|
HS Code |
525405 |
| Name | Beta-Caryophyllene |
| Cas Number | 87-44-5 |
| Molecular Formula | C15H24 |
| Molar Mass | 204.35 g/mol |
| Appearance | colorless to pale yellow oily liquid |
| Boiling Point | 265°C (509°F) |
| Density | 0.902 g/cm³ at 20°C |
| Odor | woody, spicy, and peppery |
| Solubility In Water | insoluble |
| Refractive Index | 1.502–1.510 at 20°C |
| Chemical Class | sesquiterpene |
| Main Sources | cloves, black pepper, cannabis, hops |
| Flash Point | 123°C (253°F) |
| Purity | typically ≥98% |
| Stability | stable under normal conditions |
As an accredited Beta-Caryophyllene factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | The packaging for Beta-Caryophyllene contains 100 mL in an amber glass bottle with a secure screw cap and detailed chemical labeling. |
| Shipping | Beta-Caryophyllene is generally shipped in tightly sealed, chemical-resistant containers to prevent leakage and degradation. It should be protected from light, heat, and moisture during transit. The shipment must comply with local and international regulations, including appropriate labeling and documentation, to ensure safe and secure delivery of this fragrance and flavor compound. |
| Storage | Beta-Caryophyllene should be stored in a tightly sealed container, protected from light and moisture, in a cool, dry, and well-ventilated area. It should be kept away from sources of ignition, strong oxidizing agents, and incompatible substances. Proper labeling and adherence to chemical storage guidelines help ensure stability and safety during storage. Avoid excessive heat to prevent decomposition. |
| Purity 98%: Beta-Caryophyllene Purity 98% is used in fragrance formulation, where it enhances aroma stability and intensity.Boiling Point 265°C: Beta-Caryophyllene Boiling Point 265°C is used in high-temperature flavor processing, where it minimizes thermal degradation.Molecular Weight 204.36 g/mol: Beta-Caryophyllene Molecular Weight 204.36 g/mol is used in pharmaceutical synthesis, where it ensures uniform compound integration.Optical Rotation +15°: Beta-Caryophyllene Optical Rotation +15° is used in chiral drug development, where it provides specificity in isomer synthesis.Solubility in Ethanol: Beta-Caryophyllene Solubility in Ethanol is used in tincture manufacturing, where it offers homogeneous active ingredient dispersion.GC Assay ≥99%: Beta-Caryophyllene GC Assay ≥99% is used in analytical reference standards, where it improves quantification accuracy.Stability at 40°C: Beta-Caryophyllene Stability at 40°C is used in topical formulation, where it maintains efficacy during storage.Particle Size <50 μm: Beta-Caryophyllene Particle Size <50 μm is used in encapsulation processes, where it supports rapid ingredient release.Density 0.905 g/mL: Beta-Caryophyllene Density 0.905 g/mL is used in emulsion systems, where it enables optimal phase separation.Refractive Index 1.510: Beta-Caryophyllene Refractive Index 1.510 is used in cosmetic serum production, where it enhances visual clarity and consistency. |
Competitive Beta-Caryophyllene prices that fit your budget—flexible terms and customized quotes for every order.
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Every batch of Beta-Caryophyllene tells the story of our approach as chemical manufacturers. We have spent years refining extraction and distillation methods because the marketplace deserves more than just a standard terpene. Beta-Caryophyllene has gained significant attention not for its fragrance or taste alone, but for its chemical backbone and practical value across a range of industries. When we initiate a lot, it comes from the conviction that each process step—pressing, fractional distillation, vacuum concentration—directly shapes the final product, so we don’t take shortcuts or accept ambiguous results.
Beta-Caryophyllene belongs to the group of bicyclic sesquiterpenes, recognizable for its rich, spicy, woody scent with a subtle hint of pepper—a signature note in black pepper oil but also present in cloves and cannabis. Its structural uniqueness lies in its cyclobutane ring, a rare feature among natural products, which not only influences its aroma but also contributes to its robust chemical stability and interaction profile. The product we manufacture achieves a purity of at least 98%, measured by GC-FID, and we keep impurities in check through rigorous in-house quality control.
Recognizing Beta-Caryophyllene as a commodity oversimplifies the reality. Our teams handle the raw plant material daily, listening for subtle differences in aroma during extraction that signal an optimal run. Each run follows precise temperature and pressure conditions, designed to minimize oxidation and preserve the molecular integrity. Tanks and columns run on fully traceable, food-grade stainless steel, avoiding the risk of trace metal contamination. As a result, each batch delivers a transparent, pale yellow to clear oil with a refractive index in line with pharmacopeial specifications.
Volume packaging options arise from customer requests and experience moving bulk cargo without degradation. For large formulators and flavor houses, undiluted Beta-Caryophyllene ships in lined drums or IBC totes, sealed under nitrogen. For smaller labs or perfumers, we deliver in inert glass to maintain purity over long periods. Shelf life consistently runs three years under our standard storage conditions—cool, dry, and away from direct light—without notable change in GC profile or organoleptic properties.
The commercial world brims with terpenes, yet few compare to Beta-Caryophyllene in versatility. It stands apart not only as a flavor or fragrance, but as the only dietary cannabinoid family member that acts directly with the CB2 receptor. Years ago, scientists noticed its non-psychoactive binding to CB2; later research cemented this mechanism, linking Beta-Caryophyllene to topical soothing properties, flavor enhancement, and preservation in food. Demand swelled among beverage producers and functional food formulators searching for clean-label actives.
From our viewpoint, the molecular structure makes all the difference. Unlike alpha-caryophyllene or humulene, whose double bonds and ring strain lead to instability in certain formulations, Beta-Caryophyllene survives heat, light, and mild oxidation. That means fewer losses during blending, baking, or distilling—a fact we’ve proved repeatedly through headspace GC studies on consumer beverage and edible matrices. And whenever a customer tries a side-by-side test against less stable terpenes, Beta-Caryophyllene's resilience wins trust.
Over the years, we’ve worked closely with buyers from nutraceutical, cosmetic, and food sectors who demand a consistent supply chain. They don’t just look for fresh, aromatic oils; they expect accurate certificates of analysis for each lot and clear traceability from raw material source to finished product. We’ve built our logistics and documentation processes to mirror these expectations, because a product like Beta-Caryophyllene reaches its full market potential only when it meets technical and regulatory standards from batch to batch. We invest in third-party analytical checks, not simply to satisfy audits, but because regular validation exposes otherwise undetectable shifts in composition, especially with a naturally variable raw material. Annual reviews of solvent and cleaning protocols, ongoing upgrades to our fractional distillation units, and direct feedback from bulk users all drive these improvements.
Oil itself may seem interchangeable at first glance. Yet our Beta-Caryophyllene earns loyalty by keeping reliable low peroxide values and limiting minor sesquiterpene impurities to below 1%. Over time, we have seen customers come to us after failed product launches with other suppliers—issues like rapid color changes, off-odors, or crystallization in cold-chain conditions. Our experienced team isolates these problems early, adjusting downstream filtration or adapting inert-atmosphere packaging as necessary. Scalability remains an everyday consideration; output can rise or fall, but those end-use requirements never shift.
Manufacturing Beta-Caryophyllene is about more than yield. Each material that passes through our plant creates both a product and a byproduct. We recover biomass for compost or energy generation, and process water with state-of-the-art closed-loop systems to minimize discharge. Solvent use drops each quarter as supercritical extraction technologies improve, while external air emissions remain tightly controlled by activated carbon filtration. By adopting these practices, the product attains deeper value—manufacture doesn't simply convert a crop into a liquid, but builds a sustainable platform for the years ahead. These investments are not industry mandates; they are the result of observing long-run outcomes as stewards of both our local community and global supply chain.
Beta-Caryophyllene finds a home in multiple sectors due to its adaptability. In beverage and food industries, it brings a characteristic peppery warmth and rounds out citrus or herbaceous notes in complex blends. Bakeries seeking stable natural flavors keep choosing it for its heat resistance. Perfumers rely on Beta-Caryophyllene in woody or spicy bases, especially in men’s colognes, because it supports deeper notes without causing haze or instability during aging. In topical cosmetics, formulators value its compatibility with oils and waxes, blending efficiently into creams, balms, and serums. Over time, researchers and R&D teams have recognized its bioactive properties, designing supplements or topical treatments that benefit from CB2 receptor interaction—a rare function among volatile terpenes.
Comparing Beta-Caryophyllene to alternatives sheds more light on its strengths. Farnesene or bisabolene bring their own aromatic contributions, but lack Beta-Caryophyllene’s resilience in oxidation-prone emulsions. Limonene, for example, offers a lively citrus top note but fades quickly under UV exposure or repeated heating cycles, which limits its use in processed foods or shelf-stable beverages. Humulene remains popular in hops extracts for beer, but doesn’t perform as well in cleaning blends, where we’ve seen Beta-Caryophyllene persist for longer and maintain an agreeable aroma profile after months in storage. These distinctions emerge after careful pilot runs, not speculation.
We have seen firsthand how brands transform an ordinary end-user experience by using a more robust terpene backbone. A beverage flavorist shared data showing lower volatility loss over a six-month storage period. A cosmetic developer noted fewer formula breakdowns in oil-based gels featuring Beta-Caryophyllene compared to those with less stable analogs. These results trace back to the effort at the onset of our own process, where each step is designed for more than regulatory compliance—it’s about exceeding what formulators expect from a direct-from-manufacturer product.
Our production technicians learn to distinguish a fine Beta-Caryophyllene batch not from paperwork but from the subtle earthy notes present during distillation and the clarity of the final product. Judging output involves more than checking off analytical results; it’s about engaging every sense to confirm quality at each turn. Once in the hands of a customer, the oil must handle dilution into alcohol, glycerin, or edible bases without precipitating, separating, or clouding—practical considerations overlooked by traders who never set foot in a manufacturing plant.
For formulators scaling up prototypes, a consistent raw material means fewer headaches as batches get larger. Our direct communication with R&D teams helps them avoid the pitfalls we’ve seen elsewhere: flavor-masking failures, carrier oil instability, or unanticipated reactivity in vitamin-fortified applications. Each technical consultation draws not from generic safety data sheets but from logged plant observations over many years of running Beta-Caryophyllene. This combination of chemistry rigor and real-world troubleshooting comes only from first-hand manufacturing, not textbook summaries or third-party marketing literature.
Current published research supports the growing reputation of Beta-Caryophyllene as more than a pleasant terpene. A series of studies in food preservation highlight its effectiveness slowing the growth of common spoilage microorganisms, extending shelf-life without relying on synthetic additives. This advantage has become especially relevant among producers pursuing "clean label" claims, reducing reliance on artificial preservatives or masking agents in their formulations.
In cosmetics and dermatological preparations, research links Beta-Caryophyllene with local soothing and barrier-supportive effects—promoting its use in sensitive-skin formulas and after-sun products. Because we receive regular requests from pharmaceutical R&D departments pursuing new delivery systems, our own manufacturing data aligns with these trends: demand for highly pure, well-characterized Beta-Caryophyllene has grown steadily as formulators pursue higher activity and lower impurity loads to satisfy both regulatory and performance criteria.
Of special interest to beverage technologists, several quality assurance teams have confirmed that Beta-Caryophyllene held flavor integrity better than limonene, myrcene, or linalool in accelerated shelf-life studies. It does not drift off rapidly under heat pasteurization or light exposure, so brands achieve longer product rotation without blending losses. Each new application in hard seltzers, hop-free beers, and ready-to-drink cocktails offers further confirmation that manufacturing expertise, not commodity speculation, drives results.
Manufacturing at scale always presents fresh challenges. Sourcing plant raw material at the same quality level year-round is harder than it seems; drought, pest pressure, or shifting agricultural practices all introduce variability. Direct contracts with growers, combined with ongoing field audits, let us adjust quickly when environmental factors threaten yield or chemical profile. Investments in analytical equipment, such as GC-MS and LC-MS, enable rapid in-process adjustments before a lot reaches bottling.
Batch consistency also comes from updating process equipment: improved vacuum distillation reduces thermal decomposition, while inline sensors identify trace contaminants missed by traditional spot checks. Newer extraction methods use less solvent, cut waste, and lower residual risk in the finished oil, but these upgrades carry high costs and lengthy validation periods. As manufacturers, we budget for pilot runs and small-scale tests before committing to major overhauls, so we can guarantee customers and partners steady supply chains and robust documentation for regulatory reviews.
Product safety never takes a back seat. We meet all relevant food and cosmetic safety standards through diligent process monitoring and documented cleaning validations, not by chance. Purity, absence of pesticides, and extremely low heavy metal levels—confirmed by ICP-MS—come from well-financed QA teams and regular outside audits, giving buyers certainty that each shipment conforms not just to international norms but to the demands of their own internal QC panels.
Offering Beta-Caryophyllene as a manufacturer means accepting responsibility beyond the loading dock. Brands that buy from us depend on steady documentation, COAs backed by raw lab data, and truthful communication when lots need retesting or replacement. No middleman understands a manufacturing plant’s pressure points; only hands-on manufacturers appreciate how a storm in harvest country or an equipment failure can affect supply weeks down the line. Relationships matter: years of working side by side with buyers, chemists, and production engineers earned us a reputation for problem-solving, not excuse-making.
Manufacturing allows for faster troubleshooting, real-time adaptation to increased demand, and an honest look at what is possible with current technology. We have weathered market price fluctuations and trend cycles by keeping our focus on technical excellence and proven customer applications, not speculation or trendy messaging. Every legitimate use case for Beta-Caryophyllene starts at the plant, in the lab, or on the production line, where the finished oil must perform to client specification—regardless of shipment size or frequency.
Increasingly, we see global brands pushing for advanced transparency in raw material sourcing, traceability, and environmental credentials. Our documentation includes GPS tracking of key raw material harvests, and we adjust anticipated output as weather, soil quality, or new crop rotations play out. These details resonate with auditors, but also with end consumers who care about where their products begin and end. Keeping our doors open to regular audits from downstream partners, staying up to date on regulatory changes, and supporting collaborative R&D keeps us at the forefront—not because market trends say so, but because our own experience shows what works.
As opportunities expand, both in established sectors like perfumery and in smaller niche applications such as pet wellness or biodegradable polymers, Beta-Caryophyllene continues to demonstrate its reliability. Its role shifts and grows as new discoveries about its properties emerge. Manufacturers like us, tuned to process, chemistry, and end-use feedback, are best positioned to unlock the next chapter for this distinctive molecule.
Working directly with Beta-Caryophyllene has shown again and again that the difference between a good outcome and a struggle lies in real manufacturing knowledge. From oil’s source in the field, through carefully monitored extraction, to robust QA and practical end-use testing, each step counts. The chemistry, performance, and traceability of Beta-Caryophyllene become evident only when the product answers real demands in beverage, cosmetics, food, and beyond. That value derives not from lab reports alone, but from the accumulated experience that only direct manufacturing delivers.