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2,6-Dichloro-N-(1-methylethyl)-4-pyrimidinemethanamine, also known as aroylamine, is a chemical compound that is commonly used as an intermediate in the production of a variety of chemicals and pharmaceuticals.
In the chemical industry, the term "upstream products" refers to the raw materials or intermediate chemicals that are used to produce a final product, while "downstream products" refer to the final products that are made using those raw materials or intermediates.
One of the most common upstream products of 2,6-dichloro-N-(1-methylethyl)-4-pyrimidinemethanamine is 1,4-dichloro-2-butene, which is used as a building block for the production of a wide range of chemicals, including plastics, solvents, and pharmaceuticals.
Another upstream product is 2,6-dimethyl-4-pyrimidinemethanamine, which is used in the production of dyes, pigments, and other colorants.
Once these upstream products have been synthesized, they can be used to produce a variety of downstream products.
One of the most common downstream products of 2,6-dichloro-N-(1-methylethyl)-4-pyrimidinemethanamine is epinephrine, a hormone and neurotransmitter that is used to treat a range of medical conditions, including asthma, allergic reactions, and heart attack.
Epinephrine is typically synthesized by reacting 2,6-dichloro-N-(1-methylethyl)-4-pyrimidinemethanamine with vanillin, followed by a series of chemical reactions that lead to the formation of the final product.
Another downstream product of 2,6-dichloro-N-(1-methylethyl)-4-pyrimidinemethanamine is norephedrine, a chemical compound that is used as a building block for the production of a variety of pharmaceuticals, including antidepressants and antipsychotics.
Norephedrine is typically synthesized by reacting 2,6-dichloro-N-(1-methylethyl)-4-pyrimidinemethanamine with l-phenylalanine, followed by a series of chemical reactions that lead to the formation of the final product.
Overall, 2,6-dichloro-N-(1-methylethyl)-4-pyrimidinemethanamine is an important intermediate chemical that is used in the production of a wide range of chemicals and pharmaceuticals.
By understanding the upstream and downstream products of this compound, chemists and chemical engineers can better understand the overall process of chemical synthesis and identify opportunities for optimization and improvement.