High Quality 3-Methyl-1-butanol, with the CAS number 123 - 51 - 3, is a well - recognized chemical compound in the market. It is also known as isoamyl alcohol. This compound is a colorless liquid with a characteristic odor. Its molecular formula is C₅H₁₂O, and it has a molar mass of approximately 88.15 g/mol. The density of 3 - Methyl - 1 - butanol is about 0.81 g/cm³ at 25 °C, and its boiling point ranges from 130 - 132 °C. It is slightly soluble in water but highly soluble in common organic solvents such as ethanol, ether, and chloroform.
The high - quality version of this product offered here comes with a low price, making it an economical choice for various industrial and laboratory applications. The product is carefully produced and purified to meet strict quality standards, ensuring its reliability and consistency in different uses.
1. **Flavor and Fragrance Industry**: 3 - Methyl - 1 - butanol is widely used in the flavor and fragrance industry. It has a pleasant, fruity odor similar to bananas, which makes it a popular ingredient in creating artificial fruit flavors. It can be used in the production of confectioneries, beverages, and perfumes to enhance their aroma and taste.
2. **Chemical Synthesis**: This compound serves as an important intermediate in chemical synthesis. It can be used to synthesize esters, which are widely used in various industries. For example, isoamyl acetate, synthesized from 3 - Methyl - 1 - butanol and acetic acid, is used as a solvent and a flavoring agent.
3. **Laboratory Reagent**: In laboratories, 3 - Methyl - 1 - butanol is used as a reagent in various chemical reactions. It can participate in oxidation, esterification, and other reactions, helping chemists to synthesize new compounds and conduct research.
1. **Handling and Storage**: When handling 3 - Methyl - 1 - butanol, proper personal protective equipment (PPE) should be worn, including safety goggles, gloves, and a lab coat. It should be stored in a cool, well - ventilated place away from sources of ignition and incompatible substances. The container should be tightly sealed to prevent evaporation and contamination.
2. **Dilution and Mixing**: If dilution is required, it should be done slowly and carefully, usually by adding the 3 - Methyl - 1 - butanol to the diluent while stirring. When mixing with other chemicals, ensure that the reaction conditions are appropriate, and follow the standard operating procedures to avoid potential hazards.
3. **Measurement and Dispensing**: Use accurate measuring equipment such as pipettes or burettes to measure the required amount of 3 - Methyl - 1 - butanol. Dispense it into the reaction vessel or other containers precisely to ensure the accuracy of the experiment or production process.
**Case 1: Flavor Production in a Confectionery Factory**
A confectionery factory wanted to create a new line of banana - flavored candies. They used High Quality 3 - Methyl - 1 - butanol as the key flavoring ingredient. The factory first conducted small - scale tests to determine the optimal concentration of 3 - Methyl - 1 - butanol in the candy formula. They found that a concentration of 0.1% (w/w) gave the best flavor profile.
The production process involved dissolving the 3 - Methyl - 1 - butanol in a small amount of ethanol first to ensure uniform distribution in the candy mixture. The new banana - flavored candies were well - received by consumers, and the use of this high - quality and low - cost 3 - Methyl - 1 - butanol significantly reduced the production cost while maintaining a high - quality flavor.
**Case 2: Chemical Synthesis in a Research Laboratory**
A research laboratory was working on synthesizing a new type of ester for a potential pharmaceutical application. They used 3 - Methyl - 1 - butanol as one of the starting materials. The reaction was carried out under reflux conditions in the presence of a catalyst. By carefully controlling the reaction temperature and time, they were able to obtain a high yield of the desired ester. The high quality of the 3 - Methyl - 1 - butanol ensured the reproducibility of the reaction and the purity of the final product.
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