Myrcene Powder CAS 123-35-3
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Myrcene Powder CAS 123-35-3

Myrcene Powder CAS 123-35-3

Product Code: BM-2-1-059
English Name: Myrcene
CAS No.: 123-35-3
Molecular formula: C10H16
Molecular weight: 136.23
EINECS No.: 204-622-5
Analysis items: HPLC>99.0%, LC-MS
Main market: USA, Australia, Brazil, Japan, Germany, Indonesia, UK, New Zealand, Canada etc.
Manufacturer: BLOOM TECH Changzhou Factory
Technology service: R&D Dept.-4

Shaanxi BLOOM Tech Co., Ltd. is one of the most experienced manufacturers and suppliers of myrcene powder cas 123-35-3 in China. Welcome to wholesale bulk high quality myrcene powder cas 123-35-3 for sale here from our factory. Good service and reasonable price are available.

 

Myrcene powder, also known as caryophyllene, is a volatile aromatic compound and an organic substance, CAS 123-35-3, with the chemical formula C10H16. It is a colorless or light yellow liquid with a pleasant light fragrant aroma. Insoluble in water, soluble in ethanol, ether, and chloroform. It can be mixed with most other spices. It exists in cinnamon oil, thatch oil, cypress oil, spruce oil, turpentine oil, lemongrass oil, etc. Laurene A is commonly used in industry, while Laurene B is commonly used in nature. Laurene is not a unique ingredient in bay leaf essential oils. Many essential oils, such as juniper berries, cypress, happy sage, chamomile, and frankincense, contain this ingredient. It is widely used in perfume industry, or as a food additive in food and drinks. Laurene is famous for its medicinal properties, such as analgesic, antioxidant, anti-inflammatory, antibacterial, analgesic, etc.

Product Introduction

Chemical Formula

C10H16

Exact Mass

136

Molecular Weight

136

m/z

136 (100.0%), 137 (10.8%)

Elemental Analysis

C, 88.16; H, 11.84

Myrcene powder CAS 123-35-3 | Shaanxi BLOOM Tech Co., Ltd

Myrcene powder CAS 123-35-3 | Shaanxi BLOOM Tech Co., Ltd

Melting point < -10 ° C , Boiling point 167 ° C ( lit. ) , Density : 0.791 g / mL at 25 °C ( lit. ) , Vapor density 4.7 ( vs air ) , Vapor pressure ~ 7 mm Hg ( 20 ° C ) , Refractive index n20 / D 1.469 ( lit. ) , FEMA 2762 | MYRCENE , flash point 103°F , Storage conditions 2-8 ° C , Solubility water : soluble0.00109 g / L at 20 °C , Form Viscous Liquid , Color Clear light yellow , PH value 7 ( H2O, 20 °C ) ( saturated aqueous solution ) , Water solubility practically insoluble , JECFA Number1327.

Usage

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Myrcene powder, a hydrocarbon synthetic perfume with a fresh, natural and slightly herbal aroma, is widely used in the daily chemical and spice industries due to its unique olfactory properties and versatile application potential. It can be used as a key fragrance component in Cologne and deodorant products, where it not only imparts a refreshing and long-lasting scent but also helps to neutralize unpleasant odors, enhancing the overall sensory experience of the products. In addition to its direct application in fragrance formulation, it is also an important raw material for the synthesis of a variety of terpene synthetic spices, such as geraniol, linalool, new lily of the valley aldehyde, and citrus green aldehyde.

These derived spices are extensively used in cosmetics, food flavoring, and daily chemical products, making the product an indispensable intermediate in the terpene spice synthesis industry and laying a foundation for the diversification of spice products.

Laurene, a dimer of isoprene with a stable chemical structure, naturally exists in the volatile oils of various plants, including Umbelliferae plant water celery, cypress plant juniper, and several Rosaceae plants. It has two main isomers, namely α-Laurene and β-Laurene, each with distinct chemical properties and application fields. Among them, β-Laurene is a crucial intermediate in industrial organic synthesis, playing an important role in the production of spices, drugs, and polymer materials. So far, industrially produced β-Laurene is mainly obtained by thermal isomerization of β-Pinene extracted from turpentine, a method that is mature, cost-effective, and widely adopted in the industry.

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Abroad, β-Laurene is usually prepared by thermal isomerization of β-Pinene or α-Pinene using metal catalysts and quartz heat pipes, which can improve the reaction efficiency and product purity, meeting the high-standard requirements of high-end industrial applications.

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Beyond the aforementioned core uses in the spice and organic synthesis industries, β-Laurene also has important extended applications in the field of agricultural pest control, particularly in the environmentally friendly management of Chilo suppressalis. It can be used as a key component of the repellent agent for female Chilo suppressalis, leveraging its specific chemical properties to repel female Chilo suppressalis adults. When applied in rice fields, this repellent effect can effectively deter female Chilo suppressalis from laying eggs on rice plants, thereby reducing the hatching rate of larvae and the subsequent damage to rice crops.

This application provides a new, environmentally friendly, and efficient approach for the control of Chilo suppressalis, which is a major pest endangering rice production. It is of great significance for the prevention and control of Chilo suppressalis in China, as it helps to reduce the reliance on chemical pesticides, minimize environmental pollution, and promote the pollution-free production of rice. The aforementioned uses of β-Laurene and the related repellent products have broad economic, social, and ecological benefits, promising to bring positive impacts to the agricultural industry, ecological environment, and food safety.

Manufacture Information

Myrcene powder is a common organic compound that can be synthesized by β- Pinene is formed by cracking at 160 ℃.

Method 1:

 

Step 1: Preparation β- Pinene

Firstly, it is necessary to prepare a certain amount of β- Pinene. β- Pinene is an organic compound with a special odor, and its molecular formula is C10H16. Can be obtained by purchasing or extracting from certain plants β- Pinene.

 

Step 2: Heat cracking

take β- Pinene is placed in a suitable reaction vessel and then heated to 160 ℃. At this temperature, β- Pinene begins to undergo a cracking reaction. Cracking reaction is a complex chemical process, in which β- Some bonds in the pinene molecule begin to break, forming new chemical bonds.

 

Step 3: Collect Laurene

As the cracking reaction proceeds, laureene begins to form. Laurene can be separated from the reaction mixture through distillation or other separation techniques. Laurene is an organic compound with a special odor, and its molecular formula is C10H18.

 

Step 4: Purify Laurene

The collected laureene may contain other impurities and needs to be purified. Purification can be carried out through various methods, such as crystallization, distillation, or other separation techniques. The purified laureene can be used for various applications, such as synthesizing other organic compounds or as a fragrance.

Chemical equation:

In the above process, β- The chemical equation for the cracking of pinene to laureene at 160 ℃ can be expressed as:

C10H16 → C10H18 +Product (Other)

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Method 2:

The detailed steps for separating laurylene from hop oil with a content of 30% to 35% are as follows:

 

Step 1: Prepare hop oil

Firstly, a certain amount of hops oil needs to be prepared, with a content of 30% to 35%. Hop oil is a natural vegetable oil that contains various organic compounds, including components such as laureene.

 

Step 2: Heating reflux

Place the hops oil in a suitable reaction vessel, then heat it to the appropriate temperature for reflux. This process can help separate the different components in hop oil.

 

Step 3: Fractionation

Through distillation technology, different components in hop oil can be separated. Fractionation is a method of separation that utilizes the difference in boiling points of substances. During this process, laureene will be separated along with other components.

 

Step 4: Collect Laurene

By controlling temperature and pressure, laureene can be collected. Laurene has a narrow boiling range, so it can be separated from other components by controlling temperature and pressure. The collected laureene can be purified through further processing.

 

Step 5: Purify Laurene

The collected laureene may contain other impurities and needs to be purified. Purification can be carried out through various methods, such as crystallization, distillation, or other separation techniques. The purified Myrcene powder can be used for various applications, such as synthesizing other organic compounds or as a fragrance.

Development prospects

Myrcene, also known as caryophyllene, is an organic compound with wide application value. Its unique chemical structure and properties have shown great potential for applications in various fields such as the spice industry, new material preparation, and food additives. With the advancement of technology and people's increasing attention to environmental protection and health products, the development prospects of laurene powder as an efficient and environmentally friendly raw material have attracted much attention. The following is a detailed explanation of its development prospects:

 

With the continuous development of the global economy and people's increasing attention to environmental protection and health products, laurene powder, as an efficient and environmentally friendly raw material, has a very broad market prospect.

Global market demand growth

The demand for high-end spices in the spice industry is constantly increasing with the improvement of people's living standards and changes in aesthetic concepts. As an important raw material in the spice synthesis industry, the market demand for laurene will continue to grow.
New material demand: With the advancement of technology and the rapid development of emerging fields such as new energy and intelligent manufacturing, the demand for high-performance and environmentally friendly new materials is constantly increasing. Laurene powder has broad application prospects in the preparation of new materials due to its unique chemical structure and properties.

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Demand for food additives: With consumers' increasing attention to food safety and health issues, the demand for natural, additive free food additives is constantly increasing. Laurene, as a permissible edible spice, has broad prospects for application in the field of food additives.

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The Chinese market has enormous potential

The Chinese government attaches great importance to the development of environmental protection and new energy industries, and has introduced a series of policy measures to support the development of related industries. This provides strong policy support for the market promotion and application of environmentally friendly raw materials such as laurene powder. China has a well-established chemical industry foundation and abundant natural resources, providing favorable conditions for the production and application of laurene powder.

Meanwhile, China is also one of the world's largest producers of spices and food additives, providing a broad market space for the application of laurene powder in related fields. With the continuous development of the Chinese economy and the improvement of consumer income levels, people's demand for high-quality and environmentally friendly products continues to increase. This provides a huge market opportunity for the promotion and application of high-end raw materials such as laurene powder.

Technological innovation drives industrial development

Production process improvement: With the advancement of technology and continuous improvement of production processes, the production efficiency and product quality of laurene powder will be further improved. This will help reduce production costs, improve market competitiveness, and promote rapid development of the industry.
New product development: By continuously developing new products and application areas, the market space for laurene powder can be further expanded. For example, applying laurene powder to fields such as biodegradable plastics and environmentally friendly coatings can further promote its market development.

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Discovering History

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Myrcene powder, a vital hydrocarbon synthetic perfume, has a discovery and development history closely linked to the advancement of terpene chemistry and industrial fragrance manufacturing. The compound was first isolated and identified in 1897 from the Brazilian shrub Myrcia sphaerocarpa, from which it derived its name "myrcene". Early botanists and chemists detected its presence in the volatile oils of bay leaves, verbena, hops, and lemongrass, but only recognized it as a minor aromatic component without clarifying its structural and application value.

Systematic research on myrcene began in the early 20th century, as European chemists categorized it as an acyclic monoterpene during broad investigations of terpene compounds. At that time, extraction from natural plants was inefficient and costly, limiting large-scale use. The turning point came in the mid-20th century, with the invention of the thermal isomerization method using β-pinene from turpentine as raw material, enabling stable industrial production of high-purity myrcene.

Myrcene Systematic research | Shaanxi BLOOM Tech Co., Ltd

Myrcene key intermediate | Shaanxi BLOOM Tech Co., Ltd

Subsequently, myrcene's role as a key intermediate for synthetic spices was gradually uncovered. Chemists found it could be converted into geraniol, linalool, and other high-value fragrances, driving its rapid popularization in cologne, deodorants, and daily chemicals. From a naturally isolated trace component to a core raw material of the global fragrance industry, it's century-long development reflects the continuous progress of natural product chemistry and modern fine chemical manufacturing.

FAQ
 
 

What is myrcene used for?

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Myrcene (β-myrcene) is an abundant monoterpene which occurs as a major constituent in many plant species, including hops and cannabis. It is a popular flavouring and aroma agent (food additive) used in the manufacture of food and beverages.

What does myrcene make you feel like?

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Myrcene is known for its relaxing, sedating effects. Therefore, a cannabis strain containing high levels of Myrcene has the potential to support a patient with falling asleep. Alongside the reduction of pain, stress and anxiety.

Does myrcene boost your high?

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Terpenes like myrcene don't make you high on their own. However, myrcene can influence the effects of THC, the psychoactive component of cannabis, by increasing its absorption through the blood-brain barrier. This can result in a more intense and quicker onset of effects when consuming THC-rich cannabis strains.

Why does myrcene make you sleepy?

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Effects on Sleep: Myrcene promotes muscle relaxation and a sense of calm by interacting with the body's endocannabinoid system to enhance the sedative properties of THC, leading to a more pronounced feeling of relaxation.

 

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