Potassium Acetate

Chinese name: potassium acetate
English name: Potassium
Molecular formula: C2H3O2K
Relative molecular mass: 98.1
CAS number: 127-08-2

Physical and chemical properties

Appearance: white liquid
Viscosity (25 ° C, mPa.s): 200
Density (25 ° C, g / cm 3): 1.26
Water soluble: soluble in water
Flash point (PMCC, °C): >110
Hydroxyl value (mgKOH/g): 1122

application
Potassium acetate is normally solid. In the polyurethane industry, alcohol is first dissolved and diluted into a liquid state, which is convenient to use. Potassium acetate is used to promote isocyanate reaction (trimerization reaction) and can be used in various rigid foams.

Benzyldimethylamine

BDMA

Molecular formula: C9H13N;

Relative molecular mass: 135.20;

CAS number: 103-83-3;

Colorless to slightly yellow transparent liquid, soluble in ethanol, soluble in hot water, slightly soluble in cold water;

Purity ≥99%;

Moisture ≤ 0.5%;

Viscosity (25 ° C): 90 mPa.s;

Density (25 ° C): 0.897 g / cm 3;

Freezing point: -75 ° C;

Boiling range: 178-184 ° C;

Refractive index (25 ° C): 1.5011;

Flash point (TCC): 54 ° C;

Steam pressure (20 ° C): 200Pa

One. The main use of BDMA

BDMA is a catalyst for polyester polyurethane block soft foam, polyurethane rigid foam, polyurethane sheet and adhesive coating in polyurethane industry. It is mainly used for hard foam, which can make polyurethane foam have good pre-flowability and uniform cells. Good adhesion between the foam and the substrate;

In the field of organic synthesis, BDMA is mainly used as a catalyst for synthesizing dehydrohalogen in organic drugs, a corrosion inhibitor, an acidic neutralizer, an accelerator for electron microscopy slicing, and the like;

BDMA is also used to synthesize quaternary ammonium salts to produce cationic surface active strong fungicides;

BDMA is mainly used to promote curing systems such as anhydrides, polyamides, and fatty amines, and accelerates product curing. It is widely used in epoxy resin electronic potting materials, encapsulating materials, epoxy floor coatings, and marine paints. Used as a curing accelerator;

Specific application examples of BDMA include: carbon fiber/single molecule epoxy resin matrix composite laminate, epoxy substrate electrophoretic coating, dry transformer potting

PU Catalyst: BDMA (benzyldimethylamine) CAS:103-83-3

Over view:

Common Name: Benzyl Dimethyl Amine

Other Chemical Names: N,N-Dimethylbenzylamine, Benzenemethamine, N,N-dimethyl-;Benzenemethanamine,N,N-dimethyl-;Benzylamine,

Physical and chemical properties:

Appearance

Form: transprant light yellow  liquid

Odour

no data available

PH

10 at 10 g/l at 20 °C

Melting point/freezing point

Melting point/range: -75 °C – lit.

Initial boiling point and boiling range

181 – 184 °C at 1.020 hPa – lit.

Flash point

53 °C – closed cup

Evaporation rate

no data available

Flammability (solid, gas)

Upper explosion limit: 6,3 %(V)

Upper/lower flammability

or explosive limits

Lower explosion limit: 0,9 %(V)

Relative density

0,9 g/cm3 at 25 °C

Water solubility

soluble

Partition coefficient: noctanol/water

log Pow: 1,87

Molar formular

C9H13N

Molar mass

135.21

1 (4)

Features and uses:

A liquid tertiary amine catalyst. Can improve foam cure and demolding time. It is an excellent candidate to consider for use in water-NCO reaction in rigid polyurethane foams.

BDMA is typically suitable to replace DMCHA in formulations using a high level of water as blowing or co-blowing agent can reduce surface friability and improve adhesion of foam to substrates.

BDMA promotes the urethane reaction and is commonly used in high-water rigid foam applications to reduce friability. It has a characteristic but low amine odor, and is soluble in water and in most organic solvents.

BDMA is used in flexible slabstock and rigid foam applications.

It promotes the urethane reaction and is commonly used in high-water rigid foam applications to reduce friability.

BDMA is also used for flexible slabstock foam applications.

Storage Information 

Recommends that our catalysts be stored in a dry and cool area under appropriate ventilation conditions. Each container should be closed tightly to avoid contamination with moisture or other negative influences that could change the products’ performance in the end use.

Package:

180KG/Steel Drum

(DABCO BDMA/Niax BDMA/ PC Cat NP60/ Addocat DB/ Jeffcat BDMA/ Lupragen N103)

Bismuth 2-Ethylhexanoate

Chinese name: 2-ethylhexanoate
English name: Bismuth Octoate
Molecular formula: Bi[OOCCH(C2H5)C4H9]3
Relative molecular mass: 638.61
CAS No.: 67874-71-9

Physical and chemical properties

Isooctanoate is a light yellow transparent oily liquid under normal conditions.
Viscosity (25 ° C): 50mPa.s
Density (25 ° C): 1.22 g / cm 3
Water soluble: insoluble in water
Flash point (PMCC): 158 ° C
Hydroxyl value: 0

application

Isooctanoate is a ruthenium metal carboxylate catalyst which can be used as a cocatalyst for tertiary amines to accelerate the reaction and solidification of carbamates; bismuth octylate can be used to replace soft slabstock foam, high density softness Foam, spray foam, microcellular foam, and tin metal catalysts in rigid foam systems.

PU Catalyst Huntsman

The large and growing family of JEFFCAT amine catalysts from Huntsman Performance Products provides solutions to a wide range of urethane applications including polyether and polyester foams, coatings, elastomers, and high-modulus urethane plastics. The unique industry-leading low emission JEFFCAT amine catalyst product range results from the value of Huntsman’s advanced technologies and 40-plus years of experience with urethane catalysts and addresses the environmental, health and safety aspects of polyurethane foam production and usage in many application area including automotive, furniture & bedding and spray foams.

GENERAL PURPOSE CATALYSTS

Jeffcat ZF-20   Bis-(2-dimethylaminoethyl)ether : A very strong, highly efficient blowing catalyst.

Jeffcat  ZF-22   70% ZF-20 in dipropylene glycol

Jeffcat  ZF-24     23% ZF-20 in dipropylene glycol

Jeffcat  ZF-26       11% ZF-20 in dipropylene glycol

Jeffcat  ZF-123       35% ZF-20 in a 3000 MW triol

Jeffcat  ZF-125         35% ZF-20 in a high viscosity reactive diluent

Jeffcat  ZF-167         47% ZF-20 in dipropylene glycol

Jeffcat  ZF-234

Jeffcat  ZF-54   Delayed-action catalyst made up of ZF-22 partially neutralized with formic acid. Provides excellent cure and flow as co-catalyst.

Jeffcat BDMA     Benzyldimethylamine

Jeffcat DMCHA   N,N-dimethylcyclohexylamine Widely used catalyst for all types of rigid foams.

Jeffcat DMEA         N,N-dimethylethanolamine

Jeffcat PMDETA     Pentamethyldiethylenetriamine : Especially useful as catalyst for HCFC/ water-blown rigid foams.

Jeffcat  TD-33A       33% TEDA in dipropylene glycol

Jeffcat  TDBDO       25% TD-100 in 75% 1,4-butanediol (BDO)

Jeffcat  TDEG              33.3% TD-100 in monoethylene glycol

Jeffcat  Z-80       N,N,N, -tris(3-dimethylaminopropyl-) amine : It acts as a low odor gel catalyst, designed mainly for use in rigid polyurethane foams.

Jeffcat  Z-140       Low odor balanced catalyst with excellent postcure characteristics.

Jeffcat ZR-40       N,N,N’,N”,N”-pentamethyl-dipropylenetriamine : Very useful in cold-molded HR foams. Low odor catalyst with a good balance between gel and blow.

LOW EMISSION CATALYSTS / REACTIVE CATALYSTS

Jeffcat  DMAPA    Used in a variety of polyurethane foam applications.

Jeffcat  DPA         Low emission catalyst with good gelation and flowability.

Jeffcat  LE-15   This is reactive amine catalyst blend. This product strongly promotes the blowing reaction and is formulated to permit its easy introduction into polyurethane foam formulations.

Jeffcat  LE-60   Reactive blowing catalyst used in foams requiring low emissions.

Jeffcat  LE-220 High potency, low odor gel catalyst designed to replace JEFFCAT  TD-33A. Used in a wide variety of flexible and rigid PU formulations with excellent processing latitude.

Jeffcat  LE-310 Low emission gel catalyst which can replace JEFFCAT TD-33A on an equivalent part basis. Can be used in a wide variety of flexible slabstock and high resiliency (HR) foam grades.

Jeffcat LE-425     Formulated blend of reactive blowing and gelling catalysts.

Jeffcat LE-520

Jeffcat  LE-526

Jeffcat  LED-103   Reactive, acid blocked, low emissions type blowing catalyst that offers improved material handling, low-corrosion, and phase stability in fully formulated B-side flexible molded foams.

Jeffcat  LED-204   Reactive, acid blocked, low emissions, low-corrosion type gelling catalyst used in all types of flexible molded foams.

Jeffcat  S-117           Thisis a formulated strong blowing catalyst for low- and medium-density spray foams. The product is a non-fugitive catalyst because it contains reactive hydroxyl groups which react into the foaming matrix, thus minimizing catalyst odor in finished foams.

Jeffcat  Z-110       Used in a variety of polyurethane foam applications.

Jeffcat  Z-130     Low emission reactive gel catalyst.

Jeffcat  Z-131     Blend of low emission, reactive gelling amine catalysts.

Jeffcat  ZF-10   Strong blowing catalyst that is highly efficient. Used in foams requiring low emission.

Jeffcat  ZR-50   Low emission catalyst with exceptional balance and versatility.

Jeffcat  ZR-70    For use mainly in spray and packaging foam applications.

FLEXIBLE POLYESTER FOAM CATALYSTS

Jeffcat  NEM   N-ethylmorpholine — Promotes surface cure for  flexiblepolyester foams and excellent processing in polyester-based flexible foams.

Jeffcat  NMM  N-methylmorpholine — Good solubilizer in making  polyester foams. Also useful in high rise rigid molded applications.

Jeffcat MM-70   Reduced odor amine to replace JEFFCAT NEM in flexible ester foams.

Jeffcat PM           Low odor JEFFCAT NEM replacement for round block flexible ester bun  stock foam.

Jeffcat M-75         Reduced odor formulated catalyst that gives excellent processing latitude in  polyester-based flexible foams and clear activator solutions.

Jeffcat DM-70         Improves green strength and can be used for charcoal polyester-based flexible foams.

SPECIALTY AMINE CATALYSTS

Jeffcat  DMDEE     2,2′-dimorpholinodiethylether — Strong blowing  catalyst. Provides a stable prepolymer system. Excellent for 1-K systems.

Jeffcat   DMDLC     Used for 1-K moisture cure applications with critical color requirements.

Jeffcat  ZF-53       Formulated catalyst made from TD-33A and ZF-22. Designed for flexible  slab foams.

Jeffcat   ZF-54         Delayed-action catalyst made up of ZF-22 partially neutralized with formic acid.  Provides excellent cure and flow as co-catalyst.

Jeffcat Z-65P         Formulated catalyst for accelerated cure in a medium mw diol (PPG-400). Improves early compression set. Wide processing latitude with alternate blowing agent.

Jeffcat  ZR-81           Delayed action balanced catalyst used to extend process equipment    service times.

BACK-END CURE CATALYSTS

Jeffcat TR-52      Back-end cure co-catalyst. Shortens the demold time of rigid foam systems.

Jeffcat TR-90      1,3,5-tris(3-(dimethylamino)propyl)- hexahydro-   s-triazine — Improved dimensional stability in many rigid foam systems. Useful as a cocatalyst in rigid spray foam.

Addocat 9558

Addocat 9558

This activator is used for the production of polyurethane flexible slabstock foam and hot-moulded foam. It is also used for HR foam and, as a co-catalyst, for rigid foams.

 

 

Addocat 9558

Addocat 9558 MSDS

 

 

Jeffcat ZF-22

Jeffcat ZF-22

Typically used in flexible slabstock and moulded foams and rigid polyurethane foam (PUR). Used with other amine catalysts to balance blowing and gellation.

 

Jeffcat ZF-22

Jeffcat  ZF-22 MSDS

 

Kaolizer 12

Kaolizer 12

Bis (dimethylaminoethyl) ether:70%, Dipropylene glycol:30%

Flexible foam (Slab/Mold), Semirigid foam, Rigid foam, Elastomer Shoe sole

High performance strong blowing catalyst

 

Kaolizer 12 MSDS

 

BDMAEE:Bis (2-Dimethylaminoethyl) Ether

CAS NO:3033-62-3

China supplier

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BDMAEE Manufacture !