Chemicals A-Z
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Turpentine Derived Scheme
Gum turpentine, wood turpentine, and sulphate turpentine are the three categories of turpentine, distinguished by their respective sources of raw materials. Sulphate turpentine is a byproduct of the pulp manufacturing process. This substance has a low level of alpha-pinene and a high concentration of 3-Carene. Gum turpentine is derived from pine resin through distillation. The isomers alpha-Pinene and beta-Pinene make up a large proportion of this substance, while Camphene, Dipentene, and Terpinolene are found in smaller quantities.
Extracted from pine trees, gum turpentine is an oil that ranges in color from colorless to pale yellow and contains a mixture of terpenes. Due to the existence of double bonds and rings, terpenes have the ability to undergo various reactions. The pinene structure in turpentine provides it with properties resembling those of other natural flavor and fragrance compounds. In contrast to petroleum-based compounds, this has a unique advantage.
The isomerization of turpentine results in intermediates like Camphene, an essential material in the synthetic scheme for a variety of fragrances. The substances known as Ocimene, Myrcene, and Geraniol, which are derived from the process of pyrolysis or hydrogenation, serve as the fundamental building blocks for a diverse range of flavor and fragrance formulations.
Pinonic acid and Pinic acid, both oxidation products of turpentine, possess versatile properties that make them suitable for a range of fine chemical uses, such as plasticizers, lubricants, and chemical additives. The execution of hydration reactions can be applied to formulate cough medicine and other related products.
To summarize, it can be concluded that turpentine, being an innate and renewable element, is exceedingly congruous with the contemporary inclination towards green, low-carbon, and sustainable advancement.
#Click here to learn the technology roadmap of turpentine-based polyterpene resins (2024v1).
## Click here to learn the Methodology for Carbon Reserves Calculation and Guidelines for Carbon Footprint Assessment (Not yet public)
1,4-Cineole
CAS: 470-67-7
SPECS: 95%
1,4-Cineole, also known as eucalyptol, is a monoterpene with a camphor-like odor. It naturally occurs in various plants, including cubeb, chamomile, Boldea fragrans, and Ormenis multicaulis.FOREVEREST…
3-Carene
CAS: 13466-78-9
SPECS: 95%
Delta 3-Carene is a bicyclic monoterpene naturally found in Gum turpentine. It is a colorless liquid with a strong woody odor. Extracted from pine tree oil, Delta 3-Carene is primarily used as a raw m…
alpha Longipinene
CAS: 5989-08-2
SPECS: 95%
alpha-Longipinene is derived from Gum turpentine oil and is a valuable compound in various industrial applications. This monoterpene is primarily used as a solvent, facilitating the dissolution and pr…
Alpha Pinene Oxide
CAS: 74525-43-2
SPECS: 95%
alpha-Pinene Oxide is a monoterpene and an epoxide derivative of alpha-Pinene. This compound is a colorless liquid with a fresh, clean odor. alpha-Pinene Oxide is widely utilized in fragrance formulat…
alpha-Pinene
CAS: 80-56-8
SPECS: 95%
alpha-Pinene has a distinctive pine scent and is a primary component of Gum turpentine. It occurs naturally in over 400 types of essential oils and is extracted through fractional distillation from gu…
alpha-Terpinene
CAS: 99-86-5
SPECS: 95%
alpha-Terpinene is an isomeric hydrocarbon isolated from cardamom and marjoram oils. It is a versatile flavoring and fragrance chemical used across the personal care, cosmetics, and food industries. A…
alpha-Terpineol
CAS: 98-55-5
SPECS: 95%
alpha-Terpineol can be sourced in two ways: naturally, through distillation from tree extracts, or synthetically, by isolating it from essential oils. It is widely used as a key component in fragrance…
beta Caryophyllenol
CAS: 472-97-7
SPECS: 92%
β-Caryophyllene is a significant tricyclic sesquiterpenoid alcohol with broad applications in the fragrance and pharmaceutical industries. It is currently prepared through the hydration of β-Caryophyl…