- Dibenzoyl Peroxide
- Tert-Butyl Peroxybenzoate
- Di-Tert-Butyl Peroxide 98%
- Dilauroyl Peroxide 99%
- Tert-Butylperoxy 2-Ethylhexyl Carbonate 98%
- Tert-Amylperoxy 2-Ethylhexyl Carbonate 98%
- Tert-Butyl Peroxy-3,5,5-Trimethylhexanoate 98%
- Tert-Butylperoxy Isopropyl Carbonate 75%
- Tert-Butyl Peroxyacetate 50%
- Tert-Amyl Peroxypivalate 75%
- Tert-Butyl Peroxy-2-Ethylhexanoate 98%
- Tert-Amyl Peroxy-2-Ethylhexanoate 98%
- Tert-Butyl Peroxypivalate 75%
- Tert-Butyl Peroxyneodecanoate 75%
- Di(2-Ethylhexyl) Peroxydicarbonate 75%
- 1,1-Di(Tert-Butylperoxy) Cyclohexane 80%
- 1,1-Di(Tert-Amylperoxy) Cyclohexane 80%
- 1,1-Di(Tert-Butylperoxy)-3,3,5-Trimethylcyclohexane 98%
- Di-Tert-Amyl Peroxide 98%
01
Industrial Di-Tert-Amyl Peroxide 98% 10508-09-5
Half Life Data
DTAP in chlorobenzene:
10hr,Half Life Temp…………108℃
1hr,Half Life Temp…………128℃
1min,Half Life Temp…………150℃
Di-tert-amyl peroxide | ||
|
Molecular formula |
C10H22O2 |
Molecular weight |
174.3 |
|
CAS NO. |
10508-09-5 |
|
UN NO. |
3107 |
|
Chemical name |
Di-tert-amyl peroxide |
Specification
Appearance |
Clear liquid |
Assay |
96%min |
Active Oxygen Content |
8.8%min |
TAHP |
0.5% max |
Package and Storage
20kg net per PE drum.
10~30℃ stored under shadow, good air circulation. Transportation, exposure and strenuous exercise should be avoided.Refrain from heat and acid, reducing agent such as during storage or shipment.
Applications
1.Polymerization of acrylates and methacrylates
DTAP can be used as initiator for the solution(co )polymerization of acrylates and metherylates.
2.Polymerization of ethylene
DTAP is an efficient initiator for the ethylene polymerization under high pressure in both autoclave and tubular processes.
Advantages
Di-tert-amyl peroxide, like other organic peroxides, is commonly used as a radical initiator in various polymerization processes. While specific information about the advantages of di-tert-amyl peroxide may not be readily available, it shares some general advantages with other peroxides used in industrial applications. These advantages can include:
Polymerization Initiation: Di-tert-amyl peroxide can effectively initiate the polymerization of monomers, leading to the production of polymers with desirable properties such as strength, durability, and heat resistance.
Cross-Linking Agent: It facilitates the cross-linking of polymers, enhancing their mechanical properties and making them suitable for a wide range of industrial applications.
Controlled Curing: Di-tert-amyl peroxide allows for controlled curing processes, enabling manufacturers to tailor the properties of the final polymer products to meet specific industrial requirements.
Versatility: It can be used in the production of a variety of polymer-based materials, providing versatility in industrial processes.
Shelf Stability: Industrial di-tert-amyl peroxide formulations can be designed to have good shelf stability, allowing for convenient storage and use in industrial settings.
It’s important to note that the specific advantages of di-tert-amyl peroxide may vary based on its application and formulation. Manufacturers and industrial users should follow safety guidelines and consider the specific properties of di-tert-amyl peroxide when evaluating its advantages for their intended industrial processes.