Butyl Acetate Applications Properties Production
Butyl Acetate Applications Properties Production
Description of butyl acetate
Butyl acetate is also a chemical substance. Its use is very diverse, and its properties are special, and there are also ways to produce it.

Use
In the field of work, it is an important solution. The ability of paints and raw materials to dissolve can make the raw materials disperse evenly, which is convenient for application and forms a film. The strength of inks is also used to dissolve pigments and help them print, so that the printing is clear. In addition, the manufacture of artificial leather and fragrances has its own uses, which can increase the fragrance and disperse in fragrances, and give a special taste.

The physical properties of
are often used, and the transparent liquid of the color is often used, and the taste is fragrant. In the boiling process, it has good properties, and can be used for a certain period of time. The phase density is less than that of water, and it can be more soluble and miscible, such as ethanol, ether, etc. On the chemical properties, it has the common properties of esters, and can be hydrolyzed. In the case of acid or in the environment, the reaction rate is different. In acidic parts, hydrolysis is slow; in the environment, hydrolysis is accelerated to generate butyl acetate.

The method of generating production is mostly made of butyl alcohol acetate and raw materials, which is esterified under the action of catalysis. Commonly used catalysts include sulfuric acid, etc., which can be reversed, and the increase rate is often reduced to one amount of raw materials, or the generated water can be removed. After the reaction is completed, the method of refining and other methods can be used to extract butyl acetate with high degree. The process of refining, according to the boiling difference of the mixture, is divided into batches one by one, so that the product can be used effectively.


Of course, butyl acetate plays an important role in the work and life. Its use, performance and production are researched, and the next step is to promote the development of the phase.