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TYTAN™

Polymer additives supplied by Borica

20 Products match your search

TYTAN™ TNBZ

by Borica

TYTAN™ TNBZ by Borica is a tetra n-butyl zirconate. Acts as a yellowing-free catalyst. Provides increased thermal stability, lower odor & color (due to better reaction selectivity), lower cycle time, no heavy metal omission of product washing and very low COD to production effluent in comparison to tin catalysts. Offers easy removal through hydrolysis & lower filtration time, easy recycling of excessive ester or alcohol and higher efficiency. TYTAN™ TNBZ is used in polycondensation of polyolefins.
  • Sustainable option

TYTAN™ BIP

by Borica

TYTAN™ BIP by Borica is a propylbutyl titanate by Borica. It acts as a catalyst. It exhibits high reactivity and low freezing point. It possesses high titanium content. TYTAN™ BIP is recommended for the increased production of plasticizers, fatty esters and fatty alcohols. It offers increased thermal stability, low odor, low color due to better reaction selectivity, and low cycle time. It requires very low chemical oxygen demand to produce effluents.

TYTAN™ CP-219

by Borica

TYTAN™ CP-219 by Borica is isostearyl titanate-based coupling & dispersing agent. It is a molecular bridge at the interface between inorganic filler such as CaCO<sub>3</sub>, BaSO<sub>4</sub>, graphite, carbon black, silica and metal oxide with polymer such as PP, PE, PVC, PBT, PET, ABS and rubbers.</br> <ul style="padding-left: 40px;"><li>It shows similar effect as CP-317 at lower cost.</li> <li>Exhibits excellent performance of filler loading and pigment dispersing.</li> <li>It reduces working viscosity and increases toughness.</li> <li>TYTAN™ CP-219 reacts not only with the hydroxyls but the free protons on the inorganic interface, which results in the formation of organic monomolecular layers on the inorganic surface forming the bonding for polymers.</li> <li>The recommended dosage level is 0.2%-2.0% by weight of filler.</li></ul>

TYTAN™ TBT

by Borica

TYTAN™ TBT by Borica is a tetra n-butyl titanate. Acts as a catalyst. Exhibits high Ti-content & reactivity and lower freezing point. Provides increased thermal stability, lower odor & color (due to better reaction selectivity), lower cycle time, no heavy metal omission of product washing and very low COD to production effluent in comparison to tin catalysts. Offers easy removal through hydrolysis & lower filtration time, easy recycling of excessive ester or alcohol and higher efficiency. TYTAN™ TBT is used in polycondensation of polyolefins and alphaolefins.
  • Sustainable option

TYTAN™ CA-B116

by Borica

TYTAN™ CA-B116 by Borica is bismuth based (16% Bi) grade. It acts as an organometallic catalyst.<br> <ul style="padding-left: 40px;"><li>Provides reduced toxicity with higher selectivity and less gassing in the presence of moisture.</li> <li>Exhibits a similar reaction profile as DBTDL.</li> <li>Offers slow to moderate speed.</li> <li>Suitable for both one- and two-component systems for ambient cure or heat cure systems.</li> <li>TYTAN™ CA-B116 is used in polyurethane-based elastomers and casting compounds.</li></ul>

TYTAN™ TNPT

by Borica

TYTAN™ TNPT by Borica is a Tetra n-propyl titanate. Acts as a catalyst. Exhibits high Ti-content & reactivity and lower freezing point. Provides increased thermal stability, lower odor & color (due to better reaction selectivity), lower cycle time, no heavy metal omission of product washing and very low COD to production effluent in comparison to tin catalysts. Offers easy removal through hydrolysis & lower filtration time, easy recycling of excessive ester or alcohol and higher efficiency. TYTAN™ TNPT is used in polycondensation of polyolefins.
  • Sustainable option

TYTAN™ AQ5000

by Borica

<b>TYTAN™ AQ5000</b> by Borica is an aqueous titanium chelate. Acts as a water soluble catalyst. Provides increased thermal stability, lower odor & color (due to better reaction selectivity), lower cycle time, no heavy metal omission of product washing and very low COD to production effluent in comparison to tin catalysts. Offers easy removal through hydrolysis & lower filtration time, easy recycling of excessive ester or alcohol and higher efficiency. <b>TYTAN™ AQ5000</b> by Borica is used in esterification of polyesters like polyethylene terephthalate (PET), PPT and polybutylene terephthalate (PBT).
  • Sustainable option

TYTAN™ CP-326

by Borica

<b>TYTAN™ CP-326</b> by Borica is a pyrophosphate titanate. Acts as a coupling & dispersing agent. It is a molecular bridge at the interface between inorganic filler such as CaCO3, BaSO4, graphite, carbon black, silica and metal oxide with polymer such as PP, PE, PVC, PBT, PET, ABS and rubbers. Exhibits moisture resistance, improved flame retardation and corrosion resistance. <b>TYTAN™ CP-326</b> by Borica reacts not only with the hydroxyls but the free protons on the inorganic interface, which results in the formation of organic monomolecular layers on the inorganic surface forming the bonding for polymers. General dosage range is 0.2% ~ 0.6% by weight of filler or polymer for liquid type and 0.5% ~ 1.5% by weight of filler or polymer for solid type.

TYTAN™ TNBT

by Borica

<b>TYTAN™ TNBT</b> by Borica is a tetra n-butyl titanate. Acts as a catalyst. Exhibits high Ti-content & reactivity and lower freezing point. Provides increased thermal stability, lower odor & color (due to better reaction selectivity), lower cycle time, no heavy metal omission of product washing and very low COD to production effluent in comparison to tin catalysts. Offers easy removal through hydrolysis & lower filtration time, easy recycling of excessive ester or alcohol and higher efficiency. <b>TYTAN™ TNBT</b> by Borica is used in polycondensation of polyolefins and alphaolefins.
  • Sustainable option

TYTAN™ EHT

by Borica

TYTAN™ EHT by Borica is a tetra 2-ethylhexyl titanate. It acts as a catalyst. It exhibits reduced moisture sensitivity. It requires very low chemical oxygen demand to produce effluents. TYTAN™ EHT is suitable for the increased production of plasticizers and methacrylic esters. It offers increased thermal stability, low odor, low color due to better reaction selectivity and low cycle time.
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