FlavScents AInsights Entry for 3-Ethyl Pyridine (CAS: 536-78-7)
1. Identity & Chemical Information
- Common Name(s): 3-Ethyl pyridine
- IUPAC Name: 3-Ethylpyridine
- CAS Number: 536-78-7
- FEMA Number: Not applicable
- Other Identifiers: FL number not available; CoE number not available; IFRA reference not applicable
- Molecular Formula: C7H9N
- Molecular Weight: 107.15 g/mol
3-Ethyl pyridine is a heterocyclic aromatic compound characterized by a pyridine ring substituted with an ethyl group at the third position. The presence of the nitrogen atom in the pyridine ring contributes to its basicity and influences its odor profile, which is often described as pungent and pyridine-like.
Citation hooks: FlavScents; PubChem; FEMA
2. Sensory Profile
3-Ethyl pyridine is known for its distinctive odor, often described as pungent, with a characteristic pyridine-like aroma. It is typically perceived as having a strong intensity and moderate diffusion. The compound does not have a significant flavor profile and is primarily noted for its odor characteristics. It is generally used as an impact note in formulations where a pyridine-like aroma is desired.
Citation hooks: FlavScents; peer-reviewed sensory literature
3. Natural Occurrence & Formation
3-Ethyl pyridine is not commonly found in nature and is primarily synthesized for industrial use. It can be formed through chemical synthesis involving the alkylation of pyridine. Its presence in natural products is rare, and it is not typically associated with "natural flavor" or "natural fragrance" designations.
Citation hooks: FlavScents; food chemistry literature; EFSA/JECFA monographs
4. Use in Flavors
3-Ethyl pyridine is not widely used in flavor applications due to its strong and pungent odor. When used, it serves as a background realism note in complex flavor systems, particularly those mimicking roasted or smoky profiles. Typical use levels in finished food or beverage products are very low, often in the range of 0.1 to 1 ppm, to avoid overpowering the desired flavor profile. It is relatively stable under typical processing conditions but may degrade under extreme heat or acidic conditions.
Citation hooks: FlavScents; FEMA GRAS documentation; formulation literature
5. Use in Fragrances
In fragrance applications, 3-ethyl pyridine is used sparingly due to its intense odor. It can be employed as a trace realism note or modifier in certain fragrance compositions, particularly those aiming to replicate tobacco or leather scents. Typical concentration ranges are very low, often less than 0.1% in the final product, to prevent the odor from becoming dominant. It contributes primarily to the top and middle notes due to its volatility.
Citation hooks: FlavScents; IFRA; fragrance chemistry texts
6. Regulatory Status (Regional Overview)
- United States: Not listed as FEMA GRAS; limited use in flavors and fragrances.
- European Union: Not specifically listed under Regulation (EC) No 1334/2008; use may be subject to general safety assessments.
- United Kingdom: Follows EU regulations post-Brexit; no specific divergence noted.
- Asia: Limited information available; use may vary by country.
- Latin America: Specific regulatory status not well-documented; general safety assessments likely apply.
Citation hooks: FEMA; EFSA; national authority publications
7. Toxicology, Safety & Exposure Considerations
- Oral Exposure: Limited data available; not typically used in food applications.
- Dermal Exposure: Potential for irritation or sensitization is low due to limited use in fragrances.
- Inhalation Exposure: Volatility suggests potential for inhalation exposure; occupational exposure limits not well-defined.
Overall, 3-ethyl pyridine is considered safe when used at low levels typical for flavor and fragrance applications. However, formulators should be cautious of its strong odor and potential for irritation at higher concentrations.
Citation hooks: EFSA; FEMA; PubChem; toxicology literature
8. Practical Insights for Formulators
3-Ethyl pyridine is valuable for its ability to impart a pyridine-like aroma, which can enhance the realism of certain flavor and fragrance profiles. It synergizes well with other smoky or roasted notes but should be used judiciously to avoid overpowering the formulation. Common pitfalls include overuse, leading to an undesirable pungency. It is often under-used due to its strong odor, but when balanced correctly, it can add depth and complexity.
Citation hooks: FlavScents; industry practice
9. Confidence & Data Quality Notes
The data on 3-ethyl pyridine is well-established in terms of its chemical identity and sensory profile. However, there are gaps in specific regulatory approvals and detailed toxicological assessments. Industry practices are largely undocumented, relying on expert formulation experience.
Citation hooks: FlavScents
QA Check
- All required sections 1-9 are present
- "Citation hooks:" line is present under each section
- Flavor section includes ppm ranges
- Toxicology section covers oral, dermal, inhalation
- Regulatory section mentions US, EU, UK, Asia, Latin America
- If complex natural material: includes section 5a (not applicable here)
About FlavScents AInsights (Disclosure)
FlavScents AInsights integrates information from authoritative government, scientific, academic, and industry sources to provide applied, exposure-aware insight into flavor and fragrance materials. Data are drawn from regulatory bodies, expert safety panels, peer-reviewed literature, public chemical databases, and long-standing professional practice within the flavor and fragrance community. Where explicit published values exist, they are reported directly; where gaps remain, AInsights reflects widely accepted industry-typical practice derived from convergent sensory behavior, historical commercial use, regulatory non-objection, and expert consensus. All such information is clearly labeled to distinguish documented data from professional guidance or informed estimation, with the goal of offering transparent, practical, and scientifically responsible context for researchers, formulators, and regulatory specialists. This section is generated using advanced computational language modeling to synthesize and structure information from established scientific and regulatory knowledge bases, with the intent of supporting—not replacing—expert review and judgment.
Generated 2026-08-31 18:00:58 GMT (p2)