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4-Chloro-6-ethoxy-2-(methylsulfinyl)pyrimidine is a chemical compound that is commonly used in various industries, including the chemical, pharmaceutical, and agrochemical industries.
This compound is produced through a series of chemical reactions involving various intermediates.
The production process of 4-Chloro-6-ethoxy-2-(methylsulfinyl)pyrimidine can be classified into two main stages: upstream and downstream.
The upstream products are the raw materials required for the production of 4-Chloro-6-ethoxy-2-(methylsulfinyl)pyrimidine.
These raw materials are usually obtained from natural resources or synthesized through chemical reactions using other chemical compounds.
The upstream products for the production of 4-Chloro-6-ethoxy-2-(methylsulfinyl)pyrimidine include ethyl 2-bromo-6-ethoxy-4-(methylsulfinyl)pyrimidine, methyl p-toluenesulfonate, and potassium carbonate.
The upstream stage of the production process involves the synthesis of these raw materials through chemical reactions.
The synthesis of these raw materials requires a series of chemical reactions that involve the use of various reagents, solvents, and catalysts.
The reactions can be carried out in various types of reactors, such as flasks, batch reactors, and continuous stirred-tank reactors.
The upstream stage of the production process also involves the purification of the intermediate products to remove any impurities that may be present.
Once the upstream products are synthesized, they are used in the downstream stage of the production process.
The downstream products are the final products, which are 4-Chloro-6-ethoxy-2-(methylsulfinyl)pyrimidine and its derivatives.
The downstream stage involves the purification and characterization of the final products.
The purification of 4-Chloro-6-ethoxy-2-(methylsulfinyl)pyrimidine is usually carried out by using various purification techniques, such as crystallization, chromatography, and recrystallization.
These techniques are used to remove any impurities that may be present in the intermediate products.
The purified 4-Chloro-6-ethoxy-2-(methylsulfinyl)pyrimidine is then characterized to determine its chemical properties, such as its melting point, boiling point, density, and solubility.
The derivatives of 4-Chloro-6-ethoxy-2-(methylsulfinyl)pyrimidine can be produced through various chemical reactions, such as halogenation, sulfonation, and nitration.
These derivatives can be used in various applications, such as in the production of pharmaceuticals, agrochemicals, and other chemical products.
In conclusion, the production of 4-Chloro-6-ethoxy-2-(methylsulfinyl)pyrimidine involves two main stages: upstream and downstream.
The upstream stage involves the synthesis of the raw materials required for the production of 4-Chloro-6-ethoxy-2-(methylsulfinyl)pyrimidine, while the downstream stage involves the purification and characterization of the final products.
The downstream products are the final products, which are 4-Chloro-6-ethoxy-2-(methylsulfinyl)pyrimidine and its derivatives.
These derivatives can be used in various applications, such as in the production of pharmaceuticals, agrochemicals, and other chemical products.