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Introduction:
The production process of 3-Pyridazinecarboxamide,1,6-dihydro-6-oxo-(6CI,7CI,9CI) is a complex chemical reaction that involves several steps to produce the final product.
In this article, we will discuss the production process in detail, highlighting the various stages involved in the manufacturing of this compound.
I.
Raw Material Preparation:
The production of 3-Pyridazinecarboxamide,1,6-dihydro-6-oxo-(6CI,7CI,9CI) starts with the preparation of raw materials, which include pyridine-2,6-diamine, oxalic acid, and formaldehyde.
These raw materials are obtained from the reaction of ammonia and cyclohexanone and then treated with hydrogen chloride to form the required oxalic acid.
II.
The Reaction Process:
The next step in the production process is the reaction process, which involves the addition of oxalic acid to formaldehyde in the presence of an alkaline catalyst, such as sodium hydroxide.
This reaction results in the formation of 3-Pyridazinecarboxamide,1,6-dihydro-6-oxo-(6CI,7CI,9CI).
The reaction is exothermic and requires careful temperature control to ensure the desired product is obtained.
III.
Recovery and Purification:
After the reaction is complete, the mixture is neutralized using an acid, such as hydrochloric acid, to produce the desired product.
The product is then purified to remove any impurities that may be present using techniques such as filtration, crystallization, and chromatography.
IV.
Formulation and Packaging:
The final product is then formulated into various grades and packaging options to meet the specific requirements of different applications.
This product can be used as an intermediate in the production of pharmaceuticals, agrochemicals, and dyes.
Conclusion:
In summary, the production process of 3-Pyridazinecarboxamide,1,6-dihydro-6-oxo-(6CI,7CI,9CI) is a complex chemical reaction that involves several stages, including raw material preparation, reaction, recovery and purification, and formulation and packaging.
The production process requires precise temperature control, the use of appropriate catalysts and purification techniques to obtain a high-quality final product.
The product has a wide range of applications in various industries, making it an important compound in the chemical industry.