Afnan
Zimaya Fatima Velvet Love Extrait De Parfum 100ml
Zimaya Fatima Velvet Love Extrait De Parfum 100ml
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Zimaya Fatima Velvet Love by Afnan is formulated as an Extrait de Parfum, meaning its liquid contains a higher percentage of fragrance oils than traditional eau de parfum or eau de toilette concentrations. The 100ml capacity provides substantial volume for daily application while maintaining a profile suitable for travel and standard vanity storage.
Concentration and Wear Profile
An extrait de Parfum utilizes a denser oil-to-alcohol blend, which naturally slows the evaporation rate upon contact with the skin. This formulation prioritizes intimate sillage and steady retention over aggressive initial projection. Due to the elevated oil-to-volume ratio, one to two targeted sprays are typically sufficient to sustain fragrance presence throughout a full workday or evening event. Applying the liquid directly to pulse pointsโsuch as the inner wrists, base of the throat, and behind the earsโleverages consistent body heat to regulate diffusion evenly.
Packaging and Preservation
The 100ml vessel is constructed from thick glass and fitted with a mechanical atomizer that delivers controlled mist distribution. To maintain the structural integrity of the oils, position the bottle upright in a climate-stable area away from direct sunlight, heating vents, or bathroom humidity. Sealing the spray mechanism tightly after each use prevents volatile alcohol components from evaporating prematurely, ensuring the formula retains its original composition over time.
Usage Economics and Fit
Selecting an extrait de Parfum adjusts your consumption curve toward extended longevity and cost efficiency. Reduced spray requirements per application stretch the full 100ml supply across a longer usage cycle compared to lighter concentrations. This format functions best for professionals seeking subtle office-appropriate presence, travelers managing cabin air pressure changes, or seasoners targeting fall and winter routines where heavy vaporization causes faster depletion.Share
