Tengfei Creation Center,55 Jiangjun Avenue, Jiangning District,Nanjing admin@sinochem-nanjing.com 3389378665@qq.com
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Dihydromyrcene

    • Product Name Dihydromyrcene
    • Alias diomene
    • Einecs 246-401-9
    • 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

    828347

    Cas Number 18479-58-8
    Molecular Formula C10H20
    Molecular Weight 140.27 g/mol
    Appearance Colorless liquid
    Odor Fresh, citrus-like
    Boiling Point 193-195°C
    Density 0.782 g/cm³
    Refractive Index 1.442 - 1.445
    Solubility In Water Insoluble
    Flash Point 66°C
    Purity Typically ≥95%
    Synonyms 2,6-dimethyloct-7-ene-2-ol, Dihydromyrcenol
    Stability Stable under normal conditions
    Applications Used in fragrances and flavors

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

    Packing & Storage
    Packing Dihydromyrcene is packaged in a 500 mL amber glass bottle with a secure cap and clear hazard labeling for safe handling.
    Shipping Dihydromyrcene should be shipped in tightly sealed containers, kept in a cool, dry, and well-ventilated area away from ignition sources. It is typically packed in steel or HDPE drums. Ensure clear chemical labeling and adhere to all appropriate transport regulations for flammable liquids. Handle with suitable protective equipment.
    Storage Dihydromyrcene should be stored in a cool, dry, and well-ventilated area, away from sources of ignition, heat, or direct sunlight. It must be kept in tightly sealed, chemical-resistant containers to prevent contamination and evaporation. Store separately from oxidizing agents, acids, or strong bases. Proper labeling and adherence to safety regulations and local guidelines are essential for safe storage.
    Application of Dihydromyrcene

    Applications of Dihydromyrcene in Industrial Manufacturing

    As a manufacturer of stable, high-purity dihydromyrcene, we supply this specialty aliphatic monoterpene to industrial partners who rely on stringent performance, regulatory, and batch consistency criteria for advanced chemical synthesis and formulation tasks. The following application segments represent established large-scale pathways where dihydromyrcene brings distinctive physicochemical contributions to real-world downstream productions.

    1. Fine Fragrance and Air Care Formulation

    Dihydromyrcene’s distinctive fresh, citrus-green note underpins top and middle accords in fine perfumery bases, supporting nuanced scent structures while enhancing stability in finished fragrance blends. Our industrial clients use this raw material for both high-value designer fragrances and mass-market air care compositions, where tight control of allergen listings and IFRA guidance shapes every batch recipe.

    Industry compliance standards

    • IFRA Standards & Amendments (latest version, all exposure categories)
    • EU Cosmetics Regulation (EC) No 1223/2009 Annex II & III
    • California Air Resources Board (CARB) VOC Regulations for Consumer Products
    • Allergen declaration as per EU 2003/15/EC and related GHS/CLP directives

    Typical usage ratio

    • 0.5–4.0% in fine fragrance concentrate (precise dosage set during olfactory profiling and IFRA risk assessment)
    • 0.1–2.0% in air freshener and home care bases, dependent on product delivery format

    Downstream process integration

    • Added to perfume oil compounding during the first mixing phase, before ethanol or fixative introduction
    • Direct incorporation into emulsified or micro-encapsulated air care matrix, followed by aging and QC allergen screening

    Final product types

    • Prestige eau de toilette, eau de parfum, and aftershave splash
    • Automatic air freshener refills and scented gels
    • Fine fabric and linen sprays
    • Home fragrance diffusers

    2. Industrial-Scale Flavour Ingredient Synthesis

    This raw material is favored by aroma chemical manufacturers as a precursor for synthesizing complex flavoring agents such as myrcenal and linalool derivatives, crucial in food and beverage flavor creation. Stringent traceability and food safety oversight guide its acceptance in such processing, making attention to purity and compliance a top priority for downstream partners operating under FSSC and FDA mandates.

    Industry compliance standards

    • FCC (Food Chemicals Codex) monographs for aroma chemicals
    • US FDA 21 CFR 172.515 (Synthetic flavoring substances and adjuvants)
    • EU Regulation (EC) No 1334/2008 on flavorings and certain food ingredients with flavoring properties
    • FSSC 22000 or ISO 22000 Food Safety Management Systems

    Typical usage ratio

    • 1.5–9.0% as a precursor in aroma intermediate synthesis (final dosage is governed by reaction yield and product conversion efficiency)

    Downstream process integration

    • Charged into continuous or batch reactors during condensation, oxidation, or isomerization steps under controlled temperature and solvent regimes
    • Followed by distillation, fractional collection, organoleptic QC, and residual solvent analysis

    Final product types

    • Myrcenal and myrcenol for further esterification
    • Nature-identical orange or grape flavoring bases
    • Beverage and confectionery compounding premixes

    3. Household Detergent and Cleaning Agent Fragrancing

    Large-scale detergent formulators utilize dihydromyrcene for its capability to impart fresh top notes and mask undesirable process odors in surfactant-based cleaning solutions. Its stability across anionic, nonionic, and amphoteric blends enables reliable sensory quality in high-throughput manufacturing, provided suppliers meet REACH and environmental regulatory requirements specific to home care.

    Industry compliance standards

    • REACH (EC) No 1907/2006 Registration, Evaluation, Authorisation and Restriction of Chemicals
    • EU Detergent Regulation (EC) No 648/2004 Ingredients Labelling
    • AISE Charter for Sustainable Cleaning
    • EPA Safer Choice Standard (for US-market cleaning products)

    Typical usage ratio

    • 0.05–0.4% in liquid laundry or dishwashing base, with adjustment based on fragrance strength and final pH

    Downstream process integration

    • Metered into the main fragrance oil blending tank in the last stage before detergent base mixing
    • Quality verified by headspace GC and micro-contaminant spiking tests after blending

    Final product types

    • Liquid laundry detergents and capsules
    • Hand and machine dishwashing agents
    • Multipurpose cleaning sprays
    • Floor and surface cleaners

    4. Solvent-Free Polymeric Scented Material Production

    In polymer processing, especially for scented soft plastics (e.g. EVA-based air freshener blocks or car fragrance tags), dihydromyrcene performs reliably under elevated extrusion temperatures. This use depends on careful raw material handling, given the need to minimize emissions and maintain migration limits within consumer product safety benchmarks for direct and indirect exposure.

    Industry compliance standards

    • EN 71-3:2019 (Migration of certain elements in toys and scented plastics)
    • US CPSIA (Consumer Product Safety Improvement Act) for phthalate and VOC content
    • ISO 4796 for plastic materials in direct-contact articles
    • German BfR Recommendations for Materials in Commodity Goods

    Typical usage ratio

    • 0.2–1.2% in polymer mass, tailored to end-use retention tests and total volatile release requirements

    Downstream process integration

    • Pre-blending with polymer masterbatch prior to extrusion under vacuum or inert atmosphere
    • Functionality preserved by cooling profile selection and migration testing post-extrusion

    Final product types

    • Scented polymer air freshener cards
    • Plasticized ambient deodorizer chips
    • Decorative EVA-based fragrance blocks

    5. Agricultural Insect Attractant Intermediate Synthesis

    Producers of pheromone and insect attractant formulations exploit dihydromyrcene as a reactive intermediate for the synthesis of specific semiochemical lures. Batch and process compliance, especially for environmental and agricultural safety controls, underpin acceptance within the agrochemical value chain aiming for low-residue, species-selective products.

    Industry compliance standards

    • FAO/WHO Joint Meeting on Pesticide Specifications (JMPS) for Technical Materials
    • EU Regulation (EC) No 1107/2009 (Plant Protection Product Authorization)
    • US EPA FIFRA (Federal Insecticide, Fungicide, and Rodenticide Act)
    • OECD Good Laboratory Practice (GLP) for chemical synthesis

    Typical usage ratio

    • 2.0–6.5% as a feedstock in pheromone or attractant intermediate synthesis; scale determined by target yield and route

    Downstream process integration

    • Incorporated into semiochemical synthetic feeds, typically by catalytic cyclization or tailored oxidation, before purification by GC or LC
    • Residue-trace profiled and documented for regulatory registration

    Final product types

    • Lepidopteran-specific pheromone lures
    • Monitoring and mass-trapping dispenser systems
    • Controlled-release field attractant mats
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    Competitive Dihydromyrcene prices that fit your budget—flexible terms and customized quotes for every order.

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    Certification & Compliance
    More Introduction

    Dihydromyrcene: Backed by Real Manufacturing Experience

    Understanding Dihydromyrcene – Direct From the Source

    Dihydromyrcene has earned a steady place in the fragrance and flavor world for its crisp, citrusy note with hints of sweet freshness. Coming from the terpene family, this clear liquid offers both consistency and flexibility when blending fresh, light accords. Anyone who has visited a production floor where dihydromyrcene takes shape witnesses its delicate balance: keeping the citrus top note robust while letting it fade cleanly as the scent settles. This characteristic makes it a favorite among perfumers looking for a sparkling first impression that doesn’t overwhelm the entire composition.

    Our process relies on controlled hydrogenation of the parent myrcene compound. We do not cut corners because stability and purity depend on a careful chain of reactions. With decades of manufacturing behind us, the experience gained from monitoring reaction temperatures, pressures, and feedstock quality every day is built into each batch. The result brings high-grade dihydromyrcene with minimized byproducts, keeping the material clear, low in color, and free from off-flavors.

    Practical Usage: What Really Happens in Application

    Formulators don’t often talk about a single raw material the way they talk about dihydromyrcene. In perfume trials, its ability to extend citrusy and green notes without turning sharp gives it a place from laundry care to fine fragrance. Those working with cleaning products have seen how it imparts a natural, fresh luster to household and personal care items, simply by blending in at low dosage. In flavors, manufacturers turn to its refreshing, volatile top note as a counterpoint in beverages and confectionery, though always keeping careful control on volume to avoid overpowering the finished product.

    In the lab, dihydromyrcene pours as a colorless liquid, almost water-clear if proper hydrogenation and distillation have been applied. Olfactory panels in our facility describe its profile as a vibrant, soft citrus with hints of floral-lavender undercurrents. These subtle facets build complexity in the hands of a skilled perfumer. It can open up and freshen heavy floral or woody formulations, making blends less cloying. Our colleagues in product development often use it to give a “lifting” effect in pine-based and fruity profiles. It can carry a formulation through stability trials without loss of freshness, an attribute we have documented through routine shelf-life testing.

    Specifications That Make a Real Difference

    Practicality drives every aspect of our process. We keep water and residual solvent levels low, targeting specification limits well below industry maximums. Every outgoing lot is tested for odor purity, color, and main component content, confirming that dihydromyrcene levels—usually above 95%—meet our standards. This isn’t just a number; these benchmarks affect every stage in the customer’s application, from dispensing on an automated line to blending by hand in a development lab.

    Perfumers and flavorists can rely on the predictable behavior of our material because routine gas chromatography analysis, even outside official QA protocols, is a daily practice on our line. Routine isn’t an afterthought; it’s a necessity when you know that each drum represents a real end product being enjoyed by a consumer. In long-running formulations, especially where dihydromyrcene functions as a top note, batch-to-batch fidelity prevents reformulation headaches down the road.

    Why Dihydromyrcene Stands Out Among Siblings

    Our teams routinely compare dihydromyrcene to other common terpenes, especially myrcene and synthetic linalool, in both technical and market-driven settings. Myrcene itself offers a raw, green aroma with a spicy kick—useful in some settings, yet prone to oxidation and color instability. Dihydromyrcene sidesteps these issues, thanks to its saturated backbone, which resists yellowing and fragrance breakdown. Compared to d-limonene, which delivers a punchier, more aggressive citrus profile, dihydromyrcene presents a softer, more extended freshness—a difference noticeable in side-by-side fragrance strip trials. Perfumers and household product developers have told us that switching to dihydromyrcene reduced intensity “burn-through” and off-note formation, leading to more approachable, longer-lasting scents.

    Synthetic linalool, another close alternative, takes a floral path with lavender-like freshness, appealing in cosmetic uses. Dihydromyrcene’s citrus character, by contrast, lifts green, piney, and fruity blends rather than crowding them with floral sweetness. Based on feedback from our clients and our own formulation teams, dihydromyrcene often proves more versatile across household, automotive, and industrial settings, especially where a clean, freshly washed impression is required.

    Manufacturing Nuances: Lessons Learned on the Factory Floor

    Scaling dihydromyrcene isn’t just a matter of scaling volumes. During the hydrogenation stage, monitoring catalyst fouling, water levels in feedstock, and fine-tuning distillation cuts prevents unwanted heavies and color bodies from creeping in. Colleagues working late into night shifts have trouble-shot feed variability caused by changes in botanical sources. Drawing from years of hands-on experience, we’ve installed multiple filtration and analytical checkpoints along production to guarantee a uniform output. Our production leads have shut down batches that moved outside spec, knowing full well the cost of rework comes nowhere near the cost of a customer receiving product unfit for their application.

    We see routine, transparent specification reporting as non-negotiable. Our tech teams share batch samples with customers upon request. Open-door reviews, both digitally and on-site, build trust. When a fragrance house needs to confirm stability during microencapsulation or a detergent formulator pushes for ultra-low odor thresholds, we work side by side, drawing from both analytics and the “nose” of decades-long employees who can pick up on change before a chromatograph does.

    End Markets and How Dihydromyrcene Impacts Everyday Life

    Continuous demand from laundry and cleaning brands has sharpened our focus on freshness retention and color performance. High-alkaline or oxidizing systems often degrade natural citrus terpenes. Dihydromyrcene remains resilient against fading and darkening, allowing manufacturers to deliver the same olfactory performance from the first wash to the last. Personal care and cosmetics developers value its profile for crafting uplifting, gentle top notes in shampoos and shower gels—products that consumers rely on to start or finish their day with a positive sensory spark.

    Flavor houses turning to dihydromyrcene find that its volatility and flavor threshold require tight metering, especially in syrup and beverage bases. One sugar confectionery brand shared how they increased repeat purchase rates after fine-tuning the dihydromyrcene dose to brighten a lemon-lime theme without sharp, lingering aftertaste. Our work with these brands reveals time and again that small changes in terpene quality ripple through the entire product line, impacting not only sensory quality but also consumer habit.

    Sustainability and Traceability – Grounded In Our Day-To-Day Practices

    Operating at scale means every input counts. Sourcing terpenes feeds into our responsibility to verify botanical origins. We operate traceability programs reaching back through supply contracts, collaborating with upstream partners to ensure that raw myrcene originates from sustainable pine or citrus forestry. Waste minimization is built into our production planning, using fractional distillation and energy optimization to recover usable compounds and lower emissions.

    Plant managers have led energy audits and introduced solvent-recovery projects after pinpointing process steps that allowed losses. In working with regulatory teams, we align internal quality benchmarks with external requirements, reducing rework, minimizing paperwork burdens, and simplifying compliance for customers in regulated sectors. These aren’t just marketing slogans; anyone who spends time on our production line knows decisions today echo into the next campaign, the next audit, and the next customer experience.

    Technical Support Rooted In Real-World Problem Solving

    No material leaves our facility without the option for technical support attached. We see inquiries ranging from viscosity at specific temperatures, solubility in complex systems, interactions with new encapsulation polymers, down to minute behavioral shifts caused by alternative packaging options. Often, the answers grow out of front-line discoveries by operators and lab analysts who spot patterns across changing seasons or incoming crop variations.

    Those who formulate for major detergent or flavor brands know it isn’t only about meeting a specification sheet. Testing a new dihydromyrcene lot against hold standards means organizing panel sessions, tracking glassware carryover, and logging results against stability projections. Customers who have called in seeking help with stubborn haze formation or unexpected shelf loss know our support arrives as direct, experienced problem solving, not canned responses. Reliability doesn’t end at the loading dock.

    Research, Innovation, and the Everyday Search for Improvement

    We invest heavily in both incremental upgrades and longer-term innovations. Collaborators in R&D track new catalyst formulations and emerging purification methods, aiming for both quality gains and cost reduction that translate into affordability for end users. Over the years, our teams have tested dozens of feedstream pre-treatments, seeking the combinations that best protect downstream steps. Employee-led teams contribute ideas during monthly cross-functional meetings, often bringing practical fixes—like heat transfer enhancements or packing upgrades—that make a more significant impact in practice than academic optimization alone.

    We work closely with universities and industry consortia, sharing data from pilot runs that test alternative botanical sources or biologically derived feedstocks. Our experience shows that small modifications—letting a distillation run slightly longer, or changing column packaging after supplier switch—can yield fresher, more consistent dihydromyrcene without altering the underlying aroma profile. In-house sensory teams verify gains in stability or aroma character, tying lab advances directly to what the end user actually smells.

    Understanding Market Trends by Feeling Demand on the Plant Floor

    Years spent watching orders rise and fall reveal real-world shifts in consumer taste and product innovation cycles. Lemon-fresh and pine-green themes persist, but there’s increased pressure for clean label and naturally sourced aroma chemicals. Customers ask detailed questions about allergen content, biobased certifications, and processing residues. Shifting toward more transparent downstream communication, we make sure specification sheets, allergen declarations, and batch quality data are up-to-date and easy to interpret, reducing the need for repeated clarifications.

    We see steady movement toward lower dosings and higher purity. Product development teams at our customers’ facilities share that new cleaning and fragrance trends rarely tolerate “noise” or muddiness caused by trace byproducts—a challenge that has led us to boost our quality control investments and tweak infrastructure for higher selectivity during hydrogenation and distillation. The result shows in greater customer satisfaction and fewer rework requests.

    Challenges in Meeting High Standards with Terpene Ingredients

    No batch process is without obstacles. Feedstock variability, seasonal shifts in pine and citrus resin yields, and supply disruptions force near-daily adjustments. Plant managers running production shifts in these circumstances must draw on deep reserves of patience and technical know-how to blend new and holdover stocks, preserving aroma intensity and physical quality. We lean heavily on data, but we don’t ignore operator expertise; those who sense subtle viscosity or aroma changes before an instrument does save batches from going rogue.

    Every quality dip or unexpected customer claim triggers a root cause review. Our lab teams run full-spectrum analyses—odor panels, GC-MS, physical purity checks—then collaborate with upstream and logistics partners to tackle the root. Often, securing a premium lot means negotiating fast boundary solutions rather than accepting uneven batches. In one incident, a change in raw myrcene supplier led to color drift and off-notes; rapid sample analysis, joint troubleshooting, and switching to a backup supplier prevented greater fallout.

    Regulatory Realities—Keeping Customers Running Smoothly

    As regulators update classifications for fragrance and flavor materials, we keep closely engaged in the process. Our compliance team tracks regulatory updates, evaluates new hazard labels, and works with customers to ensure all paperwork, including SDS and IFRA declarations, stays valid for every shipment. It means reviewing upstream changes, verifying new input sources, and sometimes even defending the safety and purity of dihydromyrcene in technical hearings. These aren’t glamorous tasks, but they keep our material seamlessly integrated in fast-moving consumer product cycles.

    Facing ever-tightening purity and residue limits, we adapted both testing capacity and stock segregation. This head-to-head work with brand safety teams and regulatory agencies builds long-term reliability, sparing formulators from last-minute scramble when regulations or label claims change. We regularly support customers by providing rapid certificate updates and sharing outcome data upon request.

    Dihydromyrcene’s Role in Shaping Future Sensory Experiences

    Our own experience shows that people respond instinctively to freshness. The popularity of “renewed” scents in laundry, air care, and even car products signals a deeper connection between chemistry and how people feel about their surroundings. Dihydromyrcene’s subtle, crisp, green-laced citrus touch remains a reliable route to sensory appeal in a crowded product landscape. As production operations, we operate at the intersection of expectation and possibility, taking the commitment to high standards seriously—batch by batch, shipment by shipment.

    Dihydromyrcene continues to fuel innovation, both in the hands of fragrance and flavor houses and through ongoing advances in manufacturing. Investments in traceability, sustainability, and purity will keep it at the forefront of olfactory design for years to come. Speaking as a manufacturer, the lessons learned through making, testing, and delivering dihydromyrcene shape not just our own processes, but the products and experiences enjoyed by millions around the world.