|
HS Code |
507375 |
| Chemical Name | Dehydrogingerone |
| Molecular Formula | C11H12O3 |
| Molecular Weight | 192.21 g/mol |
| Cas Number | 555-66-8 |
| Appearance | Yellow crystalline solid |
| Solubility | Soluble in ethanol, slightly soluble in water |
| Melting Point | 104-107 °C |
| Boiling Point | No data available |
| Structure | Benzene ring with propenone and methoxy substituents |
| Iupac Name | 4-Hydroxy-3-methoxyphenylacetone |
| Synonyms | 6-Dehydrogingerol, 4-(4-Hydroxy-3-methoxyphenyl)-3-buten-2-one |
| Source | Degradation product of gingerol from ginger |
| Odor | Characteristic mild odor |
| Storage Conditions | Store in a cool and dry place, protected from light |
| Pubchem Cid | 123041 |
As an accredited Dehydrogingerone factory, we enforce strict quality protocols—every batch undergoes rigorous testing to ensure consistent efficacy and safety standards.
| Packing | Dehydrogingerone, 10g: Supplied in a sealed amber glass bottle with tamper-evident cap and detailed labeling for safe laboratory use. |
| Shipping | Dehydrogingerone is shipped in tightly sealed, chemically resistant containers to prevent contamination and degradation. Packaging complies with international safety regulations for chemical transport, ensuring safe handling. Shipment includes comprehensive documentation and labelling, and the product is typically dispatched via express courier or specialized logistics providers to maintain integrity and prompt delivery. |
| Storage | Dehydrogingerone should be stored in a tightly sealed container, protected from light and moisture, in a cool, dry, and well-ventilated area. Ideally, it should be kept at room temperature (15–25°C), away from sources of ignition and incompatible substances such as strong oxidizers. Proper labeling and adherence to relevant regulations for chemical storage are recommended to ensure safety and stability. |
| Purity 98%: Dehydrogingerone with purity 98% is used in pharmaceutical formulations, where enhanced anti-inflammatory activity is observed.Molecular weight 194.21 g/mol: Dehydrogingerone at molecular weight 194.21 g/mol is used in cosmetic serums, where improved skin brightening efficacy is achieved.Melting point 126°C: Dehydrogingerone with a melting point of 126°C is used in topical ointments, where superior formulation stability is maintained under moderate heat.Particle size <10 µm: Dehydrogingerone with particle size below 10 µm is used in nanoemulsion systems, where increased bioavailability is provided.Solubility >10 mg/mL in ethanol: Dehydrogingerone with solubility greater than 10 mg/mL in ethanol is used in oral solutions, where homogeneous dispersion is ensured.Stability temperature up to 60°C: Dehydrogingerone stable up to 60°C is used in commercial sunscreen products, where long-term photostability is guaranteed.Optical purity >99%: Dehydrogingerone with optical purity above 99% is applied in chiral synthesis, where high stereoselectivity is achieved.Residual solvent <0.5%: Dehydrogingerone with residual solvent below 0.5% serves in food additives, where safety compliance and purity standards are met. |
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In the span of more than two decades producing specialty chemicals, our operation has handled everything from pharmaceutical actives to nature-inspired fine chemicals. Among these, dehydrogingerone stands out both for what it offers and the expertise it demands from the team behind it. Working with this compound taps into our technical foundation in selective extractions, high-purity crystallization, and below-zero storage systems. The material doesn't just represent another SKU on our shelves, it marks a chapter in the evolution of ginger-derived molecules.
Our technicians begin with ginger rhizomes carefully subjected to multi-step processing strictly regulated for moisture and temperature, since careless management destroys yield and invites inconsistent characteristics batch to batch. The synthesis of dehydrogingerone calls for the right blend of plant material selection and modern chemistry, but it rewards this effort with a molecule that opens doors across cosmetic, health, and analytical science fields. Maintaining batch records, rigorous double-checks and certification are not window-dressing here; these steps regularly protect project outcomes for clients relying on our track record.
Starting with the root provides the foundation, yet it's the downstream controls that set our dehydrogingerone apart from offerings that pass too quickly from harvest to market. The entry point is a dense, pale yellow crystalline powder, with clear aromatic sharpness—easy to tell apart from less refined ginger extracts or intermediary degradation products. Specification as a single, well-characterized compound means no unnecessary baggage. The product’s molecular formula meets rigorous identification checks using our validated HPLC and GC-MS profiles, not only for purity but for consistency. Most clients ask for at least 98% HPLC purity, and we routinely target 99%+ on a dry weight basis—right from the final drying stage, pulling full spectra on each container before release.
The melting range, specific optical activity, and solubility data come from repeatable lab observations, not literature assumptions. In our work, the purity, color, and storage stability matter for every end use; they tell us the process ran cleanly and the ginger root wasn’t bruised or compromised upstream. Appearance alone can’t predict how a batch performs in analytical controls or advanced product formulations, so we build systems that record each data point, link it to source material, and generate a trackable history for each lot. As an actual producer, the analytics are the day-to-day language that connects our lab with research partners worldwide.
Large orders sometimes aim at nutritional research, other times at cosmetic actives or reference standards for laboratories. Having worked through multiple commercial and pilot-scale collaborations, our team has witnessed which applications demand higher physical cleanliness, which tolerate some trace oil, and which collapse if even small amounts of gingerol or shogaol sneak in. In cosmetics, for instance, color, texture, and stability of formulations remain highly sensitive to even a percent-level variance. Labs analyzing samples with mass spectrometry call for reliable, single-molecule fingerprinting; a complex fingerprint betrays incomplete purification or residual carrying solvents from extraction. Nutraceutical innovators need solid performance data, not only marketing claims.
Direct feedback shapes our batches: one global skin care client zeroed in on a faint, spicy note they linked to a less-refined product—by adjusting solvent ratios and distillation temperature ramps, we tightened that out. A food additive user flagged wetting behavior in beverage applications. Shifts in crystallization humidity and a tighter cutoff in particle sizing gave them the dispersibility they needed, without redundant anti-caking aids. Talking to real users of dehydrogingerone, both in lab and on production floors, drives practically every improvement we make.
Buyers who prioritize quality want direct answers on how their ingredients are produced and tested. Low-grade dehydrogingerone—often labeled "gingerone" or supplied as bulk yellowish powder—includes a host of ginger side-products. These lower-cost versions come from single-stage solvent washes, sometimes running direct-from-root protocols where quality drifts as seasons or origins change. Often, non-specialist resellers don’t realize they’re supplying variable material until an end-user’s HPLC check shows unwanted peaks. Our methodology begins with analytical pre-screening of raw rhizome lots, followed by sequential cold extraction, tailored pH control, and controlled evaporation. By running these under SOPs built on actual production experience, we avoid the drift and guesswork that frustrate research or production teams down the line.
Documentation matters—from certificate of analysis data tied to real batch histories to stability results under high-humidity shelf conditions. We angle testing toward the likely endpoints: if a client is using material for biological studies, our QC ensures absence of contaminants flagged by research institutions. Cosmetic producers need skin safety and composition breakdown linked to their region's standards. Customization in particle sizing and moisture optimization directly affects blending and end-product clarity, so staff monitor these details. This whole process stands in contrast to traders moving bulk powder, who can’t always explain why last year’s product behaved differently from this year’s lot.
Manufacturers can choose from at least three major variants within the ginger extract family: mixed gingerols, semi-synthetic hydroxy-derivatives, and dehydrogingerone. Chemically, dehydrogingerone features a ketone backbone unsaturated between the two major side-chains. This unsaturation brings added antioxidant function according to published studies, and it impacts how the material interacts with skin, biological membranes, and solvents. By contrast, gingerol-rich powders present a more diverse chemical profile but lack precise control of activity, flavor, or aroma. Shogaols, another ginger extract type, bring distinctive, more pungent heat and rapid breakdown; as a result, they often foul chromatographic or flavor control balances.
Pure dehydrogingerone stands different—it delivers uniform chemical behavior across production runs and doesn’t carry the batch-to-batch unpredictability found in mixed extracts. Whereas some users previously accepted lower-grade intermediates to economize, high-purity dehydrogingerone stands out in endpoints where control is king. Analytical chemists working across regulatory validation settings have no tolerance for unidentified material, so they rely on us for compound definition as well as certified analytical standards. These clients need every shipment to behave identically each quarter, and their audit calendars leave no room for improvisation or supplier hand-waving.
Natural ginger extracts sold in bulk often rely on solvent-laden protocols, leaving residues that create compliance risks. We developed our process to squeeze down those risks; each refining step draws from a production logbook tested in-house for more than a decade. Our focus stays on that single compound—improving yield without sacrificing fingerprint clarity or handling characteristics. That's the difference our clients note: real repeatability and a team who will walk the plant floor and tweak the line, not only change certificates on paper.
Being a chemical manufacturer means living with the rhythm of the raw material cycle. Ginger rhizomes aren’t factory-built: they grow with the seasons and respond to soil, water, and sunlight. Our staff learned long ago that variable rains or delayed harvests shift the root’s chemical profile far more than any adjustment in lab or plant can fix after the fact. We learned to schedule sourcing with contract growers, build up redundancy over peak cycles, and freeze critical lots when drought or floods hit supplier countries.
On the plant floor, we keep long runs for campaign production. That means every supporting input—filtration aids, tank coatings, argon blankets for degassing—supports both throughput and batch security. Releases do not happen until all control samples finish analytical runs, physical stability checks, and freeze-thaw cycling. Moisture and airflow controls keep degradation to a minimum, because the slightest slip promotes off-notes or carton staining, and every rejected batch means lost material and delayed shipments for customers with tight production schedules.
Our experience has shown that keeping skilled staff translates into tangible product quality. Operators who have tuned the process since startup catch telltale signs of drift long before they show up on the analyzers. Unusual particle size, minor odor changes, or shifting color patterns cue corrective actions without waiting for paper trails. Process managers monitor data in real-time, reducing time lost resetting equipment and letting our clients keep production on their own schedules. This back-and-forth between plant and lab serves as our insurance policy against unexpected failure, something traders without a plant never need to learn.
Challenges in the ginger derivative space run from crop failures to regulatory confusion to imitation products. In some years, a glut of low-quality root material hits the market. Untrained processors often chase lower cost, skipping controls on residual solvents or putting out incompletely purified mixtures. These shipments cause trouble for technical users, especially when a planned research run or production cycle needs to rely on precise analytical behavior. To handle this, we retain backups of reference spectra, certificate history, and even retained samples for years after final packing—giving clients recourse when standards or formulation stability come into question.
Fraudulent labeling remains a widespread risk, with some resellers unwilling to disclose origin or actual composition. We developed tight chain-of-custody logs and continue to invest in secure packaging. Sales go only through direct sales or authorized, traceable agents. For years, this policy has prevented side-channel gray market leakage and protected our relationships with regulatory authorities and honest end users. Those seeing wide swings in lab results almost always find the source in bulk intermediates cut without full declaration or lacking proper test documentation. Our sales engineers have spent many hours helping key accounts pinpoint such problems before they ripple out to a wider product line.
Another common issue for the market involves misunderstanding material safety or end-user policy. Because certain natural extracts carry risks of trace pesticides, allergens, or solvent residues, sophisticated customers ask for multiyear histories of specifications, not only spot-tests. We invest in ongoing audit programs, tracking lots from contract farm to finished packaging under allergen, heavy metal, and pesticide monitoring. Those histories build assurance that downstream products in skin care or food matrices meet both legal and ethical demands. Sometimes, national regulations shift labeling or allowable trace thresholds on short notice; keeping in-house regulatory and compliance experts lets us stay ahead—adjusting process or analytics long before a surprise inspection causes trouble.
Chemical manufacturers can no longer operate only as batch processors; supply chain issues, climate risk, and shifting regulatory ground reward adaptability and open partnership. In recent years, our teams have stepped up collaboration with agricultural partners. By supporting on-farm sorting, toxin screens, and post-harvest best practices, we contribute to improved raw material quality at the field level—which prevents downstream losses and maximizes high-purity dehydrogingerone output. Farmers who integrate traceability and basic analytical monitoring supply rhizome lots with less risk of pesticide carryover or mycotoxin trouble—helping defend the quality levels all the way through to the final user.
From the laboratory angle, we support R&D by partnering with university teams, leveraging our archive of batch data and molecular analysis. Cosmetic clients benefit from shared toxicological and photostability testing, gaining access to long-term stability histories. Industrial users working with food or beverage applications discover detailed solubility profiles, dispersibility data, and application-specific feedback. These collaborative projects accelerate the pace of introducing dehydrogingerone into real-world use, spreading out the work of risk identification, and broadening the impact of ginger-derived molecules against oxidation, flavor loss, or skin health challenges.
Sustainable production looms large for every manufacturer. Climate pressures, water usage, and waste stream reductions demand focus at every step—right back to farm selection. Our move to responsible waste disposal and energy-efficient drying shrinks the footprint batch by batch, while multiuse packaging initiatives let users return drums or minimize single-use byproducts. This effort matters both for responsible brand management and long-term plant security; a production failure from a forgotten waste stream or energy overrun cuts into reliability, not just costs.
Making dehydrogingerone at scale stands as much for building trust as turning raw ginger into dry powder. From client site visits to open record sharing, the needs of research, food technology, and cosmetics producers push us to keep improving. No two years offer the same production conditions—climate, raw supply, and regulation shift with political and environmental surprises. By rooting our plant operation and messaging in transparent process data, direct communication, and real technical support, we hold ourselves accountable for every lot on the move.
The most rewarding feedback lands when a client’s product performs flawlessly—no batch caveats, no “unknown peaks” in the chromatogram, and no reformulation headaches from upstream drift. That level of security grows out of experience, careful equipment management, and listening to users. Our dehydrogingerone’s story isn’t found in a catalog listing or technical summary—it’s written every day by operators, analysts, and customers whose livelihoods depend on quality, reproducibility, and hard-won trust.