-
Categories
-
Pharmaceutical Intermediates
-
Active Pharmaceutical Ingredients
-
Food Additives
- Industrial Coatings
- Agrochemicals
- Dyes and Pigments
- Surfactant
- Flavors and Fragrances
- Chemical Reagents
- Catalyst and Auxiliary
- Natural Products
- Inorganic Chemistry
-
Organic Chemistry
-
Biochemical Engineering
- Analytical Chemistry
-
Cosmetic Ingredient
- Water Treatment Chemical
-
Pharmaceutical Intermediates
Promotion
ECHEMI Mall
Wholesale
Weekly Price
Exhibition
News
-
Trade Service
2,4-Diamino-6-hydroxypyrimidine, also known as acid orange 7, is a benzene derivative used as a colorant and catalyst in various industrial applications.
The production process of 2,4-diamino-6-hydroxypyrimidine involves several steps, each with its unique set of challenges and requirements.
Step 1: Batch Mixing
The first step in the production process of 2,4-diamino-6-hydroxypyrimidine is batch mixing, where the required chemicals and reagents are mixed together in specific ratios to form a homogenous solution.
This step ensures that the starting materials have the correct composition before the reaction process begins.
Step 2: Reactor Reaction
The batch mixed mixture is then passed through a reactor, where the reaction between the starting materials takes place.
The reaction process involves the interaction of several chemicals in the presence of heat and a catalyst, which accelerates the reaction rate.
The reaction produces 2,4-diamino-6-hydroxypyrimidine, which is then separated from the reaction mixture.
Step 3: Hydrolysis
The separation process involves hydrolysis, which involves the breakdown of the reaction product into two separate compounds.
The hydrolysis process is critical in ensuring that the final product meets the required purity standards.
The hydrolysis process can be carried out using various techniques, including solvent extraction, precipitation, and ion exchange.
Step 4: Distillation
After the hydrolysis process, the mixture is further purified through distillation.
Distillation involves the separation of the mixture into its individual components based on their boiling points.
This process is critical in ensuring that the final product meets the required purity standards.
Step 5: Crystallization
The purified mixture is then subjected to crystallization, where the final product is formed.
Crystallization involves the formation of pure crystals of 2,4-diamino-6-hydroxypyrimidine, which are then separated from the liquid mixture.
The crystallization process can be carried out using various techniques, including cooling, filtration, and centrifugation.
Step 6: Packaging
The final step in the production process of 2,4-diamino-6-hydroxypyrimidine is packaging.
The final product is packaged in airtight containers to ensure that it remains stable during storage and transportation.
The packaging process is critical in protecting the product from external factors that could affect its quality and purity.
Overall, the production process of 2,4-diamino-6-hydroxypyrimidine involves several steps that must be carried out with precision and care to ensure that the final product meets the required purity and quality standards.
Each step in the process must be carefully monitored to ensure that the correct chemical ratios and reaction conditions are maintained.
The production process must also comply with all relevant safety and environmental regulations to minimize the risk of accidents and pollution.
With proper management and control, the production of 2,4-diamino-6-hydroxypyrimidine can be a safe and economically viable process for the chemical industry.