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Products
- 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%
Industrial Di-Tert-Amyl Peroxide 98% 10508-09-5 - Leading China Suppliers & Factory of Polymerization Initiators
Half Life Data
DTAP in chlorobenzene:
| Chemical Name | Di-tert-amyl peroxide |
| Molecular Formula | C10H22O2 |
| Molecular Weight | 174.3 |
| CAS NO. | 10508-09-5 |
| UN NO. | 3107 |
Specification
| Appearance | Clear liquid |
| Assay | 96% min |
| Active Oxygen Content | 8.8% min |
| TAHP | 0.5% max |
Package and Storage
Standard Package: 20kg net per PE drum.
Stored under 10~30℃ shadow with good air circulation. Transportation, exposure, and strenuous exercise should be avoided. Refrain from heat, acid, and reducing agents during storage or shipment.
Applications
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1. Polymerization of acrylates and methacrylates:
DTAP can be used as initiator for the solution (co)polymerization of acrylates and methacrylates. -
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.

