The report provides a detailed analysis essential for establishing an Isorhamnetin production plant. It encompasses all critical aspects necessary for Isorhamnetin production, including the cost of Isorhamnetin production, Isorhamnetin plant cost, Isorhamnetin production costs, and the overall Isorhamnetin production plant cost. Additionally, the study covers specific expenditures associated with setting up and operating an Isorhamnetin production plant. These encompass production processes, raw material requirements, utility requirements, infrastructure needs, machinery and technology requirements, manpower requirements, packaging requirements, transportation requirements, and more.
Isorhamnetin is a naturally occurring flavonol and is widely known for its antioxidant properties. It is widely utilized as a component for protecting the muscles of the heart from oxidative stress due to its potential antioxidant properties. Mover, it also finds its application for the treatment of various neuroinflammatory diseases. It is often used in dietary supplements due to its potential health benefits. Additionally, it is employed as an anti-inflammatory agent in improving heart health, strengthening nerves, and reducing the risk of cancer.
The demand for Isorhamnetin is mainly driven by its application as an antioxidant and anti-inflammatory agent in protecting cardio-cerebral vessels and nerves, which significantly boosts its demand in the medical industry. Moreover, its employment in a variety of nutraceutical products due to its ability to support heart health and reduce inflammation further enhances its demand in the nutrition and health & wellness industries. Additionally, its usage as an anticancer, antiviral, and anti-inflammatory agent effectively promotes its market expansion. Furthermore, several critical factors, including the availability and cost of raw materials like 2-Propen-1-one, etc., adherence to regulatory and quality standards, supplier relationships, efficient distribution and logistics, and the effect of technological advancements, globally influence industrial Isorhamnetin procurement.
Raw Material for Isorhamnetin
According to the Isorhamnetin production plant project report, the major raw materials for Isorhamnetin production include 2-Propen-1-one-3-(4-Hydroxy-3-methoxyphenyl)-1-(2,4,6-trihydroxyphenyl) (2E)-1-(2-Hydroxy-4,6-bis(methoxymethoxy)phenyl)ethenone.
Production Process of Isorhamnetin
The extensive Isorhamnetin production cost report consists of the following industrial production process:
- Production from 2-Propen-1-one: This method of production is initiated by the combined reaction of 2-propen-1-one, 3-(4-hydroxy-3-methoxyphenyl)-1-(2,4,6-trihydroxyphenyl), and (2E)-1-(2-hydroxy-4,6-bis(methoxymethoxy)phenyl)ethanone with potassium hydrogensulfate, sodium hydrogen carbonate, and sodium carbonate in dichloromethane which results in the formation of isorhamnetin as the product. In this method, the reaction occurs in the presence of water and acetone for 42 hours.
Isorhamnetin is a monomethoxyflavone that is functionally related to quercetin. The molecular formula of the compound is C16H12O7, and its molar mass is 316.26 g/mol. Moreover, the IUPAC name of the compound is 3,5,7-trihydroxy-2-(4-hydroxy-3-methoxyphenyl)chromen-4-one. The melting point of the compound is 307°C, and its boiling point is 599.4 °C. The density of the compound is 1.634 g/cm3. Additionally, the compound appears as a light yellow to amber to dark green solid and is hygroscopic. It is generally stored at a temperature range between 2-8°C. The value of its dissociation constant is pka = 6.31, and the value of LogP = 1.760.