including alkyds, urethanes and epoxies.

K-SPERSE 152

  • Market Application Solventborne
  • Application Advantage Pigment dispersion
  • Application Advantage Color development
  • Wetting/ dispersing agent General purpose. Very low use level. Synergist for competitive dispersants.

K-SPERSE 152MS

  • Market Application Solventborne
  • Application Advantage Pigment dispersion
  • Application Advantage Color development
  • Dispersant Mineral Spirits version of K-SPERSE 152.

NACURE CD-2180

  • Market Application XLPE Systems
  • Application Advantage Ambient cure
  • Formulation Advantage Compatibility
  • Catalyst (acid) A proprietary hydrophobic sulfonic acid catalyst. It is highly effective for the hydrolysis of siloxane functional polymers at ambient conditions.

NACURE CD-2180M

  • Market Application XLPE Systems
  • Application Advantage Ambient cure
  • Formulation Advantage Compatibility
  • Catalyst (acid) A proprietary hydrophobic sulfonic acid catalyst. It is highly effective for the hydrolysis of siloxane functional polymers at ambient conditions.