vitamins Thiamine chloride powder vitamin b1
vitamins Thiamine chloride powder vitamin b1
vitamins Thiamine chloride powder vitamin b1
vitamins Thiamine chloride powder vitamin b1
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vitamins Thiamine chloride powder vitamin b1

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Uses and synthesis of Thiamine chloride powder

Thiamine chloride powder, also known as "thiamine" and "thiamine", is one of the B vitamins. Thiamine chloride is white fine crystal or crystal powder, melting point 248℃(decomposition), easily soluble in water, slightly soluble in ethanol, insoluble in ether, phenylhexane, chloroform, soluble in propylene glycol. It promotes normal glucose metabolism and is essential for maintaining normal nerve conduction, heart and gastrointestinal function. Thiamine chloride plays an important role in metabolism in the human body. Thiamine chloride also helps maintain the normal function of the nervous system and promotes the normal functioning of the heart and muscles. It also plays a role in cell growth and metabolism

Thiamine chloride

Applications/Functions of Thiamine chloride powder

  1. Thiamine chloride powder is suitable for vitamin B1 deficiency and can maintain normal glucose metabolism and nerve conduction. It is also used in the adjuvant treatment of dyspepsia and neuritis.
  2. Thiamine chloride is used as a feed additive. Vitamin B1 plays an important role in maintaining normal nerve conduction and the normal activity of the digestive system. When livestock and poultry lack, it is easy to produce carbohydrate metabolism disorders and appetite loss.

Thiamine chloride

Physicochemical Property of Thiamine chloride powder

White needle-like crystalline powder, with faint rice chaff odor and bitter taste. Melting point 248 ~ 250℃ (decomposition). Highly soluble in water (lg soluble in ImL 20℃ water), slightly soluble in ethanol, insoluble in ether, benzene, chloroform and acetone.

Thiamine chloride powder

Production methodprocess of Thiamine chloride powder

Thiamine chloride powder is usually obtained by condensation, hydrolysis, neutralization, oxidation and acidification of excess acetamidine hydrochloride and α-dimethoxy-β-methoxy-propionitrile.


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