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    Home > Medical News > Medical World News > The Instruction of Butanamide, N-(6-chloro-3-pyridazinyl)-

    The Instruction of Butanamide, N-(6-chloro-3-pyridazinyl)-

    • Last Update: 2023-05-08
    • Source: Internet
    • Author: User
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    Butanamide, also known as N-(6-chloro-3-pyridazinyl)-butanamide, is a compound commonly used in the chemical industry for a variety of applications.
    It is an organic compound that is synthesized by reacting butanamide with 6-chloro-3-pyridazinyl chloride.
    This reaction results in the formation of a new compound that has unique properties and can be used in a variety of industrial processes.


    One of the primary applications of butanamide is in the production of herbicides and pesticides.
    The compound is used as an intermediate in the synthesis of various active ingredients that are used to control weeds and pests in agricultural settings.
    Butanamide is also used in the production of dyes, adhesives, and other industrial chemicals.


    In the chemical industry, the production of butanamide typically involves a multi-step process that involves several intermediate compounds.
    The first step in the production process is the synthesis of butanamide, which is typically done by reacting butanol with ammonia in the presence of a catalyst.
    This reaction results in the formation of butanamide, which is then purified and used as the starting material for the next step in the production process.


    The next step in the production of butanamide involves the reaction of butanamide with 6-chloro-3-pyridazinyl chloride.
    This reaction is typically carried out in the presence of a solvent, such as dichloromethane or chloroform, and a catalyst, such as hydrochloric acid.
    The reaction results in the formation of N-(6-chloro-3-pyridazinyl)-butanamide, which is then purified and used as the starting material for the next step in the production process.


    Once the N-(6-chloro-3-pyridazinyl)-butanamide has been synthesized, it can be further processed to produce the desired final product.
    This may involve the addition of other chemicals, such as other acid chlorides or amines, to produce the desired intermediate compound.
    The final product may then be purified and packaged for use in various industrial applications.


    In terms of its chemical properties, butanamide is a white or off-white solid that is soluble in water and many organic solvents.
    The compound has a mild, sweet odor and is typically used in the form of an aqueous solution.
    Butanamide is a weak acid and has a pKa value of around 10.
    5.
    The compound is also slightly hygroscopic, meaning that it can absorb moisture from the air, and should be stored in an airtight container to prevent degradation.


    Overall, butanamide is a versatile compound that is used in a variety of industrial applications.
    Its unique properties make it an ideal intermediate compound for the production of various chemicals, including herbicides and pesticides, dyes, and adhesives.
    The production process for butanamide typically involves several steps, including the synthesis of butanamide and the reaction of butanamide with 6-chloro-3-pyridazinyl chloride.
    The purified final product is then used in various industrial applications, making it an important compound in the chemical industry.


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