Ethylpyrazine, with the CAS number 13925 - 00 - 3, is a high - quality chemical compound. It has a unique chemical structure that imparts specific physical and chemical properties. The molecular formula of ethylpyrazine is (C_6H_8N_2). It is a colorless to light - yellow liquid at room temperature with a characteristic odor. The boiling point of ethylpyrazine is typically around 155 - 157°C, and its density is approximately 1.03 g/cm³. It is soluble in common organic solvents such as ethanol, ether, and chloroform, but has limited solubility in water.
Ethylpyrazine has a wide range of applications in various industries. In the food industry, it is used as a flavoring agent. Its nutty, roasted, and chocolate - like aroma can enhance the flavor of many food products, such as baked goods, beverages, and dairy products. It can create a rich and complex flavor profile, making the food more appealing to consumers.
In the fragrance industry, ethylpyrazine is used as a raw material for perfume formulations. Its unique odor can add depth and character to perfumes, especially in oriental and woody fragrance families. It can also be used in the creation of synthetic essential oils.
Additionally, in the pharmaceutical industry, ethylpyrazine serves as an important intermediate for the synthesis of various drugs. Its chemical reactivity allows it to participate in a series of chemical reactions to form more complex drug molecules.
When using ethylpyrazine as a flavoring agent in the food industry, it should be added in accordance with the recommended dosage. Generally, the dosage ranges from a few parts per million to several hundred parts per million, depending on the type of food product and the desired flavor intensity. Before adding it to the food, it is advisable to dissolve it in a suitable solvent, such as ethanol, to ensure uniform distribution.
In the fragrance industry, ethylpyrazine can be directly added to the perfume base during the formulation process. However, it is necessary to conduct a small - scale test first to evaluate its compatibility with other fragrance ingredients and to adjust the dosage according to the desired fragrance effect.
For pharmaceutical synthesis, strict laboratory procedures should be followed. Appropriate reaction conditions, such as temperature, pressure, and reaction time, need to be carefully controlled. Protective equipment, such as gloves and goggles, should be worn to ensure safety.
Case 1: A well - known bakery used ethylpyrazine in their chocolate - flavored cakes. By adding a small amount of ethylpyrazine (around 50 ppm) to the cake batter, the cakes developed a more intense, roasted chocolate flavor. Customers responded positively to the new flavor, and the sales of these cakes increased by 20% compared to the previous version.
Case 2: A perfume company incorporated ethylpyrazine into a new oriental - style perfume. After careful adjustment of the dosage, the perfume had a warm, sweet, and slightly nutty undertone. The new perfume received high praise from perfume reviewers and quickly became a best - seller in the market.
Case 3: A pharmaceutical research team used ethylpyrazine as an intermediate in the synthesis of a new anti - inflammatory drug. Through a series of precisely controlled chemical reactions, they successfully synthesized the target drug molecule. The new drug showed excellent anti - inflammatory effects in pre - clinical trials.
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