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2,4 Toluene-diisocyanate

LABORATORY CHEMICAL SAFETY SUMMARY TOLUENE DIISOCYANATE  [Pg.406]

Substance Toluene diisocyanate (TDI 2,4-toluene dusocyanate 2,4-diisocyanato-l-methyl benzene) CAS 584-84-9 [Pg.406]

Physical Properties Colorless to pale yeUow Liquid bp 251 °C, mp 21 °C Insoluble in water (reacts exothermically) [Pg.406]

Major Hazards Sensitizer by inhalation and skin contact possible human carcinogen (OSHA select carcinogen ). [Pg.406]

TDI is a combustible liquid (NFPA rating = 1). Explosive limits in air are 0.9 to 9.5% by volume. Carbon dioxide or dry chemical extinguishers should be used for TDI fires. [Pg.407]


Phosgene (for toluene diisocyanate, dipbenylmetbane diisocyanate, and polycarbonate resin manufacture), cbloroisocyanuric acid, cyanuric cbloride. [Pg.517]

These foams are produced from long-chain, Hghtiy branched polyols reacting with a diisocyanate, usuaUy toluene diisocyanate [1321 -38-6] (TDI), to form an open-ceUed stmcture with free air dow during dexure. During manufacture these foams are closely controUed for proper density, ranging from 13 to 80 kg/m (0.8—5 lbs/ft ), to achieve the desired physical properties and cost. [Pg.417]

For methylene diphenyl diisocyanate (MDI), the initial reaction involves the condensation of aniline [62-53-3] (21) with formaldehyde [50-00-0] to yield a mixture of oligomeric amines (22, where n = 1, 2, 3...). For toluene diisocyanate, amine monomers are prepared by the nitration (qv) of toluene [108-88-3] and subsequent hydrogenation (see Amines byreduction). These materials are converted to the isocyanate, in the majority of the commercial aromatic isocyanate phosgenation processes, using a two-step approach. [Pg.452]

A convenient method for the synthesis of these low boiling materials consists of the reaction of /V,/V-dimethy1iirea [96-31-1] with toluene diisocyanate to yield an aUphatic—aromatic urea (84). Alternatively, an appropriate aUphatic—aromatic urea can be prepared by the reaction of diphenylcarbamoyl chloride [83-01-2] with methylamine. Thermolysis of either of the mixed ureas produces methyl isocyanate ia high yield (3,85). [Pg.455]

Phosgenation. The most important reaction of y -toluenediamine is with phosgene [75-44-5] to give toluene diisocyanate TDI (see... [Pg.237]

Yield for the process at low catalyst loading is 95%. AJ-Methyl-toluenediamiae, one of the reaction by-products, represents not only a reduction ia yield, but also a highly objectionable impurity ia the manufacture of toluene diisocyanate. Low concentrations of CO (0.3—6% volume) control this side reaction. [Pg.238]

Toluene Diisocyanate. Toluene diisocyanate is the basic raw material for production of flexible polyurethane foams. It is produced by the reaction sequence shown below, in which toluene is dinitrated, the dinitrotoluene is hydrogenated to yield 2,4-diaminotoluene, and this diamine in turn is treated with phosgene to yield toluene 2,4-diisocyanate. [Pg.190]

An equimolar mixture of carbon monoxide and chlorine reacts at 500 K under a slight positive pressure. The reaction is extremely exothermic (Ai/gQQp. = —109.7 kJ or —26.22 kcal), and heat removal is the limiting factor in reactor design. Phosgene (qv) is often produced on-site for use in the manufacture of toluene diisocyanate (see Amines, aromatic-diaminotoluenes Isocyanates, organic). [Pg.51]

Toluene diisocyanate Separation of TDI 80 into 22,000 Undisclosed Falling him Undisclosed Undisclosed... [Pg.1999]

Toluene diisocyanate (toluene diamine, phosgene) B LG None 200-210 1 7h [7] 657... [Pg.2074]

Toluene diisocyanate Midget impinger 15 ml Marcali solution 1 25 95 Diazotlzation and coupling reaction Materials containing reactive hydrogen attached to oxygen (phenol) certain other diamines... [Pg.184]


See other pages where 2,4 Toluene-diisocyanate is mentioned: [Pg.506]    [Pg.963]    [Pg.1001]    [Pg.1001]    [Pg.1001]    [Pg.1002]    [Pg.1002]    [Pg.1002]    [Pg.233]    [Pg.375]    [Pg.517]    [Pg.417]    [Pg.417]    [Pg.448]    [Pg.451]    [Pg.457]    [Pg.459]    [Pg.71]    [Pg.315]    [Pg.145]    [Pg.348]    [Pg.361]    [Pg.42]    [Pg.255]    [Pg.537]    [Pg.228]    [Pg.73]    [Pg.185]    [Pg.228]    [Pg.248]    [Pg.345]    [Pg.306]    [Pg.307]    [Pg.156]    [Pg.156]    [Pg.322]    [Pg.340]    [Pg.185]    [Pg.1995]   
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2, 4-Toluene diisocyanate cancer

2, 4-Toluene diisocyanate exposure

2, 4-Toluene diisocyanate health effects

2, 4-Toluene diisocyanate precautions

2, 4-Toluene diisocyanate toxicity

2, 6-Toluene diisocyanate, reaction with

2,4- and 2,6-Toluene diisocyanates

2,4-Toluene diisocyanate polyurethane synthesis

2.4- Toluene diisocyanate catalyst

2.4- Toluene diisocyanate reaction

Butanol reaction with 2.6-toluene diisocyanate

Chemical toluene diisocyanate

Crystallization toluene diisocyanate

Diisocyan

Dinitrotoluene toluene diisocyanates from

Isocyanates, organic toluene-2,4-diisocyanate

Mechanical toluene diisocyanate

Photochlorination toluene-2,4-diisocyanate

Polypropylene oxide/2,4 toluene diisocyanate

Propylene oxide toluene diisocyanate

TDI (See Toluene diisocyanate

TDI = toluene diisocyanate

Toluene 2,4-diisocyanate asthma caused

Toluene diisocyanate allergic contact dermatitis

Toluene diisocyanate carcinogenicity

Toluene diisocyanate containers

Toluene diisocyanate control

Toluene diisocyanate elastomers, diamine chain-extenders

Toluene diisocyanate for

Toluene diisocyanate health hazards

Toluene diisocyanate number

Toluene diisocyanate polyether prepolymers

Toluene diisocyanate polymerization

Toluene diisocyanate polyurethane

Toluene diisocyanate polyurethanes from

Toluene diisocyanate production

Toluene diisocyanate properties

Toluene diisocyanate reactivity

Toluene diisocyanate respiratory sensitization

Toluene diisocyanate skin toxicity

Toluene diisocyanate trimerization

Toluene diisocyanate, chain

Toluene diisocyanate, chain extension

Toluene diisocyanate, sampling

Toluene diisocyanates

Toluene diisocyanates

Treatment toluene diisocyanate

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