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Citronellyl Propionate

    • Product Name Citronellyl Propionate
    • Alias Propionic acid citronellyl ester
    • Einecs 246-911-8
    • Mininmum Order 1 g
    • Factory Site Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing
    • Price Inquiry admin@sinochem-nanjing.com
    • Manufacturer Sinochem Nanjing Corporation
    • CONTACT NOW
    VTB
    Specifications

    HS Code

    504786

    Cas Number 141-16-2
    Molecular Formula C13H24O2
    Molar Mass 212.33 g/mol
    Appearance Colorless to pale yellow liquid
    Odor Fruity, citrus, sweet
    Boiling Point 260-262°C
    Density 0.877 - 0.883 g/cm3 at 20°C
    Flash Point 107°C (225°F)
    Solubility In Water Insoluble
    Refractive Index 1.445 - 1.455 at 20°C

    As an accredited Citronellyl Propionate factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.

    Packing & Storage
    Packing Citronellyl Propionate is packaged in a 500 mL amber glass bottle, with tamper-evident cap and clear hazard labeling.
    Shipping Citronellyl Propionate should be shipped in tightly sealed containers, protected from light, heat, and moisture. It should be kept away from strong oxidizers and stored in a cool, well-ventilated area. Ensure proper labeling and documentation. Transportation must comply with local regulations for shipping chemicals to ensure safety and prevent leaks or spills.
    Storage Citronellyl Propionate should be stored in a cool, dry, and well-ventilated area, away from direct sunlight and sources of ignition. Keep the container tightly closed when not in use and store separately from strong oxidizing agents and acids. Use only containers made of compatible materials, and avoid excessive heat to ensure product stability and prevent possible decomposition.
    Application of Citronellyl Propionate

    Applications of Citronellyl Propionate in Industrial Manufacturing

    Citronellyl Propionate is widely selected in industrial manufacturing for its effective olfactory profile and chemical stability, serving as a functional raw material in specialized formulations across fragrance, personal care, and household product sectors. As a direct manufacturer, we deliver this ingredient to qualified producers seeking performance consistency and regulatory compliance in demanding applications.

    1. Fine Fragrance Compound Manufacturing

    Citronellyl Propionate is a core component in the creation of high-value fine fragrance concentrates, used primarily for its fresh, floral-citrus character and lasting volatility profile in perfumery bases. Integrators utilize this ester to build modern accord structures in both alcoholic and non-alcoholic perfume compounding. It undergoes precise proportioning during the blending phase of concentrate production, specifically to enhance the top and middle notes of eau de toilette and parfum matrices subject to regulatory scrutiny on allergen disclosure and purity.

    Industry compliance standards

    • IFRA Standards (current Amends, e.g., 51st and subsequent)
    • EU Cosmetic Regulation (EC) No 1223/2009 on fragrance allergens
    • ISO 9235:2013 for natural aromatic raw materials (as relevant to declaration)
    • Good Manufacturing Practice (GMP) ISO 22716 for fragrance compounding

    Typical usage ratio

    • 0.1% – 2% in fragrance oil concentrate; varies by target intensity, formulation class, and IFRA category restrictions

    Downstream process integration

    • Blending with other aroma chemicals and essential oils during the batching of master fragrance oils prior to dilution, filtration, and aging steps

    Final product types

    • Eau de Parfum, Eau de Toilette, Fine Mists, Roll-on Fragrances

    2. Industrial Air Care Formulations

    Major air care compounders value the use of this ester for balancing floral and fruity tonalities in commercial room fresheners, deodorizing sprays, and HVAC-diffused scents. Citronellyl Propionate allows regulatory-compliant design of base formulations that meet sustained diffusion and broad area coverage requirements in institutional and office environments, without exceeding controlled VOC thresholds. This component is added during the concentrate phase and stabilized with suitable solvents before packaging.

    Industry compliance standards

    • California Air Resources Board (CARB) Consumer Product Regulations for Air Fresheners
    • US EPA Safer Choice Program for fragrance ingredients
    • EU Regulation (EC) No 1907/2006 (REACH)—Annex XVII restricted uses
    • IFRA Guidelines for Air Fresheners (current Edition)

    Typical usage ratio

    • 0.05% – 0.8% of total air care concentrate; determine exact level based on intended volatility rate and room size coverage

    Downstream process integration

    • Incorporation into fragrance concentrates at the solvent blending stage, followed by homogenization, quality screening, and filling into retail or industrial dispense systems

    Final product types

    • Room Sprays, HVAC Scents, Aerosol Air Fresheners, Electric Diffuser Refills

    3. Personal Wash and Bath Product Manufacturing

    Citronellyl Propionate’s chemical stability under mild acidic and neutral pH conditions enables its reliable use in the scenting of solid and liquid cleansing bases, such as bar soaps, syndet bars, and shower gels. Producers utilize it to confer a clean and refreshing character in branded personal care lines. Controlled addition occurs during the fragrance compounding phase, prior to the mixing with surfactant-rich bases, ensuring preservation of the intended olfactory impact even after saponification or surfactant blending.

    Industry compliance standards

    • EU Cosmetic Regulation (EC) No 1223/2009
    • United States FDA CFR Title 21 for personal care
    • IFRA Standard for leave-on and rinse-off personal care
    • ISO 29621:2017 for cosmetic microbiological quality

    Typical usage ratio

    • 0.03% – 0.5% in total formulation weight; actual dosage based on soap transparency, surfactant compatibility, and wash-off intensity requirements

    Downstream process integration

    • Addition to fragrance blend before final mixing with soap base or surfactant systems; integration performed after saponification in bar soap, or post-formulation for liquid products

    Final product types

    • Bath Soaps, Shower Gels, Syndet Bars, Liquid Body Wash

    4. Fabric and Textile Care Product Manufacturing

    Significant producers in the textile and fabric care sector formulate with this material when engineering fine scent profiles in concentrated liquid fabric softeners, dryer sheets, and washing additives. The ester’s lasting floral character supports persistent fragrance release even after multiple mechanical wash and dry cycles. Manufacturers dose Citronellyl Propionate into the fragrance premix, usually at the emulsification step, to allow consistent distribution through the fabric matrix in both aqueous and dry-contact processes.

    Industry compliance standards

    • EU Detergents Regulation (EC) No 648/2004
    • IFRA Guidance for household care and fabric care applications
    • US EPA Safer Choice Fragrance Ingredient Criteria
    • A.I.S.E. Charter for Sustainable Cleaning (for eco-labeled products)

    Typical usage ratio

    • 0.02% – 0.3% in the total product mass; fine-tune loading based on release preference, deposition, and textile fiber type

    Downstream process integration

    • Incorporation into fragrance-stabilizer blends added to concentrated softeners or dry sheet coatings prior to final bulk packaging

    Final product types

    • Liquid Fabric Softeners, Scented Dryer Sheets, Laundry Additives, Textile Fragrance Boosters

    5. Household Surface Cleaner Fragrance Additive

    Contract manufacturers supplying branded and private-label household cleaning products utilize this compound to impart a clean, non-lingering fragrance in both water-based and solvent-based all-purpose cleaners. It offers an effective way to mask harsh base odors and elevate user perception without contributing undesirable residue, and is stable throughout standard liquid blending and bottling operations.

    Industry compliance standards

    • US EPA Safer Choice Fragrance Ingredient Standards
    • EU Biocidal Products Regulation (BPR) No 528/2012 (where relevant for disinfectants)
    • IFRA Standards for household and hard surface care
    • A.I.S.E. Guidance for household cleaning products

    Typical usage ratio

    • 0.01% – 0.2% depending on cleaning base composition, odor masking requirement, and surface application method

    Downstream process integration

    • Addition at the fragrance compounding stage before final product blending and filtration; product undergoes QC scent panel evaluation

    Final product types

    • Multi-Surface Cleaners, Floor Wash Liquids, Glass Cleaners, Disinfectant Sprays

    6. Industrial Insect Repellent Product Fragrancing

    Some insect repellent product manufacturers incorporate this material as a fragrance modifier to reduce the sharpness of primary actives, such as DEET or Icaridin, in personal and ambient repellent formulations. The ester provides a mild, masking top note that enhances user acceptance for topical and environmental repellents while adhering to safety and disclosure requirements.

    Industry compliance standards

    • EU Biocidal Products Regulation (BPR) No 528/2012
    • US EPA FIFRA Compliance for repellent formulations
    • IFRA Rules for intentional aerosol exposure
    • ISO 9001:2015 Quality Management for industrial product manufacturing

    Typical usage ratio

    • 0.02% – 0.18% relative to batch size, formulated based on masking effect, volatility of actives, and product format

    Downstream process integration

    • Integrated during the fragrance creation phase in conjunction with insect repellent actives; combined concentrate blended into final product matrices pre-packaging

    Final product types

    • Personal Insect Repellent Lotions, Ambient Repellent Sprays, Mosquito Coil Scents, Outdoor Air Dispersal Formulas
    Free Quote

    Competitive Citronellyl Propionate prices that fit your budget—flexible terms and customized quotes for every order.

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    Certification & Compliance
    More Introduction

    Citronellyl Propionate: Reliable Sourcing from an Actual Manufacturer

    Direct from the Workshop—Not a Middleman in Sight

    Everyday, our facilities run non-stop to meet the broad and changing needs across the fragrance, personal care, and flavor industries. Citronellyl Propionate comes from years refining both capability and expertise within our own site, never through resellers or brokers. We control everything from raw ingredient screening to the final drum leaving the warehouse. This lets us guarantee a level of purity and reliability that too often slips away with indirect sourcing.

    What Makes Citronellyl Propionate Stand Out

    Citronellyl Propionate sits within the ester family, created by condensing citronellol with propionic acid. We have watched the market for nearly two decades and noticed many newcomers treat this molecule as just another number in a catalog. For end users, especially those manufacturing fragrances or personal care goods, the ability to trace a sample’s production and understand its composition makes a world of difference. We don’t just blend two chemicals together and ship a drum. Only by granularly controlling the reaction parameters and maintaining strict process verification do we produce material that avoids trace impurities—especially aldehydes and unwanted by-products. Our on-site GC-MS confirms every batch remains consistent with our internal reference standards.

    Our current model comes as a clear, colorless liquid, carrying a mild, sweet, and slightly rosy odor typical of citronella derivatives. Distillation follows a tailored curve to keep boiling point narrow and meet requested levels for acidity and color. Common specification asks include color (APHA ≤30), acid value (typically below 1.0 mg KOH/g), and a minimum purity of 98% by GC. Years of refinement brought process loss wastage down phenomenally, keeping batch-to-batch variations under very tight statistical control.

    Applications—From Fragrance Bases to Functional Care Products

    Anyone who’s spent time at a blending table knows Citronellyl Propionate adds crisp, long-lasting freshness in perfumes, soaps, lotions, and home care formulas. We have heard perfumers remark on its staying power when used to fix volatile citrus notes or mellow woody accords. The sweet, mild top note bridges green and floral elements without taking over a blend. In household cleaning and air freshener systems, the mildness makes it function as both a carrier and a cooperative odor ingredient, resisting the tendency to go sharp or synthetic under high concentrations.

    Taste applications take a gentler touch. Here, where food regulations keep material options narrow, we’ve worked with flavorists to provide samples matching food-grade standards. Users in beverage or candy find this ester especially useful for citrus and tropical profiles, since it leans fresh rather than candy-sweet or honeyed. Very low dosages (usually well below 10 ppm in finished goods) impart a subtle, persistent citrus character. Flavor houses that once bought generic material from trading companies now turn to us because the consistency from direct production means fewer unexpected off-notes and rejected blends.

    Our experience with large-scale surfactant users taught some lessons, too. Many big brands chase cost-reduction and drop-in reformulation. Changing the makeup of even one raw material can force many months of revalidation. Our partners value long relationships with a direct manufacturer since it gives them leverage—they can access analytical history, identify sources for each drum, and clarify queries in real time. If a user needs specific adjustments to acid/base ratio or more rigorous peroxide limits for oxidative-sensitive products, we have custom run capacity ready.

    Product Differences—Benchmarking Citronellyl Propionate by True Attributes

    One thing that repeatedly comes up when visitors tour our shop is the challenge of keeping commercial volumes consistent year round. Traders like to talk about theoretical purity and spec sheets, but don’t mention how much technical knowledge is lost when chemicals pass through several hands. The difference between our Citronellyl Propionate and generic imports starts before the first raw material is loaded. By keeping everything under one roof, every adjustment to temperature, pH, and catalyst ratios shows up as direct quality outcomes.

    Freight and repacking damage play a real-world role too. We ship directly from our site in UV-protected steel drums or fluorinated HDPE, minimizing possibility of polymerization or off-flavor formation. Customers wanting higher oxidation stability can order batches filled under nitrogen. Quality and safety both improve, since nothing sits unlabeled in an unknown warehouse before arriving at a customer’s process line.

    Our Experience as a Basis for Trust

    It’s tough to convey what direct manufacturing does for product confidence until you have handled enough off-spec drums from a patchy supply chain. Several customers approached us after experiencing recurring yellowing or batch-to-batch odor shifts with repacked esters. In our experience, these usually trace to exposure to heat, air, or cross-contamination in distribution warehouses—not something solved by re-testing at the last minute. Rather than leaving quality up to chance, our in-house quality team inspects, tests, and archives reference samples from each lot. Real control only happens by owning the tools and the protocols from end to end.

    Manufacturing Citronellyl Propionate in-house gives control over impurity profiles. For us, it means regularly running quality checks at multiple stages—not just a final-out the door test. We routinely screen for aldehyde levels since even minor traces give rise to off-flavors and odors in sensitive formulations. Anyone blending delicate perfume bases knows a sharp or resinous impurity can spoil a batch worth thousands of units.

    The physical flow in our plant begins with detailed raw material vetting. Only citronellol and propionic acid that pass our analytical checks enter the reactor. Plant workers regularly contribute suggestions that reduce downtime and minimize process variability. For instance, we identified a filtration step—skipped by some suppliers—removes color bodies that otherwise increase the chance of haze in end formulations. In our view, these details add up. Mistakes with esters at the final dilution or fragrance maceration step can become expensive or even result in product recalls. Our batch records give traceability, making regulatory and quality audits much smoother for our customers.

    Why Material Origin Matters—Practical Stories from the Plant

    Quality doesn’t happen on autopilot. We’ve dealt with urgent calls from fragrance customers after bad experiences with unknown supply chains. For example, one personal care brand found their soap batches beginning to yellow and fade in scent intensity mid-year, despite specification-compliance paperwork. They traced the problem to an imported batch of Citronellyl Propionate that had oxidized in transit. We stepped in to provide domestically shipped, production-fresh drums, and the issue vanished. Saving the next batch meant not just swapping drums, but giving access to storage and analytical history confirming the ester’s freshness and storage conditions. The lesson for us—direct oversight consistently beats buying unknown, time-lagged product.

    Another real case: one flavor client kept running into flavor drift issues—week to week, the same recipe produced slightly different results. Investigating together, we discovered their previous provider combined lots from multiple overseas sources. The subtle changes in isomer ratios and trace impurities made flavor matching nearly impossible. By moving their orders to our consistent, single-source batches, their quality complaints dropped off within the month. With full control over each process parameter, we’re able to tailor outcomes for specific needs, reducing hassle and analytical retesting on the user end.

    Brands serious about regulatory compliance and labeling accuracy don’t have room for unknown contaminants or process mistakes several steps upstream. With end-to-end manufacturing and archiving of every lot, we’ve responded faster to technical requests—from custom analytical certificates to micro-adjustments of color and acidity to fit a brand’s existing formula.

    Thinking about Sustainability—the Manufacturer’s Perspective

    Manufacturing Citronellyl Propionate responsibly means narrowing waste streams at every phase. Over time, our production team reduced solvent use by nearly 30% by modifying purification columns and investing in solvent recovery gear. We upgraded to continuous-flow distillation to save energy, cutting per-batch emissions by a substantial margin. Even shipping practices changed—moving from single-use to returnable containers for major clients, reducing plastic and lowering residual risks for refill operations. Many competitors still repack from bulk totes that linger in uncertain storage conditions; our returnable drum program slashes container turnover time and supports cleaner, more traceable supply.

    Sustainability isn’t just a PR concept or checklist. Direct control lets us respond quickly to regulatory and industry trends. When the IFRA issued new guidelines on certain trace impurities, our on-staff chemists quickly adjusted monitoring. Being tied into both production and compliance arms of the business, we don’t wait for a distant supplier to issue an update. If a client needs supporting data, we provide original chromatograms and trend reports, not just forward a generic certificate.

    Focusing resources on analytics and rapid adjustment makes it possible to meet not only today’s standards, but also tomorrow’s. We connect regularly with fragrance houses, brand managers, and flavor technologists to anticipate what future needs will look like. If a regulation around propionate derivatives tightens, our own lab staff have the tools ready.

    Supporting Claims with Facts—What We’ve Learned in Production

    Facts and care anchor our daily work. Esters like Citronellyl Propionate serve as backbones for more than just creative fragrance work. Their chemical properties—stability, moderate volatility, agreeable odor, and gentle taste—make them useful customers return to, year after year. The real value sits in what you do not see or smell—namely, the absence of off-odors, unwanted color, and overage residues. Analytical reports and repeat quality tests support these claims, not just marketing pitches. Plant logs show that, in the last three years, more than 96% of shipments scored above 99.5% purity by GC, and all lots hit our custom internal impurity profile panel.

    Direct batch control also means shorter lead times and better transparency. We don’t rely on vague supply forecasts. Every order works from actual on-hand production rather than speculative allocations or warehouse guesses. Many end users notice the difference as reduced hold time in their own receiving departments and paperwork trail that stands up to demanding audits.

    For customers scaling up, samples match full-size orders—not just “laboratory grade” prepared on a different line, but true-to-scale product. This matters: more than one perfumer has flagged issues with outsourcing when larger lots shift color or scent away from the original sample. Our system closes that loop. This approach matches the requirements of serious buyers who place value on traceable, analytically supported material.

    Citronellyl Propionate in Context—How It Compares to Similar Materials

    Citronellyl Propionate doesn’t work in isolation. It often finds itself on ingredient shortlists with related esters like citronellyl acetate or geranyl propionate. Over years of feedback and application support, we’ve noticed some key differences that go beyond the basic chemical formula.

    Citronellyl acetate, for instance, tends toward sharper, more citrus-like notes. Its volatility makes it great for fleeting top notes in perfumery but less dependable where longer-lasting freshness matters. Geranyl propionate, by contrast, brings a green, almost leafy character but lacks some of the subtle sweetness that defines Citronellyl Propionate’s appeal in both fragrance and flavor. In our experience working with developers, the propionate ester’s mildness keeps it present even in background notes, while never overwhelming or turning harsh under pH swings or mild oxidizing conditions.

    Synthetic quality matters immensely. In low-cost material from untracked sources, the risk of aldehyde buildup, color shift, or rapid degradation grows. Unlike some propionates tailing off into heavier, less agreeable base notes, with controlled synthesis Citronellyl Propionate stays bright and fresh longer—critical for both fragrance shelf stability and flavor freshness in food.

    One other difference comes in customer interaction: because Citronellyl Propionate’s raw materials derive from citronellol (often produced by fractional distillation of natural oils), variation in starting quality hugely affects outcome. Our integrated approach starts by screening every tank load for specific trace isomers—steps omitted by intermediaries looking to cut time or costs.

    Providing Solutions—From the Floor Up

    Problems in the supply chain or production process always surface, often at the moment a batch rolls off the line or a finished perfume arrives off-spec. Our plant teams hold cross-checks after every campaign, not just to tick regulatory boxes but to break down where real-world issues happen. Whether it’s learning from a blocked filter section or a reactor temperature swing, solutions rarely climb down from corporate—improvements usually start with the operators and QC chemists who see the material at every step.

    Clients facing regulatory audits or needing label support benefit from direct analytical access. We provide these with full documentation, not just pre-filled certificates. If a customer reports an issue or requests a custom fix, they talk directly to lab staff or production leads who worked on their batch. Direct communication beats delayed troubleshooting and replicated mishaps common with remote production sites.

    Batch nonconformity rarely happens. But if it does, customers get support from personnel actually responsible for making and testing their Citronellyl Propionate, rather than a generic help desk. That hands-on accountability is why many long-term users switch sourcing to a direct manufacturing partner.

    Building for the Future—Why Experience and Track Record Count

    Producing Citronellyl Propionate exposes every kink and challenge in ester chemistry. Equipment must match not only output targets, but also the subtleties of handling sensitive starting materials. Training matters—plant staff who have run hundreds of batches understand the tiny clues signaling an unexpected reaction or a trace impurity spike long before any spec sheet flags it. We emphasize retaining that hard-won knowledge, and routinely invest in cross-training and inter-departmental reviews, not just for compliance, but for product reliability and customer security.

    We’ve learned from decades in the business that end-users depend on a strong, transparent chain of custody. Whether it’s a perfume house matching a flagship scent or a multinational updating records for a plant audit, only direct manufacturing offers full documentation, traceability, and tailored service. Experience on the floor translates into predictability and lower risk for every downstream partner.

    No story or technical breakthrough replaces the impact of reliable, controlled production guided by a knowledgeable team. This is the central difference end users encounter after dealing with intermediaries: access to accountability, detailed process sheets, and a willingness to adapt when technical requirements change.

    Conclusion: The Manufacturer’s Edge in Citronellyl Propionate Supply

    From sourcing to customer support, experience-driven manufacture of Citronellyl Propionate consistently provides real-world benefits for users who care about product quality, regulatory assurance, and batch-to-batch reliability. This depth comes only from direct engagement with every step of the process, not from trading hands along the way. Our team stands ready to share not only material, but also knowledge, documentation, and responsive service based on the realities of production rather than marketing. This keeps customer’s processes stable, audits smooth, and finished goods always up to standard.