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Biocyclamol (Sustainable Floral-Green Ingredient for Fragrances)

  • Writer: Galbora
    Galbora
  • Oct 15
  • 2 min read
Biocyclamol (Sustainable Floral-Green Ingredient for Fragrances)

Biocyclamol (Sustainable Floral-Green Ingredient for Fragrances)

Overview

Biocyclamol is a biobased fragrance ingredient developed by Takasago as part of its Sustainable Scent™ collection.It delivers a soft floral-green odor profile, balancing natural freshness with modern diffusion.Produced entirely from renewable resources and fully biodegradable, Biocyclamol embodies the new generation of environmentally responsible aroma molecules designed for fine fragrance, personal care, and home care applications.


Physical and Chemical Properties

Parameter

Value / Description

Chemical Name

(S,E)-3,7,11-Trimethyldodeca-6,10-dien-1-ol (L-dihydro farnesol)

Molecular Formula

C₁₅H₂₈O

Molecular Weight

224.39 g/mol

Appearance

Clear to pale yellow liquid

Flash Point

Approx. 148 °C

Vapor Pressure (25 °C)

~0.01 Pa

log P (CLogP)

5.85

Purity (GC)

≥ 90 %

pH Stability

Stable in most fragrance and detergent systems; less stable in strongly alkaline or bleaching environments


Olfactive Profile and Sensory Characteristics

Biocyclamol presents a delicate floral-green character, reminiscent of magnolia, lily of the valley, and soft white blossoms.It offers moderate diffusion, creating a natural, clean impression without overpowering other accords.One of its key benefits is excellent dry fabric substantivity, leaving a pleasant floral trace long after application.

Its odor behavior is characterized by:

  • Top note: clean, green, transparent freshness

  • Heart note: soft floral nuance with subtle muguet tonality

  • Dry down: smooth, slightly musky-green, long-lasting

The molecule is also fully biodegradable and derived from renewable feedstocks, making it ideal for sustainable product lines.


Biocyclamol (Sustainable Floral-Green Ingredient for Fragrances)

Applications and Recommended Usage

Biocyclamol is suitable for a wide range of fragrance applications, including:

  • Fine fragrances – for subtle floral-green transparency

  • Fabric softeners and detergents – for lasting clean impressions

  • Personal care products – providing mild, fresh diffusion

  • Air and home care – delivering a green, uplifting brightness

Typical dosage:

Use from trace levels up to a few percent in the fragrance concentrate, depending on the desired strength and effect.

Formulation tips:

  1. Begin with low concentrations to evaluate impact; Biocyclamol performs best in balanced compositions.

  2. Combine with muguet, magnolia, green, citrus, or musky materials for a refined natural tone.

  3. Store in sealed containers away from heat and light to prevent oxidation.

  4. In detergent bases, test for pH and bleaching compatibility.


Performance Advantages

  • Soft floral-green freshness that smooths sharp or synthetic edges.

  • Long-lasting and stable dry-down, particularly on fabrics.

  • Excellent blending versatility with both natural and synthetic ingredients.

  • Renewable and biodegradable, supporting eco-friendly and “clean fragrance” positioning.

  • Enhances perception of purity and transparency in modern compositions.


Limitations and Handling Considerations

  • Stability may decrease under highly alkaline or oxidative conditions.

  • Moderate odor intensity — requires skillful balancing with stronger base notes.

  • Regulatory acceptance should be verified for specific local markets.

  • Avoid prolonged exposure to air or light during storage to maintain quality.


Conclusion

Biocyclamol is a next-generation floral-green molecule that combines olfactive sophistication with sustainability.Its subtle freshness, clean floral character, and excellent performance on dry fabric make it an outstanding choice for modern fine fragrances, fabric care, and eco-conscious product formulations.

It stands as a versatile and responsible ingredient for brands seeking to align sensory beauty with environmental integrity.


This article was researched and written by Galbora.

Use of this content is permitted when citing the source.


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