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    Home > Medical News > Medical World News > The Production Process of 3-Pyridazinecarboxylicacid,1,6-dihydro-1-methyl-6-oxo-(6CI)

    The Production Process of 3-Pyridazinecarboxylicacid,1,6-dihydro-1-methyl-6-oxo-(6CI)

    • Last Update: 2023-04-26
    • Source: Internet
    • Author: User
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    3-Pyridazinecarboxylicacid,1,6-dihydro-1-methyl-6-oxo-(6CI) is an important intermediate in the production of several pharmaceuticals, agrochemicals, and other chemical products.
    The production process of this compound involves several steps, each of which requires careful control and monitoring to ensure the quality of the final product.
    In this article, we will discuss the production process of 3-Pyridazinecarboxylicacid,1,6-dihydro-1-methyl-6-oxo-(6CI) in the chemical industry.


    Step 1: Production of 3-Pyridazinecarboxylic acid
    The first step in the production of 3-Pyridazinecarboxylicacid,1,6-dihydro-1-methyl-6-oxo-(6CI) is the production of 3-Pyridazinecarboxylic acid.
    This is done by reacting pyridine with carbon dioxide in the presence of a strong acid catalyst, such as sulfuric acid.
    The reaction is exothermic and can be dangerous, so it is important to conduct it in a well-ventilated area and with appropriate safety measures.


    Step 2: Hydrolysis of 3-Pyridazinecarboxylic acid
    Once 3-Pyridazinecarboxylic acid is produced, it is subjected to hydrolysis to produce 1,6-dihydro-1-methyl-6-oxo-3-pyridazinecarboxylic acid.
    This is done by treating the acid with water and a strong base, such as sodium hydroxide.
    The reaction is carefully monitored to ensure that it is complete, as incomplete hydrolysis can result in unwanted side products.


    Step 3: Oxidation of 1,6-dihydro-1-methyl-6-oxo-3-pyridazinecarboxylic acid
    The next step is the oxidation of 1,6-dihydro-1-methyl-6-oxo-3-pyridazinecarboxylic acid to produce 1,6-dihydro-1-methyl-6-oxo-(6CI) 3-Pyridazinecarboxylicacid.
    This is done by treating the acid with a strong oxidizing agent, such as potassium permanganate or chromic acid.
    The reaction is carefully monitored to ensure that it is complete and to prevent the formation of unwanted side products.


    Step 4: Purification of the Product
    Once the oxidation reaction is complete, the product is purified to remove any impurities that may have been produced during the reaction.
    This is typically done by crystallization, filtration, or other methods.
    The purified product is then dried and packaged for use in the pharmaceutical or agrochemical industry.


    Overall, the production of 3-Pyridazinecarboxylicacid,1,6-dihydro-1-methyl-6-oxo-(6CI) is a complex process that requires careful control and monitoring at every step.
    The quality of the final product is critical, as any impurities can have a significant impact on the performance of the product in its final application.
    As such, chemical companies must invest in high-quality equipment, trained operators, and rigorous quality control measures to ensure that they produce a safe and effective product that meets the needs of their customers.



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